Overview
The AD8010AR-16, produced by Analog Devices Inc., is a low power, high current amplifier designed to deliver high performance in various signal processing applications. This current feedback amplifier is capable of driving high current loads, making it ideal for applications such as video distribution amplifiers, VDSL and xDSL line drivers, and other high data rate systems. The AD8010AR-16 operates over an industrial temperature range of –40°C to +85°C and is available in several package options, including an 8-lead DIP, 16-lead wide body SOIC, and a thermally enhanced 8-lead SOIC.
Key Specifications
Parameter | Value | Conditions |
---|---|---|
Output Current | 200 mA | RL = 9 Ω |
Short-Circuit Current | 240 mA | |
Output Voltage Swing | ±2.1 V to ±3.0 V | RL = 18.75 Ω to 150 Ω |
Gain Flatness | 0.1 dB to 60 MHz | G = +1, RL = 18.75 Ω |
Bandwidth | 230 MHz | G = +1, RL = 18.75 Ω |
Slew Rate | 800 V/μs | RL = 18.75 Ω |
Settling Time | 25 ns to 0.1% | |
Power Supply Range | ±4.5 V to ±6.0 V | |
Quiescent Current | 15.5 mA to 20 mA | TMIN to TMAX |
Power Supply Rejection Ratio | 50 dB to 66 dB | +VS = +4 V to +6 V, –VS = –4 V to –6 V |
Key Features
- High Output Current: Capable of delivering up to 200 mA of output current, making it suitable for driving low impedance loads.
- High-Speed Performance: Features a –3 dB bandwidth of 230 MHz and a slew rate of 800 V/μs, ensuring high-speed signal transmission.
- Low Differential Gain and Phase Error: Maintains video specifications with 0.02% differential gain and 0.03° differential phase errors when driving multiple video loads.
- Low Power Consumption: Operates with a typical quiescent current of 15.5 mA from ±5 V supplies.
- Wide Operating Temperature Range: Functions over an industrial temperature range of –40°C to +85°C.
- Multiple Package Options: Available in 8-lead DIP, 16-lead wide body SOIC, and thermally enhanced 8-lead SOIC packages.
Applications
- Video Distribution Amplifiers: Ideal for driving multiple video loads with high signal quality and low differential gain and phase errors.
- VDSL and xDSL Line Drivers: Suitable for high data rate Digital Subscriber Line systems due to its high output current and bandwidth capabilities.
- Laboratory and Testing Equipment: Used in signal amplification, frequency conversion, and noise control in various testing and measurement instruments.
- Medical Devices: Employed in medical diagnostic systems to enhance and process signals for improved accuracy and precision.
- Audio Processing: Utilized in sound systems, headphones, and speakers to enhance volume and clarity.
- Industrial Automation: Used in industrial control equipment, measuring instruments, and robots for precise control and measurement.
Q & A
- What is the maximum output current of the AD8010AR-16?
The AD8010AR-16 can deliver up to 200 mA of output current.
- What is the bandwidth of the AD8010AR-16?
The AD8010AR-16 has a –3 dB bandwidth of 230 MHz at a gain of +1 and a load resistance of 18.75 Ω.
- What are the typical power supply requirements for the AD8010AR-16?
The AD8010AR-16 operates from ±4.5 V to ±6.0 V power supplies and consumes a typical quiescent current of 15.5 mA.
- What is the differential gain and phase error of the AD8010AR-16 when driving video loads?
The AD8010AR-16 maintains 0.02% differential gain and 0.03° differential phase errors when driving multiple video loads.
- What are the available package options for the AD8010AR-16?
The AD8010AR-16 is available in 8-lead DIP, 16-lead wide body SOIC, and thermally enhanced 8-lead SOIC packages.
- What is the operating temperature range of the AD8010AR-16?
The AD8010AR-16 operates over an industrial temperature range of –40°C to +85°C.
- How does the AD8010AR-16 perform in terms of slew rate and settling time?
The AD8010AR-16 has a slew rate of 800 V/μs and a settling time of 25 ns to 0.1%.
- What are some common applications of the AD8010AR-16?
The AD8010AR-16 is commonly used in video distribution amplifiers, VDSL and xDSL line drivers, laboratory and testing equipment, medical devices, audio processing, and industrial automation.
- How should the power pins of the AD8010AR-16 be bypassed for optimal performance?
The power pins should be bypassed using parallel bypass capacitors from the positive supply to the negative supply and then to ground, with 0.1 µF ceramic capacitors recommended for high frequency bypassing.
- What is the power supply rejection ratio (PSRR) of the AD8010AR-16?
The AD8010AR-16 has a PSRR of 50 dB to 66 dB depending on the power supply voltage range.