Part Number: TPSM5601R5H Other Parts Discussed in Thread: TPSM65620 Hello guys,
One of my customers is considering using to generate negative 15V(-15V)/1A with using fig2-7 in following document.
www.ti.com/.../spva023.pdf
Can TPSM5601R5H generate…
Part Number: TPSM5601R5H Other Parts Discussed in Thread: INA821 , , TPSM5601R5 , TPSM33625 Hi,
We are using the TPSM5601R5H to convert 15V to -15V. The -15V support power to 20pcs INA821 amplifiers on our board. Now we measured 105 degreeC at the top…
Part Number: TPSM5601R5H Tool/software: Hi Team,
We are looking at using our reflow oven, and are wondering if there is a reflow profile that we should be using for this part.
Do you know of one that you can share?
Part Number: TPSM5601R5H Other Parts Discussed in Thread: LM317HV Tool/software: I am building a power supply board where I would like to make +-5, +-12 rails from a +48V input. I am looking at using TPSM5601R5H for all of these.
For the negative…
Part Number: TPSM5601R5H Hey Power Module team,
I have a customer evaluating the TPSM5601R5H power module for a project and we are hoping you could help to provide feedback on the following inquiry:
The datasheet for this module shows 1.5A Iout Max…
Part Number: TPSM5601R5H Hi Team,
My customer is looking for an EMI filter for the DC-DC Power Module TPSM5601R5HRDAR. Could you please help suggest some solution for the same?
Thanks,
Jash
FAE
Part Number: TPSM5601R5H Using Cadence PSPICE version 17.2 I get the following error message: ERROR(ORPSIM-15167) Undefined parameter: IOUTMIN
There is an error in the *.lib and/or the *.olb file.
I opened Case Number CS1854266
Part Number: TPSM5601R5H Hi team,
The minimum effective capacitance when used at 5Vout is about 60uF, but the capacitor used in EVM is only about 33uF. Is it necessary to have a effective capacity of 60uF or more?
Best Regards,
Part Number: TPSM5601R5H I want to use the TPSM5601R5H to convert from 28VDC to -8VDC. This means using the part in IBB configuration as described in SNVA962. I require a custom UVLO at Vin = 5VDC. In a standard buck configuration this is achieved via…