The OPA955 is a wideband,
ultra-low noise operational amplifier with bipolar inputs for wideband transimpedance and
voltage feedback amplifier applications. When the device is configured as a transimpedance
amplifier (TIA), the 11GHz gain bandwidth product (GBWP) enables high closed-loop
bandwidths at transimpedance gains up to tens of kilohms. The following graphs show the
transimpedance bandwidth and transimpedance pulse response performance of the OPA955 in low-capacitance photodiode (PD) applications.
The OPA955 is a viable
amplifier for wideband transimpedance applications, high-speed data acquisition systems, and
applications with weak signal inputs that require ultra-low noise and high-gain front ends.
For example, the OPA955 can operate in optical time-of-flight (ToF)
systems along with time-to-digital converters, such as the TDC7201, and integrated
laser drivers, such as the LMH13000. The OPA955 can also be used to drive a
high-speed analog-to-digital converter (ADC) in high-resolution LiDAR systems with a
differential output amplifier, such as the THS4541
or LMH5401 devices. For optimized frequency respone, the OPA955 package has a feedback pin (FB) that simplifies the feedback
network connection between the input and output.
The OPA955 is a wideband,
ultra-low noise operational amplifier with bipolar inputs for wideband transimpedance and
voltage feedback amplifier applications. When the device is configured as a transimpedance
amplifier (TIA), the 11GHz gain bandwidth product (GBWP) enables high closed-loop
bandwidths at transimpedance gains up to tens of kilohms. The following graphs show the
transimpedance bandwidth and transimpedance pulse response performance of the OPA955 in low-capacitance photodiode (PD) applications.
The OPA955 is a viable
amplifier for wideband transimpedance applications, high-speed data acquisition systems, and
applications with weak signal inputs that require ultra-low noise and high-gain front ends.
For example, the OPA955 can operate in optical time-of-flight (ToF)
systems along with time-to-digital converters, such as the TDC7201, and integrated
laser drivers, such as the LMH13000. The OPA955 can also be used to drive a
high-speed analog-to-digital converter (ADC) in high-resolution LiDAR systems with a
differential output amplifier, such as the THS4541
or LMH5401 devices. For optimized frequency respone, the OPA955 package has a feedback pin (FB) that simplifies the feedback
network connection between the input and output.