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Part Number: SN74LVC2T45-Q1 Hello,
If power input to VCCB at 1st, does this device have damage? Does DIR port have internal upll-up or upll-down? Can this pin tolerate floating?
Regards, ACGUY
Part Number: SN74LVC2T45-Q1 Team,
My customer has the following questions.
If powered by 5 VDC nominal (up to 5.5 VDC max), Tj of -25 C to +45 C, both inputs floating.
Q1: is there expected increased supply current draw and if so, how much?
Q2: Is there…
Part Number: SN74LVC2T45-Q1 Other Parts Discussed in Thread: SN74LVC2T45 Hi,
I am using SN74LVC2T45Q to drive an analog buffer. The output of the SN74LVC2T45Q is ringing and so my final output is also bad.
Yellow = Output of analog buffer. Blue = Output…
Part Number: SN74LVC2T45-Q1 Hi,
We are using SN74LVC2T45-Q1 in the design. In the datasheet, we could find the below table.
My doubts are,
1)Whether I can model the high side and low side switches as resistances with the below calculation and use the…
Part Number: SN74LVC2T45-Q1 Other Parts Discussed in Thread: SN74LVC2G17-Q1 , ISO7731-Q1 Hi Manuel,
I have updated the design, Please find it in the attached file.
GPIO's.pdf
For GPIO
Total 2 Digital input with 12V inputs and One Digital output with…
Part Number: SN74LVC2T45-Q1 Hello,
Can someone from TI confirm if P/N SN74LVC2T45-Q1 is rated to AEC-Q100 standards? The datasheet says it's rated for automotive applications, but it doesn't explicitly state anywhere if it's rated to any AEC specification…
Part Number: SN74LVC2T45-Q1 Other Parts Discussed in Thread: SN74LVC1T45-Q1 SN74LVC2T45-Q1 and SN74LVC1T45-Q1 have different power-up sequences. Is this correct, or is this an error in the datasheet.
Thanks
D
Part Number: SN74LXC2T45-Q1 Other Parts Discussed in Thread: SN74LVC2T45-Q1 Hi,
I have a customer design interface that needs a high level input, but SN74LXC2T45DCUR-Q1 was selected in the initial design without noticing that there was a pull-down resistor…
Part Number: SN74LVC2T45 Other Parts Discussed in Thread: TXV0106-Q1 Team,
Can we consider that the propagation delays of falling transitions are the same between both component lanes (1 and 2)?
Or is there a significant gap?
Same question for the propagation…