Overview
The AD9695BCPZ-1300, produced by Analog Devices Inc., is a state-of-the-art dual Analog-to-Digital Converter (ADC) designed for high-speed signal processing. This 14-bit ADC offers sampling rates of up to 1300 MSPS for one channel and 625 MSPS for both channels simultaneously. It operates on a single supply voltage ranging from 0.93V to 2.56V, with a nominal supply voltage of 0.95V. The device is housed in a 64-pad LFCSP (Lead Frame Chip Scale Package) that enhances thermal performance, making it an ideal solution for applications requiring high-speed data conversion without compromising on accuracy or power efficiency.
Key Specifications
Parameter | Value | Unit |
---|---|---|
Resolution | 14-bit | |
Sampling Rate (Single Channel) | Up to 1300 MSPS | MSPS |
Sampling Rate (Both Channels) | Up to 625 MSPS | MSPS |
Supply Voltage Range | 0.93V to 2.56V | V |
Nominal Supply Voltage | 0.95V | V |
Analog Input Full Scale | 1.36 V p-p, 1.59 V p-p, 2.04 V p-p | V p-p |
Input Bandwidth | Up to 2 GHz | GHz |
Package Type | 64-Lead LFCSP (9mm x 9mm x 0.75mm) | |
Operating Temperature Range | −40°C to +105°C | °C |
Key Features
- Dual ADC cores with multistage, differential pipelined architecture and integrated output error correction logic.
- Wide bandwidth inputs supporting various user-selectable input ranges.
- Integrated voltage reference for ease of design.
- Differential analog input and clock signals.
- Four integrated digital downconverters (DDCs) per ADC channel with 48-bit numerically controlled oscillator (NCO) and decimation filters.
- Programmable fast overrange detection and signal monitoring capabilities.
- On-chip temperature diode for system thermal management.
- Flexible JESD204B lane configurations and SPI control interface.
- On-chip dithering to improve small signal linearity.
Applications
- Consumer Electronics: High-resolution digital cameras and scanners benefit from the high-speed data conversion and image processing capabilities of the AD9695BCPZ-1300.
- Audio and Video Systems: Ideal for high-fidelity audio equipment and home theater systems to convert analog signals into high-quality digital audio and video streams.
- Virtual Reality (VR), Augmented Reality (AR), and Vision Systems: The high sample rate and dual ADC functionality make it suitable for real-time, high-definition VR and AR content processing.
- Entertainment and Gaming: Enhances graphics rendering and audio-video synchronization in gaming consoles and systems.
- Communications: Supports direct sampling of wide bandwidth analog signals up to 2 GHz, making it suitable for various communications applications.
Q & A
- What is the resolution of the AD9695BCPZ-1300 ADC?
The AD9695BCPZ-1300 has a 14-bit resolution.
- What are the sampling rates of the AD9695BCPZ-1300?
The sampling rates are up to 1300 MSPS for one channel and up to 625 MSPS for both channels simultaneously.
- What is the operating supply voltage range of the AD9695BCPZ-1300?
The supply voltage range is from 0.93V to 2.56V, with a nominal supply voltage of 0.95V.
- What is the input bandwidth of the AD9695BCPZ-1300?
The input bandwidth is up to 2 GHz.
- What type of package does the AD9695BCPZ-1300 come in?
The device is housed in a 64-pad LFCSP (Lead Frame Chip Scale Package).
- What are the key features of the AD9695BCPZ-1300's digital downconverters?
The device features four integrated digital downconverters (DDCs) per ADC channel, each with a 48-bit NCO and decimation filters.
- How does the AD9695BCPZ-1300 support automatic gain control (AGC)?
The device includes programmable threshold detection and fast detect control bits to monitor incoming signal power and prevent overrange conditions).
- What is the operating temperature range of the AD9695BCPZ-1300?
The operating temperature range is from −40°C to +105°C).
- Can the AD9695BCPZ-1300 be used in consumer electronics?
Yes, it is suitable for high-resolution digital cameras and scanners due to its high-speed data conversion capabilities).
- How can the AD9695BCPZ-1300 be programmed?
The device can be programmed using a 3-wire serial port interface (SPI) and/or the PDWN/STBY pin).