一种硬盘托架及其网络附加存储设备
The unlocking process of the hard drive tray is simplified by using a rotating unlocking component and a self-locking mechanism, which solves the problem of the complex structure of existing hard drive trays and achieves ease of use and cost reduction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN GREEN CONNECTION TECH CO LTD
- Filing Date
- 2025-06-16
- Publication Date
- 2026-07-17
AI Technical Summary
Existing hard drive tray locking mechanisms require rotating the unlocking component, pressing the unlocking component, and unlocking the drive component to activate the locking tongue, resulting in a complex overall structure that is inconvenient to use and costly.
It adopts a rotating unlocking component, an unlocking drive component, and a self-locking mechanism. After the unlocking component is rotated to unlock, the bolt can be unlocked and locked simply by pressing the unlocking drive component, which simplifies the unlocking action.
It enables simple unlocking and locking of hard drive trays, making them easy to use and reducing assembly complexity and cost.
Smart Images

Figure CN224519503U_ABST
Abstract
Claims
1. A hard disk carrier, characterized by, The device includes a tray body, a rotating unlocking component, an unlocking drive component, a self-locking mechanism, a locking tongue, and a front shell disposed at the front end of the hard disk tray; one end of the unlocking drive component is rotatably mounted in the front shell, and the locking tongue is retractably mounted on the front shell at one rotatably connected end of the unlocking drive component and is drive-connected to the unlocking drive component. The rotary unlocking component is rotatably mounted on the unlocking drive component, and the rotary unlocking component has an unlocked state and a locked state that can be switched between each other; The self-locking mechanism is installed inside the front housing and is used to lock the unlocking drive component. When the unlocking drive component is pressed, the self-locking mechanism locks or unlocks the unlocking drive component. A partition is provided inside the front shell, and a locking slot is provided on the partition corresponding to the rotating unlocking component. An inlet / outlet groove is provided on the edge of the locking slot; a locking protrusion is provided on the rotating unlocking component. When the rotating unlocking component is in the locked state, the unlocking drive component is locked in the front shell by the self-locking mechanism, the locking protrusion abuts against the side of the lock opening facing the unlocking drive component, and the lock tongue is in the extended locked state. When the rotating unlocking component is rotated to the unlocked state, the locking protrusion moves to the inlet / outlet slot to release its obstruction to the side of the lock opening. Pressing the unlocking drive component, the self-locking mechanism unlocks the unlocking drive component, which can rotate out of the front housing and drive the bolt to retract and unlock.
2. The hard disk carrier of claim 1, wherein, The unlocking drive component has a first mounting hole, and the rotating unlocking component is rotatably installed in the first mounting hole; The rotating unlocking component includes a lock base and a driven component. The driven component is mounted on the lock base and exposed to the first mounting hole. The driven component has a locking hole, and the locking protrusion is disposed in the circumferential direction of the lock base.
3. The hard drive tray according to claim 2, characterized in that, The lock opening has an arc-shaped clearance groove on the side corresponding to the lock base.
4. The hard disk carrier of claim 2, wherein, The lock seat sidewall is provided with an arc-shaped positioning protrusion, and the first mounting hole sidewall is provided with at least two positioning grooves; When the rotating unlocking component is rotated to the locked state, the arc-shaped positioning protrusion is embedded in one of the positioning grooves; when the rotating unlocking component is rotated to the unlocked state, the arc-shaped positioning protrusion is embedded in the other positioning groove.
5. The hard disk carrier of claim 2, wherein, The inner wall of the first mounting hole is provided with a support protrusion extending circumferentially along the first mounting hole, and a rotation limiting range is defined between the two ends of the support protrusion. The driven component has a supporting flange and a rotation limiting protrusion on its side. The supporting flange is supported on the supporting ridge, and the rotation limiting protrusion is located in the rotation limiting range. When the rotating unlocking component is rotated to the locked state, the rotation limiting protrusion abuts against one end of the supporting ridge. When the rotating unlocking component is rotated to the unlocked state, the rotation limiting protrusion abuts against the other end of the supporting ridge.
6. The hard disk carrier of any of claims 1 to 5, wherein, The rotating unlocking component is mounted on the unlocking drive component at one end away from the latch; inside the front housing, a first elastic element is mounted on the unlocking drive component at one end near the latch, the first elastic element providing the unlocking drive component with the elastic force to pop out from inside the front housing.
7. The hard disk carrier of claim 6, wherein, Inside the front housing, the latch is connected to a second elastic member for driving the latch to extend and lock; the latch is provided with a transmission cavity, and the unlocking drive member is provided with a transmission insertion part at one end near the latch, the transmission insertion part being inserted into the transmission cavity.
8. The hard disk carrier of any of claims 1 to 5, wherein, The hard drive bracket also includes a bracket body, the front end of which is provided with a mounting protrusion, and a first groove is provided on the side of the mounting protrusion; a first slot is provided at one end of the first groove; a positioning plate and an L-shaped positioning locking plate are provided on the inner side of the front shell corresponding to the mounting protrusion, and a positioning slot is provided on the positioning plate; the positioning slot is engaged on the mounting protrusion, and the L-shaped positioning locking plate is engaged in the first slot.
9. A network attached storage device, characterized by Includes the hard disk tray as described in any one of claims 1 to 8.