Sasaki-san,
The OPA2205 datasheet was just recently released and it looks like there is at least one "bug" that didn't get caught. You are correct about Fig. 6-22, its title states "Voltage Noise Density vs Frequency", but in reality it…
Hi Art,
In OPA1671, I believe that that input voltage can only be approx. 0.3V above V+ supply, which is zero.
What is the application? OPA1671 is audio amplifier. If this is battery application, I would recommend OPA2206 , which it has input overvoltage…
Other Parts Discussed in Thread: OPA2206 , THP210 , OPA2182 , OPA2387 , OPA197 , OPA391 , INA821 , INA826 , LPV821 , OPA369 PRAMPS in lab and field instrumentation
Analytical lab equipment can be used for early detection of diseases and drug development in life…
Part Number: OPA388 Other Parts Discussed in Thread: OPA2277 , , OPA2317 , INA317 , OPA2388 , THP210 , OPA2387 , INA333 , OPA2333 , OPA227 , OPA627 , OPA210 , OPA2206 , OPA192
Hi, my customer is looking for the least noisy and drifty OPAMs . Typical gain at low frequency…
Part Number: OPA656 Other Parts Discussed in Thread: OPA2206 , OPA698 Greetings,
Does the OPA656 have over voltage protection on the V+ and V- inputs?
If not, can you suggest one have this function?
Thanks,
Mariana,
There are three reasons for the output signal distortion you see.
First, the op amp response is limited by a slew rate and in the case of LMC6482 the minimum slew rate is 1V/us - see below. Thus, for the output to move a full 1.5V would require…
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