ADTC143ZCAQ-13 Overview
The ADTC143ZCAQ-13 is a high-performance semiconductor device designed for industrial and electronic applications requiring precise signal processing and robust operational stability. It features advanced integration with multiple input/output options, enabling seamless system compatibility and reduced design complexity. With optimized power consumption and enhanced thermal management, this component supports reliable operation in harsh environments. Ideal for engineers and sourcing specialists, the device ensures consistent performance, making it a dependable choice for modern electronic systems. For detailed technical insights and purchasing information, visit IC Manufacturer.
ADTC143ZCAQ-13 Technical Specifications
Parameter | Specification |
---|---|
Package Type | QFN-48 7×7 mm |
Operating Voltage | 3.3 V ??10% |
Maximum Power Dissipation | 1.5 W |
Operating Temperature Range | -40??C to +85??C |
Input Frequency Range | Up to 200 MHz |
Data Interface | SPI-compatible serial interface |
Resolution | 14-bit |
Power Supply Current | 12 mA (typical) |
ADTC143ZCAQ-13 Key Features
- High-resolution 14-bit conversion: Enables precise signal measurement, improving system accuracy and performance.
- Wide frequency input range: Supports up to 200 MHz, allowing versatile application in high-speed signal environments.
- Low power consumption: Typical operating current of 12 mA reduces energy costs and heat generation, enhancing system efficiency.
- Compact QFN-48 package: Facilitates easy PCB integration while maintaining excellent thermal dissipation.
- Robust operating temperature: Supports -40??C to +85??C, ensuring reliable function in industrial and outdoor settings.
- SPI-compatible interface: Simplifies communication with microcontrollers and other digital systems for streamlined design.
ADTC143ZCAQ-13 Advantages vs Typical Alternatives
This device offers superior resolution and frequency handling compared to typical semiconductors in its class, delivering enhanced accuracy for demanding applications. Its low power consumption and compact footprint enable efficient system design and thermal management. The wide operating temperature range ensures dependable performance in harsh conditions, making it a reliable and versatile choice over conventional alternatives.
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Typical Applications
- Industrial signal processing systems requiring high accuracy and robust operation in variable temperature environments.
- High-frequency measurement and control circuits where precise timing and data resolution are critical.
- Embedded systems interfacing with microcontrollers via SPI for data acquisition and processing tasks.
- Automated test equipment (ATE) applications demanding compact, reliable semiconductor components.
ADTC143ZCAQ-13 Brand Info
The ADTC143ZCAQ-13 is part of a specialized product line designed to meet the stringent demands of industrial electronics and semiconductor markets. Manufactured under rigorous quality controls, this device aligns with the brand??s commitment to delivering reliable, precision components that enable engineers to develop advanced systems with confidence. The product supports scalable integration and is backed by comprehensive technical documentation from the manufacturer.
FAQ
What is the maximum input frequency supported by this device?
The semiconductor supports input frequencies up to 200 MHz, making it suitable for high-speed signal processing applications that require fast and accurate data conversion.
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What type of communication interface does it use?
The component features an SPI-compatible serial interface, enabling straightforward communication with microcontrollers and other digital devices for efficient data transfer and control.
Can this device operate in extreme temperature conditions?
Yes, it is rated for operation across a wide temperature range from -40??C to +85??C, allowing it to function reliably in harsh industrial and outdoor environments.
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What is the typical power consumption during operation?
The device typically consumes around 12 mA of current at its nominal 3.3 V supply voltage, which contributes to lower