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 (R)
STN3NE06
N - CHANNEL 60V - 0.08 - 3A - SOT-223 STripFETTM POWER MOSFET
TYPE ST N3NE06
s s s s s
V DSS 60 V
R DS(on) < 0.100
ID 3A
TYPICAL RDS(on) = 0.08 EXCEPTIONAL dv/dt CAPABILITY AVALANCHE RUGGED TECHNOLOGY 100 % AVALANCHE TESTED APPLICATION ORIENTED CHARACTERIZATION
2 3
DESCRIPTION This Power Mosfet is the latest development of STMicroelectronics unique "Single Feature SizeTM " stip-based process. The resulting transistor shows extremely high packing density for low on-resistance, rugged avalanche characteristics and less critical alignment steps therefore a remarkable manufacturing reproducibility. APPLICATIONS s DC MOTOR CONTROL (DISK DRIVES,etc.) s DC-DC & DC-AC CONVERTERS s SYNCHRONOUS RECTIFICATION
1
SOT-223
2
INTERNAL SCHEMATIC DIAGRAM
ABSOLUTE MAXIMUM RATINGS
Symbol V DS V DGR V GS ID ID I DM (*) P to t dv/dt(1) T st g Tj Parameter Drain-source Voltage (VGS = 0) Drain- gate Voltage (RGS = 20 k) Gate-source Voltage Drain Current (continuous) at T c = 25 C Drain Current (continuous) at T c = 100 C Drain Current (pulsed) Total Dissipation at Tc = 25 C Derating Factor Peak Diode Recovery voltage slope Storage Temperature Max. Operating Junction T emperature
o o o
Value 60 60 20 3 1.8 12 2.5 0.02 6 -65 to 150 150
(1) ISD 12 A, di/dt 200 A/s, VDD V(BR)DSS, Tj TJMAX
Unit V V V A A A W W/ o C V/ns
o o
C C
(*) Pulse width limited by safe operating area New RDS (on) spec. starting from JULY 98
August 1998
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THERMAL DATA
R thj -pcb R t hj- amb Tl Thermal Resistance Junction-PC Board Max Thermal Resistance Junction-ambient Max (Surface Mounted) Maximum Lead Temperature For Soldering Purpose 50 60 260
o o
C/W C/W
o
C
AVALANCHE CHARACTERISTICS
Symb ol I AR E AS Parameter Avalanche Current, Repetitive or Not-Repetitive (pulse width limited by Tj max) Single Pulse Avalanche Energy (starting Tj = 25 o C, I D = IAR , VDD = 25 V) Max Valu e 3 20 Unit A mJ
ELECTRICAL CHARACTERISTICS (Tcase = 25 oC unless otherwise specified) OFF
Symb ol V (BR)DSS I DSS Parameter Drain-source Breakdown Voltage Test Cond ition s I D = 250 A V GS = 0 Min. 60 1 10 100 Typ . Max. Un it V A A nA
V DS = Max Rating Zero G ate Voltage Drain Current (VGS = 0) V DS = Max Rating o C Gate-body Leakage Current (V DS = 0) V GS = 20 V
T c = 125
I GSS
ON ()
Symb ol V GS(th) R DS( on) ID(o n) Parameter Gate Threshold Voltage V DS = VGS Test Cond ition s ID = 250 A I D = 6A 3 Min. 2 Typ . 3 0.080 Max. 4 0.100 Un it V A
Static Drain-source On V GS = 10 V Resistance
On State Drain Current V DS > I D(on) x R DS(on) max V GS = 10 V
DYNAMIC
Symb ol g fs () C iss C oss C rss Parameter Forward Transconductance Input Capacitance Output Capacitance Reverse T ransfer Capacitance Test Cond ition s V DS > I D(on) x R DS(on) max V DS = 25 V f = 1 MHz I D = 1.5 A VGS = 0 V Min. 1 Typ . 3 760 100 30 1000 140 45 Max. Un it S pF pF pF
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ELECTRICAL CHARACTERISTICS (continued) SWITCHING ON
Symb ol t d(on) tr Qg Q gs Q gd Parameter Turn-on Time Rise Time Total Gate Charge Gate-Source Charge Gate-Drain Charge Test Cond ition s V DD = 30 V R G = 4.7 V DD = 40 V ID = 6 A VGS = 10 V I D = 12 A V GS = 10 V Min. Typ . 10 35 20 5 7 Max. 15 50 25 Un it ns ns nC nC nC
SWITCHING OFF
Symb ol t r(Vof f) tf tc Parameter Off-voltage Rise Time Fall Time Cross-over Time Test Cond ition s V DD = 48 V R G = 4.7 W I D = 12 A V GS = 10 V Min. Typ . 7 18 30 Max. 10 25 45 Un it ns ns ns
SOURCE DRAIN DIODE
Symb ol I SD I SDM (*) V SD () t rr Q rr I RRM Parameter Source-drain Current Source-drain Current (pulsed) Forward On Voltage Reverse Recovery Time Reverse Recovery Charge Reverse Recovery Current I SD = 3 A I SD = 12 A V DD = 30 V VGS = 0 di/dt = 100 A/s o T j = 150 C 65 0.18 5.5 Test Cond ition s Min. Typ . Max. 3 12 1.5 Un it A A V ns C A
() Pulsed: Pulse duration = 300 s, duty cycle 1.5 % (*) Pulse width limited by safe operating area
Safe Operating Area
Thermal Impedance
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STN3NE06
Derating Curve Output Characteristics
Transfer Characteristics
Transconductance
Static Drain-source On Resistance
Gate Charge vs Gate-source Voltage
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Capacitance Variations Normalized Gate Threshold Voltage vs Temperature
Normalized On Resistance vs Temperature
Cross-over Time
Source-drain Diode Forward Characteristics
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STN3NE06
Fig. 1: Unclamped Inductive Load Test Circuit Fig. 2: Unclamped Inductive Waveform
Fig. 3: Switching Times Test Circuits 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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SOT-223 MECHANICAL DATA
mm MIN. a b c d e1 e4 f g l1 l2 L 2.9 0.67 6.7 3.5 6.3 3 0.7 7 3.5 6.5 2.27 4.57 0.2 0.63 1.5 TYP. 2.3 4.6 0.4 0.65 1.6 MAX. 2.33 4.63 0.6 0.67 1.7 0.32 3.1 0.73 7.3 3.7 6.7 114.2 26.4 263.8 137.8 248 118.1 27.6 275.6 137.8 255.9 MIN. 89.4 179.9 7.9 24.8 59.1 mils TYP. 90.6 181.1 15.7 25.6 63 MAX. 91.7 182.3 23.6 26.4 66.9 12.6 122.1 28.7 287.4 145.7 263.8
DIM.
L
l2
e1
a b f
d c e4
C l1
B
C
E
g
P008B
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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 registered trademark of STMicroelectronics (c) 1998 STMicroelectronics - Printed in Italy - All Rights Reserved STMicroelectronics GROUP OF COMPANIES Australia - Brazil - Canada - China - France - Germany - Italy - Japan - Korea - Malaysia - Malta - Mexico - Morocco - The Netherlands Singapore - Spain - Sweden - Switzerland - Taiwan - Thailand - United Kingdom - U.S.A. .
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