NSCDANN400MGUNV
Product Category: Integrated Circuits
Basic Information Overview: - Category: Analog to Digital Converter (ADC) - Use: Converts analog signals into digital data for processing - Characteristics: High precision, low power consumption, small form factor - Package: QFN (Quad Flat No-leads) package - Essence: Provides accurate digital representation of analog signals - Packaging/Quantity: Typically packaged in reels of 250 or 300 units
Specifications: - Resolution: 16-bit - Input Voltage Range: 0V to 5V - Conversion Rate: 400 MSPS (Mega Samples Per Second) - Power Consumption: 400mW - Operating Temperature Range: -40°C to 85°C
Detailed Pin Configuration: - Pin 1: Analog Input + - Pin 2: Analog Input - - Pin 3: Ground - Pin 4: Power Supply - Pin 5: Clock Input - Pin 6: Data Output - Pin 7: Control Input - Pin 8: Ground
Functional Features: - High-speed conversion - Low power consumption - Small footprint - Wide input voltage range - Differential input configuration
Advantages and Disadvantages: - Advantages: - High resolution - Fast conversion rate - Low power consumption - Small form factor - Disadvantages: - Sensitive to noise - Limited input voltage range
Working Principles: The NSCDANN400MGUNV operates by sampling the analog input signal at a high speed and converting it into a digital representation using an internal ADC core. The digital output is then transmitted for further processing or storage.
Detailed Application Field Plans: This ADC is well-suited for applications requiring high-speed and high-resolution analog-to-digital conversion, such as: - Radar systems - Communication equipment - Medical imaging devices - Test and measurement instruments
Detailed and Complete Alternative Models: - AD9249: 14-bit, 65 MSPS ADC - LTC2380-24: 24-bit, 15 MSPS ADC - MAX11270: 24-bit, 64 kSPS ADC
This completes the entry for NSCDANN400MGUNV, providing comprehensive information on its category, basic overview, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
What is NSCDANN400MGUNV?
How does NSCDANN400MGUNV work?
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What is the operating voltage range for NSCDANN400MGUNV?
Can NSCDANN400MGUNV be used outdoors?
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Is NSCDANN400MGUNV compatible with microcontrollers like Arduino?
Does NSCDANN400MGUNV require any calibration before use?
What are the output signals provided by NSCDANN400MGUNV?
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