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A4WP Compliant High Efficiency Wireless Power Transfer Demonstration Kit

瀏覽次數:60

EPC announces the immediate availability of a complete demonstration wireless power transfer kit. The 40 V (EPC9111) or 100 V (EPC9112) wireless kits have three components: Source (or amplifier) board、Class 3 A4WP compliant source (or transmit) coil、Category 3 A4WP compliant device (or receiving) board including coil.

The system is capable of delivering up to 35 W into a DC load while operating at 6.78 MHz (the lowest ISM band). The purpose of this demonstration kit is to simplify the evaluation process of using eGaN FETs for highly efficient wireless power transfer. The EPC9111 and EPC9112 utilize the high frequency switching capability of EPC gallium nitride transistors to facilitate wireless power systems with greater than 75 percent efficiency.

The requirements of wireless energy transfer systems include high efficiency, low profile, robustness to changing operating conditions and, in some cases, light weight. These requirements translate into designs that need to be efficient and able to operate at high switching speeds without a bulky heatsink. Furthermore the design must be able to operate over a wide range of coupling and load variations. The fast switching capability of eGaN FETs is ideal for highly resonant power transfer applications.

The popularity of highly resonant wireless power transfer is increasing rapidly, particularly for applications targeting portable device charging. The end applications are varied and evolving quickly from mobile device charging, to life-extending medical implementations, to safety-critical hazardous environments.

The source board is a highly efficient, A4WP compliant, Zero Voltage Switching (ZVS), Class-D amplifier featuring either the 40 V EPC2014 (EPC9111) or the 100 V EPC2007 (EPC9112) eGaN FET.

The source board is configured in an optional half-bridge topology (for single-ended configuration) or default full-bridge topology (for differential configuration), and include the gate driver(s) and oscillator that ensure operation of the system at 6.78 MHz. These amplifier boards are available separately as EPC9506 and EPC9507 for evaluation in existing customer systems.

The source coil, as well as the device coil, are Rezence (A4WP) compliant and have been pre-tuned to operate at 6.78 MHz. The source coil is class 3 and the device coil is category 3 compliant.

The device board includes a high frequency Schottky diode based full-bridge rectifier and output filter to deliver a filtered unregulated DC voltage. The device board comes equipped with two LED’s, one to indicate the power is being received and a second LED, which indicates that the output voltage has reached the maximum and is above 37 V. The device board can also be configured as a half-bridge rectifier that allows for double output voltage operation.

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機
特別企劃半導體

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?