We present a transimpedance amplifier stage based on a novel current mode feedback topology. This circuit employs NMOS and PMOS transistors exclusively and requires neither capacitor for stabilizing the transimpedance loop nor resistor for the transresistance feedback and transistor loading. This amplifier circuit is fully compatible with submicron digital CMOS processes. The active feedback network consists of two grounded-gate MOS devices which split the output current in both the feedback and output branches. The transresistance and the phase margin are adjustable through external DC signals. The measured rise time of the impulse response of the amplifier implemented in an industrial 0.7 µm CMOS process is 18 ns for a transresistance of 180 kΩ and 30 ns for a transresistance of 560 kΩ. The measured Equivalent Noise Charge (ENC) is 800 rms e -for an input capacitance of 20 pF with the transresistance adjusted to 560 kΩ.
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