0ADAC1000-BE
Product Category: Analog-to-Digital Converter (ADC)
Basic Information Overview: - Category: Integrated Circuit - Use: Converts analog signals to digital format for processing or storage - Characteristics: High resolution, fast conversion speed, low power consumption - Package: Surface-mount package - Essence: Provides accurate and reliable conversion of analog signals - Packaging/Quantity: Typically sold in reels of 250 or 1000 units
Specifications: - Resolution: 16-bit - Sampling Rate: 1 MSPS (mega samples per second) - Input Voltage Range: 0V to 5V - Power Supply: 3.3V - Operating Temperature Range: -40°C to 85°C
Detailed Pin Configuration: - Pin 1: VDD (Power supply) - Pin 2: VIN+ (Positive analog input) - Pin 3: VIN- (Negative analog input) - Pin 4: REF- (Reference voltage negative) - Pin 5: REF+ (Reference voltage positive) - Pin 6: AGND (Analog ground) - Pin 7: DGND (Digital ground) - Pin 8: DOUT (Digital output)
Functional Features: - High-resolution conversion - Low power consumption - Fast sampling rate - Internal reference voltage
Advantages: - Accurate and precise conversion - Suitable for low-power applications - Fast data acquisition
Disadvantages: - Limited input voltage range - Requires external anti-aliasing filter for high-frequency signals
Working Principles: The 0ADAC1000-BE utilizes a successive approximation technique to convert analog input signals into digital output. It employs an internal reference voltage to accurately determine the digital representation of the analog input.
Detailed Application Field Plans: - Industrial automation - Medical instrumentation - Test and measurement equipment - Data acquisition systems
Detailed and Complete Alternative Models: - 0ADAC2000-BE: 18-bit resolution, higher sampling rate - 0ADAC500-BE: 12-bit resolution, lower power consumption
This comprehensive entry provides detailed information about the 0ADAC1000-BE, covering its category, basic overview, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
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What is 0ADAC1000-BE?
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Does 0ADAC1000-BE support differential inputs?
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