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IL260-3ETR13 Datasheet(PDF) 1 Page - List of Unclassifed Manufacturers |
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1 / 10 page IL260 IL261 Isoloop® is a registered trademark of NVE Corporation. *U.S. Patent number 5,831,426; 6,300,617 and others. ISB-DS-001-IL612-A, January 20, 2005 NVE Corp., 11409 Valley View Road, Eden Prairie, MN 55344-3617, U.S.A. Telephone: 952-829-9217, Fax 952-829-9189, www.isoloop.com © 2005 NVE Corporation High Speed Five Channel Digital Couplers Functional Diagram Features • 3.3 V or 5 V CMOS/TTL Compatible • 110 Mbps Data Rate • 2500 V RMS Isolation (1 min) • 2 ns Typical Pulse Width Distortion • 4 ns Typical Propagation Delay Skew • 10 ns Typical Propagation Delay • 30 kV/ms Typical Transient Immunity • 2 ns Channel to Channel Skew • 0.3'' and 0.15'' 16–Pin SOIC Packages • Extended Temperature Range (-40°C to +85°C) • UL1577 Approval Pending • IEC 61010-1 Approval Pending Applications • ADCs and DACs • Multiplexed Data Transmission • Data Interfaces • Board-To-Board Communication • Digital Noise Reduction • Operator Interface • Ground Loop Elimination • Peripheral Interfaces • Parallel Bus • Logic Level Shifting • Plasma Displays Description NVE's family of high-speed digital isolators are CMOS devices created by integrating active circuitry and our GMR- based and patented* IsoLoop® technology. The IL260 and IL261 are five channel versions of the world's fastest digital isolator with a 110 Mbps data rate. This device provides the designer with the most compact isolated logic devices yet available. All transmit and receive channels operate at 110 Mbps over the full temperature and supply voltage range. The symmetric magnetic coupling barrier provides a typical propagation delay of only 10 ns and a pulse width distortion of 2 ns achieving the best specifications of any isolator device. Typical transient immunity of 30 kV/µs is unsurpassed. High channel density make them ideally suited to isolating multiple ADCs and DACs, parallel buses and peripheral interfaces. Performance is specified over the temperature range of -40°C to +85°C without any derating. . |
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