Design Goals
Input Current | Ambient light current | Output voltage | Target Bandwidth | Supply | |||
---|---|---|---|---|---|---|---|
IiMin | IiMax | VoMin | VoMax | Vcc | Vee | ||
–10µA | 10µA | 100µA | 0.5V | 4.5V | 300kHz | 5V | 0V |
Design Description
This circuit uses an op amp configured as a transimpedance amplifier to amplify the AC signal of a photodiode (modeled by Ii and C3). The circuit rejects DC signals using a transistor to sink DC current out of the photodiode through the use of an integrator in a servo loop. The bias voltage applied to the non-inverting input prevents the output from saturating to the negative supply rail in the absence of input current.
Design Notes
Design Steps
The transfer function of the circuit is:
Where:
Given:
Design Simulations
DC Simulation Results
Transient Simulation Results
Integrator Open Loop Stability
TIA Stability Results
Design References
Design Featured Op Amp
OPA172 | |
---|---|
Vcc | ±2.25V to ±18V, 4.5V to 36V |
VinCM | (V–) – 0.1V to (V+) – 2V |
Vout | Rail-to-rail |
Vos | 0.2mV |
Iq | 1.6mA |
Ib | 8pA |
UGBW | 10MHz |
SR | 10V/µs |
Number of Channels | 1,2,4 |
www.ti.com/product/OPA172 |
Design Alternate Op Amps
Parametric Search | |
---|---|
Vss | 5V |
VinCM | Rail-to-rail |
Vout | Rail-to-rail |
Ib | CMOS architecture |
UGBW | > 2.97MHz |
Number of Channels | 2 |
Rating | Catalog |
www.ti.com parametric op amp search |
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