The OPA396, OPA2396, and OPA4396 (OPAx396) feature a combination of high bandwidth (1MHz)
along with very low quiescent current (23.5µA) in a high-precision amplifier. These
features combined with rail-to-rail input and output make these devices an excellent
choice in high-gain, low-power applications. An ultra-low input bias current of
10fA, 100µV of offset (maximum), and 1.2µV/°C of drift over temperature help
maintain high precision in ratiometric and amperometric sensor front ends that have
demanding low-power requirements.
The OPAx396 use Texas Instruments proprietary e‑trim™ operational amplifier technology, enabling a unique combination of
ultra-low offset and low input offset drift without the need for any input switching
or auto-zero techniques. The CMOS-based technology platform also features a modern,
robust output stage design that is tolerant of high output capacitance, alleviating
stability problems that are common in typical low-power amplifiers.
The OPA396, OPA2396, and OPA4396 (OPAx396) feature a combination of high bandwidth (1MHz)
along with very low quiescent current (23.5µA) in a high-precision amplifier. These
features combined with rail-to-rail input and output make these devices an excellent
choice in high-gain, low-power applications. An ultra-low input bias current of
10fA, 100µV of offset (maximum), and 1.2µV/°C of drift over temperature help
maintain high precision in ratiometric and amperometric sensor front ends that have
demanding low-power requirements.
The OPAx396 use Texas Instruments proprietary e‑trim™ operational amplifier technology, enabling a unique combination of
ultra-low offset and low input offset drift without the need for any input switching
or auto-zero techniques. The CMOS-based technology platform also features a modern,
robust output stage design that is tolerant of high output capacitance, alleviating
stability problems that are common in typical low-power amplifiers.