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AD5761RBCPZ
+StücklisteDigital to Analog Converters - DAC 16-BIT 1LSB, 5ppm Reference
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HerstellerAnaloge Geräte
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Herstellerteil #AD5761RBCPZ
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Datenblatt AD5761RBCPZ DataSheet
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Auf Lager13859
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Standard Pack Qty | 1500 |
| Packaging | Reel |
Übersicht
Description
Key features of the AD5761RBCPZ include:
1. Resolution and Accuracy: It offers a 16-bit resolution with an integral nonlinearity (INL) of ±4 LSB maximum, ensuring precise analog output.
2. Voltage Output Range: The DAC supports a unipolar output range of 0 V to +10 V and a bipolar output range of ±10 V, making it versatile for different signal requirements.
3. Interface: It features a serial peripheral interface (SPI) for digital communication, enabling easy integration with microcontrollers and other digital systems.
4. Low Power: The device operates with a low power consumption, which is critical for minimizing heat generation and extending the lifespan in power-sensitive applications.
5. Temperature Range: The AD5761RBCPZ is designed to operate across a wide temperature range, ensuring reliability in various environmental conditions.
Overall, the AD5761RBCPZ is a robust choice for high-precision digital-to-analog conversion needs.
Equivalent
1. Texas Instruments DAC8811 - A precision 16-bit digital-to-analog converter.
2. Maxim Integrated MAX5216 - A low-power, 16-bit DAC.
3. Microchip MCP4812 - A dual-channel, low-power, 12-bit DAC.
The choice depends on specific requirements such as resolution, number of channels, and power consumption. Always check the datasheets for compatibility with your application.
Features
1. Precision: Offers 16-bit resolution with high accuracy and low glitch energy, making it suitable for precision applications.
2. Output Range: Provides a wide range of bipolar and unipolar output voltages, configurable via software.
3. Interface: Utilizes a SPI-compatible serial interface, enabling easy integration with microcontrollers and other digital devices.
4. Output Amplifier: Includes an integrated output buffer amplifier for driving loads directly, ensuring stable performance.
5. Temperature Range: Designed to operate over an extended industrial temperature range, providing reliability in various environmental conditions.
6. Power Supply: Requires a single or dual power supply with low power consumption for efficient operation.
7. Features: Additional features include programmable gain, offset adjust, and a power-on reset to zero-scale or mid-scale.
These features make the AD5761RBCPZ suitable for applications in industrial automation, instrumentation, data acquisition systems, and more.
Pinout
- Pin Count: 16 pins
- Function: It is a single-channel, 16-bit, voltage output DAC with a programmable output range. The device is designed for high-performance applications and includes an on-chip voltage reference and an SPI-compatible interface for communication. The DAC provides a range of output voltages, offering flexibility for various applications.
Key features include:
- High precision with 16-bit resolution.
- On-chip precision reference.
- SPI interface for digital communication.
- Output amplifiers for voltage range adjustment.
The AD5761RBCPZ is used in applications such as industrial control, instrumentation, and automated test equipment where precise voltage output is necessary.
Manufacturer
Application
1. Industrial Automation: Used in process control, robotics, and programmable logic controllers (PLCs) for precise control of actuators and sensors.
2. Instrumentation: Utilized in test and measurement equipment for high-accuracy signal generation.
3. Communications: Employed in communication systems for modulation and signal processing.
4. Aerospace and Defense: Used in avionics and defense systems for precision control and signal processing.
5. Medical Devices: Applied in diagnostic and imaging equipment for accurate signal representation.
These applications benefit from the DAC's high accuracy, stability, and low power consumption.