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AD5663RBRMZ-3
+BOMIC DAC 16BIT V-OUT 10MSOP
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メーカーテキサス・インスツルメンツ
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メーカー品番 #AD5663RBRMZ-3
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データシート AD5663RBRMZ-3 DataSheet
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パッケージ MSOP-10
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在庫状況7246
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
| Package / Case | Bulk,Tube |
| Series | nanoDAC® |
| Part Status | Active |
| Number of Bits | 16 |
| Number of D/A Converters | 2 |
| Settling Time | 7µs |
| Output Type | Voltage - Buffered |
| Differential Output | No |
| Data Interface | SPI, DSP |
| Reference Type | External, Internal |
| Voltage - Supply, Analog | 2.7V ~ 3.6V |
| Voltage - Supply, Digital | 2.7V ~ 3.6V |
| INL / DNL(LSB) | ±8, ±1 (Max) |
| Architecture | String DAC |
| Operating Temperature | -40°C ~ 105°C |
| Supplier Device Package | 10-MSOP |
概要
Description
The AD5663RBRMZ-3 offers a buffered output that can drive up to 10 kΩ loads with high accuracy. It includes an I²C-compatible serial interface, allowing for easy integration with a wide range of microcontrollers and processors. The device also incorporates an internal reference, enhancing its ease of use and reducing the need for additional components.
With a small MSOP-10 package, the AD5663RBRMZ-3 is designed for space-constrained applications. Its high resolution, low power consumption, and ease of integration make it ideal for applications such as data acquisition systems, industrial automation, and instrumentation.
Equivalent
1. DAC8562 from Texas Instruments: A dual 16-bit DAC with similar voltage reference options.
2. MCP4922 from Microchip Technology: A dual 12-bit DAC, though slightly lower resolution.
3. LTC2656 from Analog Devices: Offers multiple channel options with 16-bit resolution.
When selecting an equivalent, ensure compatibility in parameters like resolution, voltage reference, and communication interface.
Features
1. Resolution and Channels: It offers 16-bit resolution with two independent DAC channels, allowing for high precision and flexibility in applications requiring multiple outputs.
2. Voltage Output: The device can provide a buffered voltage output, ensuring stable and consistent performance, with a typical output range of 0 V to V_REF.
3. SPI Interface: The DAC features a standard 3-wire serial peripheral interface (SPI), supporting communication speeds up to 50 MHz, which facilitates easy integration with microcontrollers and other digital devices.
4. Power Supply: The AD5663RBRMZ-3 operates from a single supply voltage ranging from 2.7 V to 5.5 V, making it suitable for low-power applications.
5. Integrated Reference: It includes an internal reference with an output voltage of 1.25 V, which can be disabled if an external reference is preferred.
6. Compact Package: The device is available in a compact 10-lead MSOP package, optimizing it for space-constrained applications.
These features make the AD5663RBRMZ-3 ideal for use in industrial process control, instrumentation, and portable equipment.
Pinout
Pin Functions:
1. VDD: Power supply pin.
2. GND: Ground reference for the device.
3. VOUTA: Analog output for channel A.
4. VOUTB: Analog output for channel B.
5. SCLK: Serial Clock Input for SPI communication.
6. SYNC: Synchronization input, used to frame the serial data.
7. DIN: Serial Data Input.
8. LDAC: Load DAC; this pin allows simultaneous updating of DAC registers.
9. RESET: Active low reset input; resets the DAC to a known state.
10. VREF: Reference voltage input.
These pins allow the device to convert digital signals into precise analog outputs, making it suitable for applications requiring high-resolution and stability.
Manufacturer
Application
1. Industrial Automation: Used for precision control in automated processes.
2. Test and Measurement Equipment: Ensures accurate signal generation.
3. Instrumentation: Provides high-resolution output for various measurement devices.
4. Communications: Used in systems requiring precise signal modulation.
5. Medical Devices: Supports applications requiring precise calibration and measurement.
6. Data Acquisition Systems: Converts digital data into high-resolution analog signals.
7. Process Control: Plays a role in systems needing exact control of physical processes.
These applications benefit from the DAC's high precision and low power consumption.