LM3404MREVAL

Texas Instruments
926-LM3404MREVAL
LM3404MREVAL

メーカ:

詳細:
LED 照明開発ツール LM3404MR EVAL BOARD

在庫: 1

在庫:
1 すぐに出荷可能
工場リードタイム:
12 週間 表示されている時間を超える工場生産予定時間。
最小: 1   倍数: 1   最大: 5
ユニット価格:
¥-
合計 額:
¥-
EST関税:
この製品は配送無料

価格 (JPY)

数量 ユニット価格
合計 額
¥9,409.6 ¥9,410

製品属性 属性値 属性の選択
Texas Instruments
製品カテゴリー: LED 照明開発ツール
RoHS:  
Evaluation Boards
LM3402/3404
40 V to 60 V
LM3404MR
ブランド: Texas Instruments
最高動作温度: + 125 C
最低動作温度: - 40 C
出力電流: 1 A
製品タイプ: LED Lighting Development Tools
工場パックの数量: 1
サブカテゴリ: Development Tools
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選択した属性: 0

CNHTS:
9030900090
USHTS:
8473301180
TARIC:
8473302000
MXHTS:
8473300499
ECCN:
EAR99

LM3404MREVAL High Power PSOP-8 Evaluation Board

Texas Instruments LM3404MREVAL High Power PSOP-8 Evaluation Board demonstrates the enhanced thermal performance, fast dimming, and true constant LED current capabilities of LM3402 and LM3404 buck regulators. TI LM3404MREVAL Evaluation Board uses the LM3404 to provide a constant forward current of 750mA 10% to a string of up to five series-connected HBLEDs with a forward voltage of approximately 3.4V each from an input of 18V to 36V. Texas Instruments LM3402/LM3404 and LM3402HV/LM3404HV are buck regulator derived controlled current sources designed to drive a series string of high power HBLEDs at forward currents of up to 0.5A (LM3402/LM3402HV) or 1.0A (LM3404/LM3404HV).

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.