Description
NCS20091SN2T1G ON Semiconductor
Product Description
The NCS20091SN2T1G is a high-performance, low-power, dual-channel digital isolator from ON Semiconductor. This device is designed to provide reliable and efficient isolation of digital signals in a variety of applications, including industrial control systems, medical devices, and automotive systems.
Key Features
- Dual-Channel Isolation: The NCS20091SN2T1G provides two independent channels of digital isolation, allowing for the separation of two digital signals.
- Low Power Consumption: This device operates at a low power consumption of 1.2 mA per channel, making it suitable for battery-powered applications.
- High-Speed Data Transfer: The NCS20091SN2T1G supports data transfer rates of up to 25 Mbps, ensuring fast and reliable communication.
- Wide Operating Temperature Range: This device operates over a wide temperature range of -40°C to 125°C, making it suitable for use in harsh environments.
- Small Package Size: The NCS20091SN2T1G is available in a small 16-pin SOIC package, making it ideal for use in space-constrained applications.
Parameters
- Part Number: NCS20091SN2T1G
- Package Type: SOIC-16
- Number of Channels: 2
- Data Rate: 25 Mbps
- Isolation Voltage: 2500 Vrms
- Operating Temperature Range: -40°C to 125°C
- Supply Voltage: 3.3 V or 5 V
- Power Consumption: 1.2 mA per channel
Applications
- Industrial Control Systems: The NCS20091SN2T1G is suitable for use in industrial control systems, where reliable isolation of digital signals is critical.
- Medical Devices: This device is suitable for use in medical devices, where isolation of digital signals is required to ensure patient safety.
- Automotive Systems: The NCS20091SN2T1G is suitable for use in automotive systems, where reliable isolation of digital signals is critical.
Documentation
- Datasheet: Available upon request
- Application Notes: Available upon request
Ordering Information
- Part Number: NCS20091SN2T1G
- Package Type: SOIC-16
- Quantity: Please contact us for pricing and availability.