CN101424140B - Interlock controlling mechanism of electronic lock and clutch control device thereof - Google Patents

Interlock controlling mechanism of electronic lock and clutch control device thereof Download PDF

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Publication number
CN101424140B
CN101424140B CN2007101952312A CN200710195231A CN101424140B CN 101424140 B CN101424140 B CN 101424140B CN 2007101952312 A CN2007101952312 A CN 2007101952312A CN 200710195231 A CN200710195231 A CN 200710195231A CN 101424140 B CN101424140 B CN 101424140B
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CN
China
Prior art keywords
transmission shaft
interlock
shaft tube
sliding sleeve
electronic lock
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2007101952312A
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Chinese (zh)
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CN101424140A (en
Inventor
黄昭铭
陈吉明
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Taiwan Fu Hsing Industrial Co Ltd
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Taiwan Fu Hsing Industrial Co Ltd
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Application filed by Taiwan Fu Hsing Industrial Co Ltd filed Critical Taiwan Fu Hsing Industrial Co Ltd
Priority to CN2007101952312A priority Critical patent/CN101424140B/en
Publication of CN101424140A publication Critical patent/CN101424140A/en
Application granted granted Critical
Publication of CN101424140B publication Critical patent/CN101424140B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The invention provides a linkage control mechanism for an electronic lock and a clutch control device thereof, which are controlled by an electronic controller and are connected between a transmission shaft of a press plate driving device and a plunger latch linkage unit. The linkage control mechanism and the clutch control device are mainly to arrange a transmission shaft pipe in a coil holder so that the transmission shaft pipe is connected with the transmission shaft, wherein a sliding bush and a clutch bush are sleeved on the transmission shaft pipe; the sliding bush can be arranged in the coil holder in a sliding mode; the clutch bush is positioned outside the coil holder, and is connected with the plunger latch linkage unit through a linkage plate group; therefore, the electronic controller is used to control connection and disconnection of the coil holder, and the coil holder generates magnetic force to push the sliding bush to be jointed with the clutch bush correspondingly after the coil holder is electrified; and when a pressure plate of the press plate driving device is pressed downwards, the plunger latch linkage unit is driven to unlock through rotating the clutch control device by the transmission shaft.

Description

The interlock controlling organization and the clutch control device thereof of electronic lock
Technical field
The present invention is about a kind of electronic lock, the particularly design that is proposed at interlock controlling organization and clutch control device thereof in this electronic lock.
Background technology
Traditional lockset mainly is the structure design based on key operated formula, in recent years, development by electronics technology, as fingerprint identification system, chip induction system ... also be applied to as field of lockset such as door locks etc. electronic control system, make people under the situation that need not use key, with the distinctive fingerprint of its people, chip ... Deng relying on of unblanking as the gate.
But at present known mechanical lockset and electric lockset are to take separately independently lockset design, the inventor further is combined as a whole this electronic controller and traditional type lockset, and design a kind of electronic lock,, be auxilliary with key unlocking in addition wherein with the main foundation of electronic control system for unblanking outdoors.
As previously mentioned, for the mechanism that makes electronic controller and lockset is combined as a whole, as the foundation of unblanking, so need in this electronic lock design to have one to be controlled by electronic controller and to have interlock concurrently and the mechanism of clutch function control connects the unlocking mechanism of this lockset, can reach based on electronic control system for unblanking outdoors, be the purpose of assisting with key unlocking in addition.
Summary of the invention
Main purpose of the present invention is to design a kind of interlock controlling organization and clutch control device thereof of electronic lock, wish design by this, it is applied in the electronic lock, a kind of control instruction decision clutch of accepting electronic controller is provided, and then whether controls this electronic lock center platen drive unit and lock bolt interlock group interlock.
For reaching aforementioned purpose, the designed clutch control device of the present invention comprises:
One coil holder has a pedestal and a coil and is set around on this pedestal, forms a containing hole in this pedestal;
One transmission shaft tube is arranged in the containing hole of this coil holder, and this transmission shaft tube has an axis hole and is positioned at inside, and stretch out outside this coil holder a connection terminal;
One sliding sleeve is installed in the containing hole of this coil holder, but and axial slip be sheathed on this transmission shaft tube, this sliding sleeve is convexly equipped with at least one projection portion towards the connection terminal of this power transmission shaft; And
One clutch cover, on the sheathed connection terminal that is positioned this transmission shaft tube, be positioned at this coil holder outside, this sliding sleeve has an end of projection portion towards this clutch cover, be provided with a flexible member between this clutch cover and this sliding sleeve, this clutch cover has at least one recess towards an end of this sliding sleeve, provides the projection portion correspondence of this sliding sleeve to insert wherein.
The designed interlock controlling organization of the present invention is located between the pressing plate drive unit and lock bolt interlock group of this electronic lock, and this interlock controlling organization comprises:
One coil holder has a pedestal and a coil and is set around on this pedestal, forms a containing hole in this pedestal;
One transmission shaft tube is arranged in the containing hole of this coil holder, and this transmission shaft tube has an axis hole and is positioned at inside, and stretch out outside this coil holder a connection terminal;
One sliding sleeve is installed in the containing hole of this coil holder, but and axial slip be sheathed on this transmission shaft tube, this sliding sleeve is convexly equipped with at least one projection portion towards the connection terminal of this power transmission shaft;
One clutch cover, on the sheathed connection terminal that is positioned this transmission shaft tube, be positioned at this coil holder outside, this sliding sleeve has an end of projection portion towards this clutch cover, be provided with a flexible member between this clutch cover and this sliding sleeve, this clutch cover has at least one recess towards an end of this sliding sleeve, provides the projection portion correspondence of this sliding sleeve to insert wherein; And
One interlock plate group, comprise one first interlock plate, one second interlock plate and at least one tension spring, this first, second interlock plate rotatably is relatively arranged in this lock bolt interlock group, this first interlock plate connects this clutch cover, and this tension spring is connected between this lock bolt interlock group and second interlock plate.
The present invention is by the aforementioned techniques design for scheme, its characteristics are: interlock controlling organization of the present invention and clutch control device thereof are controlled by the controller of this electronic lock, and be connected between the power transmission shaft and lock bolt interlock group of pressing plate drive unit, wherein in a coil holder, establish a transmission shaft tube and connect this power transmission shaft, a sheathed sliding sleeve and a clutch cover on this transmission shaft tube, this sliding sleeve is located in this coil holder slippingly, this clutch cover is positioned at this coil holder outside, in order to connect this lock bolt interlock group, by this, whether utilize this electronic controller to control this coil holder switches on, and generation magnetic force promotes the corresponding joint with this clutch cover of this sliding sleeve after the coil holder energising, when the pressing plate of this pressing plate drive unit is pressed down, can rotates this interlock controlling organization and clutch control device via this power transmission shaft and drive this lock bolt interlock group and unblank.
In addition, another object of the present invention is to utilize in the interlock plate group in this interlock controlling organization, use one to have the tension spring of two telescopic sections or use two tension springs to be connected between this lock bolt interlock group and the second interlock plate both sides, by this, after being driven to rotate, this interlock plate group discharges, can provide bigger pulling force by two telescopic sections of this two tension spring or this tension spring, and make and firmly be able to comparatively balance, make this electronic lock more smooth in operation.
Description of drawings
Perspective exploded view and the side-looking combination generalized section in the electronic lock is located in first preferred embodiment that Fig. 1, the 2nd, the present invention comprise the interlock controlling organization of clutch control device.
Fig. 3 is the perspective exploded view of clutch control device first preferred embodiment in the interlock controlling organization shown in Figure 1.
Fig. 4 is the combination generalized section of first preferred embodiment of the clutch control device in the interlock controlling organization shown in Figure 1.
Fig. 5 is the perspective exploded view of clutch control device second preferred embodiment in the interlock controlling organization of the present invention.
Fig. 6 is the combination generalized section of clutch control device second preferred embodiment shown in Figure 5.
Fig. 7 is the operation chart of clutch control device second preferred embodiment shown in Figure 5.
Fig. 8 is the interlock plate group in the interlock controlling organization of the present invention and the combined planar schematic diagram of lock bolt interlock group.
Fig. 9 is the floor map of the pressing plate drive unit in the electronic lock shown in Fig. 1,2.
[primary clustering symbol description]
(1) interlock controlling organization
(2) outer cover plate (2A) inner cover plate
(3) core group
(4) outer handle group (4A) Internal handle group
(6) electronic controller
(7) pressing plate drive unit (7A) power transmission shaft
(7B) pressing plate (7C) drives central siphon
(7D) passive tooth portion (7E) drive plate
(7F) driving tooth portion (7G) spring
(8) lock bolt interlock group (8A) drive plate
(9) lock bolt knob
(10) coil holder (11) pedestal
(111) central siphon portion (112) partition board portion
(113) the ccontaining recess of containing hole (114)
(12) coil
(20) transmission shaft tube (21) axis hole
(22) connection terminal (23) ring flange
(24) catching groove (25) fastener
(26) loose slot (27) is escaped the hole
(30) sliding sleeve (31) projection portion
(32) contraposition flange
(40) clutch cover (41) recess
(42) group connecting part
(50) elastic parts
(60) interlock plate group (61) first interlock plates
(62) second interlock plate (63) tension springs (8D)
(631) location division (632) telescopic section
(633) connection terminal
The specific embodiment
As Fig. 1, shown in 2, disclose interlock controlling organization preferred embodiment that the present invention includes clutch control device and be applied to embodiment in the electronic lock, by seeing among the figure that this electronic lock is a kind of lockset in conjunction with electronic controller and key formula core, this electronic lock mainly comprises an outer cover plate 2, one inner cover plate 2A, one outer handle group 4, one Internal handle group 4A, one core group 3, one lock bolt group (not shown), one electronic controller 6, one pressing plate drive unit 7, one interlock controlling organization 1, an one lock bolt interlock group 8 and a lock bolt knob 9, aforesaid electronic controller can be fingerprint identifier, the chip induction controller ... etc. various electronic controller, wherein:
This outer cover plate 2, inner cover plate 2A can be relatively arranged on the outer side of door and the door inboard of door-plate, this lock bolt group and this interlock controlling organization 1 are installed in up and down between this outer cover plate 2 and this inner cover plate 2A, this core group 3, electronic controller 6, pressing plate drive unit 7 and outer handle group 4 are installed in up and down on this outer cover plate 2 in regular turn, this core group 3 connects this lock bolt group, this lock bolt interlock group 8 is installed in the inboard lock bolt group that connects of this inner cover plate 2A, this pressing plate drive unit 7 comprises that a power transmission shaft 7A connects this interlock controlling organization 1, this lock bolt knob 9, the battery case (not shown) of Internal handle group 4A and this electronic controller 6 is installed on this inner cover plate 2A, this lock bolt knob 9 and this Internal handle group 4A connect this lock bolt interlock group 8 respectively, this battery case electrically connects this interlock controlling organization 1 and electronic controller 6 with electric wire, uses the fingerprint image that utilizes this electronic controller 6 to judge input, the chip sensor signal ... Deng correctness decide this interlock controlling organization 1 clutch state.
The specific embodiment design of relevant interlock control device of the present invention, see also shown in Fig. 1-6, disclose the present invention and included several preferred embodiments of the interlock controlling organization of clutch control device, wherein: this clutch control device 1 mainly comprises a coil holder 10, a transmission shaft tube 20, sliding sleeve 30 and a clutch cover 40, wherein:
This coil holder 10 comprises a pedestal 11 and a coil 12, this pedestal 11 has a central siphon portion 111 and two partition board portion 112 form in this central siphon portion 111 two ends, form a containing hole 113 in this central siphon portion 111, this coil 12 is set around in this central siphon portion 111 formed winding space place between this two partition board portion 112, this coil 12 can connect power supply, produces magnetic polarity in order to energising.
This transmission shaft tube 20 is arranged in the containing hole 113 of this coil holder 10, has an axis hole 21 in this transmission shaft tube 20, the power transmission shaft 7A insert group that this pressing plate drive unit 7 is provided wherein, this axis hole 21 can be square opening, polygonal hole ... or design such as other non-circular hole, wherein interlock and not rotation of the power transmission shaft 7A insert group that this pressing plate drive unit 7 is provided, this transmission shaft tube 20 has a connection terminal 22 in addition and stretches out outside this coil holder 10.
This sliding sleeve 30 is installed in the containing hole 113 of this coil holder 10, but and be sheathed on axial slip on this transmission shaft tube 20, these sliding sleeve 30 1 ends are convexly equipped with at least one projection portion 31, in this preferred embodiment, this sliding sleeve 30 has two projection portions 31 and is radially corresponding shape.
This hollow clutch cover 40 is sheathed to be positioned on the connection terminal 22 of this transmission shaft tube 20, be positioned at this coil holder 10 outsides, this sliding sleeve 30 has an end of projection portion 31 towards this clutch cover 40, this clutch cover 40 has at least one recess 41 and at least one group connecting part 42 towards an end of this sliding sleeve 30, this recess 41 provides projection portion 31 correspondences of this sliding sleeve 30 to insert wherein, this group connecting part 42 in order to this drive plate 8B winding interlock, in this preferred embodiment, this group connecting part 42 can be recess.
First preferred embodiment shown in Fig. 3,4, pedestal 11 and this transmission shaft tube 20 of this coil holder 10 are integrally formed members, connection terminal 22 ends that this transmission shaft tube 20 stretches out this coil holder 10 are provided with a catching groove 24, and button is established a fastener 25 in this catching groove 24, and it is spacing to be positioned at these clutch cover 40 sides; Containing hole 113 apertures of the pedestal 11 of this coil holder 10 can be corresponding to the external diameter of this sliding sleeve 30 in addition, and establish at least one ccontaining recess 114 in the peritreme place of this containing hole 113 and extend axially, provide the projection portion 31 of this sliding sleeve 30 to be positioned at wherein, what the section that the axis hole 21 of this transmission shaft tube 20 is positioned at this connection terminal 22 also can form a larger aperture escapes hole 27.
Second preferred embodiment shown in Fig. 5,6, pedestal 11 and this transmission shaft tube 20 of this coil holder 10 is two individual members of removable group, this transmission shaft tube 20 forms the ring flange 23 of big external diameter in the end of this connection terminal 22, these clutch cover 40 sides of butt, the other end of this transmission shaft tube 20 in this connection terminal 22 forms a catching groove 24, button is established a fastener 25 in this catching groove 24, and this transmission shaft tube 20 is positioned in this coil holder 10; The other end of this transmission shaft tube 20 in this connection terminal 22 also can form at least one loose slot 26 and be and extend axially in addition, form contraposition flange 32 and these loose slot 26 corresponding matching in this sliding sleeve 30 inside walls, what the axis hole 21 of this transmission shaft tube 20 section that is positioned at this connection terminal 22 formed larger aperture in addition escapes hole 27.
Shown in first, second preferred embodiment shown in Fig. 3-6, this clutch control device 1 also can comprise an elastic parts 50, be located between this sliding sleeve 30 and this clutch cover 40, reset in order to push against this sliding sleeve 30, aforesaid elastic parts 50 can be a spring, and be sheathed on this transmission shaft tube 20, two ends are this sliding sleeve 30 and this clutch cover 40 of butt respectively.
Composition as for interlock controlling organization of the present invention, except that coil holder 10, transmission shaft tube 20, sliding sleeve 30, clutch cover 40 and the elastic parts 50 of aforementioned clutch control device, further comprise an interlock plate group 60, the design of described coil holder 10, transmission shaft tube 20, sliding sleeve 30 and clutch cover 40, all identical with the design of aforementioned clutch control device, do not repeat them here.
Be connected between this clutch cover 40 and this lock bolt interlock group 8 as for this interlock plate group 60, this interlock plate group 60 comprises one first interlock plate 61, one second interlock plate 62 and at least one tension spring 63, this first, second interlock plate 61,62 rotatably is relatively arranged in this lock bolt interlock group 8, this first interlock plate 61 connects this clutch cover 40, and this tension spring 63 is connected between this lock bolt interlock group 8 and second interlock plate 62.
As shown in Figure 8, in the aforesaid interlock plate group 60, can use a tension spring 63, this tension spring 63 comprises that a location division 631 is positioned at the stage casing, two telescopic sections 632 are positioned at these 631 two ends, location division and two connection terminals 633 are positioned at this two telescopic sections, 632 ends, this tension spring 63 is positioned in this lock bolt interlock group 8 with this location division 631, with these second interlock plate, 62 both sides of these two connection terminals, 633 windings; In addition, this interlock plate group 60 also can be used two tension spring (not shown), and be positioned in this lock bolt interlock group 8 with this two tension springs, one end, the other end connects this second interlock plate, 62 both sides respectively, by this, this interlock plate group 60 back that is driven to rotate is discharged, can provide pulling force by this two tension spring or the single tension spring 63 with two telescopic sections 632, it is more smooth that it can be operated.
When interlock controlling organization of the present invention and clutch control device thereof are applied to this electronic lock, this interlock controlling organization 1 is to provide the power transmission shaft 7A of this pressing plate drive unit 7 to peg graft with transmission shaft tube 20 to make up, the drive plate 8B that connects lock bolt interlock group 8 with clutch cover 40, the coil 12 of this coil holder 10 electrically connects this electronic controller 6, when this electronic lock is applied on the door-plate as door lock, (as shown in Figure 6) under locking state, under the elastic force pushing and pressing effect of the projection portion 31 of this sliding sleeve 30 by elastic parts 50, make this projection portion 31 and the recess 41 of this clutch cover 40 be disengaged position (as shown in Figure 6), die as the people when outer side of door is pushed this pressing plate 7B, though can make the power transmission shaft 7A of this pressing plate drive unit drive this coil holder 10, transmission shaft tube 20 and sliding sleeve 30 rotations, but this clutch cover 40 can not be driven to rotate, and the interlock plate group 60 and the lock bolt interlock group 8 that connect this clutch cover 40 are failure to actuate, keep locking state.
When the user when outer side of door makes this electronic controller 6 unblank, the coil 12 of this coil holder 10 can produce a magnetic field after feeding electric current, the magnetic force in this magnetic field can be with the connection terminal 22 directions pulling of this sliding sleeve 30 toward transmission shaft tube 20, and elasticity of compression assembly 50, make the projection portion 31 of this sliding sleeve 30 mesh (as shown in Figure 7) with recess 41 contrapositions of this clutch cover 40, afterwards, the user can push this pressing plate 7B in outer side of door, as shown in Figure 9, this pressing plate 7B promptly promotes to move on this drive plate 7E, compression spring 7G, and then the relation of the 7F of driving tooth portion that utilizes this drive plate 7E and the 7D of the passive tooth portion dentation engagement that drives central siphon 7C, rotate and drive the power transmission shaft 7A that is located among this 7C, so, further drive this coil holder 10 via this power transmission shaft 7A, transmission shaft tube 20,40 rotations of sliding sleeve 30 and this clutch cover, 40 of this clutch covers are again via first interlock plate 61 of this interlock plate group 60, second interlock plate 62 drives the drive plate 8A drive lock bolt group of this lock bolt interlock group 8 and unblanks.
In aforesaid unlock operation process, as shown in Figure 8, be connected between this lock bolt interlock group 8 and this second interlock plate, 62 both sides because of the tension spring 63 that uses two tension springs or to have two telescopic sections 632 in this interlock plate group 60, so after this interlock plate group 60 is driven to rotate, discharge, can provide big by two telescopic sections 632 of this two tension spring or this tension spring 63 and, make this electronic lock more smooth in operation than the pulling force of balance.

Claims (20)

1. the clutch control device of an electronic lock is characterized in that, comprising:
One coil holder has a pedestal and a coil and is set around on this pedestal, forms a containing hole in this pedestal;
One transmission shaft tube is arranged in the containing hole of this coil holder, and this transmission shaft tube has an axis hole and is positioned at inside, and stretch out outside this coil holder a connection terminal;
One sliding sleeve is installed in the containing hole of this coil holder, but and axial slip be sheathed on this transmission shaft tube, this sliding sleeve is convexly equipped with at least one projection portion towards the connection terminal of this power transmission shaft; And
One clutch cover, on the sheathed connection terminal that is positioned this transmission shaft tube, be positioned at this coil holder outside, this sliding sleeve has an end of projection portion towards this clutch cover, be provided with an elastic parts between this clutch cover and this sliding sleeve, this clutch cover has at least one recess towards an end of this sliding sleeve, provides the projection portion correspondence of this sliding sleeve to insert wherein.
2. the clutch control device of electronic lock as claimed in claim 1, it is characterized in that, the member that the pedestal of this coil holder and this transmission shaft tube are one of the forming, the connection terminal end of this transmission shaft tube is provided with a catching groove, be provided with a fastener in the catching groove of this transmission shaft tube, it is spacing to be positioned at this clutch cover side.
3. the clutch control device of electronic lock as claimed in claim 2 is characterized in that, the containing hole aperture of this coil holder is corresponding to the external diameter of this sliding sleeve, and the peritreme place of this containing hole establishes at least one ccontaining recess, provides the projection portion of this sliding sleeve to be positioned at wherein.
4. the clutch control device of electronic lock as claimed in claim 1 is characterized in that, this transmission shaft tube forms a catching groove with respect to the other end of this connection terminal, is provided with a fastener in this catching groove, and this transmission shaft tube is positioned in this coil holder.
5. the clutch control device of electronic lock as claimed in claim 1 is characterized in that, a terminal ring flange, this clutch cover of butt of forming in the connection terminal of this transmission shaft tube.
6. the clutch control device of electronic lock as claimed in claim 5 is characterized in that, the other end of this transmission shaft tube in this connection terminal forms at least one loose slot, and this sliding sleeve inside wall forms the contraposition flange, with this loose slot corresponding matching.
7. the clutch control device of electronic lock as claimed in claim 1 is characterized in that, this elastic parts is a spring, is sheathed on this transmission shaft tube, and two ends are this sliding sleeve of butt and this clutch cover respectively.
8. the clutch control device of electronic lock as claimed in claim 1 is characterized in that, this sliding sleeve has two projection portions and is radially corresponding shape.
9. the clutch control device of electronic lock as claimed in claim 1 is characterized in that, the section that the axis hole of this transmission shaft tube is positioned at this connection terminal forms the hole of escaping of larger aperture.
10. the interlock controlling organization of an electronic lock is characterized in that, it is located between the pressing plate drive unit and lock bolt interlock group of this electronic lock, and this interlock controlling organization comprises:
One coil holder has a pedestal and a coil and is set around on this pedestal, forms a containing hole in this pedestal;
One transmission shaft tube is arranged in the containing hole of this coil holder, and this transmission shaft tube has an axis hole and is positioned at inside, and stretch out outside this coil holder a connection terminal;
One sliding sleeve is installed in the containing hole of this coil holder, but and axial slip be sheathed on this transmission shaft tube, this sliding sleeve is convexly equipped with at least one projection portion towards the connection terminal of this power transmission shaft;
One clutch cover, on the sheathed connection terminal that is positioned this transmission shaft tube, be positioned at this coil holder outside, this sliding sleeve has an end of projection portion towards this clutch cover, be provided with an elastic parts between this clutch cover and this sliding sleeve, this clutch cover has at least one recess towards an end of this sliding sleeve, provides the projection portion correspondence of this sliding sleeve to insert wherein; And
One interlock plate group, comprise one first interlock plate, one second interlock plate and at least one tension spring, this first, second interlock plate rotatably is relatively arranged in this lock bolt interlock group, this first interlock plate connects this clutch cover, and this tension spring is connected between this lock bolt interlock group and second interlock plate.
11. the interlock controlling organization of electronic lock as claimed in claim 10, it is characterized in that, the member that the pedestal of this coil holder and this transmission shaft tube are one of the forming, the connection terminal end of this transmission shaft tube is provided with a catching groove, be provided with a fastener in this catching groove, it is spacing to be positioned at this clutch cover side.
12. the interlock controlling organization of electronic lock as claimed in claim 11 is characterized in that, the containing hole aperture of this coil holder is corresponding to the external diameter of this sliding sleeve, and the peritreme place of this containing hole establishes at least one ccontaining recess, provides the projection portion of this sliding sleeve to be positioned at wherein.
13. the interlock controlling organization of electronic lock as claimed in claim 10 is characterized in that, this transmission shaft tube is provided with a catching groove with respect to the other end of this connection terminal, is provided with a fastener in this catching groove, and this transmission shaft tube is positioned in this coil holder.
14. the interlock controlling organization of electronic lock as claimed in claim 10 is characterized in that, a terminal ring flange, this clutch cover of butt of forming in the connection terminal of this transmission shaft tube.
15. the interlock controlling organization of electronic lock as claimed in claim 14 is characterized in that, the other end of this transmission shaft tube in this connection terminal forms at least one loose slot, and this sliding sleeve inside wall forms the contraposition flange, with this loose slot corresponding matching.
16. the interlock controlling organization of electronic lock as claimed in claim 10 is characterized in that this elastic parts is a spring, is sheathed on this transmission shaft tube, two ends are this sliding sleeve of butt and this clutch cover respectively.
17. the interlock controlling organization of electronic lock as claimed in claim 10 is characterized in that, this sliding sleeve has two projection portions and is radially corresponding shape.
18. the interlock controlling organization of electronic lock as claimed in claim 10 is characterized in that, the section that the axis hole of this transmission shaft tube is positioned at this connection terminal forms the hole of escaping of larger aperture.
19. the interlock controlling organization of electronic lock as claimed in claim 10, it is characterized in that, this interlock plate group has a tension spring, this tension spring comprise a position point in the stage casing, two telescopic sections are positioned at these two ends, location division and two connection terminals are positioned at this two telescopic sections end, this tension spring is positioned in this lock bolt interlock group with this location division, with these second interlock plate both sides of this two connection terminals winding.
20. the interlock controlling organization of electronic lock as claimed in claim 10 is characterized in that, this interlock plate group has two tension springs, and this two tension springs, one end is positioned on this lock bolt interlock group, and the other end connects this second interlock plate both sides respectively.
CN2007101952312A 2007-11-01 2007-12-04 Interlock controlling mechanism of electronic lock and clutch control device thereof Expired - Fee Related CN101424140B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2007101952312A CN101424140B (en) 2007-11-01 2007-12-04 Interlock controlling mechanism of electronic lock and clutch control device thereof

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
CN200710165154 2007-11-01
CN200710165154.6 2007-11-01
CN2007101952312A CN101424140B (en) 2007-11-01 2007-12-04 Interlock controlling mechanism of electronic lock and clutch control device thereof

Publications (2)

Publication Number Publication Date
CN101424140A CN101424140A (en) 2009-05-06
CN101424140B true CN101424140B (en) 2011-12-21

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CN2007101952312A Expired - Fee Related CN101424140B (en) 2007-11-01 2007-12-04 Interlock controlling mechanism of electronic lock and clutch control device thereof

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI560350B (en) 2015-05-22 2016-12-01 Taiwan Fu Hsing Ind Co Ltd Clutch driving module of lock set
TWI747745B (en) * 2021-02-23 2021-11-21 維夫拉克股份有限公司 Electronic lock and its clutch device

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4073527A (en) * 1977-01-12 1978-02-14 Schlage Lock Company Electrically controlled door lock
CN2182226Y (en) * 1993-09-22 1994-11-09 何益波 Electronic cipher lock
CN2259463Y (en) * 1996-02-09 1997-08-13 潘洪源 Electromechanical two-purpose lock
CN2467694Y (en) * 2001-02-28 2001-12-26 煊铭科技股份有限公司 Electronic lock

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4073527A (en) * 1977-01-12 1978-02-14 Schlage Lock Company Electrically controlled door lock
CN2182226Y (en) * 1993-09-22 1994-11-09 何益波 Electronic cipher lock
CN2259463Y (en) * 1996-02-09 1997-08-13 潘洪源 Electromechanical two-purpose lock
CN2467694Y (en) * 2001-02-28 2001-12-26 煊铭科技股份有限公司 Electronic lock

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