Description
ADUM7702-8BRIZ-RL7
Overview
The ADUM7702-8BRIZ-RL7 is a high-performance, isolated sigma-delta (Σ-Δ) modulator designed for a variety of industrial and medical applications. This product is part of the ADUM7702 series, which offers a range of isolated analog-to-digital conversion solutions.
Key Features
- 8-Channel Input: The ADUM7702-8BRIZ-RL7 features 8 channels of input, allowing for the measurement of multiple signals in a single device.
- Σ-Δ Modulator: The sigma-delta modulator provides high-resolution analog-to-digital conversion, making it suitable for applications requiring high accuracy.
- Isolation: The device provides galvanic isolation between the input channels and the output, ensuring safe and reliable operation in high-voltage environments.
- RL7 Package: The ADUM7702-8BRIZ-RL7 is packaged in a 28-lead SSOP (Shrink Small Outline Package) with an exposed pad, providing a compact and thermally efficient design.
Specifications
- Operating Temperature Range: -40°C to +105°C
- Supply Voltage: 3.0 V to 5.5 V
- Input Voltage Range: ±10 V
- Resolution: 16-bit
- sampling Rate: 100 kSPS
- Isolation Voltage: 2.5 kV rms
- Package Type: 28-lead SSOP (Shrink Small Outline Package) with exposed pad
Applications
- Industrial Process Control: The ADUM7702-8BRIZ-RL7 is suitable for use in industrial process control applications, such as motor control, power monitoring, and automation.
- Medical Devices: The device is also suitable for use in medical devices, such as patient monitoring equipment, diagnostic equipment, and medical imaging devices.
- Test and Measurement: The ADUM7702-8BRIZ-RL7 can be used in test and measurement applications, such as data acquisition systems, oscilloscopes, and signal generators.
Ordering Information
To order the ADUM7702-8BRIZ-RL7, please contact our sales team or authorized distributors.
Additional Resources
For more information on the ADUM7702-8BRIZ-RL7, including datasheets, user manuals, and application notes, please visit our website or contact our technical support team.
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