Field of the Invention
[0001] The present invention relates to the field of high intensity, efficient incandescent
lamps, reflectors, and a reflector system and method of making an efficient high intensity
bulb and reflector system.
Background of the Invention
[0002] Incandescent lamps have been well known for several decades and have been employed
in a wide variety of circumstances. In more commonplace applications the lamps have
been optimized around considerations of fire safety, heat load, size, etc. In the
medical field, the design of instruments which use light sources are evolving along
with the light sources they employ. Unlike the commonplace applications of incandescent
lamps, medical applications require a different set of considerations. For example,
in a commonplace application where a higher intensity of light is required, the designer
might increase the voltage of the lamp and its glass envelope size. However, in medical
applications, increased voltage and current, and even lamp size may not be compatible
with the medical instrument with which the light is used.
[0003] One method for increasing the light intensity has been the use of fiber optics. In
this method, a very high intensity light source is placed in optical alignment with
one end of a fiber optic cable. The cable is then extended into a medical instrument
to supply light where needed. The disadvantages to this method are the excessive heat
generated at the light source, the inefficient light capture since only a portion
of the light ever makes its way into the fiber optic cable, and the limited mobility
of the medical instrument, since it must always be at the end of a fiber optic cable.
Sterilization requirements may also mitigate against the use of fiber optics at the
working end of an instrument since repeated sterilization may cause a denigration
of the fiber.
[0004] In portable instruments, several limitations are present. First, efficiency is of
paramount importance. Since most of the instruments are battery powered, a large current
drain would be unacceptable. An extended use would require an interruption in the
procedure to change batteries, even if new batteries were supplied at the beginning
of each new procedure.
[0005] Another important aspect is safety. In medical instruments, the bulb must be adequately
supported and protected from breakage. Not only would breakage interrupt the procedure,
but shards of glass could be introduced into contact with the patient. The bulb could
be encased in an additional layer of translucent material, but such would cause a
degradation of performance. This is especially true for white light having multiple
frequencies which cannot be wavelength matched across a given thickness of material.
Added covering materials would increase the heat load, diminish the light transmission,
and would require more power for a given level of output. Greater power would, in
turn, shorten the life of the incandescent bulb.
[0006] Recessing the bulb within a protective sheath for protection causes other problems.
First, most of the light from the bulb which impinges on the walls of the sheath will
otherwise be lost. Next, once the bulb is inserted within a protective sheath, it
may be physically difficult to remove it from the sheath. Bulbs having protective
metal envelopes, including bulbs with screw bases and which use the metal envelopes
for reflectors are not able to gain sufficient structural stability from the metal
envelopes. A sharp blow to the metal envelope could produce sufficient bending moment
in the bulb to cause it to snap. Bringing the metal envelope closer to and in a supportive
relationship with the bulb can defeat the reflector action of the metal envelope.
[0007] Another important issue is cost and reproducibility. For a given set of constraints,
an incandescent light system could be custom designed. However, the driving force
behind the lighting industry is mass production and cost. The incandescent system
should be amenable to cost effective mass production such that the cost of a light
source to be used with any instrument should be virtually insignificant compared to
the cost of the overall instrument. As such, a system should have good integrity,
meet the requirements of the sensitive environment, typically a medical environment,
and be easily and cost effectively produced in large numbers.
[0008] What is therefore needed is a system for using high intensity bulbs, especially in
environment sensitive applications such as medical applications. Such a system should
be efficient, producing significant light output without significant loss of light
not directed into the area of interest. Such a system should be light weight and very
protective of the filament containing glass envelope but without significantly increasing
the effort and speed with which a burned-out bulb may be replaced.
Summary of the Invention
[0009] The incandescent bulb and reflector system of the present invention includes a small
incandescent lamp which is incorporated into a reflector base. The reflector and base
may be two separate components which fit together to form the reflector base. In certain
embodiments, the glass envelope of the incandescent bulb is protected by a rim of
the reflector portion which extends further in the direction of illumination than
the maximum extent of the glass envelope. A square notch is provided in the rim of
the reflector portion of the reflector base to facilitate turning movement about the
axis of the rim to facilitate the changing of the incandescent bulb and reflector
system.
[0010] The reflector portion of the reflector base has a first portion which closely engages
the lower portion of the glass envelope and a second portion which is formed into
a reflector structure to direct light from the filament into a forward direction.
The base portion of the reflector base engages the reflector portion of the reflector
base in several possible ways. The base portion protects the incandescent bulb's leads
and arranges the conductors in a configuration consistent with that of a socket or
female connector into which the completed lamp assembly will fit.
[0011] In one embodiment of the incandescent bulb and reflector system of the present invention
the entire structure is only about 5.4 millimeters in diameter and 15.2 millimeters
in length. The small size not only provides compactness and light weight, but the
ratio of length to width militates against breakage, even when roughly handled.
[0012] The filament of a small incandescent lamp is contained within a hollow cylindrical
envelope that is closed at its front, or light emitting end. A lens may be utilized
at the front end to further project some of the light emitted by the filament and
redirect it into a beam. The filament is ideally be spaced back a short distance from
the lens. Light which propagates in a range of angles from perpendicular to the direction
in which light is to be emitted to an acute angle in the direction in which light
is to be emitted, is reflected and redirected in the forward direction by a curved
reflective surface on the inside of the base. The inside of the base which forms the
reflector sweeps extends rapidly away from the glass envelope at a point which balances
the capture of light with the support requirements for the glass envelope. The curvature
of the reflector may be parabolic, elliptical or any shape which is necessary to re-direct
the light and in any manner desired.
[0013] In one embodiment, the transition from the first portion of the reflector base which
holds the glass envelope to the second portion of the reflector base which forms the
re-directive surface may have a circular lip such that the second portion containing
the re-directive surface has a smaller inner diameter than the first portion which
secures the bulb. In another embodiment, a cylindrical portion of minimum internal
diameter may form a third portion extending between the relatively larger diameter
first portion and a same diameter second portion.
[0014] Ideally an adhesive is utilized to securely mount the glass envelope within the reflector
base at a point close enough to the light emitting end of the glass envelope that
minimum bending moment is exerted on the forward portion of the glass envelope. Adhesive
is also typically employed to join the reflector portion to the base portion of the
reflector base.
[0015] The manufacture of the lamp assembly of the present invention involves machining
a length of bar stock to achieve both the bore and re-directive surface of the reflector
portion. The base portion is machine bored and typically has an exterior surface which
is flush with the reflector portion. In one embodiment, the base portion has a threaded
portion which is spaced apart from the central portion of either the base portion
or the reflector portion so that it may be fitted within a wider range of female electrical
sockets.
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] These and other aspects of the invention will be better understood from the following
description in which reference is made to several drawings of which:
FIGURE 1 is a side cross sectional view of an incandescent lamp;
FIGURE 2 is a side cross sectional view showing a first embodiment of a one piece
construction of a reflector base of the lamp system of the present invention;
FIGURE 3 is a side cross sectional view showing the lamp of FIGURE 1 mounted in the
reflector base of FIGURE 2 to form the lamp system of the present invention;
FIGURE 4 is a cross sectional view of a separate base which is combinable with reflectors
to be shown in subsequent FIGURES to form further embodiments of the lamp system of
the present invention;
FIGURE 5 is a cross sectional view of a separate reflector fittable over the base
of FIGURE 4 to form a second embodiment of the lamp system of the present invention;
FIGURE 6 is a top view of the reflector of FIGURE 5;
FIGURE 7 is an installation tool utilizable with the lamp system shown formed by the
reflector of FIGURE 5 and the base of FIGURE 4;
FIGURE 8 is a cross sectional view of the separate reflector of FIGURE 5 fitted over
the base of FIGURE 4 to form a second embodiment of the lamp system of the present
invention;
FIGURE 9 is a cross sectional view of a third embodiment of a lamp system similar
to FIGURE 8 but having an axially extended land portion;
FIGURE 10 is a side view of the lamp system shown in FIGURE 8;
FIGURE 11 is a cross sectional view of a separate reflector fittable within the base
of FIGURE 4 to form a fourth embodiment of the lamp system of the present invention;
and
FIGURE 12 is a cross sectional view of the separate reflector of FIGURE 11 fitted
within the base of FIGURE 4 to form the fourth embodiment of the lamp system of the
present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0017] FIGURE 1 shows a small incandescent lamp 21 of a well known construction, typically
used for flashlight bulbs. The lamp 21 includes a filament 23 that is attached at
either of its ends to filament support legs 25 and 27. This assembly is then enclosed
in an envelope 29 of glass or other light transmissive material. The envelope includes
a hollow portion 31 closed at its front end by a lens 33 and closed at its rear end
by the rear end portion 35 that the filament support legs 25 and 27 extend through.
[0018] FIGURE 2 shows a cross section of a reflector base 37 in a first embodiment of the
present invention. In this first embodiment, the reflector base 37 is a unitary structure
having an imaginary central axis 39 extending therethrough. The internal surfaces
of the reflector base 37 include a first reflector portion 41 which curves into an
abrupt transition 43 and then into a central bore portion 45. The central bore portion
45 lies adjacent an angled transition portion 47. In machining the reflector base
37, the transition portion 47 may be milled simultaneously with the formation fo the
central bore portion 45. The other end of the angled transition portion 47 abuts a
cylindrical rear bore 49.
[0019] The exterior of the reflector base 37 includes a cylindrical forward exterior portion
51, a threaded rear exterior portion 53 and a separation portion 55 which clearly
separates the cylindrical forward exterior portion 51 from the threaded rear exterior
portion 53.
[0020] FIGURE 3 shows the lamp of FIGURE 1 installed in the reflector base 37 of FIGURE
2 to form a lamp assembly 55. Because it is known in advance that the lamp will be
used in the base, the filament support legs 25 and 27 are not trimmed, but instead
they are left long enough to extend to the rear portion of the reflector base 37 where
the filament support leg 25 is connected to a center terminal 57, while filament support
leg 27 is connected to the rear bore 49 of the reflector base 37. An insulator 59
fits into the cylindrical rear bore 49 and holds the center terminal 57 away from
contact with the cylindrical rear bore 49, while at the same time pressing the filament
support leg 27 against the rear bore 49. As can be seen at the right hand side of
FIGURE 3, when the filament 23 is in the position shown, some of the light that is
emitted by the filament 23 in the lateral and rearward directions is intercepted by
the reflector portion 41 and added to a collective beam 61.
[0021] In the configuration of FIGURE 3, the rear end portion 35 and some of the sides of
the lamp 21 are secured by the central bore portion 45. Note that the reflector portion
41 smoothly transitions into a rim 63 which extends forward to an extent sufficient
to lie at or forward of the end of the lens 33 of the glass envelope 29 of the lamp
21. Although the view shown in FIGURE 3 is a cross section, and although the filament
23 is shown as extending parallel to the section shown, it is understood that the
reflection provided by the reflector portion 41 extends completely circularly and
that reflection occurs about an annulus with respect to the lamp 21.
[0022] It is good practice, and will be shown that an insulator may be added to the leg
25 of the lamp 21 to insure that it will not inadvertently contact the inside surface
of the reflector base 37, either when the lamp 21 is being mounted into the reflector
base 37, or later when the lamp assembly 55 is subjected to forces through use.
[0023] The reflector base of the lamp assembly of the present invention may be formed from
two separate structures. Referring to FIGURE 4, a separate base 101 which interfits
with several reflector portions (yet to be shown) is illustrated. The dimensions will
be disclosed to give an idea of the very small size of the base 101 as well as to
show the manner of interfitting with the reflector portions.
[0024] The base 101 has a central bore 103 adjacent an angled transition 105. The other
end of the angled transition 105 is adjacent a smaller rear internal portion 107.
The smaller rear portion 107 abuts an angular chamfer 109 which is slight in length
and is positioned at an angle of about 45°. The exterior of the base 101 includes
a cylindrical forward exterior portion 111, a threaded rear exterior portion 113 and
a separation portion 115 which clearly separates the cylindrical forward exterior
portion 111 from the threaded rear exterior portion 113.
[0025] To give an idea of the ideal size of the base 101 and the way in which it will interfit
with various reflectors, dimensions will be given. The internal diameter of the central
bore is about 0.185 inches. The outer diameter of the cylindrical forward exterior
portion of the base 101 is about 0.218 inches. The internal diameter of the smaller
rear portion 107 is about 0.094 inches. The outer diameter of the separation portion
115 is about 0.122 inches, and it has an axial length of about .045 inches.
[0026] Note the flat area 117 which bounds the transition from the threaded rear exterior
portion 113 to the separation portion 115, and the flat area 119 which bounds the
threaded rear exterior portion 113 at its other end. This flat areas 117 and 119 will
help to prevent cross threading which would be more prevalent with a threaded rear
exterior portion 113 which would have had gradually arising threads. This is also
important for positive engagement, especially where the completed lamp assembly is
to be lowered into a cylindrically shaped socket and axially aligned due to the close
fit of the interior portion of a socket with the exterior surface of a lamp assembly.
The length of the threaded rear exterior portion 113 is about 0.090 inches. The existence
of the separation portion 115 will enable less criticality between the upper edge
of a socket containing interior threads of the socket (not shown) and the radially
flat surface 121 which forms the transition between the cylindrical forward exterior
portion 111 and the separation portion 115.
[0027] Referring to FIGURE 5, a cross sectional view of a first embodiment of a reflector
131 fittable over the base 101 is shown. Reflector 131 has an exterior surface 132
which has an axial length of about 0.440 inches. Reflector 131 has a reflector portion
133 which curves into an abrupt transition into a circular land 135 which represents
the smallest diameter within the reflector 131. Adjacent the land 135 is a radial
surface 137 which forms the transition to a base 101 accommodation bore 139. Accommodation
bore 139 is ideally about 0.218 inches to match the outer diameter of the base 101.
The radial surface 137 will limit the maximum extent to which the base 101 may be
received within the accommodation bore 139, which is its axial length of about 0.200
inches.
[0028] The overall diameter of the reflector 131 is about 0.340 inches. The outermost portion
of the reflector 131 forms a lip 141 having a nominal thickness of about 0.03 inches.
As is shown in FIGURE 5, one of a pair of square slots 143 is formed into the rim
of the outermost portion of the reflector 131. The square slots 143 have a width and
depth of about 0.06 inches, and oppose each other.
[0029] Referring to FIGURE 6, an end view, taken along line 6 - 6 of FIGURE 5 shows the
relationship of the two square slots 143. The surface of the land 135 can be seen
along with the lip 141. The transition from the square slots 143 to the reflector
portion 133 can be clearly seen. As will be shown, the square slots 143 are used with
a tool which can engage the reflector 131 along with its attached base to rotate the
lamp system of the present invention into and out of an electrical socket.
[0030] Referring to FIGURE 7, an installation tool 151 is shown. The installation tool 151
is typically made of aluminum sheeting, about 0.050 inches thick. The installation
tool 151 is about 0.338 inches wide and about an inch or so tall. A notch 153 exists
at the center width of the end of the installation tool 151, and has a diameter of
about 0.187 inches at its curving transition. The half circle curvature is offset
from the end of the tool 151 a distance of about 0.060 inches, matching the depth
of the square slots 143. Notch 153 defines a pair of legs 155. The legs 155 are intended
to engage the square slots 143 which were shown in FIGUREs 5 and 6. The notch 153
insures clearance with respect to lamp 21, which is necessary since the legs 155 extend
below the lip 141 shown in FIGUREs 5 and 6.
[0031] FIGURE 8 illustrates the base 101 of FIGURE 4 assembled within the accommodation
bore 139 of FIGURE 5 to form a lamp assembly 161. In the manufacturing process, as
was the case for reflector base 25, both the base 101 and reflector 131 may be made
of aluminum, brass, steel, stainless steel, any metallic compound, plastic, glass,
or other ceramic material. The reflector 131 is formed preferably with an automated
milling machine, as is base 101. Once the reflector 131 is milled, the reflector portion
133 may be Polished or metalized to form a highly reflective surface. The reflector
portion 133 may be parabolic, elliptic or a specialized contour, depending upon the
requirements. Preferably, the reflector portion 133 will be configured to work in
concert with the lens 33 to refocus light from the filament 23 to a common area. In
this configuration, the lamp 21 is first cemented within the base 101 using an adhesive.
Next, the base 101 and lamp 21 assembly are inserted through the accommodation bore
139 of the reflector 131 and cemented in place, also preferably with an adhesive to
form the lamp assembly 161. Note that the lamp 21 may have indentations 163 to accommodate
the cementing of the lamp 21 to the internal portion of the base 101.
[0032] Referring to FIGURE 9, an alternative embodiment is shown in which the reflector
131 contains an expanded length land portion 165 which provides additional support
to the lamp 21. The lamp 21 may have indentations 167 to facilitate its being cemented
to base 101, and may have indentations 169 to facilitate its being cemented to reflector
131. FIGURE 9 also shows details of the internals of the lamp 21, including the use
of a 0.01 inch welded nickel wire 171 and 173 to the leads 25 and 27, respectively.
Also shown is an insulating tube 175 around the wire 171 which extends to the center
terminal 43. Also note the permissible excess of adhesive 177 about the exterior of
the base 101 at its interface with the reflector 131. The other structures of FIGURE
9 are generally equivalent to the structures shown in FIGURES 4 - 8.
[0033] FIGURE 10 is a plan view of the exterior of the lamp assembly 161 shown in FIGUREs
8 and 9. Note the relationship of the base 101 and the reflector 131, and how the
lamp 21 is recessed below the rim 141 of the reflector 131. The lamp 21 is, in this
plan view taken from the side, only visible through the square slots 143.
[0034] Referring to FIGURE 11, a second embodiment of a reflector 181 which may be utilized
with the base 101 is shown. In this instance, the reflector 181 will fit inside the
internal diameter of the central bore 103 of base 101. Reflector 181 has a central
external portion 183 which ideally has an external diameter of about 0.185 inches,
small enough to fit within the central bore 103 of the base 101.
[0035] At the upper end of the reflector 181, a radial surface 185 serves as a transition
from the central external portion 183 to an outer portion 187 which has an outer diameter
of 0.218 inches, generally matching the outer diameter of the base 101. The axial
length of the outer portion 187 is about 0.050 inches. Note that a reflector surface
189 extends from a rim 191 at the upper surface of reflector 181 to a point below
the radial surface 185.
[0036] The axial length of the reflector 181 is about 0.300 inches, so it will fit within
the base 101 without having its lower rim 193 impinge upon the angled transition 105.
This further means that radial surface 185 will engage the upper portion of the base
101 to limit the extent to which the reflector 181 will fit within the base 101. It
is clear that in this configuration that the reflector 181 will provide the bulk of
the support for the lamp 21. The internal diameter of the reflector is about 0.1287
inches in diameter which is seen to fit a different sized, smaller lamp 21 than was
shown as supported by the 0.185 inch internal diameter of the base 101.
[0037] Reflector 181 has an internal surface 197 adjacent its reflector portion 189. Further,
it is contemplated that the lamp 21 will, in the configuration of FIGURE 11, extend
beyond the rim 191 of the reflector 181. This is permissible for instances where the
lamp assembly to be shown in FIGURE 11 will be placed in a protective socket. Such
extension may dictate a reflector portion 195 which is angled differently to take
to account the forward location of the lens 33. Even though not shown in FIGURE 11,
the reflector 181 may be fitted with the square slots 143 which were shown in FIGUREs
5 and 6.
[0038] Referring to FIGURE 12, the reflector 181 of FIGURE 11 is shown in place with respect
to base 101 and with the lamp 21 to form a lamp assembly 201. The lamp 21 is shown
cemented into the inner surface 197 of reflector 181, with some adhesive excess 203
shown at the lower interface of these structures. Similarly, some adhesive excess
205 is shown at the lower interface between the reflector 181 and the base 101. Also
shown in FIGURE 12 is an elongated length of teflon tubing 207 which not only covers
a portion of the lead 25 and the wire 171 where the lead 25 and the wire 171 are attached
together.
[0039] Note also that the base 101 is fitted with the insulator 59, but shows the center
terminal 57 in a position removed from the insulator 59, since in some applications
the center terminal 57 may be dispensed with. This is particularly true where the
base into which the lamp assembly 201 contains a spike or other adequate projection
at its center.
[0040] A great number of variations on the embodiment shown are possible and are likely
to occur to workers in this field. These variations are considered to be comprehended
by the present invention which is limited only by the following claims.
[0041] Although the invention has been derived with reference to particular illustrative
embodiments thereof, many changes and modifications of the invention may become apparent
to those skilled in the art without departing from the spirit and scope of the invention.
Therefore, included within the patent warranted hereon are all such changes and modifications
as may reasonably and properly be included within the scope of this contribution to
the art.
[0042] It should be noted that the objects and advantages of the invention may be attained
by means of any compatible combination(s) particularly pointed out in the items of
the following summary of the invention and the appended claims.
[0043] The invention may be summarized as follows:
1. A reflector base (37) for use with a lamp comprising:
a housing of generally hollow cylindrical shape having an internal surface extending
from a front open end to a rear open end, and an external surface, the internal surface
defining:
a reflector surface (41) adjacent said front open end;
a central bore (45) adjacent said reflector surface (41);
an angled transition portion (47) adjacent said central bore; and
a rear bore (49) of smaller diameter than said central bore (45) and adjacent said
angled transition portion and said rear open end;
and wherein the external surface defines:
a cylindrical forward portion (51), adjacent said front open end, within which
are located said reflector surface (41), said central bore (45) and said angled transition
(47);
a separation portion (55), adjacent said cylindrical forward portion (111), within
which is located said rear bore (49); and
an externally threaded portion (53), adjacent said separation portion (55) and
said rear open end.
2. A lamp system including the reflector base (37)
and further comprising:
a lamp (11), fixed within said central bore, having a pair of leads (25, 27) extending
through said central bore, the light emitted by said lamp (11) reflected by said reflector
surface (41) and away from said front forward end of said housing (51).
3. A lamp system wherein said lamp (11) does not extend beyond said front open end.
4. The lamp system base wherein said housing (37) is electrically conductive and further
comprising:
an insulator (59) having an aperture, and fitted within said rear bore of said
reflector base and bearing against one of said pair of leads (27) and against the
surface of said rear bore (49);
a conductive center terminal (57) within said aperture of said insulator and beading
against the other of said pair of leads (25).
5. The reflector base (37) wherein said externally threaded portion (53) contains
threads which are bounded by at least one radially extending flat area (55).
6. The reflector base (37) system wherein the length of said cylindrical forward portion
(51) is greater than the combined length of said separation portion (55) and said
externally threaded portion (53).
7. The reflector base (37) wherein said cylindrical forward portion (51) and said
reflector surface (41) define a rim having at least one slot (143) to facilitate rotating
said reflector base (37).
8. A reflector base (37) wherein said rim has a pair of oppositely disposed slots
(143) to facilitate rotating said reflector base (37).
9. A reflector for use with a base comprising:
a reflector housing (131) of generally hollow cylindrical shape having an internal
surface extending from a front open end to a rear open end, and an external surface,
the internal surface of said reflector housing defining:
a reflector surface (133) adjacent said front open end;
a land (135) adjacent said reflector surface;
a radial transition portion (137) adjacent said land (135); and
an accomodation bore (139) adjacent said radial transition portion (137) of greater
diameter than said land (135) and said rear open end;
and wherein the external surface defines an exterior surface (132) extending between
said front open end and said rear open end.
10. A reflector base system including the reflector (131) and further comprising:
a base housing (101) of generally hollow cylindrical shape having an internal surface
extending from a front open end to a rear open end, and an external surface, the internal
surface of said base housing defining:
a central bore (103) adjacent said front open end;
an angled transition portion (105) adjacent said central bore (103); and
a rear bore (107) of smaller diameter than said central bore (103) and adjacent
said angled transition portion (105) and near said rear open end; and wherein the
external surface of said base housing (101) defines:
a cylindrical forward portion (111), adjacent said front open end, within which
are located said said central bore (103) and said angled transition (105);
a separation portion (115), adjacent said cylindrical forward portion, within which
is located said rear bore (107); and
an externally threaded portion (113), adjacent said separation portion (115) and
said rear open end, said cylindrical forward portion (111) fitted within said accomodation
bore (139) of said reflector housing (131) to form a reflector base.
11. A lamp system including the reflector base and further comprising:
a lamp (11), fixed within said central bore of said base housing (103), having
a pair of leads (25, 27) extending through said central bore (103), the light emitted
by said lamp (11) reflected by said reflector surface (133) and away from said front
forward end of said reflector housing.
12. A lamp system wherein said lamp (11) does not extend beyond said front open end.
13. The lamp system base recited in claim 11 wherein said lamp (11) is also fixed
with respect to said land (135).
14. The lamp system base wherein said base housing is electrically conductive and
further comprising:
an insulator (59) having an aperture, and fitted within said rear bore (107) of
said reflector base (101) and bearing against one of said pair of leads (173) and
against the surface of said rear bore (107);
a conductive center terminal (57) within said aperture of said insulator and bearing
against the other of said pair of leads (171).
15. A reflector for use with a base comprising:
a reflector housing (181) of generally hollow cylindrical shape having an internal
surface extending from a front open end to a rear open end, and an external surface,
the internal surface of said reflector housing defining:
a reflector surface (189) adjacent said front open end; and
an internal bore (197) adjacent said reflector surface;
and wherein the external surface defines:
an outer portion (187) adjacent said front open end;
a radial surface (185) adjacent said outer portion; and
a central external portion (183) adjacent said radial surface and said rear open
end.
16. A reflector base system including the reflector (181) and further comprising:
a base housing (101) of generally hollow cylindrical shape having an internal surface
extending from a front open end to a rear open end, and an external surface, the internal
surface of said base housing defining:
a central bore (103) adjacent said front open end;
an angled transition portion (105) adjacent said central bore; and
a rear bore (107) of smaller diameter than said central bore (103) and adjacent
said angled transition portion and near said rear open end;
and wherein the external surface of said base housing defines:
a cylindrical forward portion (111), adjacent said front open end, within which
are located said said central bore (103) and said angled transition (105);
a separation portion (121), adjacent said cylindrical forward portion (111), within
which is located said rear bore (107), and
an externally threaded portion (113), adjacent said separation portion (115) and
said rear open end, said central external portion (183) of said reflector housing
(181) fitted within said central bore (103) of said base housing (101) to form a reflector
base.
17. A lamp system including the reflector base system and further comprising:
a lamp (11), fixed within said central bore (197) of said reflector housing, having
a pair of leads (171, 173) extending through said central bore, the light emitted
by said lamp (11) reflected by said reflector surface (189) and away from said front
forward end of said reflector housing (201).
18. A process of manufacturing a reflector base comprising the steps of:
from metalic bar stock, forming a housing (37) having from a front open end to
a rear open end, and an external surface, the internal surface formed with the steps
of:
forming an internal reflector surface (41) adjacent said front open end;
forming a central bore (45) adjacent said reflector surface;
forming an angled transition portion (47) adjacent said central bore; and
forming a rear bore (49) of smaller diameter than said central bore (45) and adjacent
said angled transition (47) portion and said rear open end;
and wherein the external surface is formed with the steps of:
forming a separation portion (55), leaving a cylindrical forward portion (51) adjacent
said separation portion (55) and said front open end; and
forming an externally threaded portion (53), adjacent said separation portion (55)
and said rear open end.
19. The process of manufacturing a reflector base where said forming a central bore
(45) step and said forming an angled transition portion (47) steps are performed simultaneously.
20. The process of manufacturing a lamp system comprising the steps of:
from metalic bar stock, forming a reflector housing (131) having from a front open
end to a rear open end, and an external surface (132), the internal surface of said
reflector housing formed with the steps of:
forming a reflector surface (133) in said reflector housing (131) adjacent said
front open end of said reflector housing (131);
forming a land (135) in said reflector housing adjacent said reflector surface
(133) of said reflector housing (131);
forming a radial transition (137) in said reflector housing (131) adjacent said
land (135) of said reflector housing (131); and
forming an accomodation bore (139) in said reflector housing (131) of greater diameter
than said land (135) and said rear open end of said reflector housing (131);
forming a base housing (101) having from a front open end to a rear open end, and
an external surface (111), the internal surface of said base housing (101) formed
with the steps of:
forming a central bore (103) adjacent said front open end of said base housing
(101);
forming an angled transition portion (105) adjacent said central bore of said base
housing (101); and
forming a rear bore (107) of smaller diameter than said central bore (103) of said
base housing (101) and adjacent said angled transition portion (105) of said base
housing (101) and near said rear open end of said base housing (101);
and wherein the external surface of said base housing (101) is formed with the steps
of:
forming a separation portion (115) in said base housing (101), leaving a cylindrical
forward portion (111) adjacent said separation portion (115) and said front open end
of said base housing (101); and
forming an externally threaded portion (113) in said base housing (101), adjacent
said separation portion (115) and said rear open end of said base housing (101);
attaching a lamp (11) within said central bore of said base housing (101); and
fitting said cylindrical forward portion (111) of said base housing (101) within
said accomodation bore (139) of said reflector housing (131).
21. The process of manufacturing a lamp system comprising the steps of:
from metalic bar stock, forming a reflector housing (181) having from a front open
end to a rear open end, and an external surface, the internal surface of said reflector
housing formed with the steps of:
forming a reflector surface (189) in said reflector housing (181) adjacent said
front open end of said reflector housing (181); and
forming an internal bore (197) in said reflector housing (181) and adjacent said
rear open end of said reflector housing (181);
the external surface of said reflector housing (131) formed with the step of forming
a central external portion (183) in the external surface of said reflector housing
(131) adjacent said back open end and leaving an outer portion (187) adjacent said
front open end and a radial surface (185) between said central external portion (183)
and said outer portion (187) of said reflector housing (131);
forming a base housing (101) having from a front open end to a rear open end, and
an external surface, the internal surface of said base housing (101) formed with the
steps of:
forming a central bore (103) adjacent said front open end of said base housing
(101);
forming an angled transition portion (105) adjacent said central bore (103) of
said base housing (101); and
forming a rear bore (107) of smaller diameter than said central bore (103) of said
base housing (101) and adjacent said angled transition portion (105) of said base
housing (101) and near said rear open end of said base housing (101);
and wherein the external surface of said base housing (101) is formed with the
steps of:
forming a separation portion (115) in said base housing (101), leaving a cylindrical
forward portion (111) adjacent said separation portion (115) and said front open end
of said base housing (101); and
forming an externally threaded portion (113) in said base housing (101), adjacent
said separation portion (115) and said rear open end of said base housing (101);
attaching a lamp within said internal bore (197) in said reflector housing (131);
and
fitting said central external portion (183) of said reflector housing (131) into
said central bore (103) of said base housing (101).
1. A reflector base (37) for use with a lamp comprising:
a housing of generally hollow cylindrical shape having an internal surface extending
from a front open end to a rear open end, and an external surface, the internal surface
defining:
a reflector surface (41) adjacent said front open end;
a central bore (45) adjacent said reflector surface (41);
an angled transition portion (47) adjacent said central bore; and
a rear bore (49) of smaller diameter than said central bore (45) and adjacent said
angled transition portion and said rear open end;
and wherein the external surface defines:
a cylindrical forward portion (51), adjacent said front open end, within which
are located said reflector surface (41), said central bore (45) and said angled transition
(47);
a separation portion (55), adjacent said cylindrical forward portion (111), within
which is located said rear bore (49); and
an externally threaded portion (53), adjacent said separation portion (55) and
said rear open end.
2. A lamp system including the reflector base (37) recited in claim 1 and further comprising:
a lamp (11), fixed within said central bore, having a pair of leads (25, 27) extending
through said central bore, the light emitted by said lamp (11) reflected by said reflector
surface (41) and away from said front forward end of said housing (51),
wherein preferably said
lamp (11) does not extend beyond said front open end,
and wherein preferably
said housing (37) is electrically conductive and further comprising:
an insulator (59) having an aperture, and fitted within said rear bore of said
reflector base and bearing against one of said pair of leads (27) and against the
surface of said rear bore (49);
a conductive center terminal (57) within said aperture of said insulator and bearing
against the other of said pair of leads (25).
3. The reflector base (37) recited in claim 1 or 2 wherein said externally threaded portion
(53) contains threads which are bounded by at least one radially extending flat area
(55),
wherein preferably
the length of said cylindrical forward portion (51) is greater than the combined length
of said separation portion (55) and said externally threaded portion (53).
wherein preferably
said cylindrical forward portion (51) and said reflector surface (41) define a
rim having at least one slot (143) to facilitate rotating said reflector base (37),
and wherein preferably
said rim has a pair of oppositely disposed slots (143) to facilitate rotating said
reflector base (37).
4. A reflector for use with a base comprising:
a reflector housing (131) of generally hollow cylindrical shape having an internal
surface extending from a front open end to a rear open end, and an external surface,
the internal surface of said reflector housing defining:
a reflector surface (133) adjacent said front open end;
a land (135) adjacent said reflector surface;
a radial transition portion (137) adjacent said land (135); and
an accomodation bore (139) adjacent said radial transition portion (137) of greater
diameter than said land (135) and said rear open end;
and wherein thee external surface defines an exterior surface (132) extending between
said front open end and said rear open end.
5. A reflector base system including the reflector (131) recited in claim 9 and further
comprising:
a base housing (101) of generally hollow cylindrical shape having an internal surface
extending from a front open end to a rear open end, and an external surface, the internal
surface of said base housing defining:
a central bore (103) adjacent said front open end;
an angled transition portion (105) adjacent said central bore (103); and
a rear bore (107) of smaller diameter than said central bore (103) and adjacent
said angled transition portion (105) and near said rear open end;
and wherein the external surface of said base housing (101) defines:
a cylindrical forward portion (111), adjacent said front open end, within which
are located said said central bore (103) and said angled transition (105);
a separation portion (115), adjacent said cylindrical forward portion, within which
is located said rear bore (107); and
an externally threaded portion (113), adjacent said separation portion (115) and
said rear open end, said cylindrical forward portion (111) fitted within said accomodation
bore (139) of said reflector housing (131) to form a reflector base.
6. A lamp system including the reflector base recited in claim 5 and further comprising:
a lamp (11), fixed within said central bore of said base housing (103), having
a pair of leads (25, 27) extending through said central bore (103), the light emitted
by said lamp (11) reflected by said reflector surface (133) and away from said front
forward end of said reflector housing,
wherein preferably said
lamp (11) does not extend beyond said front open end,
wherein preferably
said lamp (11) is also fixed with respect to said land (135).
and wherein preferably
said base housing is electrically conductive and further comprising:
an insulator (59) having an aperture, and fitted within said rear bore (107) of
said reflector base (101) and bearing against one of said pair of leads (173) and
against the surface of said rear bore (107);
a conductive center terminal (57) within said aperture of said insulator and bearing
against the other of said pair of leads (171).
7. A reflector for use with a base comprising:
a reflector housing (181) of generally hollow cylindrical shape having an internal
surface extending from a front open end to a rear open end, and an external surface,
the internal surface of said reflector housing defining:
a reflector surface (189) adjacent said front open end; and
an internal bore (197) adjacent said reflector surface;
and wherein the external surface defines:
an outer portion (187) adjacent said front open end;
a radial surface (185) adjacent said outer portion; and
a central external portion (183) adjacent said radial surface and said rear open
end.
8. A reflector base system including the reflector (181) recited in claim 7 and further
comprising:
a base housing (101) of generally hollow cylindrical shape having an internal surface
extending from a front open end to a rear open end, and an external surface, the internal
surface of said base housing defining:
a central bore (103) adjacent said front open end;
an angled transition portion (105) adjacent said central bore; and
a rear bore (107) of smaller diameter than said central bore (103) and adjacent
said angled transition portion and near said rear open end;
and wherein the external surface of said base housing defines:
a cylindrical forward portion (111), adjacent said front open end, within which
are located said said central bore (103) and said angled transition (105);
a separation portion (121), adjacent said cylindrical forward portion (111), within
which is located said rear bore (107); and
an externally threaded portion (113), adjacent said separation portion (115) and
said rear open end, said central external portion (183) of said reflector housing
(181) fitted within said central bore (103) of said base housing (101) to form a reflector
base,
and preferably further comprising:
a lamp (11), fixed within said central bore (197) of said reflector housing, having
a pair of leads (171, 173) extending through said central bore, the light emitted
by said lamp (11) reflected by said reflector surface (189) and away from said front
forward end of said reflector housing (201).
9. A process of manufacturing a reflector base comprising the steps of:
from metalic bar stock, forming a housing (37) having from a front open end to
a rear open end, and an external surface, the internal surface formed with the steps
of:
forming an internal reflector surface (41) adjacent said front open end;
forming a central bore (45) adjacent said reflector surface;
forming an angled transition portion (47) adjacent said central bore; and
forming a rear bore (49) of smaller diameter than said central bore (45) and adjacent
said angled transition (47) portion and said rear open end;
and wherein the external surface is formed with the steps of:
forming a separation portion (55), leaving a cylindrical forward portion (51) adjacent
said separation portion (55) and said front open end; and
forming an externally threaded portion (53), adjacent said separation portion (55)
and said rear open end.
10. The process of manufacturing a reflector base as recited in claim 9 where said forming
a central bore (45) step and said forming an angled transition portion (47) steps
are performed simultaneously.
11. The process of manufacturing a lamp system comprising the steps of:
from metalic bar stock, forming a reflector housing (131) having from a front open
end to a rear open end, and an external surface (132), the internal surface of said
reflector housing formed with the steps of:
forming a reflector surface (133) in said reflector housing (131) adjacent said
front open end of said reflector housing (131);
forming a land (135) in said reflector housing adjacent said reflector surface
(133) of said reflector housing (131);
forming a radial transition (137) in said reflector housing (131) adjacent said
land (135) of said reflector housing (131); and
forming an accomodation bore (139) in said reflector housing (131) of greater diameter
than said land (135) and said rear open end of said reflector housing (131);
forming a base housing (101) having from a front open end to a rear open end, and
an external surface (111), the internal surface of said base housing (101) formed
with the steps of:
forming a central bore (103) adjacent said front open end of said base housing
(101);
forming an angled transition portion (105) adjacent said central bore of said base
housing (101); and
forming a rear bore (107) of smaller diameter than said central bore (103) of said
base housing (101) and adjacent said angled transition portion (105) of said base
housing (101) and near said rear open end of said base housing (101);
and wherein the external surface of said base housing (101) is formed with the steps
of:
forming a separation portion (115) in said base housing (101), leaving a cylindrical
forward portion (111) adjacent said separation portion (115) and said front open end
of said base housing (101); and
forming an externally threaded portion (113) in said base housing (101), adjacent
said separation portion (115) and said rear open end of said base housing (101);
attaching a lamp (11) within said central bore of said base housing (101); and
fitting said cylindrical forward portion (111) of said base housing (101) within
said accomodation bore (139) of said reflector housing (131).
12. The process of manufacturing a lamp system comprising the steps of:
from metalic bar stock, forming a reflector housing (181) having from a front open
end to a rear open end, and an external surface, the internal surface of said reflector
housing formed with the steps of:
forming a reflector surface (189) in said reflector housing (181) adjacent said
front open end of said reflector housing (181); and
forming an internal bore (197) in said reflector housing (181) and adjacent said
rear open end of said reflector housing (181);
the external surface of said reflector housing (131) formed with the step of forming
a central external portion (183) in the external surface of said reflector housing
(131) adjacent said back open end and leaving an outer portion (187) adjacent said
front open end and a radial surface (185) between said central external portion (183)
and said outer portion (187) of said reflector housing (131);
forming a base housing (101) having from a front open end to a rear open end, and
an external surface, the internal surface of said base housing (101) formed with the
steps of:
forming a central bore (103) adjacent said front open end of said base housing
(101);
forming an angled transition portion (105) adjacent said central bore (103) of
said base housing (101); and
forming a rear bore (107) of smaller diameter than said central bore (103) of said
base housing (101) and adjacent said angled transition portion (105) of said base
housing (101) and near said rear open end of said base housing (101);
and wherein the external surface of said base housing (101) is formed with the
steps of:
forming a separation portion (115) in said base housing (101), leaving a cylindrical
forward portion (111) adjacent said separation portion (115) and said front open end
of said base housing (101); and
forming an externally threaded portion (113) in said base housing (101), adjacent
said separation portion (115) and said rear open end of said base housing (101);
attaching a lamp within said internal bore (197) in said reflector housing (131);
and
fitting said central external portion (183) of said reflector housing (131) into
said central bore (103) of said base housing (101).
13. A reflector base (37) for use with a lamp comprising
a housing having an internal surface and an external surface, the internal surface
defining:
a reflector surface (41)
a central bore (45);
and a rear bore (49) and wherein the external surface defines:
a forward portion (51) and
an externally threaded portion (53).