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Part : PHP6N50E Supplier : Philips Semiconductors Manufacturer : ComSIT Stock : 785 Best Price : - Price Each : -
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PHP6N50E Datasheet

Part Manufacturer Description PDF Type
PHP6N50E Philips Semiconductors PowerMOS transistors Avalanche energy rated Original

PHP6N50E

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: cycling performance Low thermal resistance PHP6N50E, PHB6N50E SYMBOL d QUICK REFERENCE DATA VD S , purpose switching applications. The PHP6N50E is supplied in the SOT78 (T0220AB) conventional leaded , ) PHP6N50E, PHB6N50E SYMBOL PARAMETER e as CONDITIONS Unclamped inductive load, lD = 4.5 A; VD D < 50 , RATINGS AND CHARACTERISTICS Tj = 25 °C unless otherwise specified PHP6N50E, PHB6N50E SYMBOL , Product specification PowerMOS transistors Avalanche energy rated PHP6N50E, PHB6N50E gfs -
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SQT404

PHP6N50E

Abstract: PHB6N50E FEATURES PHP6N50E, PHB6N50E SYMBOL · Repetitive Avalanche Rated · Fast switching · Stable , purpose switching applications. The PHP6N50E is supplied in the SOT78 (TO220AB) conventional leaded , transistors Avalanche energy rated PHP6N50E, PHB6N50E AVALANCHE ENERGY LIMITING VALUES Limiting values , Avalanche energy rated PHP6N50E, PHB6N50E ELECTRICAL CHARACTERISTICS Tj = 25 °C unless otherwise , transistors Avalanche energy rated Normalised Power Derating PD% 120 PHP6N50E, PHB6N50E 1
Philips Semiconductors
Original
PHP3N60 PHP4N50 USON-10
Abstract: Philips Semiconductors Product specification PowerMÒS transistors PHP6N50E, PHB6N50E , applications. The PHP6N50E is supplied in the SOT78 (T0220AB) conventional leaded package. The PHB6N50E is , Limiting values in accordance with the Absolute Maximum System (IEC 134) SYMBOL PARAMETER eas PHP6N50E , = 0 V; dl/dt = 100 A/fis PHP6N50E, PHB6N50E MIN. - TYP. MAX. UNIT - 5.9 24 1.2 - A , specification PowerMOS transistors Avalanche energy rated PHP6N50E, PHB6N50E gfs, Transconductance (S -
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Abstract: cycling performance Low thermal resistance PHP6N50E, PHB6N50E SYMBOL I I K| 9^ \ ^ QUICK , general purpose switching applications. The PHP6N50E is supplied in the SOT78 (T0220AB) conventional , Maximum System (IEC 134) SYMBOL PARAMETER Eas Non-repetitive avalanche energy CONDITIONS PHP6N50E , Ig s s PHP6N50E, PHB6N50E CONDITIONS VG S = 0 V; lD = 0.25 mA V ds = V qs! Id = 0.25 mA VG S = , Philips Semiconductors Product specification PowerMOS transistors Avalanche energy rated PHP6N50E -
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BUK555 600b

Abstract: BUK453-60B data PHP7N40E PHP6N50E PHP4N60E PHP10N40E PHP8N50E PHP7N60E Discontinued PHP222 1998 Nov 16 29
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BUK113-50GL BUK555 600b BUK453-60B data Replacement list BUK545 Replacement BUK202 BUK100-50GS BUK101-50GS BUK102-50GS BUK106-50SP BUK107-50DS BUK111-50GL

PHP4N50

Abstract: PHX2N60 (on), tr, td(off), tf = f(RG) 1.15 PHP6N50E Fig.17. Maximum permissible non-repetitive , 1.1 Tj prior to avalanche = 25 C 1.05 1 125 C 1 0.1 0.95 0.9 0.85 -100 PHP6N50E
Philips Semiconductors
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PHX6ND50E PHX2N60 PHX4N50

FREDFET

Abstract: Power FREDFET Transistor , tp (s) Fig.14. Typical switching times; td(on), tr, td(off), tf = f(RG) 1.15 PHP6N50E Fig , 0.1 0.95 0.9 0.85 -100 PHP6N50E 0.01 1E-06 -50 0 50 Tj, Junction temperature (C
Philips Semiconductors
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PHP6ND50E PHB6ND50E FREDFET Power FREDFET Transistor

buk444

Abstract: BUK454-500B -400B PHP7N40E BUK455-500B PHP6N50E BUK455-600B PHP4N60E BUK457-400B PHP10N40E BUK457
Philips Semiconductors
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BUK112-50GL BUK200-50X BUK201-50X PHX3N50E PHX4N60E BUK454-500B buk444 Diodes REPLACEMENT BUK9575 BUK7528-55 BUK455 600B BUK127-50GL BUK202-50X BUK203-50X

transistor irf830

Abstract: IRF8301 (RG) 1.15 PHP6N50E Fig.17. Maximum permissible non-repetitive avalanche current (IAS) versus , = 25 C 1.05 1 125 C 1 0.1 0.95 0.9 0.85 -100 PHP6N50E 0.01 1E-06 -50 0
Philips Semiconductors
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IRF830 transistor irf830 IRF8301 power supply IRF830 APPLICATION

PHP4N50

Abstract: PHX2N60 (RG) 1.15 PHP6N50E Fig.17. Maximum permissible non-repetitive avalanche current (IAS) versus , = 25 C 1.05 1 125 C 1 0.1 0.95 0.9 0.85 -100 PHP6N50E 0.01 1E-06 -50 0
Philips Semiconductors
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PHX6N50E

200B

Abstract: BSH202 1435 1440 TYPE NUMBER PHP3N50E PHP3N60E PHP4N40E PHP4N60E PHP4ND40E PHP5N20E PHP6N10E PHP6N50E
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BSH202 BSP230 BST100 PHP45N03LT PHT11N06LT 200B PHC20306 php18n20e 2N7000 2N7002 BS107 BS107A BS108 BS170

BYC05B-600

Abstract: PHB23NQ10T PHW11N50E PHW8N50E PHP8N50E PHP6N50E PHP3N50E PHP2N50E PHX8N50E PHX6N50E PHX3N50E PHX2N50E MSD115 +VE
Philips Semiconductors
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BYC08-600 BYC05B-600 BYC08B-600 PHB23NQ10T PHB27NQ10T PHP18NQ10T MSD120 bridge rectifier 8341 M3D306 BYW29ED-150 BYW29ED-200 BYW29EB-150 BYW29EB-200 BYW29EX-150

circuit diagram electronic choke for tube light

Abstract: TUBE Light Choke connection diagram PHP6N50E TO DC - AC INVERTER 12V DC SUPPLY C RECTIFIER BOOST CONVERTER DC FILTER Fig
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circuit diagram electronic choke for tube light TUBE Light Choke connection diagram advantages of push pull inverter current fed push pull topology ELECTRONIC BALLAST 12v 12V neon ballast 50/60H

BS107 spice

Abstract: BS108 spice PHB8ND50E PHP8ND50E PHW8ND50E PHX8ND50E PHB6N50E PHP6N50E PHX6N50E PHB6ND50E PHP6ND50E PHX6ND50E PHB3N50E
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PHD69N03LT BS107 spice BS108 spice K9614 K9514 bsh201 Philips Semiconductors Selection Guide PHB87N03LT PHP87N03LT PHB69N03LT PHP69N03LT PHB55N03LT