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AD558JPZ
+BOMIC DAC 8BIT V-OUT 20PLCC
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ManufacturerAnalog Devices Inc.
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Mfr. Part #AD558JPZ
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Datasheet AD558JPZ DataSheet
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In Stock43
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Specifications
| Attribute | Value |
| Series | DACPORT® |
| PartStatus | Obsolete |
| BaseProductNumber | AD558 |
| NumberofBits | 8 |
| NumberofD/AConverters | 1 |
| SettlingTime | 3µs |
| OutputType | Voltage - Buffered |
| DifferentialOutput | No |
| DataInterface | Parallel |
| ReferenceType | Internal |
| Voltage-Supply,Analog | 4.5V ~ 16.5V |
| Voltage-Supply,Digital | 4.5V ~ 16.5V |
| INL/DNL(LSB) | ±0.5 (Max), - |
| Architecture | R-2R |
| OperatingTemperature | 0°C ~ 70°C |
| Package | 20-LCC (J-Lead) |
| SupplierDevicePackage | 20-PLCC (9x9) |
| MountingType | Surface Mount |
| Packaging | Tube |
Overview
Description
Key features include low integral non-linearity and low differential non-linearity, ensuring high accuracy in output signals. It offers a clear and straightforward interface for seamless integration into digital systems. The AD558JPZ is commonly used in applications such as waveform generation, programmable gain, and control systems, where precise analog outputs are necessary.
Overall, the AD558JPZ stands out for its combination of performance, ease of use, and reliability, making it a valuable component for engineers and designers in various electronic applications.
Equivalent
Features
1. Resolution: 8 bits, providing 256 discrete output levels.
2. Output Range: Typically ±10V or 0 to 10V, suitable for a wide range of applications.
3. Dual DAC: Two DACs in a single package, allowing simultaneous output generation.
4. Low Power Consumption: Designed for efficient operation, making it suitable for battery-operated devices.
5. Monotonic Output: Ensures that the output changes in a predictable manner without any glitches.
6. Speed: Fast settling time, ideal for dynamic applications.
7. Voltage Reference: Internal reference voltage for consistent performance or can be externally supplied.
8. Interface: Simple parallel digital interface for easy integration with microcontrollers and other digital systems.
Overall, the AD558JPZ offers a compact solution for high-performance analog signal generation in various electronic systems.
Pinout
The pinout for the AD558JPZ is as follows:
1. VREF: Reference voltage input
2. VOUTA: Output for DAC A
3. VOUTB: Output for DAC B
4. GND: Ground
5. A1: Data input for DAC A (MSB)
6. A2: Data input for DAC A
7. A3: Data input for DAC A
8. A4: Data input for DAC A
9. A5: Data input for DAC A
10. A6: Data input for DAC A
11. A7: Data input for DAC A (LSB)
12. B1: Data input for DAC B (MSB)
13. B2: Data input for DAC B
14. B3: Data input for DAC B
15. B4: Data input for DAC B
16. B5: Data input for DAC B
17. B6: Data input for DAC B
18. B7: Data input for DAC B (LSB)
Overall, the AD558JPZ enables precise analog signal generation from digital data.
Manufacturer
The company serves various industries, including communications, automotive, healthcare, industrial automation, and consumer electronics. ADI is known for its high-performance products, particularly in areas such as precision analog components, audio and video processing, and sensor signal conditioning. With a strong emphasis on innovation, Analog Devices invests significantly in research and development to provide advanced solutions that help customers optimize their electronic designs. The AD558JPZ, specifically, is a precision voltage reference and digital-to-analog converter (DAC) often used in applications requiring high accuracy and stability.
Application
1. Industrial Control Systems: For process control and instrumentation.
2. Medical Equipment: In devices requiring accurate signal generation.
3. Automated Test Equipment: For generating reference signals and performing calibration.
4. Signal Processing: In audio and video systems for waveform generation.
5. Communication Systems: For modulating signals in wireless and wired applications.
6. Data Acquisition Systems: To convert digital signals from sensors to analog outputs.
Its precision and stability make it suitable for applications requiring high accuracy and low noise.