LAMP SOCKET WITH NON-RIVETED CONTACT CONNECTION
20220376449 ยท 2022-11-24
Inventors
Cpc classification
H01R33/94
ELECTRICITY
H01R13/432
ELECTRICITY
H01R13/428
ELECTRICITY
H01R33/06
ELECTRICITY
H01R4/4809
ELECTRICITY
International classification
H01R13/428
ELECTRICITY
Abstract
A lamp socket for a cooking appliance lamp, the lamp socket including a socket body; at least one supply contact configured to connect to a connection conductor configured to supply electrical voltage electrical voltage to the cooking appliance lamp; at least one socket contact electrically connected with the at least one supply contact and connected to an illuminant socket of the cooking appliance lamp; a contact cavity formed by the socket body wherein the at least one socket contact is arranged in the socket cavity; a fastener that fastens the at least one supply contact at the socket body, wherein the fastener is integrally provided in one piece with the at least one supply contact or bonded to the supply contact.
Claims
1. A lamp socket for a cooking appliance lamp, the lamp socket comprising: a socket body; at least one supply contact configured to connect to a connection conductor configured to supply electrical voltage electrical voltage to the cooking appliance lamp; at least one socket contact electrically connected with the at least one supply contact and connected to an illuminant socket of the cooking appliance lamp; a contact cavity formed by the socket body wherein the at least one socket contact is arranged in the socket cavity; a fastener that fastens the at least one supply contact at the socket body, wherein the fastener is integrally provided in one piece with the at least one supply contact or bonded to the supply contact.
2. The lamp socket according to claim 1, wherein the socket body includes an attachment contour that is engaged by the fastener.
3. The lamp socket according to claim 2, wherein the at least one socket contact is supported by the at least one supply contact fixed at the socket body.
4. The lamp socket according to claim 3, wherein the at least one supply contact is arranged in a contact cavity and accessible through an insertion opening of the contact cavity.
5. The lamp socket according to claim 4, wherein the attachment contour is formed by walls of the contact cavity and the fastener of the at least one supply contact interlocks behind the attachment contour.
6. The lamp socket according to claim 5, wherein the fastener is configured as at least one fastening arm connected to the supply contact and plastically deformable or spring elastic.
7. The lamp socket according to claim 6, wherein the attachment contour is configured as a wall protrusion wherein the at least one fastening arm reaches behind the wall protrusion.
8. The lamp socket according to claim 4, wherein the contact cavity includes a first receiving space for the at least one socket contact and a second receiving space for the at least one supply contact, and wherein the first receiving cavity and the second receiving cavity share a common receiving section.
9. The lamp socket according to claim 8, wherein the at least one socket contact and the at least one supply contact are arranged in the common receiving section,
10. The lamp socket according to claim 9, wherein the at least one socket contact and the at least one supply contact are inserted in a common insertion direction through an insertion opening into the contact cavity and the at least one socket contact is arranged downstream of the supply contact in the insertion direction.
11. A method for fixing the at least one socket contact in the lamp socket according to claim 6, the method comprising: interlocking the spring fastener between the attachment contour of the socket body, or deforming the plastically deformable fastener after aligning the at least one supply contact with the attachment contour of the socket body so that the plastically deformable fastener interlocks behind the attachment contour.
12. A method for fixing the at least one socket contact in the lamp socket according to claim 10, the method comprising: initially inserting the at least one socket contact into the first receiving space of the contact cavity in the insertion direction, thereafter inserting the at least one supply contact into the second receiving space of the contact cavity, wherein the at least one socket contact and the at least one supply contact are arranged in the common receiving section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Additional advantages of the invention can be derived from the subsequent description of an embodiments with reference to drawing figures, wherein:
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
DETAILED DESCRIPTION OF THE INVENTION
[0036] The drawing figures show a cooking appliance lamp overall designated with reference numeral 10, wherein
[0037] The cooking appliance lamp 10 illustrated in
[0038] A support ring 18 that is insertable into the receiving recess 14 is configured to fix the socket 11 in a lamp recess of a cooking apparatus wall. The support ring 18 furthermore fixes the lamp glass 13 at the socket body 12 and provides a retaining spring that interlocks the illuminant socket 19 of a GR9 lamp in a socket recess of the socket body 12.
[0039] The socket body 12 forms two spouts 21 at a bottom side that is oriented away from the lamp glass 13, wherein the spouts respectively support a socket contact 22 and a supply contact 23.
[0040]
[0041] The spouts 21 of the socket body 12 are separated from each other by a ventilation spout 25 and respectively include a contact cavity 26. Each contact cavity 26 is accessible through an insertion opening 27 through which a respective socket contact 22 and a respective supply contact 23 are introducible in the insertion direction X into the respective contact cavity 26.
[0042] In the embodiment the insertion openings 27 are arranged on a bottom side of the socket body 12. The insertion direction X is oriented towards the lamp glass 12. This is an advantageous and embodiment, however, different orientations of the insertion's openings 27 of the respective spout 21 are conceivable which then also changes the orientation of the insertion direction X.
[0043]
[0044]
[0045] The supply contact 23 is a stamped component that is essentially flat in the instant embodiment. The clamping lugs 32 are stamped at a right angle to the flat sides. The fastening arms are oriented at an angle relative to the stamping edges in
[0046] The socket contact 22 is a stamped component as well and has a U-shaped or C-shaped contour in cross section. A first contact arm 40 is connected with a second contact arm 42 through a support arm 41 wherein free ends of the first contact arm 40 and of the second contact arm 42 extend against the insertion direction X towards the insertion opening 27 of the spouts 21, thus in a direction towards a bottom side of the socket body 12.
[0047] The first contact arm 40 includes a contact pressure spring 43, that is angled out of the contact arm material and bent spring elastic in a direction towards the second contact arm 42, thus into the interior of the U-shaped socket contact 22.
[0048] The second contact arm 42 of the socket contact 22 is bent spring elastic away from the contact arm 40, thus in the same direction thus in the contact pressure spring 43.
[0049]
[0050] As described supra each spout 21 forms a contact cavity 26 that is accessible through an insertion opening 27. Within each contact cavity 26 there is a first receiving cavity 50 and a second receiving cavity 51. The first receiving cavity 50 runs through the contact cavity 26 configured as a slot 52 that extends diametrically through the contact cavity 26, wherein the slot is open opposite to the insertion cavity X, thus in a direction towards the insertion opening 27. The second receiving cavity is arranged between the slot ends and shares a common receiving section 53 with the first receiving cavity 50.
[0051] The position of the receiving cavities 50, 51 in the spouts 21 of the socket body 12 is shown in
[0052]
[0053] Thereafter the supply contact 23 is inserted into the first receiving cavity 50, thus the slot 52. The insertion movement of the supply contact 23 in the insertion direction X, terminates when the face 36 contacts an inside of the support arm 51 of the socket contact 22, which is arranged in the common receiving section 53 of the first receiving cavity 50 and the second receiving cavity 51. The contact spring 43 contacts the contact section 34 of the supply contact 23 and provides the required electrical contacting between socket contact 22 and supply contact 23. The second contact arm 42 of the socket contact 22 is arranged in the socket receiver 29 of the socket body 12 so that the socket contacts of a lamp, in this embodiment of a G9 lamp 20 can electrically contact the socket contact and the supply contact of the socket body.
[0054] This is also illustrated again in
[0055] The preceding description together with the drawing figures in particular
[0056] The attachment of the supply contact 23 at the socket body 12 is now described with reference to
[0057]
[0058] The supply contact 23 is inserted in the insertion direction X into the contact cavity 26 of the spout 21 and contacts the socket contact 22 and contacts the support arm 41 of the socket contact 22 with its face 36 and supports the socket contact in the second receiving cavity 51. The fastening arms 35 of the supply contact 23 reach behind an attachment contour formed by the contact cavity wall and configured as a wall protrusion 54 due to a lateral spreading of the fastening arms 35 that are oriented towards the contact cavity wall.
[0059] A socket base 55 that is formed by the socket body 12 functions as a movement stop in the insertion direction X that defines the contact cavities 26 in the insertion direction X as shown in
[0060] When the fastening arms 35 are fasteners that are spread spring elastic outward thus in a direction towards the contact cavity wall the fasteners are initially displaced inward during insertion of the supply contact 23 into the respective spout 21 until they have slid past the wall protrusion 54. The spring elasticity of the material then leads to a spreading movement into the starting position so that the fastening arms 35 reach behind the wall protrusion 54 so that a pull-out movement of the supply contact 23 against the insertion direction X out of the socket body 12 is reliably prevented.
[0061] However, when the fasteners are configured as plastically deformable fastening arms they are oriented in a straight line, this means un-spread against the insertion direction X or in a direction towards the flat plug 30 before the assembly of the supply contact 23 is completed. After inserting the supply contact 23 into the contact cavity 26, a forming tool is inserted between the respective fastening arm 35 and the clamping section 31 arranged between the fastening arms 35, which spreads the fastening arms 35 outward performing a plastic deformation until the fastening arms reliably reach behind the wall protrusion 54 and reliably prevent a pull back movement of the supply contact 23 against the insertion direction X.
REFERENCE NUMERALS AND DESIGNATIONS
[0062] 10 cooking appliance lamp
[0063] 11 lamp socket
[0064] 12 socket body
[0065] 13 lamp glass
[0066] 14 receiving recess
[0067] 15 wall
[0068] 16 insertion opening
[0069] 17 mounting flange
[0070] 18 support ring
[0071] 19 illuminant socket
[0072] 20 G9 lamp
[0073] 21 spout
[0074] 22 socket contact
[0075] 23 supply contact
[0076] 24 centering rib
[0077] 25 ventilation gap
[0078] 26 contact cavity
[0079] 27 insertion opening
[0080] 28 support lug
[0081] 29 socket receiver
[0082] 30 flat plug connector
[0083] 31 clamping section
[0084] 32 clamping lug
[0085] 33 fastener
[0086] 34 contact section
[0087] 35 fastening arm
[0088] 36 face
[0089] 40 first contact arm
[0090] 41 support arm
[0091] 42 second contact arm
[0092] 43 contact pressure spring
[0093] 50 first receiving cavity
[0094] 51 second receiving cavity
[0095] 52 slot
[0096] 53 common receiving section
[0097] 54 wall protrusion, attachment contour
[0098] X insertion direction