NID5100GWH

Nexperia
771-NID5100GWH
NID5100GWH

製造商:

說明:
熱插拔電壓控制器 NID5100GW/SOT363/SC-88

壽命週期:
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庫存:
0

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工廠前置作業時間:
12 週 工廠預計生產時間數量大於所顯示的數量。
此產品已報告長備貨期。
最少: 1   多個: 1
單價:
HK$-.--
總價:
HK$-.--
估計關稅:

Pricing (HKD)

數量 單價
總價
HK$2.22 HK$2.22
HK$1.36 HK$13.60
HK$1.08 HK$108.00
HK$1.03 HK$515.00
HK$0.978 HK$978.00
HK$0.912 HK$2,736.00
HK$0.888 HK$5,328.00
HK$0.847 HK$7,623.00
HK$0.838 HK$20,112.00

商品屬性 屬性值 選擇屬性
Nexperia
產品類型: 熱插拔電壓控制器
RoHS:  
Ideal Diode Controller
5.5 V
1.2 V
- 40 C
+ 125 C
SMD/SMT
TSSOP-6
品牌: Nexperia
組裝國家: Not Available
擴散國: Not Available
原產國: MY
產品類型: Hot Swap Voltage Controllers
系列: NID5100
原廠包裝數量: 3000
子類別: PMIC - Power Management ICs
零件號別名: 935691420125
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所選屬性: 0

CNHTS:
8541100000
CAHTS:
8541100090
USHTS:
8541100080
TARIC:
8541100000
ECCN:
EAR99

NID5100理想二極體

Nexperia NID5100 Ideal Diodes are designed for low-voltage systems that are unable to tolerate the high-voltage drops of conventional Schottky components. These diodes regulate the voltage between the IN and OUT pins when enabled and forward-biased, which results in a forward voltage drop. The NID5100 ideal diodes become reverse biased with very low leakage current when OUT voltage is higher than IN voltage. These diodes are a low-loss replacement for power OR-ing diodes and offer an automatic transition between OR-ed supplies. The NID5100 ideal diodes operate within the 1.2V to 5.5V voltage range and -40°C to 125°C temperature range. These diodes are available in a standard TSSOP6 (SOT363-2) with a 2.1mm x 1.25mm x 0.95mm body package compatible with industry SC88/SC70-6 packages providing a small PCB footprint. Typical applications include building automation, smart meters, and OR-ed primary and battery backup.

LM5060 High-Side Protection Controllers

Texas Instruments LM5060 High-Side Protection Controllers with Low Quiescent Current offers intelligent control of a high-side N-channel MOSFET during normal on/off transitions and fault conditions. The constant rise time of the output voltage results from the inrush current control. Both an Input UVLO (with hysteresis) and a programmable input OVP are provided, with an enable input offering a remote on or off control. The initial start-up VGS fault detection delay time, the transition VDS fault detection delay time, and the continuous over-current VDS fault detection delay time is programmed from a single capacitor. The MOSFET is latched off until either the enable input, or the UVLO input is toggled low and then high when a detected fault condition persists longer than the allowed fault delay time.