ON Semiconductor took a leading position at APEC 2016


Release time:

2016-03-28

ON Semiconductor, which promotes high-efficiency innovation, announced its participation in APEC 2016, a flagship event in the global power electronics industry. During the conference, seven senior technical members from ON Semiconductor's application engineering and R&D teams will share important knowledge in a series of professional educational seminars and industry meetings. The conference will cover a wide range of diverse topics relevant to today's engineering community, including design challenges of fast analysis techniques, small signal models, nonlinear thermal issues, next-generation lithium-ion power management, high-power, high-voltage IGBTs, and other high-efficiency innovations.

  ON Semiconductor, which promotes high-efficiency innovation, announced its participation in APEC 2016, a flagship event in the global power electronics industry.
  During the conference, seven senior technical members from ON Semiconductor's application engineering and R&D teams will share important knowledge in a series of professional educational seminars and industry meetings. The conference will cover a wide range of diverse topics relevant to today's engineering community, including design challenges of fast analysis technology, small signal models, nonlinear thermal issues, next-generation lithium-ion power management, high-power, high-voltage IGBTs, and other high-efficiency innovations.
  At the same time, engineers will be able to watch demonstrations of more than ten leading technologies at the ON Semiconductor booth—some of which are being showcased for the first time. Key demonstrations include:
  High-frequency quasi-resonant flyback controller
  High-frequency quasi-resonant flyback is the next evolution for achieving compact adapters for computers and consumer electronics. It achieves high energy efficiency with small-sized components to achieve high power density. The NCP1339 and NCP1340 are the latest generation of high-frequency quasi-resonant flyback controllers. Synchronous rectification is also a key part of achieving higher energy efficiency; the new NCP43080 features a large 8 A/4 A driver that provides high energy efficiency from full load to no load. Combining these two devices offers the smallest ultra-high-density AC-DC adapters available on today's market.
  20 W charger for smartphones/tablets featuring Qualcomm Quick Charge 3.0 and Type-C connector
  The NCP4371 reference design demonstrates Qualcomm's new Quick Charge 3.0 fast charging protocol through the new Type-C connector. It uses Qualcomm's High Voltage Dedicated Charging Port (HVDCP), providing an adjustable output voltage from 3.6 to 20 VDC for the latest generation of smartphones, tablets, and Bluetooth devices. This charger design incorporates the NCP4371 fast charging controller, NCP1361E quasi-resonant controller, and NCP43080 synchronous rectification controller; it is one of only two designs certified by UL/Qualcomm that comply with newly released standards.
  Security cameras using ultra-small micro-stepping motor drivers
  The LV8714TA is an extremely efficient dual-stepper motor driver. This device features low on-resistance power MOSFETs, lossless current sensing, synchronous rectification, and ultra-low standby current to provide best-in-class high-efficiency system solutions. The integrated regulator enables a single-chip single-power system solution.
  Other exciting new technology demonstrations include power integration modules, high-current IGBT gate drivers, next-generation (super junction) IGBTs, LED drivers, PWM controllers, motor controllers, and fans.

Key words:

Leading position, high energy, controller, adoption, driver, design, resonance, charging, providing, including

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