NEMIX RAM DDR5-5600 2TB (16x128GB) ECC RDIMM CL46 1.1V Supermicro H14SST-G memory upgrade
- 2TB (16 x 128GB)
- 288-Pin DDR5 RDIMM
Prihvaćamo kriptovalute — tako kriptovalute koje posjedujete mogu kupiti pravi hardver.Plaćajte kriptovalutom, trošite je na pravi hardver. Besplatna osigurana dostava diljem svijeta iznad 399 $. Obični vanjski kartoni bez oznaka, otpremaju se iz Njemačke.Besplatna osigurana dostava iznad 399 $. Vaš je tečaj blokiran 30 minuta od otvaranja blagajne.Tečaj blokiran 30 minuta. Svaki je artikl zapečaćen, njegov serijski broj provjeren, i pokriven jamstvom od 24 mjeseca.Zapečaćen, jamstvo 24 mjeseca.
JacobsParts Inc.
Steps up 3–35 V DC input to 3.5–35 V DC at up to 6 A with 96 % efficiency and built-in voltmeter
The JacobsParts FP5139 is a dedicated 100 W DC boost step-up converter that raises a lower input voltage to a higher, regulated output. It suits hobbyists and engineers powering 5 V USB gear from a 3.7 V lithium cell, driving LED strips from a 12 V battery, or similar automotive and electronic projects where the supply is always below the load voltage.
The module accepts 3 to 35 V DC at up to 9 A on the input side and delivers 3.5 to 35 V DC at up to 6 A on the output. Output must always exceed input voltage; reverse polarity will damage the unit. The onboard voltmeter only functions when the input is at least 4 V, so confirm your source meets that threshold before relying on the display.
Peak conversion efficiency reaches 96 percent, yet the 100 W rating applies only when both input and output exceed 20 V; otherwise maximum power falls to 65 W. Low input voltage or a large differential between input and output reduces current capacity and efficiency, so sustained loads should be planned within those derated limits.
| Type | 100 W |
|---|
The module itself is supplied. You must provide a DC source between 3 V and 35 V capable of up to 9 A, plus suitable wiring and a load that needs a higher voltage than the source.
With a 12 V input the converter cannot reach the 20 V threshold, so the practical limit is 65 W; the 100 W rating only applies when both input and output exceed 20 V.
It is the peak power available only when the supply and the load are both above 20 V; at lower voltages such as a 12 V battery the continuous capability drops to 65 W, and efficiency falls if the voltage gap is large.
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