ADI AD9680BCPZ-1000
- 14-bit resolution with 1 GSPS sampling rate per channel
- Dual-channel synchronized sampling capability
- 2 GHz analog input bandwidth for wide signal capture
- Integrated programmable gain amplifier (PGA) and digital downconverter (DDC)
- Low power consumption at 1.25 W per channel typical
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The ADI AD9680BCPZ-1000 is a dual-channel, 14-bit high-speed ADC designed to capture fast-changing analog signals with precision. It addresses the core need for high-resolution, high-speed data conversion in applications ranging from radar systems to test and measurement equipment. Whether you’re designing a receiver for aerospace surveillance or a data acquisition system for industrial monitoring, this device provides the performance and integration needed to simplify complex designs.
Technical Capabilities and Integration Benefits
This ADC combines high sampling rates with on-chip signal processing to reduce system complexity. The integrated PGA allows engineers to adjust input signal levels without external amplifiers, while the DDC reduces data rates for easier processing downstream. These features not only save board space but also improve overall system reliability by minimizing component count. The device’s 2 GHz input bandwidth ensures it can capture wideband signals, making it suitable for applications that require monitoring across a broad frequency range.
Selection Considerations for High-Speed ADCs
When choosing a high-speed ADC, engineers must balance resolution, sampling rate, and power consumption. The AD9680BCPZ-1000 offers a strong balance in these areas, delivering 14-bit resolution at 1 GSPS while maintaining relatively low power usage. Its industrial-grade temperature range ensures reliable operation in harsh environments, a critical factor for outdoor or industrial applications. Additionally, the device’s synchronized dual-channel operation is essential for systems that require simultaneous sampling of multiple signals.
Supply and Quality Assurance
As a specialized component supplier, we ensure the AD9680BCPZ-1000 is sourced directly from ADI or authorized distributors, providing full traceability and authenticity verification. Each unit comes with a certificate of conformance, and we offer comprehensive technical support to assist with design integration. For projects requiring extended temperature ranges or additional screening, we can help identify suitable alternatives or customization options based on your specific requirements.
If you’re ready to integrate high-speed, high-resolution data conversion into your design, contact our technical support team to discuss your application requirements and request a quotation.
- Supports JESD204B serial interface for high-speed data transfer
- On-chip clock generation and synchronization circuitry
- Built-in self-test capabilities for diagnostic purposes
- Configurable input range for optimized signal capture
- RoHS compliant packaging options available
- Industrial-grade screening for reliable operation in harsh conditions
- Compatible with ADI’s signal processing and FPGA ecosystems
- Application notes and reference designs available for rapid prototyping
FAQ
What is the maximum sampling rate of the AD9680BCPZ-1000?
The AD9680BCPZ-1000 supports a maximum sampling rate of 1 GSPS per channel, enabling capture of high-frequency signals with 14-bit resolution.
Does this ADC support synchronized dual-channel sampling?
Yes, the device features dual-channel synchronized sampling, which is ideal for applications requiring simultaneous capture of complementary signals, such as in radar or communication systems.
What is the operating temperature range of the AD9680BCPZ-1000?
This industrial-grade ADC operates reliably across a temperature range of -40°C to +85°C, making it suitable for harsh industrial and outdoor environments.
Does the AD9680BCPZ-1000 include on-chip signal processing features?
Yes, it integrates a programmable gain amplifier (PGA) for input signal adjustment and a digital downconverter (DDC) for real-time data rate reduction and signal conditioning.