![]() ![]() We carefully factor in industry trends and real developments for identifying key growth factors and future course of the market. Our approach helps in building greater market consensus view for size, shape and industry trends within each industry segment. We do not only engrave the deepest levels of markets but also sneak through its slimmest details for the purpose of our market estimates and forecasts. With collective industry experience of about 200 years of its analysts and experts, Allied Market Research (AMR) encompasses most infallible research methodology for its market intelligence and industry analysis. ![]() Porter’s five forces analysis illustrates the potency of the buyers and suppliers in the industry.The current global digital isolator market forecast is quantitatively analyzed to benchmark the financial competency.The global digital isolator market analysis report presents information related to key drivers, restraints, and opportunities with a detailed impact analysis.The overall potential is determined to understand the profitable trends to gain a stronger foothold.This study comprises analytical depiction of the global digital isolator market trends with current trends and future estimations to depict the imminent investment pockets.The major companies profiled in the global digital isolator market share include Texas Instruments, Analog Devices, Infineon Technologies, Silicon Labs, Broadcom Limited, ROHM Semiconductor, Maxim Integrated, NXP Semiconductors, NVE, Vicor, and others. Based on region, the market is analyzed across Europe, Asia pacific, North America, and LAMEA. Based on industry vertical, it is segmented into industrial, healthcare, automotive, telecommunications, and others. Based on application, it is categorized into gate drivers, DC/DC converters, ADCs, USB & other communication ports, CAN isolation, and others. Based on data rate, it is classified into less than 25 Mbps, 25 Mbps to 75 Mbps, and more than 75 Mbps. Based on channel, it is divided into 2 channel, 4 channel, 6 channel, and 8 channel. ![]() Based on isolation, the market is categorized into capacitive coupling, GMR, and magnetic coupling. The digital isolator market is segmented based on isolation, channel, data rate, application, industry vertical, and region. However, digital isolators’ inability to transmit low-frequency signals without the use of modulators and their high costs restrain the market growth. Some of the major factors that are expected to drive the growth of the digital isolator market include increasing in adoption of digital isolators as a substitute for optocouplers, growth in demand for noise-free electronics, and rise in usage of renewable energy sources. The ISO776x-Q1 family of devices provides high-electromagnetic immunity and low emissions at low-power consumption, while isolating CMOS or LVCMOS digital I/O. For instance, Texas Instruments has launched ISO776x-Q1 High-speed, robust EMC, reinforced six-channel digital isolators with 5000-VRMS (DW package), and 3000-VRMS (DBQ package) isolation ratings per UL 1577. There are several players in the digital isolators market and product launch, product development, business acquisition, and business expansion are the growth strategies adopted by the key players. Furthermore, high cost of digital isolator may also hinder the growth of the digital isolated market. However, digital isolators’ inability to transmit low-frequency signals without the use of modulators is expected to restrain the growth of the market. Moreover, adoption of digital isolator as a substitute to optocouplers fuels the growth of the market. Rise in demand for noise-free electronics and increase in usage of renewable energy sources drive the the digital isolators market growth. The use of digital isolator in industrial sector is expected to dominate the market because the digital isolator proves to be a vital means of receiving efficient and low-cost solutions for equipment safety and data transfer compared to optocouplers. They are used in several sectors such as industrial, healthcare, automotive, and telecommunications. It has a wide application in gate drivers, DC/DC converters, ADCs, USB & other communication ports, and CAN isolation. Digital isolator is comparatively faster and less error prone. Optocoupler is far too slow and error prone for high speed (1MHz+) digital signals. It is used as a substitute to optocouplers. These isolators employ RF coupling techniques to transmit digital information across an isolation barrier. Digital isolators are used to transfer digital signals across an isolation barrier. ![]()
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