LM7321MA


Single 32V 20MHz RRIO op amp, unlimited capacitive load, AEC-Q100, SOIC-8, OBSOLETE (replace with LM7321MAX/NOPB)

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Manufacturer Part:

LM7321MA

Package:

SOIC-8 (4.9 x 3.9 x 1.5 mm)

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Description

The LM7321MA is a single-channel 32V 20MHz rail-to-rail input/output op amp from TI in SOIC-8 (4.9×3.9mm). Key feature: unlimited capacitive load drive capability without oscillation. Output sources +65mA/sinks -100mA. GBW: 20MHz, slew rate: 18V/us. Input CM extends 0.3V beyond both rails. 15nV/rtHz noise, 5mV max Vos, 1.1mA/ch Iq. CMRR: 80dB, PSRR: 78dB min. Supply: 2.5V-32V (single) or +/-1.25V to +/-16V (dual). AEC-Q100 Grade 1. -40C to +125C. Tube packaging (95/tube). OBSOLETE — direct replacement: LM7321MAX/NOPB (tape and reel, same specs, pin-compatible).

The LM7321MA is a single-channel high-output-current rail-to-rail input and output operational amplifier from Texas Instruments (originally National Semiconductor), housed in an 8-pin SOIC package. It is designed for applications requiring a wide supply voltage range, high output drive capability, and the ability to drive unlimited capacitive loads without oscillation. NOTE: This device is OBSOLETE; the direct replacement is LM7321MAX/NOPB (same silicon, tape and reel packaging).

The LM7321MA operates over a supply voltage range of 2.5V to 32V (single supply) or +/-1.25V to +/-16V (dual supply), making it suitable for a wide variety of industrial, automotive, and communications applications. The gain bandwidth product is 20 MHz with a slew rate of 18 V/us, providing fast settling for dynamic signals.

A standout feature is the unlimited capacitive load drive capability. Unlike most op amps that oscillate with even moderate capacitive loads (100 pF to 1 nF), the LM7321MA remains stable driving any value of capacitance directly at its output without requiring a series isolation resistor. This makes it ideal for driving long cables, heavy filter capacitances, MOSFET gates, and other highly capacitive loads.

The output can source +65 mA and sink -100 mA (typical), providing strong drive for low-impedance loads. The input common-mode voltage range extends 0.3V beyond both supply rails, allowing true rail-to-rail input operation even with signals that slightly exceed the supplies. The output swings to within approximately 60 mV of the negative rail and 150 mV of the positive rail under typical conditions.

Key specifications at +/-5V: GBW 20 MHz, slew rate 18 V/us, input offset voltage 5 mV max, offset drift +/-2 uV/C, input bias current 0.45 uA typical, supply current 1.1 mA/channel, input voltage noise 15 nV/sqrt(Hz) at 1 kHz, CMRR 80 dB typical, PSRR 78 dB min, THD+N -86 dB.

The device is AEC-Q100 Grade 1 qualified, making it suitable for automotive applications. The operating temperature range is -40C to +125C. The MA suffix denotes SOIC-8 package in tube packaging (95 units per tube). The LM7321MAX/NOPB variant uses tape and reel packaging (2,500 units per reel) and is the recommended replacement.

The device architecture is bipolar, which explains the relatively high input bias current (0.45 uA typical) compared to CMOS op amps, but also provides the superior output drive capability, lower noise, and wider bandwidth. The bipolar input stage contributes to the low 15 nV/sqrt(Hz) voltage noise density, making the LM7321MA suitable for low-noise signal chain applications.

Applications include high-side and low-side current sensing, line drivers, capacitive load drivers, ADC input buffers, and automotive sensor interfaces.

The LM7321MA operates as a single-channel bipolar operational amplifier with rail-to-rail input and output stages, designed for high output drive and unlimited capacitive load stability.

Bipolar Input Stage: Unlike CMOS op amps that use MOSFET differential pairs, the LM7321MA uses a bipolar input stage. This provides lower input voltage noise (15 nV/sqrt(Hz)) and wider bandwidth (20 MHz GBW) but at the cost of higher input bias current (0.45 uA typical) compared to CMOS alternatives. The input stage uses a complementary NPN/PNP pair configuration to achieve rail-to-rail input common-mode range. The NPN pair handles input voltages near the positive rail, while the PNP pair handles voltages near the negative rail. There is a small crossover region in the middle of the common-mode range where both pairs are active, which can cause a slight change in offset voltage and CMRR. The input common-mode range extends 0.3V beyond both supply rails, allowing the amplifier to process signals that slightly exceed the power supplies — useful for overvoltage-protected current sensing circuits.

Rail-to-Rail Output Stage: The output stage uses a complementary emitter-follower configuration capable of sourcing +65 mA and sinking -100 mA. The output voltage swing extends to within approximately 60 mV of the negative rail and 150 mV of the positive rail at light loads. The asymmetric source/sink capability (65 mA source vs 100 mA sink) results from the different saturation voltages of the NPN pull-up and PNP pull-down transistors. This strong output drive enables the amplifier to directly drive low-impedance loads such as 50-ohm cables, LED arrays, and small motors.

Unlimited Capacitive Load Stability: The key differentiating feature of the LM7321MA is its ability to drive any value of capacitive load without oscillation. This is achieved through a special internal compensation scheme that includes a dominant pole and zero network that adapts to the load conditions. In conventional op amps, the capacitive load creates an additional pole at the output node that degrades phase margin and causes oscillation. The LM7321MA compensation network effectively adds a zero that cancels this load-induced pole, maintaining adequate phase margin regardless of the capacitive load value. The trade-off is slightly reduced small-signal bandwidth and increased supply current compared to a conventional uncompensated op amp.

Frequency Compensation: The device is internally compensated for unity-gain stability. The dominant pole is set at approximately 200 Hz, giving a 20 MHz gain-bandwidth product with a -20 dB/decade rolloff to the 0 dB crossing. The phase margin at unity gain is typically 60 degrees without capacitive load and remains adequate (above 30 degrees) with any capacitive load. The slew rate of 18 V/us is set by the available charging current for the internal compensation capacitor.

Power Supply Operation: The wide 2.5V to 32V supply range is achieved through the bipolar architecture, which can tolerate higher voltage swings than CMOS processes. The device operates equally well at 2.7V single supply for low-voltage logic systems and at +/-15V for industrial signal conditioning. The supply current per channel is 1.1 mA typical, which is relatively high for a single op amp but justified by the high output drive and wide bandwidth. The device does not have a shutdown or enable pin, so the supply current is always drawn when powered.

Pin Name Type Description
1 NC No internal connection; leave floating or tie to GND
2 IN- Input Inverting input; input bias current 0.45 uA typ; common-mode range extends 0.3V beyond both rails
3 IN+ Input Non-inverting input; rail-to-rail input range; 15 nV/rtHz input voltage noise at 1 kHz
4 V- Power Negative supply; connect to ground for single supply or negative rail for dual supply; bypass with 0.1 uF ceramic
5 NC No internal connection; leave floating or tie to GND
6 OUT Output Amplifier output; sources +65 mA / sinks -100 mA; drives unlimited capacitive load; swings to within 60 mV of V- and 150 mV of V+
7 V+ Power Positive supply; 2.5V to 32V total supply range; bypass with 0.1 uF ceramic capacitor close to pin
8 NC No internal connection; leave floating or tie to GND
Application Description
High-Side / Low-Side Current Sensing Input CM range extends 0.3V beyond both rails, enabling accurate current measurement through shunt resistors at or near supply rails; 80 dB CMRR rejects common-mode voltage; 20 MHz bandwidth captures fast transients
Capacitive Load Driver Unlimited capacitive load stability drives long cables, heavy filter caps, and MOSFET gates directly without isolation resistors; eliminates oscillation risk in cable-driving applications
Line Driver / Coaxial Cable +65 mA / -100 mA output current drives 50-ohm and 75-ohm cables with usable signal levels; 20 MHz bandwidth supports video and fast data signals
Automotive Sensor Interface AEC-Q100 Grade 1 qualified for automotive under-hood environments; wide 2.5V-32V supply range covers 12V/24V vehicle electrical systems; strong output drive interfaces directly to ADCs
ADC Input Buffer Rail-to-rail output maximizes ADC dynamic range; low 15 nV/rtHz noise preserves signal integrity; unlimited capacitive load allows direct connection to ADC sampling capacitors
Model Manufacturer Compatibility Key Difference
LM7321MAX/NOPB TI Direct Replacement / Pin-Compatible Exact same silicon and specifications; tape and reel packaging (2500/reel) vs tube packaging; recommended replacement for LM7321MA
LM7321MF/NOPB TI Functionally Identical SOT-23-5 package; same electrical specs; smaller footprint for space-constrained designs; different pinout
OPA2990IDR TI Functionally Similar Dual-channel; 25 MHz GBW; 1.5 mV max Vos; 12 nV/rtHz noise; 40V supply; newer design with better specs
LM7322MA/NOPB TI Functionally Similar Dual-channel version of LM7321; same 20 MHz GBW and unlimited capacitive load; SOIC-8 package; for dual-channel designs
ADA4077-1ARZ ADI Functionally Similar Precision op amp; 3.1 MHz GBW; ultra-low 50 uV max Vos; 30V supply; better precision but lower bandwidth and no unlimited cap load
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Certification
We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.

Shipping & Payment

All electronic components we source from our partnered supply chains go through strict incoming inspections.Through careful testing, we ensure everything delivered to customers is genuine original parts and meets quality requirements.In addition, we keep complete inspection records to make the entire supply chain process clear and traceable.

Certification
We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.

Service & Packaging

All electronic components we source from our partnered supply chains go through strict incoming inspections.Through careful testing, we ensure everything delivered to customers is genuine original parts and meets quality requirements.In addition, we keep complete inspection records to make the entire supply chain process clear and traceable.

Certification
We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.