Part Number: LDC1101 Other Parts Discussed in Thread: LDC1041 , LDC1001 Hello,
I am currently working with the LDC1101 and am getting nice data out of it. I would like to speed things up and switch to DMA + interrupt driven polling on my ST micro, and…
Part Number: TDC7200 Other Parts Discussed in Thread: LDC1101 , TDC7201 , LDC1001
Hello There,
as described in SNOA941A I would like to use TDC7200 with LDC1101 in DRDY RP+L mode for time measurement between DRDY assertion.
Topic A:
For best possible…
Hi Kirstin, thanks for the reply.
That is clear to me. I had the impression an LDC1001 was also to be release with similar functionalities to the LDC1000, but still if we are to make an application exploratory design, the problem is kept. So is there…
Part Number: LDC1000 Other Parts Discussed in Thread: LDC1001 Hello,
we were notified of the discontinuation of the LDC1000. We were told that the replacement type will be a pin compatible LDC1001.
I'm wondering to get no information on ti.com. Can…
Part Number: LDC1000-Q1 Other Parts Discussed in Thread: LDC1612 , LDC1614 , LDC1001 I noticed in "SNOA931 - LDC1612/LDC1614 Linear Position Sensing" that a racetrack design is suggested for linear position sensing. Figure 6 states that past the innermost…
Part Number: LDC1000EVM Hi, Our customers refer to the following application notes. And they are evaluating. LDC1000 LDC1001 LDC1041 LDC1051Evaluation module.pdf LDC1000LDC1041LDC1051 Evaluation Module snau150a.pdf LDC1000EVM Quick Start Guide.pdf Then…
Materials with high conductivity for inductive sensing may be expensive, so limiting the amount of material used for a target in an inductive system is of paramount importance, but what is the ideal target thickness for inductive sensing?