Drive mounting assembly and computer chassis using the same
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H05K-005/00
H05K-007/00
출원번호
US-0912752
(2010-10-27)
등록번호
US-8320117
(2012-11-27)
우선권정보
CN-2010 1 0502731 (2010-10-11)
발명자
/ 주소
Wu, Wei
Yang, Xin
출원인 / 주소
Fu Tai Hua Industry (Shenzhen) Co., Ltd.
대리인 / 주소
Altis Law Group, Inc.
인용정보
피인용 횟수 :
0인용 특허 :
10
초록▼
A drive mounting assembly applied in a computer chassis includes a main body, a protecting member, and a switch. The main body is configured to mount a drive. The protecting member includes a protecting plate exposed to the computer chassis to protect the drive from contamination. The switch is moun
A drive mounting assembly applied in a computer chassis includes a main body, a protecting member, and a switch. The main body is configured to mount a drive. The protecting member includes a protecting plate exposed to the computer chassis to protect the drive from contamination. The switch is mounted on the main body and configured to generate signals to inform the drive to drive a tray of the drive out of and into the assembly. While driving the tray to extend from the assembly, the protecting plate is driven from a closed position to an open position to let the tray to extend from the assembly. When the tray is driven to retract into the assembly, the protecting plate is driven to the closed position to shield the drive. A related computer chassis is also provided.
대표청구항▼
1. A drive mounting assembly applied in a computer chassis, the drive mounting assembly comprising: a main body configured to mount a drive, the main body comprising two stopper portions and at least one slot arranged between the stopper portions, the stopper portions protruding from an end of the m
1. A drive mounting assembly applied in a computer chassis, the drive mounting assembly comprising: a main body configured to mount a drive, the main body comprising two stopper portions and at least one slot arranged between the stopper portions, the stopper portions protruding from an end of the main body and being spaced by a distance to allow a tray of the drive to pass through;a protecting member comprising: a protecting plate slidably connected to the stopper portions and movable between a closed position and an open position;at least one shaft;at least one connecting plate, each of the at least one connecting plate comprising a first end pivotably connected to a top end of the protecting plate and a second end slidably connected to one of the at least one slot through one of the at least one shaft;at least one first elastic member each comprising two connecting ends and an elastic portion, the connecting ends of each of the at least one first elastic member being respectively secured to opposite ends of one of the at least one shaft, the elastic portion of each of the at least one first elastic member resisting a back surface of one of the at least one connecting plate; andat least one second elastic member, opposite ends of each of the at least one elastic member respectively resisting the second end of one of the at least one connecting member and the main body; anda switch mounted on the main body and configured to generate signals to inform the drive to drive the tray to extend from and retract into the drive mounting assembly;wherein, the at least one connecting plate, the at least one first elastic member, and the at least one second elastic member cause the protecting plate to be in the closed position, while driving the tray to extend from the drive mounting assembly, the tray presses the at least one connecting member to drive the protecting plate to the open position. 2. The drive mounting assembly as described in claim 1, wherein each of the stopper portions defines a first sliding groove substantially perpendicular to directions of movement of the tray, opposite surfaces of the protecting plate are respectively slidably received in the first sliding grooves. 3. The drive mounting assembly as described in claim 1, wherein each of the at least one slot comprises two opposite first sidewalls and a second sidewall arranged between the first sidewalls and away from the stopper portions, each of the first sidewalls defines a second sliding groove substantially parallel to directions of movement of the tray, opposite ends of each of the at least one shaft are respectively slidably received in the second sliding grooves. 4. The drive mounting assembly as described in claim 3, wherein the opposite ends of each of the at least one second elastic member respectively resist the second end of one of the at least one connecting plate and the second sidewall of one of the at least one slot. 5. The drive mounting assembly as described in claim 1, wherein the at least one first elastic member is a torsion spring. 6. The drive mounting assembly as described in claim 1, wherein the at least one first elastic member is U-shaped. 7. A computer chassis comprising: a main body configured to mount a drive, the main body comprising two stopper portions and at least one slot arranged between the stopper portions, the stopper portions protruding from an end of the main body and being spaced by a distance to allow a tray of the drive to pass through;a protecting member comprising: a protecting plate slidably connected to the stopper portions and movable between a closed position and an open position;at least one shaft;at least one connecting plate, each of the at least one connecting plate comprising a first end pivotally connected to a top end of the protecting plate and a second end slidably connected to one of the at least one slot through one of the at least one shaft;at least one first elastic member comprising two connecting ends and an elastic portion, the connecting ends of each of the at least one first elastic member being respectively secured to opposite ends of one of the at least one shaft, the elastic portion of each of the at least one first elastic member resisting a back surface of one of the at least one connecting plate; andat least one second elastic member, opposite ends of each of the at least one elastic member respectively resisting the second end of one of the at least one connecting member and the main body; anda switch mounted on the main body and configured to generate signals to inform the drive to drive the tray to extend from and retract into the drive mounting assembly;wherein, the at least one connecting plate, the at least one first elastic member, and the at least one second elastic member cause the protecting plate to be in the closed position, while driving the tray to extend from the drive mounting assembly, the tray presses the at least one connecting member to drive the protecting plate to the open position. 8. The computer chassis as described in claim 7, wherein each of the stopper portions defines a first sliding groove substantially perpendicular to directions of movement of the tray, opposite surfaces of the protecting plate are respectively slidably received in the first sliding grooves. 9. The computer chassis as described in claim 7, wherein each of the at least one slot comprises two opposite first sidewalls and a second sidewall arranged between the first sidewalls and away from the stopper portions, each of the first sidewalls defines a second sliding groove substantially parallel to directions of movement of the tray, opposite ends of each of the at least one shaft are respectively received in the second sliding grooves. 10. The computer chassis as described in claim 9, wherein the opposite ends of each of the at least one second elastic member respectively resist the second end of one of the at least one connecting plate and the second sidewall of one of the at least one slot. 11. The computer chassis as described in claim 7, wherein the at least one first elastic member is a torsion spring. 12. The computer chassis as described in claim 7, wherein the at least one first elastic member is U-shaped.
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