MIKROE-4726

Mikroe
932-MIKROE-4726
MIKROE-4726

メーカ:

詳細:
電源管理IC開発ツール eFuse Click

在庫: 22

在庫:
22 すぐに出荷可能
工場リードタイム:
6 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
¥2,880 ¥2,880

製品属性 属性値 属性の選択
Mikroe
製品カテゴリー: 電源管理IC開発ツール
RoHS:  
Add-On Boards
eFuse
3.3 V
STPW12
ブランド: Mikroe
インタフェース タイプ: GPIO, PWM
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: Power Management IC 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:
8536308000
TARIC:
8473302000
ECCN:
EAR99

Sensor Click Boards

Mikroe Sensor Click Boards enable the addition of various sensors to applications and designs. Click boards™ are based around the mikroBUS™ interface standard and easily add incredible capabilities to systems. Mikroe Sensor Click Boards are ideal for any application that requires custom sensor capability. 

Click Boards™

MikroElektronika MikroBUS™ Adapter click boards™ are designed to revolutionize the way users add new functionality to development boards. The user can push a click board into the innovative new MikroBUS™ standard socket and use it with zero hardware configuration. Categories of MikroElektronika mikroBUS™ Adapter click boards include Wireless Communication Modules, Wired Communication Modules, Sensor Modules, and Miscellaneous Modules & Accessories.

Power Management Click Boards

Mikroe Power Management Click Boards are used to add power management solutions for various applications. Mikroe Click Boards are based around the mikroBUS™ interface standard and easily add incredible system capabilities. The devices are ideal for any type of power applications, including medical, industrial, and automation.

eFuse Click

Mikroe eFuse Click features the STMicroelectronics STPW12 integrated electronic power breaker optimized to monitor input power. The click is connected in series to the power rail and can disconnect the electronic circuitry on its output if the power consumption overcomes the programmed limit. The intervention of the protection is communicated to the MCU through a signal on the fault pin. The device can also be enabled/disabled through a dedicated Enable pin with a direct PWM mode, which is achieved through an external PWM signal.