Part Number: TLV757P TLV75710P_TRANS.TSM
TLV75730P_TRANS.TSM
Hi Team,
Quick feedback on 1.0P simulation model dropout does not match to datasheet.
Datasheet shows worst case dropout would be around 1.3V but simulation shows around 1.7V.
I…
Hi Shashaank ,
You are able to find OPA1656 and DRV135 PSpice compatible models below. We do not use Autodesk Eagle Spice Model, however they should be compatible, if you import PSpice model into the tools.
https://www.ti.com/product/OPA1656#design…
Part Number: TLV757P I try to generate 1.2V@800mA from TLV757P with VIN=1.8v. According to the datasheet, fig 14 and 15 shows in 3.3V and 5V VIN. What is the dropout when VIN=1.8V or how to estimate it?
Hi Arunasri ,
TLV757P is not WEBENCH enabled. Please find the Pspice model in the product folder on the below link.
https://www.ti.com/product/TLV757P#design-development
Thanks & Regards,
Praveen
Part Number: TLV757P Hello,
one of my customer is using LDC TLV75733 to supply wifi-module which require 600mA and 3.3 v input but LDO current capacity is only 500mA. so they want to supply this additional 100 mA from capacitor which i shown in below…
Part Number: TLV757P Other Parts Discussed in Thread: TLV759P Hi TI,
Datasheet page 1, shows that Available in fixed output voltage - 0.6V to 5V (50mV steps)
But there is no part number TLV75708PDBVR. 0.8V Fixed output part is not available?
Part Number: TLV757P Other Parts Discussed in Thread: MULTIPKGLDOEVM-823 Is there recommend maximum value for Cout's ESR on TLV757P?
Or, is ESR_max value not have recommend limit and depend on design condition?
(For example, Vout, transient, accuracy…
Hello Gerard,
Thanks for your quick reply.
My customer design TLV757P for DDR power.
There are two specifications to be specified.
1. Dynamic load will be from 0A to 0.3A when controller from sleep to wake up.
2. Peak Load will rise to 0.5A.
Will…
Part Number: TLV757P Dear team,
Could you please help answer below questions about the TLV757P?
1. When Vin=5V, Vout=3.3V, what is the maximum current the TLV757P can withstand?
2. Power dissipation*RθJA=(5-3.3)*Iout*RθJA<125-25, RθJA=231.1(SOT…