ELECTRONIC DEVICE CONFIGURED TO BE MOUNTED IN A CLUSTER HOUSING AND COMPRISING A FRONT TRAY FOR MOUNTING AT LEAST ONE EXPANSION CARD
20220132694 · 2022-04-28
Assignee
Inventors
- Sanjayakumar Halli (Gadag, IN)
- Prakash Nagaraja (Bangalore, IN)
- Sriprada Adiga (Bangalore, IN)
- Kumar Avinash (Bangalore, IN)
- Madhu K. SHARMA (Bantwal taluk, IN)
- Pravin Kumar Thakur (Bangalore, IN)
Cpc classification
H05K7/1487
ELECTRICITY
H05K7/1429
ELECTRICITY
H05K7/1489
ELECTRICITY
H05K5/0286
ELECTRICITY
International classification
Abstract
An electronic device configured to be mounted in a housing of a cluster, the device comprising a rear body housing at least one mother board configured to be powered by the cluster, a front tray housing at least one electronic board having at least one socket, the front tray comprising at least one fastening member for mounting an expansion card having an edge connector and a fastening portion, the electronic board being connected to the mother board by at least one flexible cable, the front tray being mounted slidable relatively from the rear body between a close position and an open position in which the front tray is at least partially removed from the cluster housing while keeping the rear body into the cluster housing so that an expansion card can be mounted/unmounted from the electronic board without powering off the device.
Claims
1. An electronic device configured to be mounted in a housing of a cluster, the electronic device comprising: a rear body that houses at least one mother board configured to be powered by the cluster; a front tray that houses at least one electronic board having at least one socket, the front tray comprising at least one fastening member for mounting an expansion card having an edge connector and a fastening portion, the at least one fastening member comprising a latch for securing a mounting of the expansion card, the latch comprising being slidable horizontally and comprising a spring configured to force the latch in a locking position; the at least one electronic board being connected to the at least one mother board by at least one flexible cable, the front tray being mounted slidable relatively from the rear body between a close position and an open position in which the front tray is at least partially removed from the housing of the cluster while keeping the rear body into the housing of the cluster so that the expansion card can be mounted/unmounted from the at least one electronic board without powering off the electronic device.
2. The electronic device according to claim 1, wherein the front tray comprises at least one locking member configured to secure the front tray with the rear body of the electronic device.
3. The electronic device according to claim 1, wherein the electronic device is a server.
4. The electronic device according to claim 1, wherein the at least one flexible cable transmits information and power.
5. The electronic device according to claim 1, wherein the front tray comprises sockets and fastening members for mounting at least four expansion cards.
6. The electronic device according to claim 1, wherein the front tray comprises sockets and fastening members for mounting at least eight expansion cards.
7. The electronic device according to claim 5, wherein all the fastening members are located at a periphery of the front tray.
8. The electronic device according to claim 7, wherein all the fastening members are located along lateral edges of the front tray.
9. The electronic device according to claim 1, wherein the front tray comprises a horizontal panel for receiving the at least one electronic board, a vertical front panel and two vertical lateral panels, each vertical lateral panel comprising at least one guiding member.
10. The electronic device according to claim 1, further comprising said expansion card, wherein said edge connector is connected in a socket of the at least one electronic board; and, said fastening portion is locked by the at least one fastening member of the front tray.
11. The electronic device according to claim 10, wherein the expansion card is a M.2 expansion card.
12. The electronic device according to claim 1, further comprising a process for mounting the expansion card in the electronic device, the electronic device being mounted in the housing of a cluster and powered by the cluster, the front tray being in a close position, the process comprising: pulling the front tray relatively from the rear body in the open position in which the front tray is partially removed from the housing of the cluster while keeping the rear body into the housing of the cluster; and, mounting the expansion card on the at least one electronic board without powering off the electronic device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The invention will be better understood by reading the description that follows, only given as an example, and by referring to the appended figures in which:
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037] It should be noted that the figures set out illustrative embodiments of the invention in a detailed manner to implement the invention, said figures obviously being able to serve to better illustrate the invention if need be.
DETAILED DESCRIPTION OF THE INVENTION
[0038] As illustrated in
[0039] Each device D is defined in an orthogonal system (X, Y, Z) in which the X axis extends horizontally from the rear to the front, the Y axis extends laterally from the left to the right and the Z axis extends vertically from down to up.
[0040] A device D according to one or more embodiments of the invention is represented on
[0041] The mother board 21 is a printed circuit board which is known from the person skilled in the art. The mother board 21 comprises for example a processor 210, a memory, etc. The mother board 21 comprises rear connectors 211 for power and communication which are connected to the cluster C.
[0042] The electronic board 31 is also a printed circuit board, for example, a NVME back plane. In this example, the electronic board 31 is a slave board whereas the mother board 21 is a master board. As represented on
[0043] The mother board 21 is connected to the electronic board 31 by at least one flexible cable 7 in order to power the electronic board 31 and to allow transfer of information between the mother board 21 and the electronic board 31. Thanks to the flexibility and the length of the cable 7, the front tray 3 can be moved relatively from the rear body 2 without disconnecting the electronic board 31 from the mother board 21 as it will be explained later. In
[0044] In this example, each expansion card 5 has a M.2 format which is also known as NGFF (Next Generation Form Factor). One or more embodiments of the invention apply particularly for such M.2 format but also may also apply to other formats. One or more embodiments of the invention apply particularly for an SSD (Solid State Drive) expansion card 5.
[0045] As represented in
[0046] As represented on
[0047] As represented in
[0048] In this example, each vertical lateral panel 303 comprises one guiding member 33, for example, a roller or a slide. The guiding member 33 of the front tray 3 is configured to cooperate with the rear body 2, more particularly, with a guiding surface 23 of the rear body 2 (or a roller), so that the front tray 3 is mounted slidable relatively from the rear body 2 along the X axis in order for the front tray 3 to be at least partially removed from the cluster housing H while keeping the rear body 2 into the cluster housing H. Preferably, the front tray 3 is moved between a close position (use position), where the front tray 3 is in the cluster housing H, and an open position (maintenance position), where the front tray 3 is pulled toward the front. The distance L between the two positions is comprised between 10 cm and 14 cm. Such a distance L allows an operator to have sufficient room for mounting/unmounting expansion cards 5 as it will be presented later.
[0049] In this example, the vertical front panel 302 comprises connectors 34, located on the front face, connected to the electronic board 31 as represented on
[0050] In this example, the fastening members 352 doesn't belong to the electronic board 31 but belong to the horizontal panel 301 of the front tray 3. Thus, an expansion card 5 extends outside from the electronic board 3 when mounted as represented in
[0051] According to an aspect of the invention, each fastening member 352 of the electronic board 31 comprises a latch 8 for securing the mounting of the fastening portion 53 of the expansion card 5 as represented in
[0052] In this example, the latch 8 is slidable, for example, horizontally along the Y axis as represented in
[0053] In order to facilitate the mounting/unmounting of the expansion cards 5, all the fastening members 352 are located at the periphery of the front tray 3, for example along the lateral edges of the horizontal panel 301 of the front tray 3. In one or more embodiments, all the sockets 351 are located at the periphery of the electronic board 31. Such an arrangement is advantageous since it is easier for an operator to access the fastening members 352 and manipulate the latches 8 from the lateral edges of the tray 3 in the open position. The mounting/unmounting is easy and fast.
[0054] A process for mounting an expansion card 5 in the electronic device D will be now described in reference to
[0055] In this example, the electronic device D is mounted in a housing H of a cluster C and powered by the cluster C. The front tray 3 is in a close position (use position).
[0056] An operator unlocks the front tray 3 by unscrewing the locking members 32 from the vertical front panel 302 as represented in
[0057] An operator pulls the front tray 3 relatively from the rear body 2 in order for the front tray 3 to be at least partially removed from the cluster housing H while keeping the rear body 2 into the cluster housing H as represented in
[0058] Since the latches 8 are located at the periphery of the front tray 3, and more specifically along the left and right edges of the horizontal panel 301, they are easily accessible for an operator when the front tray 3 is in the open position.
[0059] The operator can slide the latch 8 securing the expansion card 5 which needs to be replaced in order to free the fastening portion 53 of the expansion card 5 as represented in
[0060] Similarly, a new expansion card 5 can be mounted at the same position by inserting the edge connector 52 in the socket 351 and by securing the fastening portion 53 to the horizontal panel 301. The operator manipulates the latch 8 to the free position (against the spring force) to let the fastening portion 53 move towards the horizontal panel 301 and then let the latch 8 moves back to the locking position to secure the expansion card 5 on the horizontal panel 301. The front tray 3 can be put back to the close position and locked.
[0061] Thanks to the one or more embodiments of the invention, an expansion card 5 can be replaced by an operator with no waste of time. Advantageously, the replacement can be performed without shutting down the device D which can still run services.