Input | Output | BW | Supply | |||
---|---|---|---|---|---|---|
IiMin | IiMax | VoMin | VoMax | fp | Vcc | Vee |
0A | 50µA | 0V | 5V | 10kHz | 15V | –15V |
The transimpedance op amp circuit configuration converts an input current source into an output voltage. The current to voltage gain is based on the feedback resistance. The circuit is able to maintain a constant voltage bias across the input source as the input current changes which benefits many sensors.
DC Simulation Results
AC Simulation Results
Texas Instruments, Simulation for Transimpedance Amplifier, SBOC501 SPICE simulation file
Texas Instruments, 1MHz, Single-Supply, Photodiode Amplifier, TIPD176 reference design
OPA170 | |
---|---|
Vcc | 2.7V to 36V |
VinCM | (Vee–0.1V) to (Vcc –2V) |
Vout | Rail–to–rail |
Vos | 0.25mV |
Iq | 0.11mA |
Ib | 8pA |
UGBW | 1.2MHz |
SR | 0.4V/µs |
#Channels | 1, 2, and 4 |
OPA170 |
OPA1671 | |
---|---|
Vcc | 1.7V to 5.5V |
VinCM | Rail–to–rail |
Vout | (Vee+10mV) to (Vcc-10mV) at 275µA |
Vos | 250µV |
Iq | 940µA |
Ib | 1pA |
UGBW | 12MHz |
SR | 5V/µs |
#Channels | 1 |
OPA1671 |
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