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DAC7664YBRG4

DAC7664YBRG4

Product Overview

Category: Digital-to-Analog Converter (DAC)

Use: The DAC7664YBRG4 is a high-performance, quad-channel, 16-bit digital-to-analog converter. It is designed to convert digital signals into analog voltages with exceptional accuracy and precision.

Characteristics: - Quad-channel: The DAC7664YBRG4 consists of four independent channels, allowing for simultaneous conversion of multiple digital signals. - High resolution: With a 16-bit resolution, this DAC provides precise and detailed analog outputs. - Low power consumption: The DAC7664YBRG4 operates at low power levels, making it suitable for battery-powered applications. - Fast settling time: It offers a fast settling time, ensuring quick response to changes in the input digital signals. - Wide voltage range: The DAC7664YBRG4 supports a wide voltage range, enabling compatibility with various systems. - Small package size: It comes in a compact package, making it suitable for space-constrained applications.

Package: The DAC7664YBRG4 is available in a small-outline integrated circuit (SOIC) package.

Essence: The essence of the DAC7664YBRG4 lies in its ability to accurately convert digital signals into analog voltages, providing a crucial interface between digital systems and analog devices.

Packaging/Quantity: The DAC7664YBRG4 is typically sold in reels containing a quantity of 250 units per reel.

Specifications

  • Resolution: 16 bits
  • Number of Channels: 4
  • Supply Voltage Range: 2.7V to 5.5V
  • Output Voltage Range: 0V to Vref
  • Settling Time: 10μs
  • Power Consumption: 1.8mW (typical)
  • Operating Temperature Range: -40°C to +85°C

Detailed Pin Configuration

The DAC7664YBRG4 has a total of 20 pins, which are assigned as follows:

  1. VDD: Positive power supply
  2. VSS: Ground reference
  3. AGND: Analog ground
  4. AREF: Analog reference voltage
  5. OUTA: Analog output for Channel A
  6. OUTB: Analog output for Channel B
  7. OUTC: Analog output for Channel C
  8. OUTD: Analog output for Channel D
  9. DIN: Digital input data
  10. SCLK: Serial clock input
  11. SYNC: Chip select input
  12. LDAC: Load DAC input
  13. CLR: Clear input
  14. REFOUT: Reference voltage output
  15. REFIN: Reference voltage input
  16. NC: No connection
  17. NC: No connection
  18. NC: No connection
  19. NC: No connection
  20. GND: Ground reference

Functional Features

  • Simultaneous Update: The DAC7664YBRG4 allows simultaneous updating of all four channels, ensuring synchronized analog outputs.
  • Serial Interface: It utilizes a serial interface for easy integration with microcontrollers and other digital systems.
  • Power-On Reset: The DAC7664YBRG4 includes a power-on reset circuitry that ensures proper initialization upon power-up.
  • Low Glitch Energy: It minimizes glitch energy during transitions, resulting in improved signal integrity.
  • Internal Voltage Reference: The DAC7664YBRG4 incorporates an internal voltage reference, eliminating the need for an external reference source.

Advantages and Disadvantages

Advantages: - High resolution and accuracy - Low power consumption - Fast settling time - Wide voltage range - Compact package size - Simultaneous update capability

Disadvantages: - Limited number of channels (4) - Requires external microcontroller or digital system for operation

Working Principles

The DAC7664YBRG4 operates by converting digital input data into corresponding analog voltages. It utilizes a serial interface to receive the digital data and updates all four channels simultaneously. The internal voltage reference ensures accurate conversion, while the power-on reset circuitry initializes the DAC upon power-up.

Detailed Application Field Plans

The DAC7664YBRG4 finds applications in various fields, including:

  1. Industrial Automation: It can be used in control systems to generate precise analog signals for controlling actuators, motors, and sensors.
  2. Audio Equipment: The DAC7664YBRG4 is suitable for audio devices that require high-resolution digital-to-analog conversion, such as digital audio players and professional audio equipment.
  3. Test and Measurement Instruments: It can be employed in test and measurement instruments to generate accurate analog signals for testing and calibration purposes.
  4. Communication Systems: The DAC7664YBRG4 can be utilized in communication systems to convert digital signals into analog voltages for modulation

Texniki həllərdə DAC7664YBRG4 tətbiqi ilə bağlı 10 ümumi sual və cavabı sadalayın

Sure! Here are 10 common questions and answers related to the application of DAC7664YBRG4 in technical solutions:

  1. Q: What is DAC7664YBRG4? A: DAC7664YBRG4 is a digital-to-analog converter (DAC) IC manufactured by Texas Instruments.

  2. Q: What is the resolution of DAC7664YBRG4? A: DAC7664YBRG4 has a resolution of 16 bits, allowing for high precision analog output.

  3. Q: What is the supply voltage range for DAC7664YBRG4? A: The supply voltage range for DAC7664YBRG4 is typically between 2.7V and 5.5V.

  4. Q: What is the maximum output current of DAC7664YBRG4? A: DAC7664YBRG4 can provide a maximum output current of 2 mA per channel.

  5. Q: How many channels does DAC7664YBRG4 have? A: DAC7664YBRG4 has 4 independent channels, each capable of generating an analog output.

  6. Q: What is the interface used to communicate with DAC7664YBRG4? A: DAC7664YBRG4 uses a serial interface, specifically SPI (Serial Peripheral Interface).

  7. Q: Can DAC7664YBRG4 operate in both unipolar and bipolar modes? A: Yes, DAC7664YBRG4 can be configured to operate in either unipolar or bipolar mode, depending on the application requirements.

  8. Q: What is the settling time of DAC7664YBRG4? A: The settling time of DAC7664YBRG4 is typically 10 µs, ensuring fast and accurate analog output.

  9. Q: Can DAC7664YBRG4 be used in industrial applications? A: Yes, DAC7664YBRG4 is suitable for various industrial applications such as process control, automation, and instrumentation.

  10. Q: Does DAC7664YBRG4 have any built-in reference voltage? A: No, DAC7664YBRG4 requires an external reference voltage to generate the desired analog output.

Please note that these answers are general and may vary depending on specific datasheet specifications and application requirements.