MIKROE-4771

Mikroe
932-MIKROE-4771
MIKROE-4771

メーカ:

詳細:
LED 照明開発ツール 8800 Retro Click

在庫: 6

在庫:
6 すぐに出荷可能
工場リードタイム:
4 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
ユニット価格:
¥-
合計 額:
¥-
EST関税:

価格 (JPY)

数量 ユニット価格
合計 額
¥4,480 ¥4,480

製品属性 属性値 属性の選択
Mikroe
製品カテゴリー: LED 照明開発ツール
RoHS:  
Add-On Boards
3.3 V
ブランド: Mikroe
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

USHTS:
8531200040
ECCN:
EAR99

Display Click Boards

Mikroe Display Click Boards allow for adding LCD, OLED, and various other display options for applications and designs. Mikroe Click Boards are based around the mikroBUS™ interface standard and easily add incredible system capabilities. The devices are ideal for any application where a display is needed.

8800 Retro Click

Mikroe 8800 Retro Click features the ams AS1115 compact LED driver for 8x8 display screen programmed via a compatible 2-wire I2C interface. The AS1115 includes an integrated BCD code-B/HEX decoder, multiplex scan circuitry, segment and display drivers, and 64-bit memory. Internal memory stores the shift register settings, eliminating the need for continuous device reprogramming. All outputs of the AS1115 can be configured for key-readback, where key-switch status is obtained by polling for up to 64 keys, while 16 keys can be used to trigger an interrupt.

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.