Manufacturer Part Number
AD9117BCPZ
Manufacturer
Analog Devices
Introduction
The AD9117BCPZ is part of Analog Devices' TxDAC® series, specifically designed for data acquisition and digital to analog conversion applications.
Product Features and Performance
Dual 14-bit D/A converters
Settling time of 11.5ns (Typical)
Unbuffered current output
Supports differential output
Parallel data interface
Option for external or internal reference
Supply voltage range from 1.7V to 3.5V for both analog and digital
Current source architecture
Product Advantages
High-speed performance suitable for demanding applications
Flexibility in reference selection to meet various application needs
Low voltage operation supports battery-operated devices
Differential output capability enhances signal integrity
Key Technical Parameters
Number of Bits: 14
Number of D/A Converters: 2
Settling Time: 11.5ns
Output Type: Current Unbuffered
Differential Output: Yes
INL/DNL (LSB): ±1.2, ±1.4
Voltage Supply, Analog/Digital: 1.7V ~ 3.5V
Operating Temperature: -40°C ~ 85°C
Quality and Safety Features
Strict adherence to quality standards ensures reliable performance
Operates effectively within a broad temperature range for versatile use in different environments
Compatibility
Parallel interface for easy integration with most microcontrollers and digital systems
Flexible voltage requirements allow compatibility with a wide range of power supplies
Application Areas
Digital signal processing
Data acquisition systems
Communications systems
Instrumentation and control systems
Product Lifecycle
Status: Active
No indication of nearing discontinuation, ensuring long-term availability
Support for replacements or upgrades is available
Several Key Reasons to Choose This Product
High-speed and precision performance meets the requirements of advanced digital to analog conversion
Dual DAC integration offers compact and efficient design solutions
Broad operating temperature and voltage range support diverse application conditions
Analog Devices' reputation for reliability and quality in semiconductor manufacturing