Overview
The AD9632ARZ-REEL7 is a high-speed operational amplifier manufactured by Analog Devices Inc. This component is part of the AD9631/AD9632 series, known for its exceptional performance in high-frequency applications. The AD9632 is stable at gains of 2 or greater and features a voltage feedback architecture, combining the benefits of both current feedback and voltage feedback amplifiers. It is designed to meet the stringent requirements of various high-speed applications, including those in the fields of analog-to-digital conversion, video processing, and RF amplification.
Key Specifications
Parameter | Value | Unit |
---|---|---|
Manufacturer | Analog Devices Inc. | |
Package | 8-SOIC (0.154", 3.90mm Width) | |
Mounting Type | Surface Mount | |
Operating Temperature | -40°C to 85°C | |
Supply Voltage Range | ±3 V to ±6 V | V |
Quiescent Current | 17 mA | mA |
Slew Rate | 1300 V/μs | V/μs |
Bandwidth | 250 MHz | MHz |
Input Bias Current | 2 µA | µA |
Input Offset Voltage | 2 mV | mV |
Output Current | 70 mA | mA |
RoHS Status | Lead free / RoHS Compliant |
Key Features
- High-Speed Operation: The AD9632 features a high slew rate of 1300 V/μs and a bandwidth of 250 MHz, making it suitable for high-frequency applications.
- Low Distortion: The amplifier exhibits extremely low distortion, with harmonic distortion figures of -72 dBc at 20 MHz.
- Fast Settling Time: It has a settling time to 0.01% of 16 ns for a 2 V step, ensuring rapid and accurate pulse response.
- Voltage Feedback Architecture: Combines the benefits of both current feedback and voltage feedback amplifiers, providing a classical op-amp structure that works predictably in many designs.
- Wide Supply Voltage Range: Operates over a supply voltage range of ±3 V to ±6 V, offering flexibility in power supply design.
- High Impedance Inputs: Balanced high impedance inputs allow for maximum flexibility when designing active filters and other high-impedance circuits.
Applications
- ADC Input Drivers: Ideal for driving high-speed analog-to-digital converters (ADCs) due to its high bandwidth and low distortion.
- Differential Amplifiers: Used in differential amplifier configurations for high-speed and high-accuracy signal processing.
- IF/RF Amplifiers: Suitable for intermediate frequency (IF) and radio frequency (RF) amplification in communication systems.
- Pulse Amplifiers: Utilized in applications requiring fast and accurate pulse amplification.
- Professional Video and DAC Current to Voltage Conversion: Used in professional video equipment and in converting DAC current to voltage in various applications.
- Baseband and Video Communications: Employed in baseband and video communication systems where high-speed and low-distortion amplification is critical.
- Active Filters, Integrators, and Log Amps: Suitable for designing active filters, integrators, and logarithmic amplifiers due to its high impedance inputs and fast settling time.
Q & A
- What is the package type of the AD9632ARZ-REEL7?
The AD9632ARZ-REEL7 is packaged in an 8-SOIC (0.154", 3.90mm Width) package.
- What is the operating temperature range of the AD9632ARZ-REEL7?
The operating temperature range is -40°C to 85°C.
- What is the supply voltage range for the AD9632ARZ-REEL7?
The supply voltage range is ±3 V to ±6 V.
- What is the slew rate of the AD9632ARZ-REEL7?
The slew rate is 1300 V/μs.
- What is the bandwidth of the AD9632ARZ-REEL7?
The bandwidth is 250 MHz.
- Is the AD9632ARZ-REEL7 RoHS compliant?
Yes, the AD9632ARZ-REEL7 is lead-free and RoHS compliant.
- What are some typical applications of the AD9632ARZ-REEL7?
Typical applications include ADC input drivers, differential amplifiers, IF/RF amplifiers, pulse amplifiers, professional video, and baseband and video communications.
- What is the input bias current of the AD9632ARZ-REEL7?
The input bias current is 2 µA.
- What is the output current capability of the AD9632ARZ-REEL7?
The output current capability is 70 mA.
- How does the AD9632ARZ-REEL7 compare to current feedback amplifiers?
The AD9632ARZ-REEL7 combines the benefits of both current feedback and voltage feedback amplifiers, offering a classical op-amp structure that works more predictably in many designs.