Texas Instruments_OPA4364AQDRQ1
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Texas Instruments
OPA4364AQDRQ1

687-OPA4364AQDRQ1
PDF Datasheet
4-Ch RRIO Op Amp, 7MHz GBW, 1.8V-5.5V, 14-SOIC
6 Weeks

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Tech Specifications

Amplifier Type
GENERAL PURPOSE
Package/Case
D
Common Mode Rejection Ratio
74dB
Gain Bandwidth Product
7MHz
Input Bias Current
10pA
Input Offset Voltage (Vos)
3mV
Lead Free
Lead Free
Max Dual Supply Voltage
2.75V
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OPA4364AQDRQ1 Description

OPA4364AQDRQ1 Description

The OPA4364AQDRQ1 is a high-performance CMOS operational amplifier designed for automotive applications, manufactured by Texas Instruments. This quad-channel IC offers a wide supply voltage range from 1.8 V to 5.5 V, making it suitable for various power supply configurations. With a gain bandwidth product of 7 MHz and a slew rate of 5 V/µs, it provides excellent performance for high-frequency signal processing. The OPA4364AQDRQ1 features an extremely low input bias current of 1 pA and an input offset voltage of 1 mV, ensuring high precision in signal amplification. Each channel can deliver an output current of 85 mA, making it ideal for driving loads in demanding applications. The device is packaged in a 14-pin SOIC format, suitable for-mount surface assembly, and is available in tape and reel packaging for automated manufacturing processes.

OPA4364AQDRQ1 Features

  • Wide Supply Voltage Range: Operates from 1.8 V to 5.5 V, providing flexibility in power supply design.
  • High Gain Bandwidth Product: 7 MHz ensures high-frequency performance, suitable for fast signal processing.
  • Low Input Bias Current: 1 pA minimizes current leakage, maintaining signal integrity.
  • Low Input Offset Voltage: 1 mV ensures high accuracy in signal amplification.
  • High Output Current: 85 mA per channel allows for robust load driving capabilities.
  • Fast Slew Rate: 5 V/µs enables quick response to signal changes, ideal for dynamic applications.
  • Automotive Grade: Certified for automotive use, ensuring reliability and robustness in harsh environments.
  • Compliance: RoHS3 compliant and REACH unaffected, meeting environmental and regulatory standards.
  • Moisture Sensitivity Level: MSL 1 (Unlimited) ensures stability and reliability in various humidity conditions.
  • Packaging: Tape & Reel (TR) format facilitates efficient manufacturing and assembly processes.

OPA4364AQDRQ1 Applications

The OPA4364AQDRQ1 is ideal for a variety of automotive applications where high precision and reliability are required. Its wide supply voltage range and low input bias current make it suitable for sensor interfaces, where accurate signal conditioning is crucial. The high output current and fast slew rate enable it to drive actuators and other high-current loads effectively. Additionally, its automotive-grade certification ensures it can withstand the demanding conditions often found in automotive electronics. Specific applications include:

  • Sensor Signal Conditioning: Amplifying and conditioning signals from various sensors, such as temperature, pressure, and position sensors.
  • Actuator Control: Driving actuators in systems like power steering, braking, and suspension control.
  • Infotainment Systems: Processing audio and video signals in automotive infotainment systems.
  • Power Management: Managing power distribution and regulation in complex automotive electrical systems.

Conclusion of OPA4364AQDRQ1

The OPA4364AQDRQ1 from Texas Instruments is a versatile and high-performance CMOS operational amplifier tailored for automotive applications. Its wide supply voltage range, low input bias current, and high output current make it an excellent choice for precision signal processing and load driving. The device's automotive-grade certification and compliance with environmental standards ensure its reliability and suitability for use in demanding environments. Whether used in sensor interfaces, actuator control, or infotainment systems, the OPA4364AQDRQ1 delivers the performance and robustness required for modern automotive electronics.

FAQ

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The listed voltage-related specification for OPA4364AQDRQ1 is 3mV.
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