FIELD
[0001] The embodiments discussed herein are related to a passbook issuing apparatus and
a passbook issuing method for performing an automatic passbook-balance carry-over
in an automated-teller machine and a passbook updating machine.
BACKGROUND
[0002] Automated-teller machines and passbook updating machines provided with a passbook
automatic-carry-over function are widespread. When the last page of a passbook inserted
in such a machine is used, a new passbook is automatically issued after an automatic
carry-over from the old passbook to the new passbook is performed. To achieve this,
automated-teller machines and passbook updating machines include a built-in passbook
issuing apparatus.
[0003] The passbook issuing apparatus includes at least a cassette that holds new passbooks
and an inserter that inserts a new passbook from the cassette when a passbook change
is made. One or more cassettes formed of, for example, the two components, a front
and a rear, are provided, and an inserter is provided for each of the cassettes.
[0004] In the inserting of a new passbook from the cassette, the inserter needs to insert
the new passbook in a manner such that the head and tail and the front and back of
the new passbook are correctly oriented with respect to a relationship with a print
head that prints characters in the new passbook. Thus, in a prior art, a bank clerk
and so on need to correctly set the orientations of the head and tail and the front
and back in order to set the new passbook in a cassette; if the orientation is incorrectly
set, a problem occurs wherein, for example, characters to be printed on the front
cover are printed on the back cover.
[0005] A prior art is known that provides means for flipping through the pages of a passbook
in order to print characters on the front cover page, back cover page, or other pages
of the passbook (e.g., the arts described in patent documents 1, 2, and 3).
[0006] Another prior art is known that provides means for rotating or reversing a passbook
to correct the orientation when the passbook is inserted in an apparatus in a wrong
orientation (e.g., the arts described in patent documents 1 and 2).
[0007] However, both of these prior arts are designed to process an existing passbook inserted
in a machine from outside, and hence they do not provide means for correcting the
orientation of a new passbook set in a cassette.
PRIOR ART DOCUMENT
PATENT DOCUMENT
[0008]
Patent document 1: Japanese Utility Model Application Publication No. H01-16345
Patent document 2: Japanese Laid-open Patent Publication No. H01-175694
Patent document 3: Japanese Laid-open Patent Publication No. H10-258589
DISCLOSURE OF THE INVENTION
[0009] An object of the present invention is to allow the orientation of the head and tail
or the front and back of a new passbook inserted from a storage unit to be corrected.
[0010] An exemplary aspect provides a passbook issuing apparatus that includes: one or more
storage units that hold a new passbook; a new-passbook inserting unit that inserts
the new passbook from the storage unit when a passbook change is made; a magnetism
reading unit that reads magnetic information attached to at least one of the front
cover or the back cover of a passbook; first and second flipping units that respectively
flip open the passbook in a first direction and a second direction which is 180 degrees
from the first direction; and a head-tail turning unit that rotates the passbook in
a plane that includes a passbook page space so as to reverse the head and tail, the
passbook issuing apparatus further including: an insertion-orientation determining
unit that, when the new-passbook inserting unit inserts one new passbook, determines
whether or not the orientation of the head and tail and the orientation of the front
and back of the inserted new passbook are correct by determining a state of the reading
of the magnetic information of the inserted new passbook by the magnetism reading
unit and a state of the flipping by at least one of the first or second flipping unit;
and an insertion-orientation controlling unit that controls the first and second flipping
units and the head-front turning unit according to the result of the determination
so as to correctly orient the head and tail and the front and back of the inserted
new passbook.
[0011] The aforementioned components allow the orientation of the head and tail or the front
and back of a new passbook inserted from a storage unit to be corrected.
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
FIG. 1 is a typical hardware configuration diagram of a passbook issuing apparatus.
FIG. 2 is an explanatory diagram of operations of forward-side flipping rollers and
reverse-side flipping rollers.
FIG. 3 is an exemplary diagram of an operation of a head-tail turning unit.
FIG. 4 is an exemplary diagram of a correct insertion orientation of a new passbook.
FIG. 5 is an exemplary diagram of a wrong insertion orientation of a new passbook.
FIG. 6 is a block diagram of the present embodiment.
FIG. 7 is a system configuration diagram of the present embodiment.
FIG. 8 is a flowchart illustrating a controlling process in an ordinary transaction
in accordance with a first embodiment.
FIG. 9 is a flowchart illustrating a controlling process (a determining process) in
accordance with the first embodiment.
FIG. 10 is a flowchart illustrating a controlling process (a reversed-head-tail addressing
process) in accordance with the first embodiment.
FIG. 11 is a flowchart illustrating a controlling process (a back-side addressing
process) in accordance with the first embodiment.
FIG. 12 illustrates an exemplary passbook specification in accordance with a second
embodiment.
FIG. 13 is a flowchart illustrating a controlling process (pattern 1) in an ordinary
transaction in accordance with the second embodiment.
FIG. 14 is a flowchart illustrating a controlling process (pattern 2) in an ordinary
transaction in accordance with the second embodiment.
FIG. 15 is a flowchart illustrating a controlling process (a determining process)
in accordance with the second embodiment.
FIG. 16 is a flowchart illustrating a controlling process (a reversed-head-tail addressing
process) in accordance with the second embodiment.
FIG. 17 is a flowchart illustrating a controlling process (a back-side addressing
process) in accordance with the second embodiment.
PREFERRED EMBODIMENTS
[0013] In the following, modes to implement the present invention will be described in detail
with reference to the drawings.
FIG. 1 is a typical hardware configuration diagram of a passbook issuing apparatus.
[0014] A cassette F (first and second cassettes) 101 and a cassette R (third and fourth
cassettes) 102 are each a storage unit that holds a new passbook 103. The cassette
F (first and second cassettes) 101 includes first and second cassette boxes; the orientation
of the head and tail of the new passbook 103 is set in a manner such that a close
side 116 faces downward, and the orientation of the front and back of the new passbook
103 is set in a manner such that the front cover faces a printing/flipping mechanism
unit 107. The cassette R (third and fourth cassettes) 102 includes third and fourth
cassette boxes; the orientation of the head and tail of the new passbook 103 is set
in a manner such that the close side 116 faces upward, and the orientation of the
front and back of the new passbook 103 is set in a manner such that the front cover
faces the printing/flipping mechanism unit 107.
[0015] The inserter F 104 and the inserter R 105 are respectively new-passbook inserting
units that take out the new passbooks 103 set in the cassette F (the first and second
cassettes) 101 and the cassette R (the third and fourth cassettes) 102 and then insert
these passbooks into the printing/flipping mechanism unit 107. The inserter F 104
and the inserter R 105 respectively use pressing plates 115 and central rollers within
the cassette F (the first and second cassettes) 101 and pressing plates 115 and central
rollers within the cassette R (the third and fourth cassettes) 102 so as to push the
new passbooks 103 out of the cassettes toward the printing/flipping mechanism unit
107. When the last page of a passbook inserted into a passbook insertion unit 114
is used, an automatic carry-over from the old passbook to a new passbook is performed.
In this case, the inserter F 104 or the inserter R 105 is operated to insert one new
passbook 103 into the printing/flipping mechanism unit 107.
[0016] An MS unit 106 provided within the inserter F 104 is a magnetism reading unit that
reads the magnetic information attached to at least one of the front cover or the
back cover of an existing passbook or a new passbook 103.
[0017] A head-tail turning unit 110 provided within the inserter R 105 is a mechanism that
rotates a passbook by, for example, 180 degrees in a plane that includes a passbook
page space so as to reverse the head and tail. The head-tail turning unit 110 was
originally a mechanism provided to correct the orientation of an existing passbook
inserted through the passbook insertion unit 114 when the orientation was incorrect,
but, in the present embodiment, the head-tail turning unit 110 also includes a function
that corrects the orientation of a new passbook 103.
[0018] The printing/flipping mechanism unit 107 includes forward-side flipping rollers 108,
reverse-side flipping rollers 109, a print head 112, and a scanner 113. The forward-side
flipping rollers 108 and the reverse-side flipping rollers 109 are respectively first
and second flipping units that flip open a passbook in a first direction and a second
direction which is 180 degrees from the first direction. The forward-side flipping
rollers 108 and the reverse-side flipping rollers 109 were originally mechanisms to
print characters on the front cover, the back cover, and the pages of an existing
passbook or a new passbook 103, but, in the present embodiment, these rollers also
include a function that corrects the orientation of the new passbook 103.
[0019] The print head 112 prints necessary information on a page of a passbook opened by
the forward-side flipping rollers 108 or the reverse-side flipping rollers 109.
[0020] According to an external instruction, the scanner 113 scans a necessary page of a
passbook and outputs the resultant image data to outside. The scanner 113 is operated
to, for example, sense a line on which characters have been printed, sense a page
mark, or check printed characters after printing.
[0021] When an automatic carry-over from an old passbook inserted through the passbook insertion
unit 114 to a new passbook 103 is performed, a removing unit 111 removes the old passbook
from the printing/flipping mechanism unit 107. After a new passbook 103 is issued
and sent out of the passbook insertion unit 114, the removing unit 111 returns the
removed old passbook via the passbook insertion unit 114 to the user outside.
[0022] An outline of a process of issuing a new passbook 103 performed by a passbook issuing
apparatus having the hardware configuration illustrated in FIG. 1 is as follows. First,
the apparatus illustrated in FIG. 1 is operated in response to commands transmitted
from a host functional block (not particularly illustrated). When an old passbook
is inserted through the passbook insertion unit 114, the magnetic information attached
to, for example, the back cover of the old passbook is read using the MS unit 106,
and characters are printed on a page of the old passbook using the print head 112.
When it is detected via, for example, the scanner 113 that characters have been printed
on all of the pages of the old passbook, the process shifts to a process of issuing
a new passbook 103. First, the front cover of the old passbook is closed, and "VOID
(USED)" is printed on the front cover. Next, the old passbook is moved to the removing
unit 111. Then, the inserter F 104 or the inserter R 105 is operated, and the cassette
F (the first and second cassettes) 101 or the cassette R (the third and fourth cassettes)
102 inserts the new passbook 103 into the printing/flipping mechanism unit 107. Subsequently,
the magnetic information attached to, for example, the back cover of the new passbook
103 is read by the MS unit 106; alternatively, the front cover of the new passbook
103 is flipped open by the forward-side flipping rollers 108, and then the scanner
113 reads a passbook classification on the inside of the front cover. When a judgment
of "OK" is indicated for the classification, the front cover of the new passbook 103
is closed by the reverse-side flipping rollers 109, and the print head 112 prints
characters on the front cover of the new passbook 103. After this, characters are
printed on the pages while the pages are being flipped through by the forward-side
flipping rollers 108, and the MS unit 106 finally updates the magnetic information
attached to, for example, the back cover. Next, the new passbook 103 is provided through
the passbook insertion unit 114 to the user outside. Subsequently, the magnetic information
attached to, for example, the back cover of the old passbook that has been removed
by the removing unit 111 is erased by the MS unit 106, and the old passbook is then
returned through the passbook insertion unit 114 to the user outside.
[0023] FIG. 2 is an explanatory diagram of operations of the forward-side flipping rollers
108 and the reverse-side flipping rollers 109 illustrated in FIG. 1. A passbook 201
is set to be sandwiched between the forward-side flipping rollers 108 and between
the reverse-side flipping rollers 109. As illustrated by (a), when the passbook 201
is set in a correct orientation such that a close side (the head) 202 of the passbook
201 is located at the reverse-side flipping rollers 109, an open side (the tail) 203
of the passbook 201 is located at the forward-side flipping rollers 108. In this case,
an upper roller of the forward-side flipping rollers 108 rotates in a counterclockwise
direction, thereby lifting up a page of the passbook 201 as illustrated by a dashed
line 204 in FIG. 2. Meanwhile, as illustrated by (b), when the passbook 201 is set
in a wrong orientation such that the close side (the head) 202 of the passbook 201
is located at the forward-side flipping rollers 108, the open side (the tail) 203
is located at the reverse-side flipping rollers 109. In this case, an upper roller
of the reverse-side flipping rollers 109 rotates in a clockwise direction, thereby
lifting up a page of the passbook 201 as depicted by a dashed line 205 in FIG. 2.
An original function of the forward-side flipping rollers 108 and the reverse-side
flipping rollers 109 is to correct the orientation of an existing passbook inserted
through the passbook insertion unit 114 in FIG. 1 so as to perform the aforementioned
flipping operation. In addition, the present embodiment allows the orientation of
the new passbook 103 in FIG. 1 to be corrected even when the new passbook 103 is set
in a wrong orientation at the forward-side flipping rollers 108 and the reverse-side
flipping rollers 109 within the printing/flipping mechanism unit 107, as indicated
by the passbook 201 in FIG. 2(b). Such a situation occurs when the head and tail of
the new passbook 103 are set in a wrong orientation in the cassette F (the first and
second cassettes) 101 or the cassette R (the third and fourth cassettes) 102, as will
be described hereinafter.
[0024] FIG. 3 is an exemplary diagram of an operation of the head-tail turning unit 110
in FIG. 1. This operation is a function of rotating the passbook 201 in a plane that
includes a passbook page space so as to reverse the head and tail of the passbook
201 when the close side (head) 202 is set in a wrong orientation, i.e., when the head
and tail are set in a wrong orientation, as illustrated in, for example, FIG. 3(b).
As a result, as illustrated by FIG. 3(a), the close side (the head) 202 is corrected
to be set in a correct orientation, i.e., the head and tail are corrected to be set
in a correct orientation. An original function of the head-tail turning unit 110 is
to correct a wrong orientation of an existing passbook inserted through the passbook
insertion unit 114 in FIG. 1. In addition, the present embodiment allows the orientation
of the new passbook 103 inserted by the inserter F 104 or the inserter R 105 in FIG.
1 to be corrected when the orientations of the head and tail and/or the front and
back of the new passbook 103 are wrong.
[0025] FIG. 4 is an exemplary diagram of a correct insertion orientation of a new passbook.
As illustrated in FIG. 4(a), while the new passbook 103 is being inserted into the
printing/flipping mechanism unit 107 by the cassette F (the first and second cassettes)
101, the close side 116 needs to face, for example, the right end of FIG. 4 (face
the printing/flipping mechanism unit 107). Meanwhile, as illustrated in FIG. 4(b),
while the new passbook 103 is being inserted into the printing/flipping mechanism
unit 107 from the cassette R (the third and fourth cassettes) 102, an open side (the
tail) 401 needs to face, for example, the left end of FIG. 4 (face the printing/flipping
mechanism unit 107). That is, while the new passbook 103 is being inserted into the
printing/flipping mechanism unit 107, the close side (the head) 116 (or the open side
(the tail) 401) of the new passbook 103 needs to be controlled in a manner such that
the close side (the head) 116 (or the open side (the tail) 401) is always identically
orientated with respect to the print head 112. In the cases of both FIG. 4(a) and
(b), the magnetic information attached to, for example, the back cover of the new
passbook 103 is positioned as illustrated by a dashed line 402 at an upper portion
of the back side of FIG. 4; only such positioning allows the MS unit 106 in FIG. 1
to read the magnetic information normally.
[0026] As illustrated in FIG. 1, the state of FIG. 4(a) is achieved when the new passbook
103 is set in the cassette F (the first and second cassettes) 101 in a manner such
that, for the orientation of the head and tail, the close side 116 faces downward
and, for the orientation of the front and back, the front cover faces the printing/flipping
mechanism unit 107. The state of FIG. 4(b) is achieved when the new passbook 103 is
set in the cassette R (the third and fourth cassettes) 102 in a manner such that,
for the orientation of the head and tail, the close side 117 faces upward and, for
the orientation of the front and back, the front cover faces the printing/flipping
mechanism unit 107. However, in an actual banking operation, a bank clerk may fail
to set the new passbook 103 in the cassette F (the first and second cassettes) 101
or the cassette R (the third and fourth cassettes) 102 in a correct orientation.
[0027] FIG. 5 is an exemplary diagram of a wrong insertion orientation of the new passbook
103.
[0028] FIG. 5(a) depicts a state in which the orientations of the head and tail and the
front and back of both the new passbook 103 inserted from the cassette F (the first
and second cassettes) 101 and the new passbook 103 inserted from the cassette R (the
third and fourth cassettes) 102 are reversed. This state will hereinafter be referred
to as a "reversed head-tail setting (back-side setting) state". In the reversed head-tail
setting (back-side setting) state, the close side 116 of the new passbook 103 is positioned
at a left side of the drawing, and hence the forward-side flipping rollers 108 in
FIG. 1 are incapable of performing a flipping operation. Meanwhile, the magnetic information
402 of the new passbook 103 is positioned at an upper portion of the front side of
FIG. 4, and hence the MS unit 106 in FIG. 1 is incapable of reading the magnetic information
402 normally.
[0029] FIG. 5(b) depicts a state in which only the orientations of the head and tail of
both the new passbook 103 inserted from the cassette F (the first and second cassettes)
101 and the new passbook 103 inserted from the cassette R (the third and fourth cassettes)
102 are reversed. The orientations of the front and back are correct. This state will
hereinafter be referred to as a "reversed head-tail setting (front-side setting) state".
In the reversed head-tail setting (front-side setting) state, the close side 116 of
the new passbook 103 is positioned at a left side of the drawing, and hence the forward-side
flipping rollers 108 in FIG. 1 are incapable of performing a flipping operation. Meanwhile,
the magnetic information 402 of the new passbook 103 is positioned at a lower portion
of the back side of FIG. 4, and hence the MS unit 106 in FIG. 1 is incapable of reading
the magnetic information 402 normally.
[0030] FIG. 5(c) depicts a state in which only the orientations of the front and back of
both the new passbook 103 inserted from the cassette F (the first and second cassettes)
101 and the new passbook 103 inserted from the cassette R (the third and fourth cassettes)
102 are reversed. The orientations of the head and tail are correct. This state will
hereinafter be referred to as a "back-side setting state". In the back-side setting
state, the close side 116 of the new passbook 103 is positioned at a right side of
the drawing, i.e., correctly positioned, and hence the forward-side flipping rollers
108 in FIG. 1 are capable of performing a flipping operation. However, the magnetic
information 402 of the new passbook 103 is positioned at a lower portion of the front
side of FIG. 4, and hence the MS unit 106 in FIG. 1 is incapable of reading the magnetic
information 402 normally.
[0031] In accordance with the discussions above, the inability of the MS unit 106 to read
the magnetic information 402 normally when the new passbook 103 is inserted into the
printing/flipping mechanism unit 107 may lead to the determination that a wrong setting
state, i.e., any of the reversed head-tail setting (the back-side setting) state in
FIG. 5(a), the reversed head-tail setting (the front-side setting) state in FIG. 5(b),
and the back-side setting state in FIG. 5(c), has occurred.
[0032] The inability of the MS unit 106 to read the magnetic information 402 normally occurring
concurrently with the inability of the forward-side flipping rollers 108 to perform
a flipping operation when the new passbook 103 is inserted into the printing/flipping
mechanism unit 107 may lead to the determination that a wrong setting state, i.e.,
any of the reversed head-tail setting (the back-side setting) state in FIG. 5(a) and
the reversed head-tail setting (the front-side setting) state in FIG. 5(b), has occurred.
[0033] In addition, the inability of the MS unit 106 to read the magnetic information 402
normally occurring concurrently with the forward-side flipping rollers 108 being able
to perform the flipping operation when the new passbook 103 is inserted into the printing/flipping
mechanism unit 107 may lead to the determination that the back-side setting state
in FIG. 5 (c) has occurred.
[0034] An embodiment of a passbook issuing apparatus that is based on the aforementioned
knowledge has the following block configuration. FIG. 6 is a block diagram of an embodiment
of a passbook issuing apparatus.
[0035] A storage unit 601 holds a new passbook 602. The storage unit 601 corresponds to,
for example, the cassette F (the first and second cassettes) 101 and/or the cassette
R (the third and fourth cassettes) 102 in FIG. 1.
[0036] A new-passbook inserting unit 603 inserts the new passbook 602 from the storage unit
601 when a passbook change is made. The new-passbook inserting unit 603 corresponds
to, for example, the inserter F 104 and/or the inserter R 105 in FIG. 1.
[0037] A magnetism reading unit 604 reads magnetic information attached to at least one
of the front cover or the back cover of a passbook. The magnetism reading unit 604
corresponds to, for example, the MS unit 106 in FIG. 1.
[0038] A first flipping unit 605 and a second flipping unit 606 respectively flip open a
passbook in a first direction and a second direction which is 180 degrees from the
first direction. The first flipping unit 605 and the second flipping unit 606 correspond
to, for example, the forward-side flipping rollers 108 and the reverse-side flipping
rollers 109 in FIG. 1.
[0039] A head-tail turning unit 607 rotates a passbook in a plane that includes a passbook
page space so as to reverse the head and tail. The head-tail turning unit 607 corresponds
to, for example, the head-tail turning unit 110 in FIG. 1.
[0040] When the new-passbook inserting unit 603 inserts one new passbook 602, an insertion-orientation
determining unit 608 determines a state of the reading of the magnetic information
of the inserted new passbook 602 by the magnetism reading unit 604 and a state of
the flipping by at least one of the first flipping unit 605 or the second flipping
unit 606. In this way, the insertion-orientation determining unit 608 determines whether
the orientation of the head and tail and the orientation of the front and back of
the inserted new passbook 602 are correct. The insertion-orientation determining unit
608 is achieved as, for example, a function of firmware connected to the hardware
in FIG. 1 (e.g., an element 703 in FIG. 7, which will be described hereinafter).
[0041] According to the result of the determination made by the insertion-orientation determining
unit 608, an insertion-orientation controlling unit 609 controls the first flipping
unit 605, the second flipping unit 606, and the head-tail turning unit 607 so as to
correctly orient the head and tail and the front and back of the inserted new passbook
602. The insertion-orientation controlling unit is achieved as, for example, a function
of firmware connected to the hardware in FIG. 1 (e.g., an element 703 in FIG. 7, which
will be described hereinafter).
[0042] In the aforementioned configuration, the storage unit 601 may accept the insertion
of the new passbook 602 regardless of the orientation of the head and tail or the
front and back.
[0043] For example, the insertion-orientation determining unit 608 determines that the magnetism
reading unit 604 cannot read magnetic information attached to a first side of the
inserted new passbook 602. Accordingly, the insertion-orientation determining unit
608 determines that at least one of the orientation of the head and tail or the orientation
of the front and back of the inserted new passbook 602 is incorrect (e.g., the state
illustrated in FIG. 5(a), (b), or (c)).
[0044] After the aforementioned determination with the magnetism reading unit 604, the insertion-orientation
determining unit 608 further determines, for example, whether the first flipping unit
605 can flip open the inserted new passbook 602. Accordingly, the insertion-orientation
determining unit 608 determines whether only the front and back of the inserted new
passbook 602 are correctly oriented (e. g. , the state illustrated in FIG. 5(c)) or
whether at least the head and tail of the inserted new passbook 602 are correctly
oriented (e.g., the state illustrated in FIG. 5(a) or (b)).
[0045] In addition, when, for example, the insertion-orientation determining unit 608 determines
that at least the head and tail of the inserted new passbook 602 are incorrectly oriented
after the aforementioned determination with the first flipping unit 605, the insertion-orientation
controlling unit 609 performs the following operation. In particular, the insertion-orientation
controlling unit 609 controls the head-tail turning unit 607 so as to reverse the
orientation of the head and tail of the inserted new passbook 602, and, then, the
insertion-orientation determining unit 608 determines that the magnetism reading unit
604 can read the magnetic information attached to the first side of the inserted new
passbook 602, or the insertion-orientation determining unit 608 determines a classification
on the inside cover. Accordingly, the insertion-orientation determining unit 608 determines
that the incorrect orientation that was seen for only the head and tail of the inserted
new passbook 602 has been corrected.
[0046] Meanwhile, the insertion-orientation determining unit 608 determines that the orientations
of the head and tail and the front and back of the inserted new passbook 602 are incorrect,
for example, when it is determined that the magnetism reading unit 604 cannot read
magnetic information after the aforementioned head-tail turning operation or by determining
a classification on the inside cover. In this case, for example, the insertion-orientation
controlling unit 609 controls the head-tail turning unit 607 so as to reverse the
orientation of the head and tail of the inserted new passbook 602 and controls the
first flipping unit 605 or the second flipping unit 606 so as to flip through the
pages of the inserted new passbook 602 to the front cover. In this way, the insertion-orientation
controlling unit 609 corrects the orientations of both the head and tail and the front
and back of the inserted new passbook 602.
[0047] The insertion-orientation determining unit 608 performs the following operation when,
for example, the insertion-orientation determining unit 608 first determines that
the magnetism reading unit 604 cannot read the magnetic information attached to the
first side of the inserted new passbook 602, then determines that the first flipping
unit 605 can flip open the inserted new passbook 602, and finally determines that
the orientation of only the front and back of the inserted new passbook 602 is incorrect.
In particular, the insertion-orientation controlling unit 609 controls the first flipping
unit 605 or the second flipping unit 606 so as to flip through the pages of the inserted
new passbook 602 to the front cover and controls the head-tail turning unit 607 so
as to reverse the orientation of the head and tail of the inserted new passbook 602.
In this way, the insertion-orientation controlling unit 609 corrects the orientation
of the front and back of the inserted new passbook 602.
[0048] In the aforementioned configuration illustrated in FIG. 6, magnetic information may
be attached to only the back cover of the new passbook 602.
[0049] Alternatively, magnetic information may be attached to both the front cover and the
back cover of the new passbook 602. In this case, the magnetism reading unit 604 may
use two reading units to separately read the magnetic information on the front cover
and the back cover of the new passbook 602.
[0050] In the following, descriptions will be given of details of first and second embodiments,
which achieve a block configuration of the embodiment of the aforementioned passbook
issuing apparatus as a specific controlling process for passbook issuance.
[0051] FIG. 7 is a system configuration diagram that achieves controlling processes of the
first and second embodiments, which will be described hereinafter. An APL (application)
701 reports, to middleware 702, a designated passbook and an outlined instruction
to transmit, for example, a print telegram or an MS (magnetic information) write telegram.
In the control of the present embodiment, the middleware 702 basically issues and
transmits various commands to PPR (passbook printer) firmware 703. Then, the PPR firmware
703 performs a mechanical operation via a PPR-machine control board (e.g., motor,
sensor, and magnet) 704, which has the hardware configuration illustrated in FIG.
1, and the result is fed back from the PPR firmware 703 to the middleware 702.
[0052] For example, using the following procedure, a controlling process is achieved of
determining whether the forward-side flipping rollers 108 in FIG. 1 can perform a
flipping operation (determining whether the back-side setting state has occurred or
whether the reversed head-tail setting (the back-side setting) state or the reversed
head-tail setting (the front-side setting) state has occurred).
- 1. The middleware 702 transmits an issuance command (NSs 1 to 4) .
- 2. The middleware 702 transmits a front-cover flip command (AT front cover).
- 3. When the process by the PPR firmware 703 succeeds, the middleware 702 returns a
response to the APL 701 and waits for a next instruction. When the process by the
PPR firmware 703 does not succeed, the middleware 702 transmits a reverse-flip command
(AT reverse).
- 4. The middleware 702 transmits an inside-cover check command (AT reverse). When a
bulge cannot be made by the firmware, the page is judged to be an inside cover. When
the page is not an inside cover (when a bulge is sensed), the firmware repeats flipping.
- 5. The middleware 702 transmits a front-cover close command (AT front-cover close).
- 6. An ordinary transaction starts.
[0053] During each operation, when a mechanical operation is not completed, the middleware
702 transmits that state to the APL 701 and determines that a mechanical-operation
error has occurred.
[0054] In the following, descriptions will be given in detail of a first embodiment of a
controlling process for passbook issuance, which is based on the aforementioned basic
operation. In each controlling process, commands and responses are transmitted or
received as described above; however, detailed command-level operations are not described
hereinafter because they can be readily appreciated from the aforementioned examples.
[0055] FIG. 8 is a flowchart illustrating a controlling process in an ordinary transaction
in accordance with the first embodiment, the controlling process being performed when
the new passbook 103 (FIG. 1) is inserted into the printing/flipping mechanism unit
107 depicted in FIG. 1 in a manner such that the head and tail and the front and back
of the new passbook 103 are correctly oriented. The controlling process of the flowchart
is, for example, an operation wherein a CPU (central processing unit) (not particularly
illustrated) executes the middleware 702 in FIG. 7 stored in a memory (not particularly
illustrated). FIG. 1 and FIG. 8 will be referenced hereinafter on an as-needed basis.
[0056] First, the MS unit 106 is controlled to read the magnetic information of the new
passbook 103 (step S101).
[0057] The forward-side flipping rollers 108 are controlled to flip open the front cover
of the new passbook 103 (step S102).
[0058] The scanner 113 is controlled to recognize a passbook classification by checking
an inside-cover mark on the inside cover that has been flipped open (step S103).
[0059] The reverse-side flipping rollers 109 are controlled to close the front cover of
the new passbook 103 (step S104).
[0060] The print head 112 is controlled to print characters on the front cover of the new
passbook 103 (step S105).
[0061] The forward-side flipping rollers 108 are controlled to flip open the front cover
of the new passbook 103 (step S106).
[0062] The print head 112 is controlled to print characters on the inside cover, the forward-side
flipping rollers 108 are then controlled to flip to one inner page, and, finally,
the print head 112 is controlled to print characters on the inner page (step S107).
[0063] When the printing on the passbook is completed, the MS unit 106 is controlled to
write magnetic information on the back cover of the new passbook 103 (step S108).
[0064] The passbook insertion unit 114 is controlled to return the new passbook 103 to the
user (step S109).
[0065] FIG. 9, FIG. 10, and FIG. 11 are flowcharts illustrating a controlling process for
the passbook issuance in accordance with the first embodiment. The controlling processes
of the flowcharts are, for example, operations wherein a CPU (not particularly illustrated)
executes the middleware 702 in FIG. 7 stored in a memory (not particularly illustrated).
FIG. 1 and FIG. 9 will be referenced hereinafter on an as-needed basis.
[0066] FIG. 9 is a flowchart illustrating a controlling process (a determining process)
in accordance with the first embodiment.
[0067] An instruction to issue a new passbook 103 is given to the cassette F (the first
and second cassettes) 101 or the cassette R (the third and fourth cassettes) 102 (step
S201). Consequently, the inserter F 104 or the inserter R 105 takes out one new passbook
103 from the cassette F (the first and second cassettes) 101 or the cassette R (the
third and fourth cassettes) 102 and inserts this new passbook 103 into the printing/flipping
mechanism unit 107.
[0068] Next, the MS unit 106 is controlled to make an attempt to read the magnetic information
of the inserted new passbook 103 so as to check whether the magnetic information is
present (step S202). This controlling process achieves the function of the insertion-orientation
determining unit 608 in FIG. 6 to determine whether the magnetism reading unit 604
can read the magnetic information attached to a first side of the inserted new passbook
602.
[0069] A determination made in step S202 that the magnetic information is present may lead
to the determination that both the head and tail and the front and back of the inserted
new passbook 103 are correctly oriented, and if so an ordinary transaction process
is performed (step S203). This process is the controlling process illustrated in FIG.
8.
[0070] A determination made in step S202 that magnetic information is not present leads
to the determination that at least one of the orientation of the head and tail and
the orientation of the front and back of the inserted new passbook 103 is incorrect
(e.g., the state indicated by FIG. 5(a), (b), or (c)).
[0071] Subsequently, the forward-side flipping rollers 108 are controlled to determine whether
the inserted new passbook 103 can be flipped open (step S204). This controlling process
achieves the function of the insertion-orientation determining unit 608 in FIG. 6
to determine whether the first flipping unit 605 can flip open the inserted new passbook
602 after the determination is made using the magnetism reading unit 604.
[0072] A determination made in step 204 that the passbook cannot be flipped open leads to
the determination that the passbook is in the reversed head-tail setting (the back-side
setting) state in FIG. 5(a) or the reversed head-tail setting (the front-side setting)
state in FIG. 5(b), and hence the controlling process indicated by the flowchart in
FIG. 10 is performed.
[0073] Meanwhile, a determination made in step S204 that the passbook can be flipped open
leads to the determination that the passbook may possibly be in the back-side setting
state depicted in FIG. 5(c). In this case, it is further determined whether or not
a page mark of a page that has been flipped to is located on a left side (step S205).
For example, a page mark is usually positioned on a left side. However, due to a user
specification, a page mark is not always seen on the inside of the front cover or
the inside of the back cover, and hence the forward-side flipping rollers 108 flip
to an inner page several times so as to confirm that the page marks are located on
the left side. When the page mark is not positioned on the left side, the passbook
is judged to be in the back-side setting illustrated in FIG. 5(c), thereby performing
the controlling process indicated by the flowchart in FIG. 11.
[0074] When the page mark is positioned on the left side, the new passbook 103 is judged
to be correctly oriented, the reverse-side flipping rollers 109 are controlled to
close the front cover (step S206), and the ordinary transaction process in step S203
is then performed.
[0075] FIG. 10 is a flowchart illustrating a controlling process performed when it is determined
that a passbook cannot be flipped open in step S204 in FIG. 9 and that the passbook
is in the reversed head-tail setting (the back-side setting) state in FIG. 5(a) or
the reversed head-tail setting (the front-side setting) state in FIG. 5(b).
[0076] First, the head-tail turning unit 607 is controlled to turn the head and tail of
the new passbook 103 (step S207). Consequently, the state of FIG. 5(a) or (b) is achieved,
and the new passbook 103 rotates 180 degrees in a plane that includes a passbook page
space of the new passbook 103. Accordingly, when the new passbook 103 is in the reversed
head-tail setting (the back-side setting) state in FIG. 5(a), the close side 116 is
located on a right side of FIG. 5, and the magnetic information 402 is located at
a lower part of the front side of FIG. 5. Meanwhile, when the new passbook 103 is
in the reversed head-tail setting (the front-side setting) state in FIG. 5(b), the
close side 116 is located on a right side of FIG. 5, and the magnetic information
402 is located at an upper part of the back side of FIG. 5.
[0077] Next, the MS unit 106 is controlled to make an attempt to read the magnetic information
of the inserted new passbook 103 so as to check whether the magnetic information is
present (step S208).
[0078] Accordingly, when the head and tail of the new passbook 103 that is in the reversed
head-tail setting (the front-side setting) state of FIG. 5(b) are turned, the magnetic
information 402 is located at an upper part of the back side of FIG. 5, i.e., a state
that is the same as the state of FIG. 4 (a) or (b) is achieved, thereby determining
in step S208 that the magnetic information is present. That is, the state of numeral
1001 in FIG. 10 is achieved. Subsequently, the ordinary transaction process in step
S203 in FIG. 9 is performed.
[0079] The aforementioned processes, i.e., the head-tail turning process in step S207 and
the controlling process of determining whether magnetic information is present in
step S208, achieve the following function. That is, a function is achieved wherein
the insertion-orientation controlling unit 609 in FIG. 6 controls the head-tail turning
unit 607 so as to reverse the orientation of the head and tail of the inserted new
passbook 602, and then the insertion-orientation determining unit 608 determines that
the magnetic information attached to the first side of the new passbook 602 is readable.
This leads to a determination that the inserted new passbook 602, which was incorrect
only in terms of the orientation of the head and tail, has been corrected in a manner
such that the head and tail are correctly oriented.
[0080] Meanwhile, when the head and tail of the new passbook 103 that is in the reversed
head-tail setting (the back-side setting) state of FIG. 5 (a) are turned, the magnetic
information 402 is located at a lower part of the front side of FIG. 5, thereby determining
in step S208 that the magnetic information is not present.
[0081] In this case, the head-tail turning unit 607 is first controlled to turn the head
and tail in step S207 and then to further turn the head and tail, thereby returning
the passbook to the original state (step S209). Hence, the passbook returns to the
reversed head-tail setting (the back-side setting) state of FIG. 5(b).
[0082] Next, the reverse-side flipping rollers 109 are controlled to repeatedly perform
an operation to flip through an inside back cover and inner pages until an inside
front cover is detected (the loop process of step S210→step S211→step S210).
[0083] When it is determined that the inside cover has been reached, the front cover is
finally closed (step S211→step S212). In the detecting of an inside front cover, when
a bulge (e. g. , 205 in FIG. 2) of a page cannot be made in inner-page flipping control,
the page is judged to be the inside cover. Consequently, the passbook is switched
from the reversed head-tail setting (the back-side setting) state of FIG. 5(a) to
the normal state of FIG. 4 (a) or (b), i.e., the state indicated as 1002 in FIG. 10.
Subsequently, the ordinary transaction process in step S203 in FIG. 9 is performed.
[0084] The aforementioned controlling process of steps S209 to S212 achieves the functions
of the insertion-orientation controlling unit 609 in FIG. 6 to reverse the orientation
of the head and tail of the new passbook 602 and to control the first flipping unit
605 or the second flipping unit 606 so as to flip through the pages of the inserted
new passbook 602 to the front cover. This corrects both of the orientations of the
head and tail and the front and back of the inserted new passbook 602.
[0085] FIG. 11 is a flowchart illustrating a controlling process performed when the following
conditions are satisfied: a passbook is judged to be able to be flipped open in step
S204 in FIG. 9; the page mark is not judged to be on the left side in step S205; the
passbook is judged to be in the back-side setting state of FIG. 5(c).
[0086] First, the forward-side flipping rollers 108 are controlled to repeatedly perform
an operation to flip through inner pages until an inside front cover is detected (the
loop process of step S213→step S214→step S213). In the detecting of an inside front
cover, when a bulge (e.g., 204 in FIG. 2) of a page cannot be made in inner-page flipping
control, the page is judged to be the inside cover.
[0087] Subsequently, when the inside cover is detected, the forward-side flipping rollers
108 are controlled to close the front cover (step S215).
[0088] Next, the head-tail turning unit 607 is controlled to turn the head and tail of the
new passbook 103 (step S216).
[0089] Then, the MS unit 106 is controlled to check whether the magnetic information of
the new passbook 103 is present (step S217).
[0090] Consequently, the new passbook 103 may return from the back-side setting state of
FIG. 5(c) to the state of FIG. 4(a) or (b), leading to the determination that the
magnetic information is present in step S217. That is, the passbook is in the state
indicated as numeral 1101 in FIG. 11. Subsequently, the ordinary transaction process
in step S203 in FIG. 9 is performed.
[0091] The aforementioned controlling process of steps S213 to S217 achieves the functions
of the insertion-orientation controlling unit 609 in FIG. 6 to flip through the pages
of the new passbook 602 to the front cover and to reverse the orientation of the head
and tail of the new passbook 602. This corrects the orientation of the front and back
of the inserted new passbook 602.
[0092] When magnetic information is not detected in step S217, the apparatus stops due to
a judgment of an apparatus abnormality (step S218).
[0093] FIG. 12 illustrates an exemplary passbook specification in a second embodiment of
a controlling process for passbook issuance. In the second embodiment, magnetic information
(a magnetic stripe) 1201 and magnetic information (a magnetic stripe) 1202 are respectively
attached to the front cover and the back cover of the new passbook 103 (FIG. 1). This
allows one passbook to be used as, for example, both an ordinary-deposit passbook
and a term-deposit passbook. For example, the pages that start from the front cover
correspond to an ordinary-deposit passbook, and the pages that start from the back
cover correspond to a term-deposit passbook. In the second embodiment, the MS unit
106 in FIG. 1 further includes mechanisms such as an MS 1 and an MS 2 in FIG. 12 that
use two reading units to respectively read the magnetic information 1201 and the magnetic
information 1202 attached to the front cover and the back cover of a new passbook.
[0094] In the second embodiment, when the new passbook 103 with the aforementioned mechanism
is inserted in an incorrect orientation, the orientation may be corrected as in the
case of the first embodiment.
[0095] FIG. 13 is a flowchart illustrating a controlling process (pattern 1) for an ordinary
transaction performed in the second embodiment when the new passbook 103 (FIG. 1)
is inserted into the printing/flipping mechanism unit 107 in FIG. 1 in a manner such
that the head and tail and the front and back are correctly oriented. The controlling
process of this flowchart is, for example, an operation wherein a CPU (not particularly
illustrated) executes the middleware 702 in FIG. 7 that is stored in a memory (not
particularly illustrated).
[0096] The controlling process illustrated by the flowchart in FIG. 13 is an extended version
of the controlling process in accordance with the first embodiment illustrated by
the flowchart in FIG. 8. Note that, in FIG. 13, those steps of performing the same
processes as those performed in FIG. 8 are indicated using the same step numbers as
those used in FIG. 8. In the following, FIG. 1, FIG. 8, and FIG. 13 will be referenced
on an as-needed basis.
[0097] The processes of step S101', steps S102 to S107, and step S108' are substantially
the same as those of steps S101 to S108 in FIG. 8. However, in the reading of magnetic
information in step S101', and in the writing of magnetic information in step S108',
a magnetism reading unit MS1 from among two magnetism reading units is used as indicated
in FIG. 13. In these processes, characters are printed on the front cover and on inner
pages associated with a front-cover-side item, and magnetic information is written.
That is, in step S101', the magnetism reading unit MS1 is controlled to read the magnetic
information of a new passbook 103. After all of the printing in the passbook is completed,
in step S108', the magnetism reading unit MS1 is controlled to write magnetic information
on the back cover of the new passbook 103.
[0098] The processes of steps S301 to S308, which are the processes of printing on a back
cover and on inner pages associated with a back-cover-side item and of writing magnetic
information, are similar to those of steps S101', steps 102 to S107, and step S108',
with the only exception being that the order of the processes is reversed relative
to those of steps S101', steps 102 to S107, and step S108'.
[0099] That is, first, a second reading unit MS2 of the MS unit 106 is controlled to read
the magnetic information of the new passbook 103 (step S301).
[0100] The reverse-side flipping rollers 109 are controlled to flip open the back cover
of the new passbook 103 (step S302).
[0101] The scanner 113 is controlled to recognize a passbook classification (e.g., term
deposit) by checking an inside-cover mark on the inside back cover that has been flipped
open (step S303).
[0102] The forward-side flipping rollers 108 are controlled to close the back cover of the
new passbook 103 (step S304).
[0103] The print head 112 is controlled to print characters on the back cover of the new
passbook 103 (step S305). The printing is performed in a discharge direction and is
thus inverted.
[0104] The reverse-side flipping rollers 109 are controlled to flip open the back cover
of the new passbook 103 (step S306).
[0105] The print head 112 is controlled to print characters on the inside back cover, the
reverse-side flipping rollers 109 are then controlled to flip to one inner page, and,
finally, the print head 112 is controlled to print characters on the inner page (step
S307). The printing is also performed in a discharge direction and is thus inverted.
[0106] When the printing on the passbook is completed, the second reading unit MS2 of the
MS unit 106 is controlled to write magnetic information on the front cover of the
new passbook 103 (step S308).
[0107] After the aforementioned processes, the passbook insertion unit 114 is controlled
to return the new passbook 103 to the user (step S309).
[0108] FIG. 14 is a flowchart illustrating a controlling process (pattern 2) for an ordinary
transaction performed in the second embodiment when the new passbook 103 is inserted
into the printing/flipping mechanism unit 107 in FIG. 1 in a manner such that the
head and tail and the front and back are correctly oriented. The controlling process
of this flowchart is, for example, an operation wherein a CPU (not particularly illustrated)
executes the middleware 702 in FIG. 7 that is stored in a memory (not particularly
illustrated).
[0109] In the controlling process (pattern 1) for the ordinary transaction in FIG. 13, the
two reading units MS1 and MS2 are used for two items so as to print characters on
a passbook and to write magnetic information. By contrast, the controlling process
(pattern 2) for the ordinary transaction in FIG. 14 is an embodiment wherein the MS
unit 106 in FIG. 1 includes only one reading unit MS, as in the case of the first
embodiment. However, the number of pieces of the magnetic information on a passbook
is two, as indicated by numerals 1201 and 1202 in FIG. 12. In FIG. 14, the steps of
performing the same processes as those in FIG. 8 are indicated using the same step
numbers as those in FIG. 8. FIG. 1, FIG. 8, and FIG. 14 will be referenced hereinafter
on an as-needed basis.
[0110] The processes of steps S101 to S108 are substantially the same as those of steps
S101 to S108 in FIG. 8. In these processes, characters are printed on the front cover
and on inner pages associated with a front-cover-side item, and magnetic information
is written.
[0111] Next, in step S108, under a condition in which the back cover faces upward, the head-tail
turning unit 607 is controlled to turn the head and tail of the new passbook 103.
[0112] The processes of steps S401 to S408, which are the processes of printing on a back
cover and on inner pages associated with a back-cover-side item and of writing magnetic
information, are similar to those of steps S101 to S108 with the only exception being
that the order of the processes is reversed with respect to those of steps S101 to
S108.
[0113] That is, first, a reading unit MS of the MS unit 106 is controlled to read the magnetic
information of the new passbook 103 (step S401).
[0114] The forward-side flipping rollers 109 are controlled to flip open the back cover
of the new passbook 103 (step S402).
[0115] The scanner 113 is controlled to recognize a passbook classification (e.g., term
deposit) by checking an inside-cover mark on the inside back cover that has been flipped
open (step S403).
[0116] The reverse-side flipping rollers 109 are controlled to close the back cover of the
new passbook 103 (step S404).
[0117] The print head 112 is controlled to print characters on the back cover of the new
passbook 103 (step S405).
[0118] The forward-side flipping rollers 108 are controlled to flip open the back cover
of the new passbook 103 (step S406).
[0119] The print head 112 is controlled to print characters on the inside back cover, the
forward-side flipping rollers 108 are then controlled to flip to one inner page, and,
finally, the print head 112 is controlled to print characters on the inner page (step
S407).
[0120] When the printing on the passbook is completed, the reading unit MS of the MS unit
106 is controlled to write magnetic information on the front cover of the new passbook
103 (step S408).
[0121] After the aforementioned processes, the passbook insertion unit 114 is controlled
to return the new passbook 103 to the user (step S409).
[0122] FIG. 15, FIG. 16, and FIG. 17 are flowcharts illustrating a controlling process for
the passbook issuance in accordance with the second embodiment. The controlling processes
of the flowcharts are, for example, operations wherein a CPU (not particularly illustrated)
executes the middleware 702 in FIG. 7 stored in a memory (not particularly illustrated).
The operations in FIG. 15, FIG. 16, and FIG. 17, related to the second embodiment,
are substantially the same as the operations in FIG. 9, FIG. 10, and FIG. 11, related
to the first embodiment. Note that, in FIG. 15, FIG. 16, and FIG. 17, the steps of
performing the same controlling processes as those performed in FIG. 9, FIG. 10, and
FIG. 11 are indicated using the same step numbers as those used in FIG. 9, FIG. 10,
and FIG. 11. FIG. 1, FIG. 9, FIG. 10, FIG. 11, FIG. 15, FIG. 16, and FIG. 17 will
be referenced hereinafter on an as-needed basis.
[0123] FIG. 15 is a flowchart illustrating a controlling process (a determining process)
in accordance with the second embodiment. The flowchart of FIG. 15 is different from
the flowchart of FIG. 9 of the first embodiment in the sense that steps S202, S203,
and S205 in FIG. 9 have respectively been replaced with steps S501, S502, and S503
in FIG. 15. Another difference is that, in step S504, an inside cover is opened by
flipping a front cover or a back cover using the forward-side flipping rollers 108
or the reverse-side flipping rollers 109, and, in step S505, an item on the opened
inside cover is identified. This is because, for the new passbook 103 with a plurality
of items, the front-side setting (normal) state and the back-side setting state cannot
be distinguished from each other by checking whether magnetic information is present
because the magnetic information is provided on both the front cover and the back
cover. The item for the front cover (ordinary deposit) is typically different from
the item for the back cover (term deposit), and hence determining the item indicated
on an inside cover allows a determination to be made as to which of the front cover
and the back cover is being referenced.
[0124] In the first embodiment, one reading unit (MS) of the MS unit 106 in FIG. 1 is used
to check whether magnetic information is present in step S202 of FIG. 9. In the second
embodiment, by contrast, the MS1 from among the two reading units MS1 and MS2 in FIG.
12 that form the MS unit 106 in FIG. 1 is used to check whether magnetic information
is present in step S501 of FIG. 15. In addition, in step S504, an inside cover is
opened by flipping the front cover or the back cover using the forward-side flipping
rollers 108 or the reverse-side flipping rollers 109, and, in step S505, an item indicated
on the opened inside cover is checked. When the item is judged to be associated with
the front cover in the determination in step S505, step S502 is performed, and, when
the item is judged to be associated with the back cover in the determination in step
S505, the flowchart of FIG. 17 is performed.
[0125] For the first embodiment, details of the controlling process in the ordinary transaction
of step S203 of FIG. 9 were indicated with reference to the flowchart of FIG. 8; however,
details of the controlling process in the ordinary transaction of step S502 in FIG.
15 are indicated with reference to any of the aforementioned flowcharts of FIG. 13
and FIG. 14.
[0126] In addition, in the first embodiment, after the new passbook 103 is judged to have
been flipped open by the forward-side flipping rollers 108 in step S204 of FIG. 9,
the passbook is judged to be in the back-side setting state when a page mark is found
to not be located on a left side in step S205. In the second embodiment, by contrast,
after the new passbook 103 is judged to have been flipped open by the forward-side
flipping rollers 108 in step S204 of FIG. 15, the following judgment is made. That
is, the passbook is judged to be in the back-side setting state when the magnetism
reading unit MS2 from among the two magnetism reading units of the MS unit 106 in
FIG. 1 confirms that magnetic information is present in step S503. This is because,
in the case of a new passbook 103 with a plurality of items, a page mark is detected
on a left side even when the passbook is in the back-side setting state because page
marks are located on both sides.
[0127] FIG. 16 is a flowchart illustrating a controlling process performed in the second
embodiment when it is determined in step S204 of FIG. 15 that the passbook cannot
be flipped open and that the passbook is in the reversed head-tail setting (the back-side
setting) state of FIG. 5(a) or the reversed head-tail setting (the front-side setting)
state of FIG. 5(b). The flowchart of the second embodiment is different from the flowchart
of the first embodiment illustrated in FIG. 10 in the sense that, instead of the checking
for the presence/absence of magnetism in step S208, a process is performed of opening
an inside cover by flipping a front cover or a back cover using the forward-side flipping
rollers 108 or the reverse-side flipping rollers 109 in step S504 so as to check the
item indicated on the opened inside cover in step S505. This is because, for the new
passbook 103 with a plurality of items, the reversed head-tail setting (the front-side
setting) state and the reversed head-tail setting (the back-side setting) state cannot
be distinguished from each other by checking whether magnetic information is present
because magnetic information is provided on both the front cover and the back cover.
The item for the front cover (ordinary deposit) is typically different from the item
for the back cover (term deposit), and hence determining the item indicated on an
inside cover allows a determination to be made as to which of the front cover and
the back cover is being referenced. The other controlling processes are substantially
the same as those of the flowchart of FIG. 10 in accordance with the first embodiment.
Accordingly, even in the case of a new passbook 103 with a plurality of items, a determination
may be made as to which of the reversed head-tail setting (the front-side setting)
state and the reversed head-tail setting (the back-side setting) state the new passbook
103 is in.
[0128] FIG. 17 is a flowchart illustrating a controlling process performed when all of the
following three conditions are satisfied: the passbook is judged to be able to be
flipped open in step S204 of FIG. 15; magnetism is judged to be present as a result
of the reading by the reading unit MS2 in step S503; and the passbook is judged to
be in the back-side setting state of FIG. 5(c). The processes of the flowchart of
the second embodiment are also substantially the same as those of the first embodiment
illustrated in FIG. 11, with the only exception being that, instead of the checking
for the presence/absence of magnetism in step S217, it is checked in step S506 whether
magnetism is present using one magnetism reading unit MS1 from among the two magnetism
reading units of the MS unit 106 in FIG. 1. Accordingly, even in the case of a new
passbook 103 with a plurality of items, the back-side setting state may be detected.
1. A passbook issuing apparatus including one or more storage units that hold a new passbook,
a new-passbook inserting unit that inserts the new passbook from the storage unit
when a passbook change is made, a magnetism reading unit that reads magnetic information
attached to at least one of a front cover or a back cover of the passbook, first and
second flipping units that respectively flip open the passbook in a first direction
and a second direction which is 180 degrees from the first direction, and a head-tail
turning unit that rotates the passbook in a plane that includes a passbook page space
so as to reverse a head and a tail the passbook issuing apparatus comprising:
an insertion-orientation determining unit configured to, when the new-passbook inserting
unit inserts one new passbook, determine whether an orientation of a head and tail
and an orientation of a front and back of the inserted new passbook are correct by
determining a state of the reading of the magnetic information of the inserted new
passbook by the magnetism reading unit and a state of the flipping by at least one
of the first or second flipping unit; and
an insertion-orientation controlling unit configured to control the first and second
flipping units and the head-front turning unit according to a result of the determination
so as to correctly orient the head and tail and the front and back of the inserted
new passbook.
2. The passbook issuing apparatus according to claim 1, wherein
the storage unit accepts the insertion of the new passbook regardless of the orientation
of the head and tail or the front and back.
3. The passbook issuing apparatus according to claim 1, wherein
when the insertion-orientation determining unit determines that the magnetism reading
unit is incapable of reading the magnetic information attached to the first side of
the inserted new passbook, the insertion-orientation determining unit determines that
at least one of the orientation of the head and tail or the orientation of the front
and back of the inserted new passbook is incorrect.
4. The passbook issuing apparatus according to claim 3, wherein
after the determination in claim 3 is made, the insertion-orientation determining
unit further determines whether the first flipping unit is capable of flipping open
the inserted new passbook, so as to determine whether only the orientation of the
front and back of the inserted new passbook is correct or whether at least the orientation
of the head and tail of the inserted new passbook is correct.
5. The passbook issuing apparatus according to claim 4, wherein
after the determination in claim 4 is made, when the insertion-orientation determining
unit determines that at least the orientation of the head and tail of the inserted
new passbook is incorrect, the insertion-orientation controlling unit controls the
head-tail turning unit to reverse the orientation of the head and tail of the inserted
new passbook, and then the insertion-orientation determining unit determines that
the magnetism reading unit is capable of reading the magnetic information attached
to the first side of the inserted new passbook or recognizes an item indicated on
an inside cover, thereby determining that the orientation of the head and tail of
the inserted new passbook has been corrected.
6. The passbook issuing apparatus according to claim 4, wherein
after the determination in claim 4 is made, when the insertion-orientation determining
unit determines that at least the orientation of the head and tail of the inserted
new passbook is incorrect, the insertion-orientation controlling unit controls the
head-tail turning unit to reverse the orientation of the head and tail of the inserted
new passbook, and then the insertion-orientation determining unit determines that
the magnetism reading unit is incapable of reading the magnetic information attached
to the first side of the inserted new passbook or recognizes an item indicated on
an inside cover, thereby determining that both the orientation of the head and tail
and the orientation of the front and back of the inserted new passbook are incorrect.
7. The passbook issuing apparatus according to claim 6, wherein
when the insertion-state determining unit determines that both the orientation of
the head and tail and the orientation of the front and back of the inserted new passbook
are incorrect, the insertion-orientation controlling unit controls the head-tail turning
unit to reverse the orientation of the head and tail of the inserted new passbook
and controls the first or second flipping unit to flip through pages of the inserted
new passbook to the front cover, thereby correcting both the orientation of the head
and tail and the orientation of the front and back of the inserted new passbook.
8. The passbook issuing apparatus according to claim 4, wherein
after the determination in claim 4 is made, when the insertion-orientation determining
unit determines that only the orientation of the front and back of the inserted new
passbook is incorrect, the insertion-orientation controlling unit controls the first
or second flipping unit to flip through pages of the inserted new passbook to the
front cover and controls the head-tail turning unit to reverse the orientation of
the head and tail of the inserted new passbook, thereby correcting the orientation
of the front and back of the inserted new passbook.
9. The passbook issuing apparatus according to claim 1, wherein
the magnetic information is attached to only the back cover of the new passbook.
10. The passbook issuing apparatus according to claim 1, wherein
the magnetic information is attached to both the front cover and the back cover of
the new passbook.
11. The passbook issuing apparatus according to claim 10, wherein
the magnetism reading unit uses two reading units to separately read the magnetic
information on the front cover and the magnetic information on the back cover of the
new passbook.
12. A passbook issuing method for which an apparatus is used, the apparatus including
one or more storage units that hold a new passbook, a new-passbook inserting unit
that inserts the new passbook from the storage unit when an old-passbook change is
made, a magnetism reading unit that reads magnetic information attached to at least
one of a front cover or a back cover of the passbook, first and second flipping units
that respectively flip open the passbook in a first direction and a second direction
which is 180 degrees from the first direction, and a head-tail turning unit that rotates
the passbook in a plane that includes a passbook page space so as to reverse a head
and a tail, the passbook issuing method comprising:
when the new-passbook inserting unit inserts one new passbook, determining whether
an orientation of a head and tail and an orientation of a front and back of the inserted
new passbook are correct by determining a state of the reading of the magnetic information
of the inserted new passbook by the magnetism reading unit and a state of the flipping
by at least one of the first or second flipping units; and
controlling the first and second flipping units and the head-front turning unit according
to a result of the determination so as to correctly orient the head and tail and the
front and back of the inserted new passbook.
13. The passbook issuing method according to claim 12, wherein
the storage unit accepts the insertion of the new passbook regardless of the orientation
of the head and tail or the front and back.
14. The passbook issuing method according to claim 12, comprising:
when the magnetism reading unit is judged to be incapable of reading the magnetic
information attached to the first side of the inserted new passbook, determining that
at least one of the orientation of the head and tail or the orientation of the front
and back of the inserted new passbook is incorrect.
15. The passbook issuing method according to claim 14, comprising:
after the determining in claim 14, further determining whether the first flipping
unit is capable of flipping open the inserted new passbook, so as to determine whether
only the orientation of the front and back of the inserted new passbook is correct
or whether at least the orientation of the head and tail of the inserted new passbook
is correct.
16. The passbook issuing method according to claim 15, comprising:
after the determining in claim 15, when at least the orientation of the head and tail
of the inserted new passbook is determined to be incorrect, controlling the head-tail
turning unit to reverse the orientation of the head and tail of the inserted new passbook,
and then the insertion-orientation determining unit determining that the magnetism
reading unit is capable of reading the magnetic information attached to the first
side of the inserted new passbook, thereby determining that the orientation of the
head and tail of the inserted new passbook has been corrected.
17. The passbook issuing method according to claim 15, comprising:
after the determining in claim 15, when at least the orientation of the head and tail
of the inserted new passbook is determined to be incorrect, controlling the head-tail
turning unit to reverse the orientation of the head and tail of the inserted new passbook,
and then determining that the magnetism reading unit is incapable of reading the magnetic
information attached to the first side of the inserted new passbook, thereby determining
that both the orientation of the head and tail and the orientation of the front and
back of the inserted new passbook are incorrect.
18. The passbook issuing method according to claim 17, comprising:
when both the orientation of the head and tail and the orientation of the front and
back of the inserted new passbook are determined to be incorrect, controlling the
head-tail turning unit to reverse the orientation of the head and tail of the inserted
new passbook and controlling the first or second flipping unit to flip through pages
of the inserted new passbook to the front cover, thereby correcting both the orientation
of the head and tail and the orientation of the front and back of the inserted new
passbook.
19. The passbook issuing method according to claim 15, comprising:
after the determining in claim 15, when only the orientation of the front and back
of the inserted new passbook is determined to be incorrect, controlling the head-tail
turning unit to reverse the orientation of the head and tail of the inserted new passbook
and controlling the first or second flipping unit to flip through pages of the inserted
new passbook to the front cover, thereby correcting the orientation of the front and
back of the inserted new passbook.