Overview
The AD9083BBCZ from Analog Devices is a high-performance, 16-channel analog-to-digital converter (ADC) designed for applications where precision, accuracy, and high-speed data conversion are crucial. This device features a 16-bit resolution and supports sampling rates up to 12 GSPS, making it ideal for industries such as telecommunications, test and measurement, and defense systems. The AD9083BBCZ boasts a wideband input, exceptional dynamic range, and superior linearity, ensuring the capture of intricate signals with high fidelity.
Key Specifications
Parameter | Min | Typ | Max | Unit |
---|---|---|---|---|
Resolution | - | 16 bits | - | - |
Sampling Rate | - | Up to 12 GSPS | - | - |
Analog Full-Power Bandwidth | 125 | 125 | 125 | MHz |
Power Supply (AVDD) | 0.95 | 1.0 | 1.05 | V |
Power Supply (AVDD1P8) | 1.7 | 1.8 | 1.9 | V |
Power Supply (DVDD) | 0.95 | 1.0 | 1.05 | V |
Power Supply (DVDD1P8) | 1.7 | 1.8 | 1.9 | V |
Operating Temperature | -40°C | - | +85°C | - |
Package | - | 100-Ball CSPBGA (9mm x 9mm x 1.346mm) | - | - |
Key Features
- Data Conversion Accuracy: Achieves low error rates for precise data capture.
- Low Power Consumption Mode: Optimizes energy usage, making the device suitable for battery-powered applications.
- Fast Settling Time: Ensures quick output stability after input changes, ideal for high-speed signal processing.
- Programmable Antialiasing Filter and Termination Resistor: Designed for low power, small size, and ease of use.
- Integrated Voltage Reference: Eases design considerations.
- Digital Signal Processing Tiles: Include cascaded integrator comb (CIC) filters, quadrature digital downconverters (DDC), and multiple finite input response (FIR) decimation filters.
- Flexible Power-Down Options: Allow significant power savings when desired.
- High-Speed Serialized Output: Supports JESD204B subclass 1 with configurable lane configurations.
Applications
- Millimeter Wave Imaging: Utilizes the high-speed and wideband capabilities of the AD9083BBCZ.
- Electronic Beam Forming and Phased Arrays: Leverages the device's precision and high-speed conversion for advanced signal processing.
- Multichannel Wideband Receivers: Benefits from the device's low power consumption and flexible interfaces.
- Electronic Support Measures: Takes advantage of the device's high dynamic range and superior linearity.
Q & A
- Q: What is the resolution and sampling rate of the AD9083BBCZ?
A: The AD9083BBCZ has a 16-bit resolution and supports sampling rates up to 12 GSPS. - Q: What are the key features of the AD9083BBCZ?
A: Key features include data conversion accuracy, low power consumption mode, fast settling time, and programmable antialiasing filter and termination resistor. - Q: What are the typical applications of the AD9083BBCZ?
A: Typical applications include millimeter wave imaging, electronic beam forming and phased arrays, multichannel wideband receivers, and electronic support measures. - Q: What is the operating temperature range of the AD9083BBCZ?
A: The AD9083BBCZ operates over the −40°C to +85°C industrial temperature range. - Q: What is the package type of the AD9083BBCZ?
A: The AD9083BBCZ is available in a 100-Ball CSPBGA package. - Q: How does the AD9083BBCZ support high-speed data conversion?
A: The AD9083BBCZ supports high-speed data conversion through its JESD204B subclass 1 high-speed serialized output with configurable lane configurations. - Q: What power supply options are available for the AD9083BBCZ?
A: The AD9083BBCZ has multiple power supply options including AVDD, AVDD1P8, DVDD, and DVDD1P8. - Q: Does the AD9083BBCZ support multiple device synchronization?
A: Yes, the AD9083BBCZ supports multiple device synchronization through the SYSREF±, TRIG±, and SYNCINB± input pins. - Q: What is the warranty period for the AD9083BBCZ purchased from authorized distributors?
A: The warranty period can vary, but typically, it is covered by a 1-year warranty from the distributor. - Q: How can users configure the AD9083BBCZ?
A: Users can configure the AD9083BBCZ using a 1.8 V capable 3-wire serial port interface (SPI).