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DAC8871SPW
+BOMIC DAC 16BIT V-OUT 16TSSOP
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Nhà sản xuấtTexas Dụng cụ
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Ông. Phần #DAC8871SPW
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Bảng dữ liệu DAC8871SPW DataSheet
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Thông số kỹ thuật
| thuộc tính | Giá trị |
| PartStatus | Active |
| NumberofBits | 16 |
| NumberofD/AConverters | 1 |
| SettlingTime | 1µs (Typ) |
| OutputType | Voltage - Unbuffered |
| DifferentialOutput | No |
| DataInterface | SPI |
| ReferenceType | External |
| Voltage-Supply,Analog | ±13.5V ~ 19.8V |
| Voltage-Supply,Digital | 2.7V ~ 5.5V |
| INL/DNL(LSB) | ±1, ±0.25 |
| Architecture | R-2R |
| OperatingTemperature | -40°C ~ 105°C |
| Package/Case | 16-TSSOP (0.173", 4.40mm Width) |
| SupplierDevicePackage | 16-TSSOP |
| MountingType | Surface Mount |
| BaseProductNumber | DAC8871 |
Tổng quan
Description
Key features include a fast settling time, low power consumption, and an integrated reference, simplifying design requirements. The DAC8871SPW supports I2C and SPI communication protocols, allowing for easy integration into microcontroller-based systems. Its low noise and excellent linearity make it ideal for applications in instrumentation, audio processing, and industrial control.
The device is packaged in a compact TSSOP (Thin Shrink Small Outline Package), facilitating space-efficient designs. Overall, the DAC8871SPW is suitable for applications requiring high precision and reliability in digital-to-analog signal conversion.
Equivalent
Features
1. Low Noise: The device provides low noise operation, making it suitable for sensitive applications.
2. High Accuracy: It offers excellent linearity and low integral nonlinearity (INL), ensuring precise output.
3. Output Range: The DAC supports unipolar and bipolar output configurations.
4. Fast Settling Time: The settling time is typically around 1.5 µs, allowing for rapid updates in applications.
5. I2C Interface: It utilizes a simple I2C communication interface for easy integration and control.
6. Power Management: Features low power consumption and standby modes to enhance efficiency.
7. Temperature Range: It is rated for operation from -40°C to +125°C, ensuring reliability in harsh environments.
These features make the DAC8871SPW suitable for applications in industrial control, instrumentation, and data acquisition systems.
Pinout
Pin Functions:
1. VDD (Pin 1): Supply voltage for the DAC.
2. AGND (Pin 2): Analog ground reference.
3. VREF (Pin 3): Reference voltage input for the DAC.
4. SDA (Pin 4): Serial data input for configuration and control.
5. SCL (Pin 5): Serial clock input for data synchronization.
6. CS (Pin 6): Chip select input to enable communication.
7. LDAC (Pin 7): Load DAC input for updating output.
8. OUT (Pin 8): Analog output voltage.
9. IOVDD (Pin 9): Digital I/O supply voltage.
10. DGND (Pin 10): Digital ground reference.
11-16: Additional pins include power and ground connections, with some configurable for specific functions.
The DAC8871 is suitable for applications requiring high accuracy and stability in the output signal.
Manufacturer
Founded in 1930, TI is well-known for its innovative products in various sectors, including automotive, industrial, communications, and consumer electronics. The company is particularly recognized for its expertise in analog technology, signal processing, and embedded processing. The DAC8871 is a high-precision digital-to-analog converter (DAC) that offers exceptional performance for applications requiring high accuracy, such as industrial automation, instrumentation, and medical devices.
Texas Instruments is committed to research and development, investing significantly in new technologies to drive advancements in the semiconductor industry. The company operates globally, serving a diverse customer base and playing a crucial role in the advancement of electronic design and manufacturing.
Application
1. Industrial Automation: Used in process control systems for precise analog signal generation.
2. Instrumentation: Employed in medical and scientific instruments for accurate signal output.
3. Signal Generation: Ideal for waveform generation in testing equipment.
4. Communication Systems: Utilized in audio and RF signal processing.
5. Closed-Loop Control Systems: Supports feedback systems requiring precise voltage levels.
6. Consumer Electronics: Applied in audio devices for high-quality sound output.
Its high resolution and low noise make it versatile across these domains.