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OrangePi 4案例DIY第3版

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發(fā)布時間:2022/11/7 23:49:00
女士們,先生們,歡迎你們!
這是OrangePi4的新外殼。
這座大樓已經(jīng)可以住了。壁厚2毫米。
為了冷卻處理器和內(nèi)存,使用5010、5015和5V或12V的風扇。兩個或三個。
車身由四個M3x20螺釘和一個隱藏的頭擰緊。
風扇安裝在一對帶有隱藏頭的M3x10螺釘上。
任何類型的格柵,例如MightyNozzle,都可以用M3x10螺釘安裝在風扇的頂部,帶有隱藏頭。
風扇電源從GPIO(40)插座的4( 5V)和6(-)引腳供電。
組裝順序:
下半部分(bottom part)打印后,從SD卡下的孔中刪除支持。
試一試費用。如有必要,請小心地從著陸板的內(nèi)側(cè)切割。印刷電路板的切割缺陷是存在的。不能保證付款會立即到位。如果SD卡窗口清楚地看到卡下的插槽,則支付到位。
打印頂部(Top part)。
讓我們把它放在下面的板。可能需要在2xUSB下修剪窗口。
打印管。M3螺釘必須在管子內(nèi)自由移動。不需要密集著陸。
我們將焊接器的熱爪浸泡在風扇外殼的開口中,4個黃銅嵌件M3x6。其中兩個嵌件對角線,兩個嵌件對角線,另兩個嵌件對角線,進入剩余的自由孔。塑料在加熱時會擴散有害物質(zhì),所以要注意通風。
將2個黃銅嵌件M3x6熔化到船體頂部的封裝件中。我們試圖在沒有傾斜的情況下游泳,垂直于底部。
清除風扇外殼中多余的塑料孔,確保M3x10螺釘在整個孔中自由通過。
我們用M3x20螺旋槳穿過船體頂部剩下的兩個開口。這些洞里有螺紋。當印刷高度為0.12-0.16毫米時,螺紋必須完全可接受。
安裝在M3x10螺絲上的風扇蓋上。將風扇安裝在吹風機上,電線連接到GPIO梳子。
在船體底部的孔中插入4個M3x20螺釘。四根管子放在螺絲上。其中一個將在GPIO梳子附近的螺絲刀上切割。我們將頂部固定在給定的結(jié)構(gòu)上,然后慢慢地,一個螺釘,逐漸拉長螺釘,直到外殼完全組裝。
我們打印格柵,然后用兩個M3x10螺釘將其固定在風扇頂部。
風扇引腳以任何方式與GPIO引腳上的 5B和GND連接。
這一切。不用客氣。
Greetings, ladies and gentlemen!
I present to your attention another case for OrangePi4.
To cool the processor and memory, a fan of size 5010, 5015 with a supply voltage of 5v or 12v is used.
The housing is tightened by four m3x20 screws with a counteunk head.
The fan is attached to the lid by a pair of m3x10 screws with a counteunk head.
On top of the fan with m3x10 screws with a counteunk head, any veion of the grille is attached, for example from mightynozzle .
The fan is powered by 4( 5v) and 6 (-) pi of the GPIO connector(40).
Assembly order:
Print the bottom part. After printing, we remove the support from the hole under the SD card.
Try on the board. Carefully, if necessary, cut from the iide of the wall of the landing pads under the board. Flaws in cutting printed circuit boards have a place to be. There can be no guarantees that the board will immediately clearly fall into place. The board is in place if the SD card window clearly looks at the card slot.
We print the upper part (Top part).
We try on the lower part with the board. You may have to trim the window for 2xUSB.
We print the tubes. M3 screws should walk freely iide the tubes. There should not be a tight fit.
We melt the heated soldering iron sting into the holes of the fan housing 4 brass ierts m3 x 6. Two of them diagonally on one side, two on the other into the remaining free holes. Plastic begi to spread harmful substances when heated, so take care of ventilation.
We fuse 2 m3x6 brass ierts into the seats in the upper part of the case. We try to melt it without distortio, perpendicular to the base.
We clean the holes in the fan housing from excess plastic, it is necessary to eure the free passage of the m3x10 screw throughout the hole.
We pass the remaining two holes in the upper part of the housing with the m3x20 screw. The thread in these holes is embedded. And when printing with a layer height of 0.12-0.16 mm, the thread should be quite tolerable.
Attach the fan to the lid with screws m3x10. Place the fan on the blow-in, with wires to the GPIO comb.
Iert 4 screws m3x20 into the holes in the bottom of the housing. The board should already be in the lower part of the case. We string 4 tubes on top of the screws. One of them, with a slice, will go to the screw near the GPIO comb. We attach the upper part to this structure and slowly, one screw at a time, gradually stretch the screws until the housing is fully assembled.
Print the grid, then fasten it on top of the fan with two screws m3 x 10.
Connect the fan terminals in any way with 5v and GND on the GPIO terminals.
Actually everything. Use it for your health.
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