Microchip HV9919BDB1, Supertex LED Driver Evaluation Board for HV9919

Номер на артикул на RS: 829-9047Марка: Microchip№ по каталога на производителя: HV9919BDB1
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Технически документи

Спецификации

LED Technology

LED Driver

Kit Classification

Evaluation Board

Featured Device

HV9919

Kit Name

Supertex

Страна на произход

United States

Детайли за продукта

HV9919BDB1 Supertex High Current LED Driver IC Evaluation Board

The HV9919BDB1 from Supertex Inc. (a subsidiary of Microchip Technology) is a high current LED driver IC evaluation board designed to drive one LED at 1.0A from a 9.0 – 16 VDC input. Featured on-board is the HV9919 hysteric buck LED driver IC.

An analogue and digital PWM dimming mode is included. With the analogue dimming mode the output of the LED can be controlled by using a 0 – 2.0 V analogue signal applied between the ADIM and GND pins; 0 V gives 0% and 2.0 V gives 100%. In this mode the PWM dimming frequency is set to 1 kHz on the board. The digital PWM dimming mode is achieved by using an external TTL-compatible square wave source applied between DIM and GND. In this case the PWM dimming frequency and duty ration are set by the external wave source.

LED Drivers, Microchip

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P.O.A.

Microchip HV9919BDB1, Supertex LED Driver Evaluation Board for HV9919

P.O.A.

Microchip HV9919BDB1, Supertex LED Driver Evaluation Board for HV9919
Информацията за складовите наличности временно не е налична.

Технически документи

Спецификации

LED Technology

LED Driver

Kit Classification

Evaluation Board

Featured Device

HV9919

Kit Name

Supertex

Страна на произход

United States

Детайли за продукта

HV9919BDB1 Supertex High Current LED Driver IC Evaluation Board

The HV9919BDB1 from Supertex Inc. (a subsidiary of Microchip Technology) is a high current LED driver IC evaluation board designed to drive one LED at 1.0A from a 9.0 – 16 VDC input. Featured on-board is the HV9919 hysteric buck LED driver IC.

An analogue and digital PWM dimming mode is included. With the analogue dimming mode the output of the LED can be controlled by using a 0 – 2.0 V analogue signal applied between the ADIM and GND pins; 0 V gives 0% and 2.0 V gives 100%. In this mode the PWM dimming frequency is set to 1 kHz on the board. The digital PWM dimming mode is achieved by using an external TTL-compatible square wave source applied between DIM and GND. In this case the PWM dimming frequency and duty ration are set by the external wave source.

LED Drivers, Microchip