KTD2690EVAB-TA

Kinetic Technologies
389-KTD2690EVAB-TR
KTD2690EVAB-TA

제조업체:

설명:
LED 조명 드라이버 IC Single Flash LED Driver with Programmable 1.5A Current Source

ECAD 모델:
무료 라이브러리 로더를 다운로드하여 이 파일을 ECAD 도구용으로 변환하십시오. ECAD 모델에 대해 자세히 알아보기

구매 가능 정보

재고:
재고 없음
공장 리드 타임:
최소: 6000   배수: 3000
단가:
₩-
합계:
₩-
예상 관세:
본 제품의 배송비는 무료

가격 (KRW)

수량 단가
합계
₩587.6 ₩3,525,600
₩565.4 ₩5,088,600

제품 속성 속성 값 속성 선택
Kinetic Technologies
제품 카테고리: LED 조명 드라이버 IC
브랜드: Kinetic Technologies
COA(최종 조립 국가): Not Available
COD(확산 공정 국가): Not Available
COO(원산지): Not Available
제품 유형: LED Lighting Drivers
팩토리 팩 수량: 3000
하위 범주: Driver ICs
제품을 찾음:
유사 제품을 표시하려면 확인란을 하나 이상 선택하십시오.
이 카테고리에 유사 제품을 표시하려면 확인란을 하나 이상 선택하십시오.
속성 선택됨: 0

TARIC:
8542399000

KTD2690 Single Flash LED Driver

Kinetic Technologies KTD2690 Single Flash LED Driver is an ideal power solution for high-power flash LED applications. The KTD2690 is a highly integrated synchronous boost converter and current source that can support up to 1.5A flash and up to 376mA torch current. The device provides a very small total solution for portable applications. It has an I2C interface and a hardware STROBE pin for maximum control flexibility. The integrated current source on/off and current settings in Flash/Torch/IR modes can be programmed by the I2C interface. A selectable input low voltage protection function can prevent a system reset under low battery conditions.

IS32LT3175N/P Single-Channel Linear LED Drivers

ISSI IS32LT3175N/P Single-Channel Linear LED Drivers come with fade in/out and PWM dimming. The regulators serve as a stand-alone LED driver-configurable from 20mA to 150mA with external resistors, no microcontroller is necessary. A logic level “courtesy light” signal from the PWM pin can be interfaced to precisely drive the LED channel. The IS32LT3175P obtains a positive polarity PWM signal. In addition, the IS32LT3175N obtains a negative polarity PWM signal. The regulator integrates a 63-step fade-in and fades out the algorithm (Gamma correction). This causes the output LED current to increasingly rise up to the full source value after the EN pin is pulsed.