IP Library Granted Patent US 10,354,696
Granted Patent B1
US 10,354,696 · App. 15/960,655 · Granted Jul 16, 2019

Tool-less mounting apparatus for hard disk drive and storage device using the same

Inventors: Cheng-He Li (Tianjin, CN); Gong-Wen Zhang (Tianjin, CN); Han-Yu Li (New Taipei, TW); Ya-Ni Zhang (Tianjin, CN); Wen-Hu Lu (Tianjin, CN)
Assignee: HONGFUJIN PRECISION ELECTRONICS(TIANJIN)CO., LTD.
G11B33/022H05K5/023H05K7/1401
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Quick Facts
Patent No.
US 10,354,696
App. No.
15/960,655
Granted
Jul 16, 2019
Kind
B1
Abstract

An apparatus for mounting hard disk drive and storage device without the use of tools or fasteners includes a supporting base comprising opposite ends, elastic connecting members, and two side plates connected perpendicularly and respectively to opposite ends of the supporting base. Two elastic connecting members and an end plate connect between free ends of the pair of side plates through the elastic connecting members. Each side plate comprises one or more internal mounting pins and corresponding mounting holes are defined in sides of hard disk drive or storage device. A rotating plate is rotatable between closed and opened positions, the rotating plate can be closed to align the pins so as to clamp the device in place, or opened.

Claims (57)

1. A tool-less mounting apparatus for hard disk drive, comprising:

a supporting base comprising two opposite ends;

a plurality of elastic connecting members;

two side plates perpendicularly and respectively connected to the two opposite ends of the supporting base through the elastic connecting members; and

an end plate connected between free ends of the two side plates through the elastic connecting members;

wherein each of the two side plates comprises a mounting pin; the two side plates define a clamping for mounting the hard disk drive, and at least one of the two side plates is rotatable between a closed position, where the two side plates are substantially parallel with each other and the mounting pins of the two side plates align with each other, and an open position, where the mounting pins of the two side plates are deviated from each other;

wherein each of the two side plates comprises a first connecting board and two first clamping portions located at two opposite ends of the first connecting board;

the end plate comprises a second connecting board and two second clamping portions located at two opposite ends of the second connecting board; the ends of the supporting base comprises a third clamping portion;

each of the plurality of elastic connecting members comprises two fourth clamping portions located at two opposite ends of each of the plurality of elastic connecting members.

2. The mounting apparatus of claim 1 , wherein each of the plurality of elastic connecting members comprises;

a first fastening plate; and

a second fastening plate perpendicularly connected to the first fastening plate; wherein the first fastening plate and the second fastening plate are made of elastic materials, and the fourth clamping portions are located at free ends of the first fastening plate and the second fastening plate.

3. The mounting apparatus of claim 1 , wherein the first clamping portions, the second clamping portions, third clamping portion and the fourth clamping portions are hooks configured to hook with one another.

4. The mounting apparatus of claim 1 , wherein each of the mounting pins is connected to an inner side of the first connecting board.

5. The mounting apparatus of claim 1 , wherein the mounting apparatus further comprises an operating unit comprising:

a handle rotatably connected to the supporting base; and

a resilient clip corresponding to the handle and mounted to the supporting base; wherein the handle is rotatable between an accommodated position, where the handle abuts the supporting base and the resilient clip is elastically deformed by resisting against a free end of the handle, and a released position, where the resilient clip releases the free end of the handle.

6. The sliding apparatus of claim 5 , wherein the supporting base comprises a chassis, and the chassis defines an accommodating groove; the resilient clip is slidably accommodated in the accommodating groove.

7. The sliding apparatus of claim 6 , wherein the resilient clip comprises:

a pushing block; and

a resisting arm, wherein an end of the resisting arm is fixed to the pushing block; when the handle rotates to the accommodated position, the free end of the handle resists against the pushing block and drives the pushing block to move, and the resilient arm is elastically deformed; the pushing block latches the handle under restoring force of the resilient arm.

8. The mounting apparatus of claim 7 , wherein the operating unit further comprises:

a pivot pin; and

an elastic member sandwiched between the handle and the supporting base;

wherein the supporting base defines a pivot hole corresponding to the pivot pin, and the handle is rotatably connected to the supporting base through the pivot pin and the pivot hole;

when the handle rotates to the accommodated position, elastic member is elastically deformed; and when the resilient clip is moved to release the free end of the handle, the handle is driven to separate from the supporting base under restoring force of the elastic member.

9. The mounting apparatus of claim 8 , wherein the elastic member is a torsional spring; the supporting base comprises a fixing end; the torsional spring is movably sleeved on the pivot pin; an end of the torsional spring is fixed to the fixing end, and the other end of the torsional spring resists against an inner surface of the handle.

10. A storage device comprising:

a hard disk drive; and

a mounting apparatus for the hard disk drive, comprising:

a supporting base comprising two opposite ends;

a plurality of elastic connecting members;

two side plates perpendicularly and respectively connected to the two opposite ends of the supporting base through the elastic connecting members; and

an end plate connected between free ends of the two side plates through the elastic connecting members;

wherein each of the two side plates comprises a mounting pin; the two side plates define a clamping for mounting the hard disk drive, and at least one of the two side plates is rotatable between a closed position, where the two side plates are substantially parallel with each other and the mounting pins of the two side plates align with each other, and an open position, where the mounting pins of the two side plates are deviated from each other;

wherein each of the two side plates comprises a first connecting board and two first clamping portions located at two opposite ends of the first connecting board; the end plate comprises a second connecting board and two second clamping portions located at two opposite ends of the second connecting board; the ends of the supporting base comprises a third clamping portion;

each of the plurality of elastic connecting members comprises two fourth clamping portions located at two opposite ends of each of the plurality of elastic connecting members.

11. The storage device of claim 10 , wherein each of the plurality of elastic connecting members comprises;

a first fastening plate; and

a second fastening plate perpendicularly connected to the first fastening plate; wherein the first fastening plate and the second fastening plate are made of elastic materials, and the fourth clamping portions are located at free ends of the first fastening plate and the second fastening plate.

12. The storage device of claim 10 , wherein the first clamping portions, the second clamping portions, third clamping portion and the fourth clamping portions are hooks configured to hook with one another.

13. The storage device of claim 10 , wherein each of the mounting pins is connected to an inner side of the first connecting board.

14. The storage device of claim 10 , wherein the mounting apparatus further comprises an operating unit comprising:

a handle rotatably connected to the supporting base; and

a resilient clip corresponding to the handle and mounted to the supporting base;

wherein the handle is rotatable between an accommodated position, where the handle abuts the supporting base and the resilient clip is elastically deformed by resisting against a free end of the handle, and a released position, where the resilient clip releases the free end of the handle.

15. The sliding apparatus of claim 14 , wherein the supporting base comprises a chassis, and the chassis defines an accommodating groove; the resilient clip is slidably accommodated in the accommodating groove.

16. The sliding apparatus of claim 15 , wherein the resilient clip comprises:

a pushing block; and

a resisting arm, wherein an end of the resisting arm is fixed to the pushing block;

when the handle rotates to the accommodated position, the free end of the handle resists against the pushing block and drives the pushing block to move, and the resilient arm is elastically deformed; the pushing block latches the handle under restoring force of the resilient arm.

17. The storage device of claim 16 , wherein the operating unit further comprises:

a pivot pin; and

an elastic member sandwiched between the handle and the supporting base;

wherein the supporting base defines a pivot hole corresponding to the pivot pin, and the handle is rotatably connected to the supporting base through the pivot pin and the pivot hole;

when the handle rotates to the accommodated position, elastic member is elastically deformed; and when the resilient clip is moved to release the free end of the handle, the handle is driven to separate from the supporting base under restoring force of the elastic member.

18. The storage device of claim 17 , wherein the elastic member is a torsional spring; the supporting base comprises a fixing end; the torsional spring is movably sleeved on the pivot pin; an end of the torsional spring is fixed to the fixing end, and the other end of the torsional spring resists against an inner surface of the handle.

Assignments (2)
CHANGE OF NAME Recorded Mar 10, 2022
From: HONGFUJIN PRECISION ELECTRONICS(TIANJIN)CO.,LTD.
To: FULIAN PRECISION ELECTRONICS (TIANJIN) CO., LTD.
Reel/Frame 059620/0142 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2018
From: LI, CHENG-HE; ZHANG, GONG-WEN; LI, HAN-YU; ZHANG, YA-NI; LU, WEN-HU
To: HONGFUJIN PRECISION ELECTRONICS (TIANJIN) CO.,LTD.
Reel/Frame 046008/0486 →
Priority Claims (1)
CN 2018 1 0192793 · Mar 8, 2018 · national