In this comprehensive guide, we'll unravel the intricacies of OP727ARUZ-REEL, providing you with a roadmap to precision amplification in your electronic designs.
The Analog Devices, Inc. OP727ARUZ-REEL stands as a beacon of precision in the realm of electronics. As a dual precision amplifier, this component redefines accuracy and versatility in signal processing. With its sophisticated design and advanced features, the OP727ARUZ-REEL offers a powerful solution for applications demanding precision and reliability.
l Precision Redefined: With a rail-to-rail output and dual channels, it opens up a realm of possibilities for your designs. Whether you're pushing the boundaries of single or dual power supplies, this amplifier delivers unmatched precision.
l Adaptive Supply Voltage: From a minimum single supply voltage of 2.7V to a maximum of 30V, and a typical dual supply voltage range of ±3|±5|±9|±12, the OP727ARUZ-REEL adapts to diverse power supply configurations. Its flexibility makes it an ideal choice for a wide array of electronic applications.
l Low Input Offset Voltage: With a maximum input offset voltage of 0.3mV at -40°C to 85°C, this amplifier ensures accuracy even in challenging temperature conditions. Precision remains a constant, making it suitable for applications demanding reliability across varying environments.
Let's dive into the technical specifications that define the OP727ARUZ-REEL:
Type | Parameter |
Type | Precision Amplifier |
Manufacturer Type | Precision Amplifier |
Number of Channels per Chip | 2 |
Rail to Rail | Rail to Rail Output |
Process Technology | BiCMOS |
Output Type | CMOS |
Maximum Input Offset Voltage (mV) | 0.3@5V@-40C to 85C |
Minimum Single Supply Voltage (V) | 2.7 |
Maximum Single Supply Voltage (V) | 30 |
Minimum Dual Supply Voltage (V) | ±1.35 |
Typical Dual Supply Voltage (V) | ±3|±5|±9|±12 |
Maximum Dual Supply Voltage (V) | ±15 |
Typical Low Level Output Voltage (V) | 0.126 |
Typical High Level Output Voltage (V) | 4.91 |
Maximum Input Offset Current (uA) | 0.002@5V@-40C to 85C |
Typical Input Bias Current (uA) | 0.0055@5V@-40C to 85C |
Maximum Input Bias Current (uA) | 0.011@5V@-40C to 85C |
Maximum Supply Current (mA) | 0.58@5V |
Typical Output Current (mA) | 10@5V |
Power Supply Type | Single|Dual |
Typical Slew Rate (V/us) | 0.2@5V |
Typical Input Noise Voltage Density (nV/rtHz) | 15@5V |
Input Offset Voltage Drift (uV/°C) | 1.5 |
Typical Voltage Gain (dB) | 113.98 |
Typical Noninverting Input Current Noise Density (pA/rtHz) | 0.13@5V |
Minimum PSRR (dB) | 120 |
Minimum CMRR (dB) | 104 |
Minimum CMRR Range (dB) | 95 to 105 |
Typical Gain Bandwidth Product (MHz) | 0.7 |
Shut Down Support | No |
Minimum Operating Temperature (°C) | -40 |
Maximum Operating Temperature (°C) | 85 |
Supplier Temperature Grade | Extended Industrial |
Packaging | Tape and Reel |
Mounting | Surface Mount |
Package Height | 1.05(Max) |
Package Width | 4.4 |
Package Length | 3 |
PCB changed | 8 |
Standard Package Name | SO |
Supplier Package | TSSOP |
Pin Count | 8 |
Lead Shape | Gull-wing |
The OP727ARUZ-REEL's versatility shines in various applications:
l Signal Conditioning: Perfect for applications where precision is paramount, such as sensor interfaces and measurement systems, the OP727ARUZ-REEL ensures accurate signal conditioning.
l Power-Efficient Designs: With a low supply current of 0.58mA at 5V, it's an excellent choice for battery-powered devices, emphasizing energy efficiency without compromising on performance.
l High-Quality Audio Amplification: Leverage its precision for high-fidelity audio applications, where maintaining the integrity of the signal is crucial.
Analog Devices, Inc. (ADI) stands as a global leader in analog and mixed-signal technology, pioneering transformative solutions since 1965. Renowned for innovation, ADI's diverse portfolio of high-performance integrated circuits spans precision amplifiers, data converters, sensors, and digital signal processing.
As we conclude our exploration of the Analog Devices, Inc. OP727ARUZ-REEL, it's evident that this dual precision amplifier is a game-changer in the world of electronics.