STGWA20H65DFB2

STMicroelectronics
511-STGWA20H65DFB2
STGWA20H65DFB2

製造商:

說明:
IGBT Trench gate field-stop 650 V, 20 A high speed HB2 series IGBT in a TO-247 long l

ECAD模型:
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庫存量: 990

庫存:
990 可立即送貨
工廠前置作業時間:
14 週 工廠預計生產時間數量大於所顯示的數量。
最少: 1   多個: 1
單價:
NT$-.--
總價:
NT$-.--
估計關稅:

Pricing (TWD)

數量 單價
總價
NT$113.56 NT$113.56
NT$69.70 NT$697.00
NT$47.94 NT$4,794.00
NT$42.84 NT$25,704.00
NT$37.40 NT$44,880.00
NT$34.34 NT$103,020.00
NT$33.83 NT$182,682.00
NT$33.66 NT$343,332.00

商品屬性 屬性值 選擇屬性
STMicroelectronics
產品類型: IGBT
RoHS:  
Si
TO-247-3
Through Hole
Single
650 V
1.65 V
- 20 V, 20 V
40 A
147 W
- 55 C
+ 175 C
Tube
品牌: STMicroelectronics
柵射極漏電電流: 250 nA
產品類型: IGBT Transistors
原廠包裝數量: 600
子類別: IGBTs
每件重量: 6.100 g
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所選屬性: 0

CNHTS:
8541290000
USHTS:
8541290065
TARIC:
8541290000
ECCN:
EAR99

IGBT V Series

STMicroelectronics 600V trench-gate field-stop very high-speed IGBT V series features the industry's lowest Eoff. Combined with a saturation voltage as low as 1.8V and a maximum operating junction temperature of 175°C, they enable increased system efficiency, higher switching frequencies (up to 120kHz), and simplified thermal and EMI design.

STGWA20H65DFB2 HB2 IGBT

STMicroelectronics STGWA20H65DFB2 HB2 IGBT is an evolution of the advanced proprietary trench gate field-stop structure. The HB2 series optimizes conduction with premium VCE(sat) at low current values and reduced switching energy. The STGWA20H65DFB2 HB2 IGBT features a low VCE(sat) of 1.65V (typical) at an IC of 20A. 

1200V H Series Trench Gate Field-Stop IGBTs

STMicroelectronics 1200V H Series Trench Gate Field-Stop IGBTs represent an optimum compromise between conduction and switching losses to maximize the efficiency of any frequency converter. With ST's advanced Trench-Gate Field-Stop High-Speed technology, these IGBTs have a 5μs minimum short circuit withstand time at TJ=150°C, minimal collector current turn off tail, and very low saturation voltage (VCE(sat)) down to 2.1V (typical) to minimize energy losses during switching and when turned on. Furthermore, a slightly positive VCE(sat) temperature coefficient and very tight parameter distribution result in safer paralleling operation.