一种模组顶出机构及包括其的误码分析仪机箱
By leveraging the locking components and pushing parts of the module ejection mechanism, the problem of difficult board or module assembly/disassembly is solved, enabling rapid locking, unlocking, and automatic ejection, simplifying the operation process, and improving the convenience and efficiency of assembly/disassembly.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- STELIGHT INSTR CO LTD
- Filing Date
- 2025-06-20
- Publication Date
- 2026-07-17
AI Technical Summary
In existing technologies, the disassembly and assembly of boards or modules are difficult, especially when there are many connectors or high clamping forces. This requires tools or affects the aesthetics and increases maintenance complexity.
Design a module ejection mechanism, including a locking component and a pusher. The locking component enables quick locking and unlocking of the module through a pressing part and a retractable locking part, while the pusher provides ejection force, simplifying the disassembly process.
It enables quick locking, unlocking, and automatic ejection of the module, simplifying the disassembly process, improving operational efficiency, and ensuring reliable fixation of the module during use to prevent accidental operation.
Smart Images

Figure CN224521311U_ABST
Abstract
Claims
1. A modular ejection mechanism, characterized in that, It is disposed in the chassis (100) for ejecting the module (200); the module ejection mechanism includes: A locking assembly (41) is disposed inside the module (200) and includes a pressing part and a retractable locking part. The locking part can move from a locked position to an unlocked position under the action of the pressing part. The locking part can cooperate with the chassis (100) in the locked position and can disengage from the chassis (100) in the unlocked position. A pusher (46) is disposed on the side of the chassis (100) away from the locking assembly (41) and abuts against the module (200) to provide a push force to the module (200) when the locking assembly (41) is in the unlocked state.
2. The mold ejection mechanism of claim 1, wherein The pressing part includes a pressing member (42), and the locking part includes a locking tongue (43) and an elastic member (44). The latch (43) has an extended end (431) and a movable end (432). One end of the pressing member (42) is disposed on the outer surface of the module (200), and the other end is disposed inside the module (200) to contact the movable end (432) of the latch (43). The movement of the pressing member (42) can drive the extended end (431) of the latch (43) to retract relative to the chassis (100) to release the connection between the module (200) and the chassis (100). The elastic member (44) is disposed on the movable end (432) of the latch (43). The compression direction of the elastic member (44) is the same as the retraction direction of the latch (43). The elastic member (44) can provide the restoring force for the extended end (431) of the latch (43) to be embedded into the chassis (100). The pusher (46) can provide push force to the module (200) when the latch (43) retracts.
3. The mold ejection mechanism of claim 2, wherein The moving end (432) of the latch (43) has a guide slope (433), and the pressing member (42) has a pushing slope (421) at one end corresponding to the guide slope (433). The guide slope (433) and the pushing slope (421) are in contact, so that the pressing member (42) can move on the guide slope (433) through the pushing slope (421) to drive the latch (43) to retract.
4. The mold ejection mechanism according to claim 2 or 3, characterized in that, The locking assembly (41) includes a lock box (45), the interior of which is provided with a moving groove (451) and an unlocking groove (452). The moving groove (451) is used to accommodate the pressing member (42), and the unlocking groove (452) is used to accommodate the locking tongue (43). The extending direction of the moving groove (451) and the extending direction of the unlocking groove (452) are perpendicular to each other.
5. The modular ejection mechanism of claim 2, wherein, The pressing component (42) includes a button (47), a pusher (48), and a connector (471). The button (47) and the pusher (48) are connected by the connector (471), and the pusher (48) is sandwiched between the button (47) and the latch (43). The button (47) can move by pushing the pusher (48), thereby causing the latch (43) to retract relative to the chassis (100). The button (47) has a rod-shaped structure; the button (47) can drive the pusher (48) to move relative to the button (47) through the connector (471), so that a gap is created between the pusher (48) and the button (47).
6. The module ejection mechanism according to claim 1, characterized in that, The number of locking components (41) is an even number. The multiple locking components (41) are evenly and symmetrically arranged on both sides of the ejection direction of the module (200), or the multiple locking components (41) are evenly arranged in the ejection direction of the module (200).
7. The modular ejection mechanism of claim 1, wherein, It also includes a guide component (49) for providing guidance for the insertion and ejection of the module (200), the guide component (49) comprising: Guide members (491) are provided on both sides of the module (200) along its ejection direction; A guide structure (492) is provided on the chassis (100) at a position corresponding to the guide member (491) to be adapted to the guide member (491).
8. The mold ejection mechanism of claim 7, wherein, The guide member (491) is a raised edge track, and the guide structure (492) is a guide groove. The extension direction of the guide groove is the same as the ejection direction of the module (200). The guide member (491) can be embedded in the guide groove and drive the module (200) to move along the setting direction of the guide groove.
9. The modular ejection mechanism of claim 2, wherein, The number of the pusher (46) is one, and the pusher (46) is arranged on the axis of the push-out direction of the module (200); Alternatively, there may be multiple pushers (46), which are evenly arranged on the chassis (100) such that the push-out force of the multiple pushers (46) is greater than the clamping force of the module (200) and the board-to-board connector (300).
10. An error code analyzer chassis, characterized by, It includes: The module (200), board-to-board connector (300), and module ejection mechanism (400) as described in any one of claims 1-9, wherein the module (200) is communicatively connected to the bit error analyzer chassis (100) via the board-to-board connector (300), and the module ejection mechanism (400) is capable of ejecting the module (200) to disconnect the module (200) from the board-to-board connector (300).