Supply flexibility and output swing for mixed-voltage boards
The LM6152ACM/NOPB: The 2.7 V to 24 V supply span covers a single-cell Li-ion rail at the low end through a 24 V industrial bus at the high end — no intermediate regulator needed when the same op-amp must serve both domains. Rail-to-rail output swings to within millivolts of each supply, so the usable signal range is nearly the full supply voltage. Each channel draws 1.6 mA quiescent supply current — 3.2 mA total for the dual package. In a battery-powered design running from a 3.3 V rail, the op-amp's own draw is about 10.6 mW, leaving the bulk of the power budget for the ADC and reference.
Package and temperature grade — commercial, not extended-range
The 8-SOIC narrow-body package (3.90 mm width) uses the industry-standard footprint shared with hundreds of op-amps — the LM6152ACM/NOPB drops into a layout originally routed for an SOIC-8 part without a board spin. The operating temperature range is 0°C to 70°C, the commercial grade; it is not rated for -40°C industrial or automotive ambient, so budget a temperature-grade change if the enclosure sees freezing or under-hood conditions. Input offset voltage is 300 µV typical — this is a typical figure, not a guaranteed maximum. For precision DC applications where every microvolt matters, the wider distribution of the bipolar input stage means a trim or a higher-grade variant may be needed. Input bias current is 500 nA — a bipolar input stage. For source impedances above 10 kΩ, the voltage drop across the source resistance due to bias current starts to matter; a CMOS-input op-amp with picoamp bias would be a better fit for high-impedance sensors.
Lifecycle and compliance — active, ROHS3, no PCN watch
The part is ROHS3 compliant, meaning no exemptions for lead in solder or for PBB/PBDE flame retardants. No REACH or UL documentation is carried in the available record; the standard TI compliance declaration covers the ROHS3 status.