[0001] The invention relates to a light beam and low beam switching apparatus.
[0002] High beam and low beam switching apparatus are known in the art.
For instance, German patent No.
DE 202004020183.6 discloses "An improved High beam and low beam switching apparatus" which includes
(referring to its Claim 1) an anchor plate and a mask interposed between a lamp socket
of a lighting element and a light penetrating cover; the anchor plate is positioned
transversely and has a notch on a upper end corresponding to the lighting element
and a lower end fastened to a solenoid valve; the mask plate is driven by the solenoid
valve. It characterized in: the mask having a lower end hinged on one side of the
notch of the anchor plate and a push plate extended and bent from the lower end towards
the light source that has a driving hole to be coupled with a stem of the solenoid
valve; the stem being extendable to sway the mask thereby to change light projecting
area to switch the high beam and low beam.
[0003] The push plate of the mask with the elongated driving hole set forth above has to
be bent to mate the stem (referring to its Claim 3), and the distal end has be formed
two annular grooves by fabrication to be wedged by C-shaped clips. Fabrication process
is complex. This is the first disadvantage.
[0004] Moreover, the stem runs through the longitudinal and elongated driving hole and is
confined by two C-shaped clips. Between the drawing bar of mask and the anchor plate,
a return spring is added to aid pulling (referring to its Claim 4). The structure
is complicated. Fabrication and assembly are more difficult, and production time is
longer. This is the second disadvantage.
[0005] Furthermore, the stem runs through the longitudinal and elongated driving hole and
is confined by two C-shaped clips on the front and read distal ends. While the mask
is driven and swayed, the two C-shaped clips slide on two sides of the elongated driving
hole and generate friction. This affects operation smoothness and steadiness. This
is the third disadvantage.
[0006] Finally, the stem has a bent section to generate friction with the elongated driving
hole during operation. As a result, loading and wearing occur to the related elements,
and service life is shortened. This is the fourth disadvantage.
[0007] In view of the aforesaid disadvantages occurred to the conventional switching apparatus,
such as complex structure that results in difficult fabrication and assembly, friction
resistance that impacts operation smoothness, and increased loading that shortens
service life, the present invention aims to provide improvements to overcome those
problems.
[0008] The primary object of the invention is to provide a high beam and low beam switching
apparatus that has a lower moving friction force to make swaying smoother and steadier
during switching operation.
[0009] Another object of the invention to provide a high beam and low beam switching apparatus
that can reduce loading of the solenoid valve so that operation load is lower and
durability increases. The life span of the solenoid valve also is longer.
[0010] Yet another object of the invention is to provide a high beam and low beam switching
apparatus that has simplified elements, thus is easier to fabricate and assemble,
and can reduce production cost and improve economic effectiveness.
[0011] In order to achieve the foregoing objects, the invention includes a transverse anchor
plate located between a lamp socket of a lighting element and a light penetrating
cover. The anchor plate has a notch on a upper end corresponding to the lighting element
and a lower end coupling with a solenoid valve which drives a mask plate. The invention
has the following features: the anchor plate has two jutting hinge docks on two sides
below the notch on one side facing the solenoid valve; the mask plate has two pivotal
plates extended from a lower end each has two pivotal holes formed thereon in a spaced
manner; the mask plate and the anchor plate are pivotally coupled through two ends
of an elastic latch member which is engaged with the solenoid valve; and a drawing
plate is provided which has two ends running through the pivotal holes of the pivotal
plates of the mask plate and a coupling slot in the middle to latch on a upper portion
of a stem of the solenoid valve to compress a upper end of a returning element.
[0012] The foregoing, as well as additional objects, features and advantages of the invention
will be more readily apparent from the following detailed description, which proceeds
with reference to the accompanying drawings.
Brief description of the drawings
[0013]
FIG. 1 is an exploded view of the invention.
FIG. 2 is a perspective view of the invention.
FIG. 3 is an exploded view of an embodiment of the invention to be coupled with a
lamp set.
FIG. 4 is a sectional view of an embodiment of the invention for a high beam condition.
FIG. 5 is a sectional view of an embodiment of the invention for a low beam condition.
Detailed description
[0014] Referring to FIGS. 1 and 2, the switching apparatus 10 according to the invention
includes a semi-circular anchor plate 11, a solenoid valve 20, a mask plate 30, a
drawing plate 50 and a T-shaped padding blade 60. The anchor plate 11 is substantially
directing downwards and has two anchor arms 12 extended outwards from two sides to
be fastened to a lamp socket, a notch 13 on a upper end, and spaced fastening holes
14 in the middle portion and two hinge docks 15 on two sides of the notch 13. The
solenoid valve 20 is fastened to the anchor plate 11 by coupling screws 21 with the
fastening holes 14 and includes a stem 24 which has a neck 22 on a distal end with
an annular groove formed thereon and is coupled with a returning element 23. The mask
plate 30 has two pivotal plates 32 on two ends directing upwards in an inclined manner
each has a upper pivot hole 31 and a lower pivot hole 31' that is coupled with two
ends of an elastic latch member 40 of the solenoid valve 20 to be hinged on the hinge
docks 15 of the anchor plate 11. The drawing plate 50 has two ends running through
the upper pivot hole 31 of the mask plate 30 for anchoring and an extension plate
51 in the middle portion with a coupling slot 52 formed thereon. The coupling slot
52 is wedged in the neck 22 of the stem 24 of the solenoid valve 20 to confine the
returning element 23. The hinge docks 15 can be directly formed from the anchor plate
11 by stamping. The T-shaped padding blade 60 is fastened to the solenoid valve 20
by screwing through the anchor plate 11 to cover the opening adjacent to the hinge
docks 15 that are formed while the hinge docks 15 are bent.
[0015] For assembly, align the lower pivot holes 31' of the pivotal plate 32 of the mask
plate 30 with the hinge docks 15 of the anchor plate 11; hinge two ends of the elastic
latch member 40 through the lower pivot holes 31' and the hinge docks 15; insert two
ends of the drawing plate 50 through the upper pivot holes 31 of the pivotal plate
32 and wedge the slot 52 in the neck 22 of the stem 24 to hold the returning element
23 on the stem 24 to complete the assembly of the switching apparatus 10. By means
of the construction set forth above, the stem 24 of the solenoid valve 20 can move
the drawing plate 50 up and down linearly to sway the mask plate 30. Thus operation
is smoother and steadier. Friction resistance among the elements can be reduced and
the loading on the solenoid valve 20 decreases. As a result, the durability of the
solenoid valve 20 increases and the life span is longer.
[0016] Refer to FIGS. 3 and 4 for an embodiment of the invention in use conditions. The
switching apparatus 10 is installed on a lamp socket 70 which has a refraction reflective
trough 71. The refraction reflective trough 71 holds a lighting element 72 in the
middle. The lamp socket 70 and a light penetrating cover 80 of a convex lens 81 at
the front end are interposed by a coupling frame 90 to fasten the anchor plate 11
in a transverse manner. Thus the solenoid valve 20 can be held securely to drive the
mask plate 30.
[0017] Refer to FIG. 4 for an embodiment of the invention in use for a high beam condition.
The anchor plate 11 is fastened to one end of the refraction reflective trough 71
of the lamp socket 70. The notch 13 on the upper side of the anchor plate 11 is aligned
with a refractive high beam light source on the lower side of the lighting element
72 in the lamp socket 70. As the solenoid valve 20 is fastened to the middle of a
lower side of the anchor plate 11, and the neck 22 of the stem 24 is coupled with
the drawing plate 50, the solenoid valve 20 can move the mask plate 30 synchronously
to sway a desired angle in the notch 13 on the upper side of the anchor plate 11.
Hence when the solenoid valve 20 is activated, the stem 24 moves the drawing plate
50 downwards to sway the mask plate 30 outwards, and the notch 13 on the upper side
of the anchor plate 11 is opened; the high beam projected and refracted from the lighting
element 72 is not blocked, thus can project outwards through the notch 13 to form
a high beam.
[0018] Refer to FIG. 5 for an embodiment of the invention in use for a low beam condition.
When the power supply to the solenoid valve 20 is turned off, the stem 24 is pushed
by the returning element 23 to its original position. The drawing plate 50 is moved
upwards to sway the mask plate 30 upwards in contact with the anchor plate 11 and
block the notch 13. As a result, the high beam refracted from the lighting element
72 is blocked without projecting outwards, and only the low beam is projected.
[0019] The high beam and low beam switching apparatus of the invention set forth above has
a simple structure and can be fabricated and assembled easily. It has a lower friction
among the moving elements, thus can operate smoother and steadier. The loading and
wearing of the elements are reduced, and durability is enhanced.
[0020] While the preferred embodiment of the invention has been set forth for the purpose
of disclosure, modifications of the disclosed embodiment of the invention as well
as other embodiment thereof may occur to those skilled in the art.
1. A high beam and low beam switching apparatus (10) comprising an anchor plate (11)
which is transversely fastened to a lamp socket (70) and has a notch (13) on a upper
end corresponding to a lighting element (72), a mask plate (30) pivotally coupled
with the anchor plate (11) below the notch (13) and a solenoid valve (20) fastened
to a lower end of the anchor plate (11) through screws (21) to sway the mask plate
(30), characterized in: the anchor plate (11) having two jutting hinge docks (15) on two sides of the notch
(13), the solenoid valve (20) having a stem (24) extending towards the notch (13)
and being coupled with a returning element (23), the mask plate (30) having two pivotal
plates (32) extended upwards in an inclined manner from two sides of a lower end thereof
that have respectively a upper pivotal hole (31) and a lower pivotal hole (31'), the
lower pivotal hole (31') being pivotally coupled with the hinge dock (15) through
two ends of an elastic latch member (40) such that the mask plate (30) is close to
the notch (13), a drawing plate (50) being provided that has a middle portion engaged
with the stem (24) to compress a upper end of the returning element (23) and two ends
inserting into the upper pivotal hole (31), thereby the stem (24) of the solenoid
valve (20) is extendable to pull the drawing plate (50) to sway the mask plate (30)
so that moving friction resistance is reduced to facilitate steady and smooth operation
of the high beam and low beam switching apparatus.
2. The high beam and low beam switching apparatus of claim 1, wherein the elastic latch
member (40) has a middle portion formed in a U-shape to couple with the solenoid valve
(20).
3. The high beam and low beam switching apparatus of claim 1, wherein the stem (24) of
the solenoid valve (20) has an indented neck (22) on a distal end, the drawing plate
(50) having an extension plate (51) in a middle portion that has a slot (52) to wedge
in the neck (22).
4. The high beam and low beam switching apparatus of claim 1, wherein hinge docks (15)
are formed by stamping the anchor plate (11), the anchor plate (11) being screwed
to the solenoid valve (20) through a padding blade (60) which covers openings formed
during bending of the hinge docks (15).