Electric connector
By employing a 2,2-dipropane coating and terminal extension design in the connector, combined with the precise fit of the alignment plate, the problems of terminal height orientation deviation and high temperature resistance and oxidation resistance are solved, achieving a highly reliable and long-life electrical connector design.
Patent Information
- Application Number
- CN202520460572.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-17
AI Technical Summary
Existing connectors are prone to developing rough burrs on the front end of the terminals due to manufacturing process limitations, which makes it impossible to correct height deviations. Furthermore, the housing has poor high-temperature resistance, wear resistance, and oxidation resistance, affecting the installation reliability and service life of the connector.
An insulating shell covered with a 2,2-dipropane coating is used, and the terminal design incorporates extensions and bends. Combined with the precise fit of the alignment plate, the terminal is corrected and positioned through the terminal storage holes on the alignment plate, ensuring a stable connection between the terminal and the wiring substrate. At the same time, the design of the alignment plate and mounting groove enables precise positioning in the XYZ directions.
It achieves a stable connection between the terminal and the wiring substrate, improving the reliability and service life of the connector, and has excellent wear resistance and oxidation resistance, especially in high-temperature environments.
Smart Images

Figure CN223884674U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of connector, concretely is a kind of electric connector. BACKGROUND
[0002] Connector is generally composed of shell and terminal. Terminal is received in the shell, and is connected with the cable. In recent years, as cable, FFC (flexible flat cable) and other flat shape cable are widely used;
[0003] As this type of connector, the shell bottom surface contacts with the circuit board, the contact point (Contact) extends towards the circuit board, and is fixed and kept in position by alignment plate to achieve the use effect;
[0004] The existing connector can correct the deviation of the contact point (terminal) in the width direction by the alignment plate. However, due to the limitation of manufacturing process, the front end of the contact point (terminal) is usually a broken surface, which causes rough burr surface on the front end surface, and the deviation of the contact point (terminal) in the height direction cannot be corrected by the alignment plate. Therefore, when the circuit board is mounted on the shell, the front end of the contact point (terminal) may not be correctly mated with the connecting part of the circuit board, so that there is a risk of poor installation;
[0005] Secondly, the shell is made of pure insulating resin material, which has poor high temperature resistance and poor wear resistance and oxidation resistance, thereby reducing the service life of the product as a whole. INVENTION CONTENTS
[0006] The present application aims to provide a technical solution to solve the problems raised in the background art.
[0007] To achieve the above-mentioned purpose, the present application provides the following technical solution:
[0008] An electric connector includes a shell having insulating property;
[0009] A terminal received in the shell and connected with the end of the wiring base body having conductive property;
[0010] An alignment plate installed on the shell and having a terminal receiving hole for inserting the front end of the terminal;
[0011] The terminal includes: a terminal body extending towards the conductor part along the surface of the wiring base body;
[0012] An extension part extending from the terminal body to a direction crossing the surface of the wiring base body and away from it; the extension part is inserted into the terminal receiving hole of the alignment plate;
[0013] The shell is covered with 2,2 bispropane coating.
[0014] Preferably, the terminal is provided with a bent portion between the terminal body and the extension portion, and the bent portion is in contact with the conductor portion of the wiring substrate.
[0015] Preferably, the terminal receiving hole is provided with an enlarged diameter portion at an entrance portion into which the front end portion of the terminal is inserted.
[0016] Preferably, the alignment plate has an elongated structure extending in the width direction of the housing, each side portion of the housing in the width direction is provided with a pair of mounting grooves extending in a direction intersecting the surface of the wiring substrate, and each end portion of the alignment plate in the long axis direction is fitted into the pair of mounting grooves of the alignment plate.
[0017] Preferably, the pair of mounting grooves is provided with a retaining protrusion for positioning each end portion of the alignment plate in the long axis direction.
[0018] In summary, the technical effects and advantages of the utility model are as follows:
[0019] The electrical connector of the utility model is provided with an extension portion extending in the intersecting direction of the surface of the wiring substrate on the terminal body, and the extension portion is inserted into the terminal receiving hole of the alignment plate, so that the extension portion of the terminal can be corrected by the alignment plate and positioned to the predetermined position and in contact with the wiring substrate. Thus, stable connection of the terminal and the wiring substrate can be realized, and the reliability of the connector is improved.
[0020] 2,2 bispropane coating is 2,2 bis (4-epoxy phenyl) propane (GLYMO-bisphenol A) coating, which is covered on the inner or outer surface of the shell, can make it have excellent high temperature resistance (200 DEG C-250 DEG C), and also has wear resistance and oxidation resistance, thereby improving the service life of the product. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiment or prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0022] Figure 1 It is a perspective view of the utility model.
[0023] Figure 2 It is an explosion schematic view of the utility model.
[0024] Figure 3 It is an alignment plate structure view of the utility model.
[0025] Figure 4The partial plan view of the alignment plate mounted on the local plane of the shell.
[0026] Figure 5 The connection state cross-sectional view of the wire connecting part of the terminal and the wiring base conductor part.
[0027] Figure 6 The assembly flow schematic view of the terminal and the alignment plate.
[0028] Figure 7 The another assembly flow schematic view of the terminal and the alignment plate.
[0029] Figure 8 The another assembly flow schematic view of the terminal and the alignment plate.
[0030] Figure 9 The another assembly flow schematic view of the terminal and the alignment plate. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.
[0032] Please refer to Figures 1-9 :
[0033] Figure 1 The structure diagram of the wire harness (Wire Harness, WH) suitable for the embodiment. Figure 2 The exploded structure view of the wire harness, showing its components. As shown in the figure, the wire harness WH of the embodiment is composed of the following parts: the wiring base W, the first connector 11, the second connector 12; the wire harness WH is used for connecting the vehicle-mounted equipment to realize power supply and signal transmission. Through the first connector 11 and the second connector 12, the wiring base W is connected to different equipment. The focus of the present application is the first connector 11, and the second connector 12 serves as its detachable docking connector.
[0034] For ease of description, the following coordinate directions are defined:
[0035] X direction: the direction (front-rear direction) in which the first connector 11 and the second connector 12 are connected; the X direction has a certain length;
[0036] Y direction: width direction, perpendicular to the X direction. The Y direction has a certain width;
[0037] Z direction: height direction, perpendicular to both X and Y directions; Z direction has a certain thickness.
[0038] The wiring base W is a conductive component, which extends linearly along the X direction and maintains the same diameter in the X direction. In this embodiment, the wiring base W is a flat cable, such as:
[0039] FPC (Flexible Printed Circuit, flexible printed circuit board)
[0040] Other flexible printed wiring boards (Flexible Printed Wiring Board)
[0041] FPC is composed of two main materials: (1) an insulating flexible base film (polyimide); (2) a conductive metal (copper foil, etc.) for forming a circuit.
[0042] The end portion is provided with a fixing hole Wa penetrating in the Z direction, located on both sides of the wiring base W; W1 (upper surface) exposes the conductor part Wb for electrical connection; W2 (lower surface) has no conductor part and does not participate in electrical connection.
[0043] The first connector 11 is composed of: a first housing 21 made of insulating synthetic resin material, which houses and fixes the first terminal 22; a rectangular structure extending in the X direction; provided with a plurality of terminal cavities 21a for fixing the terminal. The terminal connecting part 22a of the first terminal 22 is connected with the second terminal 24; the wiring connecting part 22b is connected with the conductor part Wb of the wiring base W; the terminal 22 is a female terminal, i.e. a groove type terminal, which is matched with the male terminal of the second connector 12.
[0044] The first housing 21 further comprises: a fixing part 21b provided on both sides in the Y direction; a peg Peg21c provided in the Z direction for assembly; a locking buckle 21d provided at one end in the Z direction for fixing the connection with the second connector 12.
[0045] The connection mode of the first terminal 22 with the wiring base W is:
[0046] (1) The first terminal 22 is connected with the wiring base W through the wiring connecting part 22b;
[0047] (2) The first terminal 22 is inserted into the terminal cavity 21a of the first housing 21 and is fixed;
[0048] (3) The wiring base W is inserted into the first connector 11 from the X direction and is connected with the first terminal 22;
[0049] (4) The peg Peg21c in the Z direction is inserted into the fixing hole Wa of the wiring base W to realize mechanical fixation;
[0050] (5) The wiring connecting portion 22b of the first terminal 22 contacts the conductor portion Wb of the wiring base W, and electrical connection is achieved.
[0051] The second connector 12 is composed of the following main parts: a second housing 23 made of an insulating synthetic resin material, a second terminal 24, the second housing 23 material: a square cylindrical structure extending in the X direction. Z direction one end (such as Figure 2 the upper surface) is provided with a locking portion 23a;
[0052] When the first connector 11 and the second connector 12 are connected, the locking portion 23a of the second housing 23 will engage the locking buckle 21d of the first housing 21. The male terminal of the second terminal 24 is used to mate with the terminal connecting portion 22a of the first terminal 22; the terminal connecting portion 24a: for electrical connection with the first terminal 22; the wiring connecting portion 24b: the other end is used for electrical connection with the wire or PCB; the second terminal 24 is inserted into the second housing 23 and remains fixed, and its terminal connecting portion 24a is exposed from the second housing 23 to connect the first terminal 22. Connection method:
[0053] (1) The first connector 11 can be inserted into the second connector 12 from the other side (left side) of the X direction; Figure 2
[0054] (2) The end of the first connector 11 (including the locking buckle 21d) is embedded in the second housing 23, and is fixed by the locking portion 23a of the second housing 23;
[0055] (3) The terminal connecting portion 22a of the first terminal 22 is in electrical contact with the terminal connecting portion 24a of the second terminal 24, and electrical connection is achieved.
[0056] The alignment plate 13 is made of an insulating synthetic resin material and is used to ensure the correct alignment of the terminals and prevent poor contact. It is mounted and fixed to the first housing 21; it is provided with terminal receiving holes 31, and also provided with wiring connecting portions 22b for inserting the first terminal 22; the number of terminal receiving holes 31 corresponds to the number of first terminals 22; it is long strip-shaped (extending in the Y direction), which ensures that multiple terminals can be arranged correctly; there is uniform spacing between the terminal receiving holes 31 to ensure that the terminals are arranged in order.
[0057] The wiring connecting portion 22b of the first terminal 22 is composed of the following parts: a terminal body 41: extending along the surface (W1) of the wiring base W to the conductor portion Wb; an extension portion 42: extending in a nearly vertical direction from the terminal body 41 and maintaining a certain distance from the wiring base W; a bending portion 43: located between the terminal body 41 and the extension portion 42, and bent at an angle of about 90°, and its outer peripheral surface is in contact with the conductor portion Wb of the wiring base W.
[0058] The insertion of the terminal receiving hole 31 can ensure that the terminals 22 are arranged at a standard interval and avoid deviation; the precise positioning of the wiring connection part 22b of the first terminal 22 can ensure that it correctly contacts the conductor part Wb of the wiring base W; the correction of the shape of the terminal can prevent deviation caused by production tolerance; and the reliable contact between the terminal and the conductor part Wb can improve the connection stability.
[0059] The installation mode of the alignment plate 13 is as follows:
[0060] (1) First, the alignment plate 13 is fixed to the first housing 21 through the installation slot and cooperates with the terminal receiving hole 31 to accurately align the terminal 22,
[0061] (2) The alignment plate 13 is inserted into the installation slot 51, 52 of the first housing 21 through the buckle wing part 32, 33;
[0062] (3) Slowly press the alignment plate 13 in the direction of the installation slot to finally completely fit in place;
[0063] (4) Ensure that the terminal wiring connection part 22b enters the terminal receiving hole 31 and is aligned and corrected.
[0064] The alignment plate 13 is in an elongated plate structure along the Y direction (width direction), and the terminal receiving hole 31 penetrates the Z direction (thickness direction); it is distributed at intervals along the Y direction and is adapted to the wiring connection part 22b of the plurality of first terminals 22; the buckle wing part 32, 33 is located at both ends of the Y direction and is formed by shortening the length in the X direction; specifically, the buckle wing part 32 is located on one side of the X direction, and the buckle wing part 33 is located on the other side.
[0065] The first housing 21 provides the installation slot of the alignment plate 13: the installation slot 51, 52 is located at both sides of the Y direction; the upper side (upper side) in the Z direction is open, and the lower side (lower side) in the Z direction is closed by the bottom 51a, 52a; specifically, the installation slot 51 is located on one side of the X direction, and the installation slot 52 is located on the other side; the alignment plate 13 is fixed by inserting the buckle wing part 32, 33 into the installation slot 51, 52, and the installation slot 51, 52 is formed by a groove structure; the inner wall is provided with a plurality of (3 in this embodiment) retaining protrusions 53, 54, 55; the retaining protrusions 53, 54, 55 are located at the lower end of the installation slot 51, 52; the protrusions are in a semispherical shape and are located at different positions; the buckle wing part 32, 33 contacts the protrusions 53, 54, 55 to realize XYZ three-way positioning:
[0066] Z direction: the buckle wing part 32, 33 touches the bottom 51a, 52a for fixation;
[0067] Y direction: the buckle wing part 32, 33 touches the retaining protrusion 53 for positioning;
[0068] X direction: the buckle wing part 32, 33 touches the retaining protrusions 54, 55 for positioning.
[0069] The alignment plate 13 functions as follows: the wiring connection portion 22b of the first terminal 22 is inserted into the terminal receiving hole 31; the extension portion 42 of the first terminal 22 is tapered (narrow at the beginning and wide at the end), facilitating insertion; the entrance of the terminal receiving hole 31 is provided with a diameter expansion portion 34, which is conical, facilitating smooth entry of the terminal. The installation process of the alignment plate 13 is as follows:
[0070] (1) The first terminal 22 is first fixed in the first housing 21;
[0071] (2) The wiring substrate W is connected to the first housing 21;
[0072] (3) The alignment plate 13 is inserted into the installation slot 51, 52 through the buckle wing portion 32, 33;
[0073] (4) Slowly press the alignment plate 13 in the direction of the installation slot:
[0074] (5) The wiring connection portion 22b of the first terminal 22 enters the terminal receiving hole 31;
[0075] (6) The extension portion 42 extends from the terminal body 41 and is positioned along the terminal receiving hole 31;
[0076] (7) The bending portion 43 ensures stable contact of the conductor portion Wb.
[0077] In summary, the utility model provides a kind of high-precision, high-reliability electric connector structure, by the precise cooperation of alignment plate 13 and terminal receiving hole 31, realize the accurate guidance, shape correction and firm fixation of terminal in assembly process, effectively promote the insertion force control and long-term use stability of terminal.First, terminal adopts the combined design of terminal body 41, extension 42 and bending part 43, wherein extension 42 forms nearly 90 ° angle with terminal body 41, and is inserted into terminal receiving hole 31, ensure the standard positioning of terminal, avoid the problem of electrical contact caused by assembly deviation.Second, to overcome the terminal insertion force variation caused by manufacturing tolerance, the utility model is provided with expansion section 34 at the entrance of terminal receiving hole 31, so that terminal extension 42 can smoothly enter with the guidance of expansion section 34 even if there is angle error during insertion, and then be limited by the physical shape constraint of terminal receiving hole 31 during insertion, automatically complete the shape correction and accurate alignment of terminal extension 42, ensure that the terminal connection part can stably contact the conductor part on the wiring, and ensure efficient and stable electrical connection.In addition, to further improve the physical contact reliability of terminal and wiring, the utility model adopts the cooperation design of alignment plate mounting groove and retaining protrusion, sets a pair of mounting grooves 51, 52 in the first housing, which are symmetrically distributed along Y direction, after the buckle wing part 32, 33 of alignment plate is inserted into the mounting groove, it is limited by retaining protrusion 53, 54, 5 to accurately position in XYZ direction, to ensure that there is no looseness, misplacement or deformation of terminal caused by external force after assembly.At the same end of terminal receiving hole, terminal applies elastic pressure to wiring conductor part Wb through bending part 43, forms mechanical stable and long-term reliable electrical contact, prevents the problem of poor contact between terminal and wiring caused by external vibration, thermal expansion or mechanical stress during long-term use.In summary, the utility model improves the assembly accuracy, electrical connection stability, long-term use reliability and batch production consistency of terminal through terminal shape optimization, expansion guide design, accurate positioning of alignment plate and mechanical stable support, and is suitable for the design of high-density, small-size and high-reliability connector, especially suitable for the field of high-precision electrical connection required by vehicle-mounted electronics, industrial control, medical equipment and consumer electronics.
[0078] 2,2 bispropane coating is 2,2 bis (4-epoxy phenyl) propane (GLYMO-bisphenol A) coating, which is covered on the inner or outer surface of the shell 21, can make it have excellent high temperature resistance (200-250 DEG C), and also has wear resistance and oxidation resistance, thereby improving the service life of the product.
[0079] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.
Claims
1. An electrical connector, characterized by: An outer case having insulation; A terminal housed inside the outer case and connected to an end portion of a wiring base having conductivity; An alignment plate mounted to the outer case and having a terminal housing hole for inserting a front end portion of the terminal; The terminal includes a terminal body extending toward a conductor portion along a surface of the wiring base; An extension portion extending from the terminal body in a direction crossing the surface of the wiring base and away therefrom; the extension portion is inserted into the terminal housing hole of the alignment plate; The outer case is covered with a 2,2 bispropane coating.
2. An electrical connector as claimed in claim 1, wherein: The terminal is provided with a bent portion between the terminal body and the extension portion, and the bent portion is in contact with the conductor portion of the wiring base.
3. An electrical connector as claimed in claim 1 or 2, wherein: The terminal housing hole is provided with an enlarged diameter portion at an entrance portion where the front end portion of the terminal is inserted.
4. An electrical connector as claimed in claim 1, wherein: The alignment plate has an elongated structure extending in a width direction of the outer case, the outer case is provided with a pair of mounting grooves extending in a direction crossing the surface of the wiring base at each side portion in the width direction, and each end portion of the alignment plate in the long axis direction is fitted into the pair of mounting grooves of the alignment plate.
5. An electrical connector as claimed in claim 4, wherein: The pair of mounting grooves is provided with a retaining protrusion for positioning each end portion of the alignment plate in the long axis direction.