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a siege MP02XXX190 Series Phase Control dual scr. scr/ diode modules es January 2000 version, DS4479-40 Ds44795.0July2002 FEATURES KEY PARAMETERS ■Dua| Device module v 1200 L Electrically Isolated Package 5500A Pressure Contact Construction T(AV)(per arm) 190A International Standard Footprint 3000v Alumina(non-toxic)Isolation Medium Code Circuit APPLICATIONS HBT Motor control HBP ■ Heater Control ■ AC Phase Control HBN Fig 1 Circuit diagrams VOL TAGE RATINGS Conditions Number Voltages MP02XXX190-12 1200T=125C MP02XXX190-10 =30mA v&v 巴巴巴 MP02XXX190-08 respectively Lower voltage grades available ORDERING INFORMATION Module type code: MP02 For further information see Package Details Order As MP02HBT190-12 or MP02HBT190-10 or MP02HBT190-08 Fig 2 Electrical connections(not to scale) MP02HBP190-12 or MP02HBP190-10 or MPo2HBP190-08 MPo2HBN190-12 or MP02HBN190-10 or MPo2HBN190-08 Note: When ordering, please use the complete part number www.dynexsemi.com1/8 www.dynexsemi.com MP02XXX190 Series MP02XXX190 Series Phase Control Dual SCR, SCR/Diode Modules Replaces January 2000 version, DS4479-4.0 DS4479-5.0 July 2002 FEATURES ■ Dual Device Module ■ Electrically Isolated Package ■ Pressure Contact Construction ■ International Standard Footprint ■ Alumina (non-toxic) Isolation Medium APPLICATIONS ■ Motor Control ■ Controlled Rectifier Bridges ■ Heater Control ■ AC Phase Control VOLTAGE RATINGS ORDERING INFORMATION Order As: MP02HBT190-12 or MP02HBT190-10 or MP02HBT190-08 MP02HBP190-12 or MP02HBP190-10 or MP02HBP190-08 MP02HBN190-12 or MP02HBN190-10 or MP02HBN190-08 Note: When ordering, please use the complete part number. KEY PARAMETERS VDRM 1200V I TSM 5500A I T(AV)(per arm) 190A Visol 3000V Code Circuit HBT HBP HBN Fig.1 Circuit diagrams 1 23 Fig. 2 Electrical connections - (not to scale) Module type code: MP02. For further information see Package Details. Lower voltage grades available. Repetitive Peak Voltages VDRM VRRM Type Number 1200 1000 1000 MP02XXX190-12 MP02XXX190-10 MP02XXX190-08 Tvj = 125o C I DRM = IRRM = 30mA VDSM & VRSM = VDRM & VRRM + 100V respectively Conditions
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