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STD2NC45-1 STQ1NC45
N-CHANNEL 450V - 4.1 - 1.5 A IPAK / TO-92 SuperMESHTMPower MOSFET
TYPE STD2NC45-1 STQ1NC45
s s s s s
VDSS 450 V 450 V
RDS(on) < 4.5 < 4.5
ID 1.5 A 0.5 A
Pw 30 W 3.1 W
3 2 1
TYPICAL RDS(on) = 4.1 EXTREMELY HIGH dv/dt CAPABILITY 100% AVALANCHE TESTED GATE CHARGE MINIMIZED NEW HIGH VOLTAGE BENCHMARK
IPAK TO-92
DESCRIPTION The SuperMESHTM series is obtained through an extreme optimization of ST's well established stripbased PowerMESHTM layout. In addition to pushing on-resistance significantly down, special care is taken to ensure a very good dv/dt capability for the most demanding applications. Such series complements ST full range of high voltage MOSFETs including revolutionary MDmeshTM products.
TO-92 (Ammopack)
INTERNAL SCHEMATIC DIAGRAM
APPLICATIONS SWITCH MODE LOW POWER SUPPLIES (SMPS) s LOW POWER, LOW COST CFL (COMPACT FLUORESCENT LAMPS) s LOW POWER BATTERY CHARGERS
s
ORDERING INFORMATION
SALES TYPE STD2NC45-1 STQ1NC45 STQ1NC45-AP MARKING D2NC45 Q1NC45 Q1NC45 PACKAGE IPAK TO-92 TO-92 PACKAGING TUBE BULK AMMOPAK
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STD2NC45-1, STQ1NC45
ABSOLUTE MAXIMUM RATINGS
Symbol VDS VDGR VGS ID ID IDM ( ) PTOT dv/dt (1) Tj Tstg Parameter
STD2NC45-1
Value
STQ1NC45
Unit V V V 0.5 0.315 2 3.1 0.025 A A A W W/C V/ns C C
Drain-source Voltage (VGS = 0) Drain-gate Voltage (RGS = 20 k) Gate- source Voltage Drain Current (continuos) at TC = 25C Drain Current (continuos) at TC = 100C Drain Current (pulsed) Total Dissipation at TC = 25C Derating Factor Peak Diode Recovery voltage slope Operating Junction Temperature Storage Temperature 1.5 0.95 6 30 0.24
450 450 30
3 -65 to 150 -65 to 150
( ) Pulse width limited by safe operating area (1) ISD 0.5A, di/dt 100A/s, VDD V(BR)DSS, Tj TJMAX.
THERMAL DATA
IPAK Rthj-case Rthj-amb Rthj-lead Tl Thermal Resistance Junction-case Max Thermal Resistance Junction-ambient Max Thermal Resistance Junction-lead Max Maximum Lead Temperature For Soldering Purpose 275 4.1 100 120 40 260 TO-92 C/W C/W C/W C
AVALANCHE CHARACTERISTICS
Symbol IAR EAS Parameter IPAK Avalanche Current, Repetitive or Not-Repetitive (pulse width limited by Tj max) Single Pulse Avalanche Energy (starting Tj = 25 C, ID = IAR, VDD = 50 V) 1.5 25 Max Value TO-92 A mJ Unit
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STD2NC45-1, STQ1NC45
ELECTRICAL CHARACTERISTICS (TCASE =25C UNLESS OTHERWISE SPECIFIED) ON/OFF
Symbol V(BR)DSS IDSS IGSS VGS(th) RDS(on) Parameter Drain-source Breakdown Voltage Zero Gate Voltage Drain Current (VGS = 0) Gate-body Leakage Current (VDS = 0) Gate Threshold Voltage Static Drain-source On Resistance Test Conditions ID = 250 A, VGS = 0 VDS = Max Rating VDS = Max Rating, TC = 125 C VGS = 30V VDS = VGS, ID = 250A VGS = 10V, ID = 0.5 A 2.3 3 4.1 Min. 450 1 50 100 3.7 4.5 Typ. Max. Unit V A A nA V
DYNAMIC
Symbol gfs (1) Ciss Coss Crss Parameter Forward Transconductance Input Capacitance Output Capacitance Reverse Transfer Capacitance Test Conditions VDS > ID(on) x RDS(on)max, ID = 0.5 A VDS = 25V, f = 1 MHz, VGS = 0 Min. Typ. 1.1 Max. Unit S pF pF pF
160 27.5 4.7
SWITCHING ON
Symbol td(on) tr Qg Qgs Qgd Parameter Turn-on Delay Time Rise Time Total Gate Charge Gate-Source Charge Gate-Drain Charge Test Conditions VDD = 225 V, ID = 0.5 A RG = 4.7 VGS = 10 V (Resistive Load see, Figure 3) VDD = 360V, ID = 1.5 A, VGS = 10V, RG = 4.7 Min. Typ. 6.7 4 7 1.3 3.2 10 Max. Unit ns ns nC nC nC
SWITCHING OFF
Symbol tr(Voff) tf tc Parameter Off-voltage Rise Time Fall Time Cross-over Time Test Conditions VDD = 360V, ID = 1.5 A, RG = 4.7, VGS = 10V (Inductive Load see, Figure 5) Min. Typ. 8.5 12 18 Max. Unit ns ns ns
SOURCE DRAIN DIODE
Symbol ISD ISDM (2) VSD (1) trr Qrr IRRM Parameter Source-drain Current Source-drain Current (pulsed) Forward On Voltage Reverse Recovery Time Reverse Recovery Charge Reverse Recovery Current ISD = 1.5 A, VGS = 0 ISD = 1.5 A, di/dt = 100A/s VDD = 100V, Tj = 150C (see test circuit, Figure 5) 225 530 4.7 Test Conditions Min. Typ. Max. 1.5 6.0 1.6 Unit A A V ns C A
Note: 1. Pulsed: Pulse duration = 300 s, duty cycle 1.5 %. 2. Pulse width limited by safe operating area.
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STD2NC45-1, STQ1NC45
Safe Operating Area For IPAK Thermal Impedance For IPAK
Safe Operating Area For TO-92
Thermal Impedance For TO-92
Output Characteristics
Transfer Characteristics
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STD2NC45-1, STQ1NC45
Transconductance Static Drain-source On Resistance
Gate Charge vs Gate-source Voltage
Capacitance Variations
Normalized Gate Threshold Voltage vs Temp.
Normalized On Resistance vs Temperature
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STD2NC45-1, STQ1NC45
Source-drain Diode Forward Characteristics Normalized BVDSS vs Temperature
Max Id Current vs Tc
Maximum Avalanche Energy vs Temperature
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STD2NC45-1, STQ1NC45
Fig. 1: Unclamped Inductive Load Test Circuit Fig. 2: Unclamped Inductive Waveform
Fig. 3: Switching Times Test Circuit For Resistive Load
Fig. 4: Gate Charge test Circuit
Fig. 5: Test Circuit For Inductive Load Switching And Diode Recovery Times
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STD2NC45-1, STQ1NC45
TO-251 (IPAK) MECHANICAL DATA
DIM. MIN. A A1 A3 B B2 B3 B5 B6 C C2 D E G H L L1 L2 0.45 0.48 6 6.4 4.4 15.9 9 0.8 0.8 0.3 0.95 0.6 0.6 6.2 6.6 4.6 16.3 9.4 1.2 1 0.017 0.019 0.236 0.252 0.173 0.626 0.354 0.031 0.031 2.2 0.9 0.7 0.64 5.2 mm TYP. MAX. 2.4 1.1 1.3 0.9 5.4 0.85 0.012 0.037 0.023 0.023 0.244 0.260 0.181 0.641 0.370 0.047 0.039 MIN. 0.086 0.035 0.027 0.025 0.204 inch TYP. MAX. 0.094 0.043 0.051 0.031 0.212 0.033
H
A
C C2
L2 D
B3
B6
A1
L
=
=
3
B5
B
A3
=
B2
=
G
=
E
L1
1
2
=
0068771-E
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STD2NC45-1, STQ1NC45
TO-92 MECHANICAL DATA
mm. DIM. MIN. A b D E e e1 L R S1 W V 4.32 0.36 4.45 3.30 2.41 1.14 12.70 2.16 0.92 0.41 5 TYP MAX. 4.95 0.51 4.95 3.94 2.67 1.40 15.49 2.41 1.52 0.56 MIN. 0.170 0.014 0.175 0.130 0.094 0.044 0.50 0.085 0.036 0.016 5 TYP. MAX. 0.194 0.020 0.194 0.155 0.105 0.055 0.610 0.094 0.060 0.022 inch
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STD2NC45-1, STQ1NC45
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STD2NC45-1, STQ1NC45
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specification mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics. The ST logo is a trademark of STMicroelectronics (c) 2000 STMicroelectronics - Printed in Italy - All Rights Reserved STMicroelectronics GROUP OF COMPANIES Australia - Brazil - China - Finland - France - Germany - Hong Kong - India - Italy - Japan - Malaysia - Malta - Morocco Singapore - Spain - Sweden - Switzerland - United Kingdom - U.S.A. http://www.st.com
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