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AD7524JR
+NomenclatureIC DAC 8BIT A-OUT 16SOIC
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FabricantAnalog Equipment GmbH.
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Pièce fabricant #AD7524JR
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Fiche technique AD7524JR DataSheet
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En stock7230
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Spécifications
| Attribut | Valeur |
| PartStatus | Obsolete |
| NumberofBits | 8 |
| NumberofD/AConverters | 1 |
| SettlingTime | 500ns |
| OutputType | Current - Unbuffered |
| DifferentialOutput | Yes |
| DataInterface | Parallel |
| ReferenceType | External |
| Voltage-Supply,Analog | 5V ~ 15V |
| Voltage-Supply,Digital | 5V ~ 15V |
| INL/DNL(LSB) | ±0.5 (Max), - |
| Architecture | R-2R |
| OperatingTemperature | -40°C ~ 85°C |
| Package/Case | 16-SOIC (0.154", 3.90mm Width) |
| SupplierDevicePackage | 16-SOIC |
| MountingType | Surface Mount |
| BaseProductNumber | AD7524 |
Présentation
Description
Key specifications include a maximum settling time of 1.5 μs and low glitch energy, which is essential for applications in telecommunications, instrumentation, and industrial control. The AD7524JR supports a wide supply voltage range and provides excellent linearity and temperature stability.
Additionally, the device is housed in a compact 16-lead DIP package, making it suitable for space-constrained designs. It is commonly used in applications requiring accurate signal conversion, such as audio processing, waveform generation, and data acquisition systems. Overall, the AD7524JR is recognized for its reliability and performance in demanding digital-to-analog conversion tasks.
Equivalent
Features
1. Resolution: 12-bit resolution for high accuracy in analog signal generation.
2. Output Voltage Range: Capable of providing a wide output voltage range, typically from 0V up to the reference voltage.
3. Low Power Consumption: Designed for low power usage, making it suitable for battery-operated devices.
4. TTL/CMOS Compatible Inputs: Accepts standard TTL and CMOS logic levels for easy interfacing with microcontrollers and digital circuitry.
5. Bipolar and Unipolar Output Modes: Supports both bipolar and unipolar output configurations, enhancing versatility in applications.
6. Fast Settling Time: Quick response time for dynamic applications, ensuring accurate signal reproduction.
7. Temperature Stability: Designed for stable performance across a wide temperature range, ensuring reliability in various environments.
The AD7524JR is ideal for applications such as waveform generation, signal conditioning, and process control.
Pinout
Key functions of the pins include:
- Data Input (D0-D11): 12 digital input pins for the binary data to be converted.
- Reference Voltage (Vref): Provides the reference voltage for the DAC conversion.
- Output (Vout): Analog output voltage representing the digital input value.
- Control Pins: Includes pins for power supply (VDD, VSS), chip select (CS), write strobe (WR), and load (LD) to control the operation of the DAC.
- Feedback and compensation: Pins for feedback (if applicable) and for stabilizing the output.
This device is suitable for applications in industrial control, instrumentation, and audio systems, among others.
Manufacturer
Analog Devices focuses on delivering high-performance solutions that enable better signal processing, data conversion, and power management. With a commitment to innovation, they provide a wide range of products, including amplifiers, converters, sensors, and RF components. The company is known for its strong emphasis on research and development, striving to advance technology and improve signal integrity and processing efficiency.
Headquartered in Norwood, Massachusetts, Analog Devices operates globally, serving a diverse customer base and supporting numerous industries with cutting-edge technology and solutions.
Application
1. Industrial Automation: For process control and automation systems.
2. Instrumentation: In signal conditioning and measurement equipment.
3. Telecommunications: For signal modulation and demodulation.
4. Audio Equipment: In digital audio conversion and sound synthesis.
5. Test and Measurement: As part of waveform generation and calibration setups.
6. Embedded Systems: In microcontroller interfaces for analog output.
Its high precision and stability make it suitable for various applications requiring accurate analog signal representation.