ADUM1402ARW Digital Isolator from Analog Devices Inc.
The ADUM1402ARW is a robust digital isolator designed and manufactured by Analog Devices Inc., a leader in high-performance semiconductors. This component is part of the ADuM140x series, which uses the company's iCoupler® technology to combine high-speed CMOS and monolithic air core transformer technology, providing outstanding isolation performance while maintaining reliable data transfer.
The ADUM1402ARW offers a quad-channel configuration with two forward and two reverse-direction channels. Its isolation is rated for 2500 V RMS, which allows for the safe separation of high and low voltage domains within electronic systems. This feature is particularly important in industrial applications where electrical noise and safety are major concerns.
This isolator operates within a wide supply voltage range of 2.7 V to 5.5 V, making it versatile for various power environments. The data rate supported by the ADUM1402ARW can reach up to 10 Mbps, ensuring fast and efficient communication for applications that require high-speed digital isolation. Additionally, its low power consumption makes it suitable for power-sensitive designs.
The ADUM1402ARW comes in a 16-lead SOIC wide body package, which is recognized by UL and CSA standards for reinforced insulation. Its operating temperature range spans from -40°C to +125°C, which is suitable for industrial temperature environments. The device also features a default high output and 3 V to 5 V level translation, which provides design flexibility and ease of integration into various systems.
Applications for the ADUM1402ARW include but are not limited to industrial field buses, multiplexed data transmission, and isolated SPI interfaces. Its robustness and reliability make it an excellent choice for designers looking to enhance system safety and integrity in challenging electrical environments.
With the ADUM1402ARW, Analog Devices Inc. offers a high-performance solution for digital isolation needs, combining cutting-edge technology with ease of use to meet the stringent demands of modern electronic systems.