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 Directed Energy, Inc.
An
DE150-501N04A
RF Power MOSFET
Preliminary Data Sheet
IXYS Company
N-Channel Enhancement Mode Avalanche Rated Low Qg and Rg High dv/dt Nanosecond Switching
Symbol VDSS
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VDSS ID25 RDS(on)
Maximum Ratings 500 500 20 30 4.5 27 4.5 3.5 >200 80 3.5 -55...+150 150 -55...+150 V V V V A A A mJ V/ns V/ns W W C C C C g
Features
SG1 SG2 GATE
= = = =
500 V 4.5 A 1.5 80W
Test Conditions
TJ = 25C to 150C TJ = 25C to 150C; RGS = 1 M Continuous Transient Tc = 25C Tc = 25C, pulse width limited by TJM Tc = 25C Tc = 25C IS IDM, di/dt 100A/s, VDD VDSS, Tj 150C, RG = 0.2 IS = 0
PDHS
VDGR
VGS VGSM ID25 IDM IAR EAR dv/dt PDHS PDAMB TJ TJM Tstg TL Weight Symbol
DRAIN
Tc = 25C Derate 4.4W/C above 25C Tc = 25C
SD1
SD2
1.6mm (0.063 in) from case for 10 s
300 2
* Isolated Substrate - high isolation voltage (>2500V) - excellent thermal transfer - Increased temperature and power * * - - * * *
cycling capability IXYS advanced low Qg process easier to drive faster switching Low RDS(on) Very low insertion inductance (<2nH) No beryllium oxide (BeO) or other hazardous materials Low gate charge and capacitances
Test Conditions
Characteristic Values
TJ = 25C unless otherwise specified
min. VDSS VGS(th) IGSS IDSS RDS(on) gfs
VGS = 0 V, ID = 3 ma VDS = VGS, ID = 4 ma VGS = 20 VDC, VDS = 0 VDS = 0.8 VDSS TJ = 25C TJ = 125C VGS = 0 VGS = 15 V, ID = 0.5ID25 Pulse test, t 300S, duty cycle d 2% VDS = 15 V, ID = 0.5ID25, pulse test
typ.
max. V
500 2 3 4 100 25 250 1.5 2.7 4.0
V nA A A S
Advantages
* Optimized for RF and high speed
switching at frequencies to >100MHz
* Easy to mount--no insulators needed * High power density
Directed Energy, Inc.
An
DE150-501N04A
RF Power MOSFET
IXYS Company
Test Conditions Characteristic Values (TJ = 25C unless otherwise specified) min. typ. max. 5 600
VGS = 0 V, VDS = 0.8 VDSS(max), f = 1 MHz
Symbol
RG Ciss Coss Crss
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pF pF pF ns ns ns ns
50 5 4
Td(on) Ton Td(off) Toff Qg(on) Qgs Qgd RthJHS
VGS = 10 V, VDS = 0.5 VDSS ID = 0.5 ID25 VGS = 15 V, VDS = 0.8 VDSS ID = 0.5 IDM RG = 0.2 (External)
4 4 4 16 2.0 8.0 1.5 40 6.0 20
nC nC nC K/W
Source-Drain Diode Symbol IS ISM VSD Trr Test Conditions
VGS = 0 V
Characteristic Values (TJ = 25C unless otherwise specified) min. typ. max. 4.5 27 1.4 900 A A V ns
Repetitive; pulse width limited by TJM IF = IS, VGS = 0 V, Pulse test, t 300 s, duty cycle 2%
Directed Energy, Inc. reserves the right to change limits, test conditions and dimensions. DEI MOSFETS are covered by one or more of the following U.S. patents: 4,835,592 5,034,796 5,381,025 4,850,072 5,049,961 5,640,045 4,881,106 5,063,307 4,891,686 5,187,117 4,931,844 5,237,481 5,017,508 5,486,715
Directed Energy, Inc.
An
DE150-501N04A
RF Power MOSFET
IXYS Company
501N04A DE-SERIES SPICE Model
The DE-SERIES SPICE Model is illustrated in Figure 1. The model is an expansion of the SPICE level 3 MOSFET model. It includes the stray inductive terms LG, LS and LD. Rd is the RDS(ON) of the device, Rds is the resistive leakage term. The output capacitance, COSS, and reverse transfer capacitance, CRSS are modeled with reversed biased diodes. This provides a varactor type response necessary for a high power device model. The turn on delay and the turn off delay are adjusted via Ron and Roff.
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Figure 1 DE-SERIES SPICE Model
This SPICE model may be downloaded as a text file from the DEI web site at www.directedenergy.com/spice.htm Net List: *SYM=POWMOSN .SUBCKT 501N04A 10 20 30 * TERMINALS: D G S * 500 Volt 4.5 Amp 1.5 Ohm N-Channel Power MOSFET 10-30-2001 M1 1 2 3 3 DMOS L=1U W=1U RON 5 6 9.5 DON 6 2 D1 ROF 5 7 3.5 DOF 2 7 D1 D1CRS 2 8 D2 D2CRS 1 8 D2 CGS 2 3 .6N RD 4 1 1.5 DCOS 3 1 D3 RDS 1 3 5.0MEG LS 3 30 .1N LD 10 4 1N LG 20 5 1N .MODEL DMOS NMOS (LEVEL=3 VTO=3.0 KP=6.0) .MODEL D1 D (IS=.5F CJO=1P BV=100 M=.5 VJ=.6 TT=1N) .MODEL D2 D (IS=.5F CJO=175P BV=500 M=.5 VJ=.6 TT=1N RS=10M) .MODEL D3 D (IS=.5F CJO=250P BV=500 M=.3 VJ=.4 TT=400N RS=10M) .ENDS
Doc #9200-0240 Rev 1 (c) 2001 Directed Energy, Inc.
Directed Energy, Inc. An IXYS Company
2401 Research Blvd., Suite 108 Fort Collins, CO USA 80526 970-493-1901 Fax: 970-493-1903 Email: deiinfo@directedenergy.com Web: http://www.directedenergy.com


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