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03P4MG

NEC
Part Number 03P4MG
Manufacturer NEC
Description (03P4MG / 03P6MG) 300 mA HIGH-WITHSTANDING-VOLTAGE MOLD SCR
Published Nov 2, 2009
Detailed Description DATA SHEET THYRISTORS 03P4MG,03P6MG 300 mA HIGH-WITHSTANDING-VOLTAGE MOLD SCR DESCRIPTION The 03P4MG and 03P6MG are P...
Datasheet PDF File 03P4MG PDF File

03P4MG
03P4MG


Overview
DATA SHEET THYRISTORS 03P4MG,03P6MG 300 mA HIGH-WITHSTANDING-VOLTAGE MOLD SCR DESCRIPTION The 03P4MG and 03P6MG are P-gate fully diffused mold SCRs with an average on-state current of 300 mA.
The repeat peak off-state voltages (and reverse voltages) are 400 and 600 V.
PACKAGE DRAWING (Unit: mm) φ 5.
2 MAX.
FEATURES • 400 and 600 V high-withstanding-voltage series of products • The non-repetitive withstanding voltage is a high 700 V, making it easy to harmonize the rise voltage of the surge absorber.
• High-sensitivity thyristor (IGT = 3 to 50 µA) • Employs flame-retardant epoxy resin (UL94V-0) 1.
5 Electrode connection 1: Gate 2: Anode 3: Cathode *TC test bench-mark Standard weight: 0.
3 g 0.
5 1.
27 1.
77 MAX.
APPLICATIONS Leakage breakers, SSRs, various type of alarms, consumer electronic equipments and automobile electronic components 1 2 3 2.
54 4.
2 MAX.
ABSOLUTE MAXIMUM RATINGS (TA = 25°C) Parameter Symbol 03P4MG Non-repetitive Peak Reverse Voltage Non-repetitive Peak Off-state Voltage www.
DataSheet4U.
com Repetitive Peak Reverse Voltage Ratings 03P6MG 700 700 600 600 12.
7 MIN.
5.
5 MAX.
Unit Remarks VRSM VDSM VRRM VDRM IT(AV) IT(RMS) ITSM 700 700 400 400 V V V V mA mA A As A/µs mW mW mA V °C °C 2 RGK = 1 kΩ RGK = 1 kΩ RGK = 1 kΩ RGK = 1 kΩ Refer to Figure 10.
− Refer to Figure 2.
− − Refer to Figure 3.
Refer to Figure 3.
− − − − Repetitive Peak Off-state Voltage Average On-state Current Effective On-state Current 300 (TA = 30°C, Single half-wave, θ = 180°) 470 8 (f = 50 Hz, Sine half-wave, 1 cycle) 0.
15 (1 ms ≤ t ≤ 10 ms) 20 100 (f ≥ 50 Hz, Duty ≤ 10%) 10 100 (f ≥ 50 Hz, Duty ≤ 10%) 6 −40 to +125 −55 to +150 5 Surge On-state Current Fusing Current Critical Rate of On-state Current of Rise Peak Gate Power Dissipation Average Gate Power Dissipation Peak Gate Forward Current Peak Gate Reverse Voltage Junction Temperature Storage Temperature ∫ iT dt 2 dIT/dt PGM PG(AV) IFGM VRGM Tj Tstg The information in this document is subject to change withou...



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