WO2014019380A1 - Wire-leading device for motor of rotary clutch module of lock - Google Patents
Wire-leading device for motor of rotary clutch module of lock Download PDFInfo
- Publication number
- WO2014019380A1 WO2014019380A1 PCT/CN2013/073464 CN2013073464W WO2014019380A1 WO 2014019380 A1 WO2014019380 A1 WO 2014019380A1 CN 2013073464 W CN2013073464 W CN 2013073464W WO 2014019380 A1 WO2014019380 A1 WO 2014019380A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- clutch module
- rib
- rotary clutch
- wire
- boss
- Prior art date
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B47/00—Operating or controlling locks or other fastening devices by electric or magnetic means
- E05B47/0001—Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof
- E05B47/0012—Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof with rotary electromotors
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B47/00—Operating or controlling locks or other fastening devices by electric or magnetic means
- E05B47/0001—Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof
- E05B2047/0014—Constructional features of actuators or power transmissions therefor
- E05B2047/0018—Details of actuator transmissions
- E05B2047/0026—Clutches, couplings or braking arrangements
-
- E—FIXED CONSTRUCTIONS
- E05—LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
- E05B—LOCKS; ACCESSORIES THEREFOR; HANDCUFFS
- E05B47/00—Operating or controlling locks or other fastening devices by electric or magnetic means
- E05B2047/0048—Circuits, feeding, monitoring
- E05B2047/0057—Feeding
Definitions
- the utility model relates to a lock component, in particular to a lock rotary clutch module motor lead wire device.
- the motor lead wire of the existing rotary clutch module is taken out from the outer edge of the rotating clutch module, and the lead wire is on the one hand centered on the rotation center of the rotating clutch module, and the distance from the center of rotation to the exit point is a radius twist, on the other hand PCB
- the other fixed end of the board connection is centered, and the lead wire is subjected to a large torque and a pendulum force, which is easily damaged and has poor safety and reliability.
- the rotating clutch module motor lead wire of the lock of the utility model is taken out from the rotating center of the rotating clutch module, and the lead wire receives the minimum torque and pendulum force during the rotation of the rotating clutch module, is not easy to be damaged, and is safe and reliable.
- the purpose of the utility model is to provide a novel lock rotary clutch module motor lead-out device, which reduces distortion and swing of the motor lead wire by coaxial rotation, has a simple structure, is safe and reliable, and has a long service life.
- a rotary rotating clutch module motor lead-out device comprising a lead PCB board 1 fixed on a lock panel, and a lead wire 2 Rotating the clutch module 3; the middle section of the lead wire 2 is coaxial with the central axis of rotation of the rotary clutch module 3, and the lead wire 2 is led to the rotary clutch module 3 One end is connected to the motor, and the other end is taken out from the center of rotation of the rotary clutch module 3 and welded to the lead PCB board 1 with the two solder joints close to the center axis; the rotary clutch module 3 is provided with the first boss 31.
- the second boss 32, the lead PCB board 1 is provided with a hole 11, and the first boss 31 is movably mounted in the hole 11 of the lead PCB board 1, and the lead PCB board 1 The outer circumference cooperates with the second boss 32.
- the lead PCB board 1 is provided with a first rib 14 and a second rib 15 , and the hole 11 is provided with a third rib 12 And the fourth rib 13; the first boss 31 of the rotary clutch module 3 is provided with a fifth rib 33 and a sixth rib 34, and the second boss 32 is provided with a seventh rib 35 and an eighth rib 36 .
- the lead wire 2 is coaxial with the rotation center axis of the rotary clutch module 3, and the rotary clutch module 3 During the rotation, the torque and the swing of the lead wire 2 are minimized and are not easily damaged.
- Figure 1 is a schematic perspective view of the utility model
- Figure 2 is a front view of the utility model
- Figure 3 is a cross-sectional view taken along line A-A of Figure 2;
- Figure 4 is a 0 ° initial state diagram of the present invention.
- Figure 5 shows the rotation clutch module rotated to -45 ° state diagram
- Figure 6 shows the rotation clutch module rotated to -90 ° state diagram
- Figure 7 shows the rotation of the rotating clutch module to the 45 ° state diagram
- Figure 8 is a diagram showing the rotation of the rotating clutch module to 90 °
- a rotary rotating clutch module motor lead-out device including a lead fixed on a lock panel PCB board 1, lead wire 2, rotary clutch module 3; the middle section of the lead wire 2 is coaxial with the center axis of rotation of the rotary clutch module 3, and the lead wire 2 is in the rotary clutch module 3
- One end is connected to the motor, and the other end is taken out from the center of rotation of the rotary clutch module 3 and welded to the lead PCB board 1 with the two solder joints close to the center axis;
- the rotary clutch module 3 is provided with the first boss 31.
- the second boss 32, the lead PCB board 1 is provided with a hole 11, and the first boss 31 is movably mounted in the hole 11 of the lead PCB board 1, and the lead PCB board 1 The outer circumference cooperates with the second boss 32.
- the lead PCB board 1 is provided with a first rib 14 and a second rib 15 , and the hole 11 is provided with a third rib 12 And the fourth rib 13; the first boss 31 of the rotary clutch module 3 is provided with a fifth rib 33 and a sixth rib 34, and the second boss 32 is provided with a seventh rib 35 and an eighth rib 36 .
- the rotation process of the rotary clutch module 3 is from the initial state to the position where the seventh rib 35 abuts the first rib 14 and the sixth rib 34 abuts the third rib 12 at 0 ° ⁇ - 90 Rotation between ° ⁇ 0 °; from the initial state to the eighth rib 36 and the second rib 15, the fifth rib 33 and the fourth rib 13 are offset from 0 ° ⁇ 9 0 ° ⁇ 0 Rotate between °.
- the lead PCB board fixed on the lock panel 1 Cannot rotate and move, from the initial state to the position where the seventh rib 35 abuts the first rib 14 and the sixth rib 34 abuts the third rib 12, the rotary clutch module 3 is at 0 ° ⁇ - 90 Rotate in the range of ° ⁇ 0 °, when rotated to -45 °, as shown in Figure 5, when rotated to -90 °, as shown in Figure 6.
- the lead PCB board fixed on the lock panel 1 Cannot rotate and move, from the initial state to the position where the eighth rib 36 abuts the second rib 15 and the fifth rib 33 abuts the fourth rib 13 , the rotary clutch module 3 is at 0 ° ⁇ 90 ° Rotate to ⁇ 0 °, rotate to 45 °, as shown in Figure 7, when rotated to 90 °, as shown in Figure 8.
Landscapes
- Motor Or Generator Frames (AREA)
- Lock And Its Accessories (AREA)
Abstract
A wire-leading device for a motor of a rotary clutch module of a lock, comprising a wire PCB (1), a led-out wire (2), and the rotary clutch module (3). The middle section of the led-out wire (2) is coaxial with the central axis of rotation of the rotary clutch module (3). One end of the led-out wire (2) in the rotary clutch module (3) is connected to the motor, while the other end is led out from the center of rotation of the rotary clutch module (3) and is soldered onto the wire PCB (1), while two soldering points are in proximity to the central axis. The rotary clutch module (3) is provided with a first boss (31) and a second boss (32). The wire PCB (1) is provided with a hole (11). The first boss (31) is movably installed into the hole (11) of the wire PCB (1). The outer cylindrical part of the wire PCB (1) matches the second boss (32). By utilizing the coaxial rotation of the led-out wire (2) and the rotary clutch module (3), the led-out wire (2) is allowed to be subjected to minimized torque and oscillation, thus not easily damaged.
Description
本实用新型涉及一种锁的零部件,特别涉及一种锁的旋转离合器模块电机引出导线装置。 The utility model relates to a lock component, in particular to a lock rotary clutch module motor lead wire device.
现有旋转离合器模块的电机引出导线从旋转离合器模块的外边缘引出,引出导线一方面以旋转离合器模块的旋转中心为圆心,旋转中心到引出点的距离为半径扭转,另一方面以与
PCB
板连接的另一固定端为中心摇摆,引出导线受到很大的扭力和摆力,容易损伤,安全可靠性差。本实用新型锁的旋转离合器模块电机引出导线从旋转离合器模块的旋转中心引出,引出导线在旋转离合器模块旋转过程中所受的扭力和摆力最小,不易损伤,安全可靠。
The motor lead wire of the existing rotary clutch module is taken out from the outer edge of the rotating clutch module, and the lead wire is on the one hand centered on the rotation center of the rotating clutch module, and the distance from the center of rotation to the exit point is a radius twist, on the other hand
PCB
The other fixed end of the board connection is centered, and the lead wire is subjected to a large torque and a pendulum force, which is easily damaged and has poor safety and reliability. The rotating clutch module motor lead wire of the lock of the utility model is taken out from the rotating center of the rotating clutch module, and the lead wire receives the minimum torque and pendulum force during the rotation of the rotating clutch module, is not easy to be damaged, and is safe and reliable.
本实用新型的目的是提供一种新型的锁的旋转离合器模块电机引出导线装置,通过同轴旋转减少电机引出导线的扭曲和摆动,结构简单,安全可靠,使用寿命长。
The purpose of the utility model is to provide a novel lock rotary clutch module motor lead-out device, which reduces distortion and swing of the motor lead wire by coaxial rotation, has a simple structure, is safe and reliable, and has a long service life.
为了达到上述目的,本实用新型采用如下技术方案: In order to achieve the above object, the utility model adopts the following technical solutions:
一种锁的旋转离合器模块电机引出导线装置,包括固定在锁面板上的引线 PCB 板 1 、引出导线 2
、旋转离合器模块 3 ;引出导线 2 的中间段与旋转离合器模块 3 的旋转中心轴同轴,引出导线 2 在旋转离合器模块 3
内的一端与电机连接,另一端从旋转离合器模块 3 的旋转中心引出并焊接在引线 PCB 板 1 上,两焊接点靠近中心轴;旋转离合器模块 3 设有第一凸台 31
和第二凸台 32 ,引线 PCB 板 1 设有孔 11 ,第一凸台 31 活动装于引线 PCB 板 1 的孔 11 内,引线 PCB 板 1
的外圆部与第二凸台 32 相配合。 A rotary rotating clutch module motor lead-out device, comprising a lead PCB board 1 fixed on a lock panel, and a lead wire 2
Rotating the clutch module 3; the middle section of the lead wire 2 is coaxial with the central axis of rotation of the rotary clutch module 3, and the lead wire 2 is led to the rotary clutch module 3
One end is connected to the motor, and the other end is taken out from the center of rotation of the rotary clutch module 3 and welded to the lead PCB board 1 with the two solder joints close to the center axis; the rotary clutch module 3 is provided with the first boss 31.
And the second boss 32, the lead PCB board 1 is provided with a hole 11, and the first boss 31 is movably mounted in the hole 11 of the lead PCB board 1, and the lead PCB board 1
The outer circumference cooperates with the second boss 32.
所述的引线 PCB 板 1 设有第一挡边 14 和第二挡边 15 ,孔 11 设有第三挡边 12
和第四挡边 13 ;旋转离合器模块 3 的第一凸台 31 设有第五挡边 33 和第六挡边 34 ,第二凸台 32 设有第七挡边 35 和第八挡边 36
。 The lead PCB board 1 is provided with a first rib 14 and a second rib 15 , and the hole 11 is provided with a third rib 12
And the fourth rib 13; the first boss 31 of the rotary clutch module 3 is provided with a fifth rib 33 and a sixth rib 34, and the second boss 32 is provided with a seventh rib 35 and an eighth rib 36
.
由于采用了上述结构,引出导线 2 与旋转离合器模块 3 的旋转中心轴同轴,旋转离合器模块 3
旋转过程中,使得引出导线 2 所受的扭力和摆动最小,不易损伤。 Due to the above structure, the lead wire 2 is coaxial with the rotation center axis of the rotary clutch module 3, and the rotary clutch module 3
During the rotation, the torque and the swing of the lead wire 2 are minimized and are not easily damaged.
图 1 为本实用新型立体结构示意图; Figure 1 is a schematic perspective view of the utility model;
图 2 为本实用新型的主视图; Figure 2 is a front view of the utility model;
图 3 为图 2 的 A-A 剖视图; Figure 3 is a cross-sectional view taken along line A-A of Figure 2;
图 4 为本实用新型的 0 ° 初始状态图; Figure 4 is a 0 ° initial state diagram of the present invention;
图 5 为旋转离合器模块旋转至 -45 °状态 图; Figure 5 shows the rotation clutch module rotated to -45 ° state diagram;
图 6 为旋转离合器模块旋转至 -90 °状态 图; Figure 6 shows the rotation clutch module rotated to -90 ° state diagram;
图 7 为旋转离合器模块旋转至 45 °状态 图; Figure 7 shows the rotation of the rotating clutch module to the 45 ° state diagram;
图 8 为旋转离合器模块旋转至 90 °状态 图; Figure 8 is a diagram showing the rotation of the rotating clutch module to 90 °;
下面结合附图和实施例对本实用新型作进一步详细的说明: The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:
一种锁的旋转离合器模块电机引出导线装置,如图 1 、图 2 、图 3 所示,包括固定在锁面板上的引线
PCB 板 1 、引出导线 2 、旋转离合器模块 3 ;引出导线 2 的中间段与旋转离合器模块 3 的旋转中心轴同轴,引出导线 2 在旋转离合器模块 3
内的一端与电机连接,另一端从旋转离合器模块 3 的旋转中心引出并焊接在引线 PCB 板 1 上,两焊接点靠近中心轴;旋转离合器模块 3 设有第一凸台 31
和第二凸台 32 ,引线 PCB 板 1 设有孔 11 ,第一凸台 31 活动装于引线 PCB 板 1 的孔 11 内,引线 PCB 板 1
的外圆部与第二凸台 32 相配合。 A rotary rotating clutch module motor lead-out device, as shown in FIG. 1, FIG. 2 and FIG. 3, including a lead fixed on a lock panel
PCB board 1, lead wire 2, rotary clutch module 3; the middle section of the lead wire 2 is coaxial with the center axis of rotation of the rotary clutch module 3, and the lead wire 2 is in the rotary clutch module 3
One end is connected to the motor, and the other end is taken out from the center of rotation of the rotary clutch module 3 and welded to the lead PCB board 1 with the two solder joints close to the center axis; the rotary clutch module 3 is provided with the first boss 31.
And the second boss 32, the lead PCB board 1 is provided with a hole 11, and the first boss 31 is movably mounted in the hole 11 of the lead PCB board 1, and the lead PCB board 1
The outer circumference cooperates with the second boss 32.
所述的引线 PCB 板 1 设有第一挡边 14 和第二挡边 15 ,孔 11 设有第三挡边 12
和第四挡边 13 ;旋转离合器模块 3 的第一凸台 31 设有第五挡边 33 和第六挡边 34 ,第二凸台 32 设有第七挡边 35 和第八挡边 36
。旋转离合器模块 3 的旋转过程,从初始状态到第七挡边 35 与第一挡边 14 相抵、第六挡边 34 与第三挡边 12 相抵的位置,可在 0 ° ~ - 90
° ~ 0 ° 之间旋转;从初始状态到第八挡边 36 与第二挡边 15 相抵、第五挡边 33 与第四挡边 13 相抵的位置,可在 0 ° ~9 0 ° ~ 0
° 之间旋转。 The lead PCB board 1 is provided with a first rib 14 and a second rib 15 , and the hole 11 is provided with a third rib 12
And the fourth rib 13; the first boss 31 of the rotary clutch module 3 is provided with a fifth rib 33 and a sixth rib 34, and the second boss 32 is provided with a seventh rib 35 and an eighth rib 36
. The rotation process of the rotary clutch module 3 is from the initial state to the position where the seventh rib 35 abuts the first rib 14 and the sixth rib 34 abuts the third rib 12 at 0 ° ~ - 90
Rotation between ° ~ 0 °; from the initial state to the eighth rib 36 and the second rib 15, the fifth rib 33 and the fourth rib 13 are offset from 0 ° ~ 9 0 ° ~ 0
Rotate between °.
如图 4 所示 0 ° 初始状态下,固定在锁面板上的引线 PCB 板 1
不能旋转和移动,从初始状态到第七挡边 35 与第一挡边 14 相抵、第六挡边 34 与第三挡边 12 相抵的位置,旋转离合器模块 3 在 0 ° ~ - 90
° ~ 0 ° 范围内旋转,旋转至 -45 °时,如图5所示状态,旋转至 -90 °时,如图6所示状态。 As shown in Figure 4, 0 ° initial state, the lead PCB board fixed on the lock panel 1
Cannot rotate and move, from the initial state to the position where the seventh rib 35 abuts the first rib 14 and the sixth rib 34 abuts the third rib 12, the rotary clutch module 3 is at 0 ° ~ - 90
Rotate in the range of ° ~ 0 °, when rotated to -45 °, as shown in Figure 5, when rotated to -90 °, as shown in Figure 6.
如图 4 所示 0 ° 初始状态下,固定在锁面板上的引线 PCB 板 1
不能旋转和移动,从初始状态到第八挡边 36 与第二挡边 15 相抵、第五挡边 33 与第四挡边 13 相抵的位置,旋转离合器模块 3 在 0 ° ~9 0 °
~ 0 ° 范围内旋转,旋转至 45 °时,如图7所示状态,旋转至 90 °时,如图8所示状态。 As shown in Figure 4, 0 ° initial state, the lead PCB board fixed on the lock panel 1
Cannot rotate and move, from the initial state to the position where the eighth rib 36 abuts the second rib 15 and the fifth rib 33 abuts the fourth rib 13 , the rotary clutch module 3 is at 0 ° ~ 90 °
Rotate to ~ 0 °, rotate to 45 °, as shown in Figure 7, when rotated to 90 °, as shown in Figure 8.
旋转离合器模块3绕中心轴在 0 ° ~9 0 ° ~ 0 °和 0 ° ~ - 90 ° ~ 0
°之间旋转,由于引出导线2与旋转离合器模块3中心轴同轴,引出导线2在引线PCB板1上的焊接点靠近中心轴,因此引出导线2所受的扭力和摆动最小,这种引出导线2引出和连接方式最可靠,使用寿命最长。 Rotating clutch module 3 around the central axis at 0 ° ~ 9 0 ° ~ 0 ° and 0 ° ~ - 90 ° ~ 0
Between the rotations, since the lead wire 2 is coaxial with the central axis of the rotary clutch module 3, the welding point of the lead wire 2 on the lead PCB board 1 is close to the central axis, so the torque and the swing of the lead wire 2 are minimized. Wire 2 is the most reliable and longest to use.
Claims (1)
- 1 、 一种锁的旋转离合器模块电机引出导线装置,其特征在于:包括固定在锁面板上的引线 PCB 板( 1 )、引出导线( 2 )、旋转离合器模块( 3 );引出导线( 2 )的中间段与旋转离合器模块( 3 )的旋转中心轴同轴,引出导线( 2 )在旋转离合器模块( 3 )内的一端与电机连接,另一端从旋转离合器模块( 3 )的旋转中心引出并焊接在引线 PCB 板( 1 )上,两焊接点靠近中心轴;旋转离合器模块( 3 )设有第一凸台( 31 )和第二凸台( 32 ),引线 PCB 板( 1 )设有孔( 11 ),第一凸台( 31 )活动装于引线 PCB 板( 1 )的孔( 11 )内,引线 PCB 板( 1 )的外圆部与第二凸台( 32 )相配合。1 . A lock rotary clutch module motor lead-out device, comprising: a lead PCB board (1) fixed on a lock panel, and a lead wire (2) ), the rotating clutch module (3); the middle section of the lead wire (2) is coaxial with the central axis of rotation of the rotating clutch module (3), and the lead wire (2) is in the rotating clutch module (3) One end is connected to the motor, and the other end is taken out from the center of rotation of the rotary clutch module (3) and soldered to the lead PCB board (1), the two solder joints are close to the center axis; the rotary clutch module (3) a first boss (31) and a second boss (32), the lead PCB board (1) is provided with a hole (11), and the first boss (31) is movably mounted on the hole of the lead PCB board (1) ( 11), the outer circumference of the lead PCB board (1) is matched with the second boss (32).2 、根据权利要求 1 所述的锁的旋转离合器模块电机引出导线装置,其特征在于所述的引线 PCB 板( 1 )设有第一挡边( 14 )和第二挡边( 15 ),孔( 11 )设有第三挡边( 12 )和第四挡边( 13 );旋转离合器模块( 3 )的第一凸台( 31 )设有第五( 33 )和第六挡边( 34 ),第二凸台( 32 )设有第七挡边( 35 )和第八挡边( 36 )。2. A rotary clutch module motor lead-out device according to claim 1, wherein said lead PCB board (1) is provided with a first rib ( 14) and a second rib (15), the hole (11) is provided with a third rib (12) and a fourth rib (13); the first boss (31) of the rotary clutch module (3) is provided with Five (33 And a sixth rib (34), the second boss (32) is provided with a seventh rib (35) and an eighth rib (36).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220386580 CN202718463U (en) | 2012-07-31 | 2012-07-31 | Wire leading device for motor of rotary clutch module of lock |
CN201220386580.9 | 2012-07-31 |
Publications (1)
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WO2014019380A1 true WO2014019380A1 (en) | 2014-02-06 |
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Application Number | Title | Priority Date | Filing Date |
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PCT/CN2013/073464 WO2014019380A1 (en) | 2012-07-31 | 2013-03-29 | Wire-leading device for motor of rotary clutch module of lock |
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CN (1) | CN202718463U (en) |
WO (1) | WO2014019380A1 (en) |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN202718463U (en) * | 2012-07-31 | 2013-02-06 | 闵瑜 | Wire leading device for motor of rotary clutch module of lock |
CN202866411U (en) * | 2012-08-28 | 2013-04-10 | 闵瑜 | Rotating clutch module motor leading-out wire structure of lock |
Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2038676U (en) * | 1988-09-07 | 1989-05-31 | 航空工业部第六一八研究所 | Combined power transmission device |
US5886447A (en) * | 1997-10-30 | 1999-03-23 | Ford Motor Company | Slip ring design for a rotor of an electrical machine |
CN2542779Y (en) * | 2002-04-30 | 2003-04-02 | 叶春财 | Electric-operated lock |
CN2616616Y (en) * | 2003-02-11 | 2004-05-19 | 廖华 | Double driving clutch for digital intelligent lock |
CN202039673U (en) * | 2011-05-06 | 2011-11-16 | 金学镐 | Pin tumbler lock core |
CN202718463U (en) * | 2012-07-31 | 2013-02-06 | 闵瑜 | Wire leading device for motor of rotary clutch module of lock |
-
2012
- 2012-07-31 CN CN 201220386580 patent/CN202718463U/en not_active Expired - Fee Related
-
2013
- 2013-03-29 WO PCT/CN2013/073464 patent/WO2014019380A1/en active Application Filing
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2038676U (en) * | 1988-09-07 | 1989-05-31 | 航空工业部第六一八研究所 | Combined power transmission device |
US5886447A (en) * | 1997-10-30 | 1999-03-23 | Ford Motor Company | Slip ring design for a rotor of an electrical machine |
CN2542779Y (en) * | 2002-04-30 | 2003-04-02 | 叶春财 | Electric-operated lock |
CN2616616Y (en) * | 2003-02-11 | 2004-05-19 | 廖华 | Double driving clutch for digital intelligent lock |
CN202039673U (en) * | 2011-05-06 | 2011-11-16 | 金学镐 | Pin tumbler lock core |
CN202718463U (en) * | 2012-07-31 | 2013-02-06 | 闵瑜 | Wire leading device for motor of rotary clutch module of lock |
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CN202718463U (en) | 2013-02-06 |
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