IS31FL3733B-QFLS4-EB

Lumissil
870-I31FL3733QFLS4EB
IS31FL3733B-QFLS4-EB

製造商:

說明:
LED 照明開發工具 12x16 Dot Matrix LED Driver-Eval Board

供貨情況

庫存:
暫無庫存
工廠前置作業時間:
7 週 工廠預計生產時間。
最少: 5   多個: 1
單價:
HK$-.--
總價:
HK$-.--
估計關稅:
此產品免費航運

Pricing (HKD)

數量 單價
總價
HK$809.42 HK$4,047.10

商品屬性 屬性值 選擇屬性
Lumissil
產品類型: LED 照明開發工具
RoHS:  
Evaluation Boards
IS31FL3733
ARM Cortex M3
5 V
IS31FL3733
品牌: Lumissil
最低工作溫度: - 40 C
輸出電流: 2 A
產品類型: LED Lighting Development Tools
原廠包裝數量: 1
子類別: Development Tools
每件重量: 110.818 g
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所選屬性: 0

CNHTS:
8543709990
USHTS:
8473301180
TARIC:
8473302000
MXHTS:
8473300499
ECCN:
EAR99

IS31FL3733-QFLS4-EB Evaluation Board

ISSI IS31FL3733-QFLS4-EB Evaluation Board is a fully assembled and tested board that uses the IS31FL3733 general-purpose 12×16 LED matrix driver. The IS31FL3733 can be programmed via an I2C compatible LED and can be dimmed individually with 8-bit PWM data, which allows 256 steps of linear dimming.

Analog IC Evaluation Boards

Lumissil offers a variety of Evaluation Boards designed to help engineers evaluate and test ISSI's analog integrated circuits. These include Class D power and audio amplifiers, Class-AB stereo audio amplifiers, boost converters, LED drivers, step-down converters, and infrared light sensors. Lumissil evaluation boards are fully assembled and tested for use with their perspective analog IC.

31FL323x LED Lighting Development Boards

ISSI 31FL323x LED Lighting Development Boards are development tools that evaluate ISSI multi-channel LED drivers. LED drivers are electrical circuits used to power light-emitting diodes. The fully assembled and tested board is powered by the Arm® Cortex®-M3 or 80C51 (IS31FL3235A-QFLS2-EB) with a 5V operating supply voltage. The evaluation boards have multiple display modes.

IS31LT3360 Demonstration Board

ISSI IS31LT3360 Demonstration Board is a fully assembled and tested PCB that uses the IS31LT3360 continuous mode inductive step-down converter. This ISSI board is designed to drive single or multiple series connected LEDs. This performance is achieved efficiently from a voltage source higher than the LED voltage.