CN1038545C - Flat cable connector - Google Patents

Flat cable connector Download PDF

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Publication number
CN1038545C
CN1038545C CN94117016A CN94117016A CN1038545C CN 1038545 C CN1038545 C CN 1038545C CN 94117016 A CN94117016 A CN 94117016A CN 94117016 A CN94117016 A CN 94117016A CN 1038545 C CN1038545 C CN 1038545C
Authority
CN
China
Prior art keywords
flat cable
ultrasonic
contact portion
contact
insulating case
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
CN94117016A
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Chinese (zh)
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CN1109646A (en
Inventor
谷川淳一
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.)
Whitaker LLC
Original Assignee
Whitaker LLC
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority claimed from JP1993060362U external-priority patent/JP2575272Y2/en
Application filed by Whitaker LLC filed Critical Whitaker LLC
Publication of CN1109646A publication Critical patent/CN1109646A/en
Application granted granted Critical
Publication of CN1038545C publication Critical patent/CN1038545C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Coupling Device And Connection With Printed Circuit (AREA)
  • Multi-Conductor Connections (AREA)

Abstract

To obtain a good picture by automatically adjusting at least one of the amplification degree of a reception circuit, dynamic range, and STC according to the diagnostic condition at the time of starting operation. An ultrasonic endoscope 1 inputs data such as the frequency, type of endoscope, vibrator focusing position or the like through an ultrasonic endoscope data reading circuit 7 of an ultrasonic observation device 2 to a picture quality adjustment state storage memory 4 before applying the power. It communicates with a host computer (database) 12 based on the data and receives the picture quality adjustment data corresponding to various kinds of symptoms and types of probe for the adjustment to the picture quality most suitable for the ultrasonic endoscope. A CPU 13 automatically adjusts the amplification degree of a reception signal processing circuit 3, dynamic range and STC based on the picture quality adjustment data. The ultrasonic endoscope 1 inputs an ultrasonic echo signal to a reception signal processing circuit 3 at the time of starting the operation and displays the ultrasonic picture on a TV monitor through the reception signal processing circuit 3, A/D converter 4, and DSC5.

Description

Flat cable connector
The present invention relates to a kind of electric connector, particularly a kind of flat cable connector, it has a plurality of contacts that are connected with flexible flat cable (FFC or FPC) end.
FFC is provided with a plurality of conductors to high-density, is rich in flexiblely, and good installation and operability is arranged.This is because the connector that connects with such FFC also is widely used in the electronic transaction machines such as tame electrical article such as compact disk and gamma camera, photocopier and facsimile machine with FFC.
As FFC connector in the past, for example open the motion that has just disclosed a kind of such connector in the clear 64-13682 communique real.This FFC in the past is to be connected and fixed between inwall with the superimposed insertion crossbeam shape contact in end of the tongue piece of slide block and FFC and insulating case with connector usually.
So with in the connector, owing to use slide block, must make volume become big at so in the past FFC, component number increases, thereby has such problem: promptly can not reach the requirement that will make the e-machine miniaturization recently, also be difficult to reduce cost.And because use slide block also there are the following problems: promptly because FFC usable zero insertion force or low insertion force insert, make FFC only depend on the elasticity of crossbeam shape contact to keep, its confining force is very little.
The objective of the invention is to solve in the past FFC with the problems referred to above that connector exists, providing a kind of and be easy to miniaturization, do not increase amount of parts just can be with the flat cable connector of high confining force maintenance FFC.
The invention provides a kind of flat cable connector, an end that is used for having the flat cable of a plurality of and row conductor inserts elongated the insertions mouth of insulating case, it is characterized in that: described insulating case is provided with many to groove along described elongated insertion mouth, corresponding with the conductor of flat cable; Each of a plurality of contacts has the contact portion that is " J " font substantially by die-cut formation, stabilizer and weldering tail, described contact portion and described stabilizer insert in the described a pair of groove, the elongated flat cable that inserts mouthful that inserts described insulating case is held by the free end of the insulation wall between the described a pair of groove and described " J " font contact portion, to form electrically connecting and mechanical attachment between described contact and the described flat cable.
With the power of drawing direction be added to insert that flat cable inserts mouthful and with flat cable that contact contact on after, the contact portion that is " J " shape substantially of contact is inclined to insulating case inwall one side of its rear side, the inwall combination promptly contacts therewith.Because flat cable bears the resistance that increases with being the friction of " J " shape contact portion substantially from the cover inwall, thereby the confining force of flat cable is increased significantly.
Preferred embodiment to flat cable connector of the present invention is elaborated below with reference to accompanying drawings.
Fig. 1 is a kind of embodiment of flat cable connector of the present invention, and wherein (A) is front view, (B) is bottom view, (C) is the sectional view along C-C line in (B).
To be expression insert intermediateness in the connector process of Fig. 1 with flat cable to Fig. 2, with the identical sectional view of Fig. 1 (c).
Fig. 3 is expression sectional view identical with Fig. 2 when being added to pulling capacity on the flat cable in the connector that inserts among Fig. 1.
Fig. 4 is the sectional view identical with Fig. 2 of expression another embodiment of flat cable connector of the present invention.
As seen from Figure 1, flat cable (calling FFC in the following text) comprises the insulating case 10 that is roughly cuboid with connector 1 and along a plurality of (being 10 in the present embodiment) contact 40 of vertical configuration of insulating case 10.On the one side 12 of insulating case 10, longitudinally form flat cable and insert mouth 14.And it is mouthfuls 14 interconnected that first through hole 18 that one side 12 and another side 16 connect and second through hole 20 are inserted therewith with the spacing of for example 1.25mm.Inserting mouth 14 has the conical surface 22,24,26 on its one side 12, FFC is inserted easily.On two jiaos an of end of insulating case 10, form and differentiate the conical surface 28,28 that polarity is used.
Contact 40 comprises: by the bottom 42 upwards contact portion 44 that is " J " shape substantially and the stabilizer 46 of elongation, 42 downwards or the weldering tail 48 (48 ') of side elongation from the bottom.Contact portion 44 and stabilizer 46 are contained in respectively in the 1st through hole 18 and the 2nd through hole 20 of insulating case 10, and install across the 1st and the 2nd through hole 18,20 bottom 42.On bottom 42, form a pair of projection 50,50, be pressed into the inwall of insulating case 10 and combine.Forming bar shaped projection 52 on stabilizer 46, is the direction of stretching out of contact portion 44 by the state that decides contact 40 that contacts of the inwall with the 2nd through hole 20.The free end 54 that is the contact portion 44 of " J " shape is substantially advanced by leaps and bounds to insert in mouthfuls 14 and is constituted and FFC contacts.In addition, contact 40 and adjacent contacts 40 ' contact portion free end 54,54 ' be configured in different position (interconnected) along the direction of insertion of FFC.Thereby the insertion force of FFC is reduced.And adjacent contacts 40,40 ' weldering tail 48,48 ' also interconnected, this just easily forms and welds substrate weld zone (not shown) that tail 48,48 ' solder are connected.
As shown in Figure 2, after the elasticity that overcomes substantially the contact portion 44 that is " J " shape was inserted FFC 4 in mouthfuls 14, contact portion 44 bent towards inwall 30.When inserting this FFC, to note not making the back side 56 of contact portion 44 to contact with the inwall 30 of first through hole 18.Because the back side 56 does not contact with inwall 30 and contact portion free end 54,54 ' is interconnected, FFC4 can use than low insertion force and insert in the mouth 14.Also, can not damage the conductor 6 of FFC4 owing on the contact portion free end that contacts with the conductor 6 of FFC4 54,54 ', slightly form arc surface.
In Fig. 3, after being added to the external force F that FFC4 is gone out from connector 1 drawing on the FFC4, the free end 54 of the contact portion 44 of contact 40 rotates to counter-clockwise direction, contact portion 44 is crooked to a side of the inwall 30 of the 1st through hole 18 simultaneously, and promptly the back side 56 of contact portion 44 contacts with inwall 30.Because make contact portion 44 bear resistance from inwall 30 by this inwall 30 and contacting of the back side 56, so another strong frictional engagement of inwall Final 32 of FFC4 and contact portion free end 54 and first through hole 18, FFC4 is difficult to break away from from connector 1.Thereby FFC4 may be increased significantly to the confining force or the anti-pull strength of connector 1.
Fig. 4 illustrates another embodiment of flat cable connector of the present invention.This flat cable connector 1 ' contact 60, its free end 64 is different with contact 40, other parts are then identical with contact 40.In following explanation the part identical with contact 40 use with contact 40 in identical symbol.Free end 64 hangs down longer than free end 54 to bottom 42.Become projection 65 with free end 54 corresponding parts, FFC 4 inserts this projection 65 of back and electrically contacts with conductor 6.The free end 64 and contact portion 44 residing states of contact 60 when Fig. 4 illustrates FFC4 and do not insert.
This free end 64 that has prolonged is to protect the contact portion of contact 60 to be provided with again for the stronger while of confining force that makes FFC4.The free end 54 of contact 40 can only remain to the confining force of FFC4 to a certain degree among the last embodiment, and in a single day the pulling capacity that adds to FFC4 goes beyond the limit, and free end 54 just is out of shape to the drawing direction.That is to say that free end 54 will reverse upward, outstanding from the one side 12 of insulating case 10 to foreign side.Contact 60 does not deform as mentioned above, thereby can continue to keep very strong confining force because free end 64 is arranged.That is to say that in case the back side 56 of contact 60 contacts with inwall 30, projection 65 is pulled to the top of beginning in Fig. 4 to the drawing direction and moves, then the contact-making surface 66 of free end 64 just clockwise rotates with FFC4 and contacts.As a result, stoped projection 65 to be moved upward, made FFC4 continue to remain in the insulating case 10 simultaneously.
More than flat cable connector of the present invention is had been described in detail, but the present invention is not limited to the above embodiments, may carry out various distortion and change certainly as required.For example, the weldering tail of connector both can extend downwards, also can extend to opposite side.And the weldering also available SMT of tail (mounted on surface) type replaces the DIP type among the embodiment.The pillar that should be installed in the substrate orientation on the insulating case in order to give can also be set.Can also be willing to that disclosed key member adds on the insulating case in flat 4-23928 number with real.
As according to flat cable connector of the present invention, do not need the additional zero parts just can obtain keeping the flat cable connector of flat cable with high confining force.And compare with flat cable connector in the past, because do not need slide block, reduce and be easy to reduce production costs and the flat cable connector of miniaturization so can obtain number of components.

Claims (1)

1. flat cable connector, an end that is used for having the flat cable of a plurality of and row conductor inserts elongated the insertions mouth of insulating case, it is characterized in that:
Described insulating case is provided with many to groove along described elongated insertion mouth, corresponding with the conductor of flat cable;
Each of a plurality of contacts has the contact portion that is " J " font substantially by die-cut formation, stabilizer and weldering tail, described contact portion and described stabilizer insert in the described a pair of groove, the elongated flat cable that inserts mouthful that inserts described insulating case is held by the free end of the insulation wall between the described a pair of groove and described " J " font contact portion, to form electrically connecting and mechanical attachment between described contact and the described flat cable.
CN94117016A 1993-10-14 1994-10-11 Flat cable connector Expired - Fee Related CN1038545C (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP1993060362U JP2575272Y2 (en) 1993-01-27 1993-10-14 Flat cable connector
JP060362/93 1993-10-14

Publications (2)

Publication Number Publication Date
CN1109646A CN1109646A (en) 1995-10-04
CN1038545C true CN1038545C (en) 1998-05-27

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN94117016A Expired - Fee Related CN1038545C (en) 1993-10-14 1994-10-11 Flat cable connector

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KR (1) KR100229999B1 (en)
CN (1) CN1038545C (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6074684B2 (en) * 2012-06-22 2017-02-08 本多通信工業株式会社 Pressure welding electrical connector
JP6074711B2 (en) * 2013-09-10 2017-02-08 パナソニックIpマネジメント株式会社 Cable holding member, electrical connection device, connector device

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0053904A2 (en) * 1980-12-10 1982-06-16 AMP INCORPORATED (a New Jersey corporation) A connector for flat cable
DE4023072A1 (en) * 1990-07-20 1992-01-23 Lumberg Karl Gmbh & Co ELECTRIC CONNECTOR
US5110305A (en) * 1991-03-11 1992-05-05 Molex Incorporated Shroud device for electrical conductors

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0053904A2 (en) * 1980-12-10 1982-06-16 AMP INCORPORATED (a New Jersey corporation) A connector for flat cable
DE4023072A1 (en) * 1990-07-20 1992-01-23 Lumberg Karl Gmbh & Co ELECTRIC CONNECTOR
US5110305A (en) * 1991-03-11 1992-05-05 Molex Incorporated Shroud device for electrical conductors

Also Published As

Publication number Publication date
CN1109646A (en) 1995-10-04
KR100229999B1 (en) 1999-11-15

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