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AD8079AR
+BOMIC BUFFER 2 CIRCUIT 8SOIC
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ManufacturerAnalog Devices Inc.
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Mfr. Part #AD8079AR
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Datasheet AD8079AR DataSheet
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In Stock4828
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Specifications
| Attribute | Value |
| PartStatus | Obsolete |
| AmplifierType | Buffer |
| NumberofCircuits | 2 |
| SlewRate | 800V/µs |
| Current-InputBias | 3 µA |
| Voltage-InputOffset | 10 mV |
| Current-Supply | 10mA (x2 Channels) |
| Current-Output/Channel | 70 mA |
| Voltage-SupplySpan(Min) | 6 V |
| Voltage-SupplySpan(Max) | 12 V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154", 3.90mm Width) |
| SupplierDevicePackage | 8-SOIC |
| BaseProductNumber | AD8079 |
| -3dbBandwidth | 260 MHz |
Overview
Description
The amplifier operates on a single or dual power supply, with a typical supply voltage range of ±2.5V to ±6V. Its output can drive a load of 1 kΩ to a maximum output swing close to the power supply rails, ensuring excellent performance in demanding environments.
The AD8079AR also incorporates features such as low total harmonic distortion (THD) and high common-mode rejection ratio (CMRR), contributing to improved signal integrity. Its small package size and robust performance characteristics make it a popular choice in industrial, automotive, and consumer electronics applications. Overall, the AD8079AR is ideal for designs requiring high-speed signal processing with minimal power consumption.
Equivalent
Features
1. High Slew Rate: Approximately 27 V/µs, allowing for fast signal transitions.
2. Wide Bandwidth: Offers a unity-gain bandwidth of around 100 MHz, suitable for high-frequency applications.
3. Low Noise: Features a low input voltage noise density of 4.5 nV/√Hz, ideal for precision applications.
4. Single-Supply Operation: Can operate from a single supply voltage, enhancing flexibility in design.
5. Low Total Harmonic Distortion: Typically less than 0.01%, ensuring excellent signal integrity.
6. Rail-to-Rail Output: Provides output swing close to the supply rails, maximizing dynamic range.
7. Temperature Range: Operates effectively across a wide temperature range from -40°C to +85°C.
8. Power Supply Current: Low quiescent current at about 5 mA, promoting energy efficiency.
These attributes make the AD8079AR suitable for applications in instrumentation, audio processing, and video signal amplification.
Pinout
The pin configuration is as follows:
1. Offset Null – Used for offset voltage adjustment.
2. Inverting Input (V-) – The inverting input terminal for signal input.
3. Non-Inverting Input (V+) – The non-inverting input terminal for signal input.
4. Output – The output terminal where the amplified signal is available.
5. Negative Power Supply (V-) – Connects to the negative voltage supply.
6. Positive Power Supply (V+) – Connects to the positive voltage supply.
7. NC (No Connect) – Not connected; typically left open.
8. Compensation – Used for frequency compensation if necessary.
The AD8079AR is designed for low distortion and high slew rate, making it suitable for high-frequency applications.
Manufacturer
Analog Devices is known for its innovation in high-performance analog technology and offers a broad portfolio of products, including amplifiers, converters, and sensors. The AD8079AR is a high-speed operational amplifier designed for applications requiring high bandwidth and low noise, making it suitable for various electronic circuits and systems.
Overall, Analog Devices is a key player in the semiconductor industry, providing critical components that enable advanced technologies in numerous fields.
Application
1. Signal Conditioning: Amplifying sensor signals in industrial and instrumentation applications.
2. Data Acquisition Systems: Enhancing signal quality in ADC interfaces.
3. Audio Processing: Used in high-fidelity audio equipment for better sound reproduction.
4. Video Processing: Ideal for video signal amplification and buffering due to its wide bandwidth.
5. Active Filters: Implementing low-pass, high-pass, and band-pass filters in communication systems.
6. Medical Devices: Used in instrumentation for biomedical applications like ECG and EEG monitoring.
Its low noise and high slew rate make it versatile across these domains.