PHX2N60E PHILIPS
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Technical content
Philips Semiconductors Product specification PowerMOS transistors PHX2N60E Avalanche energy rated FEATURES SYMBOL QUICK REFERENCE DATA
- Repetitive Avalanche Rated
- Fast switching VDSS = 600 V
- Stable off-state characteristics
- High thermal cycling performance ID = 1.3 A
- Isolated package R DS(ON) ≤ 6 Ω GENERAL DESCRIPTION PINNING SOT186A N-channel, enhancement mode PIN DESCRIPTION field-effect power transistor, intended for use in off-line switched 1 gate mode power supplies, T.V. and computer monitor power supplies, 2 drain d.c. to d.c. converters, motorcontrol circuits and general purpose 3 source switching applications. case isolated The PHX2N60E is supplied in the SOT186A full pack, isolated package. LIMITING VALUES Limiting values in accordance with the Absolute Maximum System (IEC 134) SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT V DSS Drain-source voltage T j = 25 ˚C to 150˚C - 600 V VDGR Drain-gate voltage T j = 25 ˚C to 150˚C; RGS = 20 kΩ - 600 V VGS Gate-source voltage - ± 30 V ID Continuous drain current Ths = 25 ˚C; VGS = 10 V - 1.3 A Ths = 100 ˚C; VGS = 10 V - 0.83 A IDM Pulsed drain current T hs = 25 ˚C - 7.6 A PD Total dissipation T hs = 25 ˚C - 25 W Tj, Tstg Operating junction and - 55 150 ˚C storage temperature range AVALANCHE ENERGY LIMITING VALUES Limiting values in accordance with the Absolute Maximum System (IEC 134) SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT E AS Non-repetitive avalanche Unclamped inductive load, IAS = 1.3 A; - 102 mJ energy t p = 0.2 ms; Tj prior to avalanche = 25˚C; VDD ≤ 50 V; RGS = 50 Ω ; VGS = 10 V; refer to fig:17 EAR Repetitive avalanche energy1 IAR = 1.9 A; tp = 2.5 µs; Tj prior to - 3.7 mJ avalanche = 25˚C; RGS = 50 Ω ; VGS = 10 V; refer to fig:18 IAS , IAR Repetitive and non-repetitive - 1.9 A avalanche current d g s 123 case 1 pulse width and repetition rate limited by Tj max. December 1998 1 Rev 1.200
Philips Semiconductors Product specification PowerMOS transistors PHX2N60E Avalanche energy rated ISOLATION LIMITING VALUE & CHARACTERISTIC Ths = 25 ˚C unless otherwise specified SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT V isol R.M.S. isolation voltage from all f = 50-60 Hz; sinusoidal - 2500 V three terminals to external waveform; heatsink R.H. ≤ 65% ; clean and dustfree C isol Capacitance from T2 to external f = 1 MHz - 10 - pF heatsink THERMAL RESISTANCES SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT R th j-hs Thermal resistance junction with heatsink compound - - 5 K/W to heatsink R th j-a Thermal resistance junction - 55 - K/W to ambient
ELECTRICAL CHARACTERISTICS
Tj = 25 ˚C unless otherwise specified SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT V (BR)DSS Drain-source breakdown V GS = 0 V; ID = 0.25 mA 600 - - V voltage ΔV(BR)DSS / Drain-source breakdown V DS = VGS ; ID = 0.25 mA - 0.1 - %/K ΔTj voltage temperature coefficient R DS(ON) Drain-source on resistance VGS = 10 V; ID = 1 A - 4.6 6 Ω VGS(TO) Gate threshold voltage V DS = VGS ; ID = 0.25 mA 2.0 3.0 4.0 V gfs Forward transconductance VDS = 30 V; ID = 1 A 0.5 1.4 - S IDSS Drain-source leakage current VDS = 600 V; VGS = 0 V - 1 100 µA VDS = 480 V; VGS = 0 V; Tj = 125 ˚C - 50 500 µA IGSS Gate-source leakage current VGS = ±30 V; VDS = 0 V - 10 200 nA Q g(tot) Total gate charge I D = 2 A; VDD = 480 V; VGS = 10 V - 20 25 nC Q gs Gate-source charge - 2 3 nC Q gd Gate-drain (Miller) charge - 9 15 nC td(on) Turn-on delay time V DD = 300 V; RD = 150 Ω ; - 10 - ns tr Turn-on rise time R G = 24 Ω -2 0-n s td(off) Turn-off delay time - 60 - ns tf Turn-off fall time - 20 - ns Ld Internal drain inductance Measured from drain lead to centre of die - 4.5 - nH Ls Internal source inductance Measured from source lead to source - 7.5 - nH bond pad C iss Input capacitance V GS = 0 V; VDS = 25 V; f = 1 MHz - 236 - pF C oss Output capacitance - 34 - pF C rss Feedback capacitance - 20 - pF December 1998 2 Rev 1.200
Philips Semiconductors Product specification PowerMOS transistors PHX2N60E Avalanche energy rated SOURCE-DRAIN DIODE RATINGS AND CHARACTERISTICS Tj = 25 ˚C unless otherwise specified SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT I S Continuous source current Ths = 25˚C - - 1.9 A (body diode) ISM Pulsed source current (body Ths = 25˚C - - 7.6 A diode) VSD Diode forward voltage I S = 2 A; VGS = 0 V - - 1.2 V trr Reverse recovery time I S = 2 A; VGS = 0 V; dI/dt = 100 A/µs - 360 - ns Q rr Reverse recovery charge - 2.4 - µC Fig.1. Normalised power dissipation. PD% = 100⋅PD /PD 25 ˚C = f(Ths) Fig.2. Normalised continuous drain current. ID% = 100⋅ID /ID 25 ˚C = f(Ths); conditions: VGS ≥ 10 V Fig.3. Safe operating area. Ths = 25 ˚C ID & IDM = f(VDS ); IDM single pulse; parameter tp Fig.4. Transient thermal impedance. Zth j-hs = f(t); parameter D = tp/T 0 20 40 60 80 100 120 140 Ths / C PD% Normalised Power Derating 120 110 100 with heatsink compound 10 100 1000 0.01 0.1
10 PHX1N60A
Drain-source voltage, VDS (Volts) Drain current, ID (Amps) DC 100us 1ms 10ms 100ms 10 us tp = RDS(ON) = VDS/ID 0 20 40 60 80 100 120 140 Ths / C ID% Normalised Current Derating 120 110 100 with heatsink compound 1E-07 1E-05 1E-03 1E-01 1E+01 t / s Zth j-hs / (K/W) 1E+01 1E+00 1E-01 1E-02 0.5 0.2 0.1 0.05 0.02 D = tp tp T TP t D ZTHX43 December 1998 3 Rev 1.200
Philips Semiconductors Product specification PowerMOS transistors PHX2N60E Avalanche energy rated Fig.5. Typical output characteristics. ID = f(VDS ); parameter VGS Fig.6. Typical on-state resistance. R DS(ON) = f(ID ); parameter VGS Fig.7. Typical transfer characteristics. ID = f(VGS ); parameter Tj Fig.8. Typical transconductance. gfs = f(ID ); parameter Tj Fig.9. Normalised drain-source on-state resistance. a = RDS(ON) /RDS(ON)25 ˚C = f(Tj); ID = 1 A; VGS = 10 V Fig.10. Gate threshold voltage. VGS(TO) = f(Tj); conditions: ID = 0.25 mA; VDS = VGS 0 5 10 15 20 25 30 VGS = 4.5 V 5 V 5.5 V 6 V 10 V 20 V PHP1N60A VDS, Drain-Source voltage (Volts) ID, Drain current (Amps) 6.5 V Tj = 25 C 012345 0.5 1.5
2 PHP1N60A
Drain current, ID (A) Transconductance, gfs (S) Tj = 25 C 150 C VDS > ID x RDS(on)max 01234 PHP1N60A
6.5 V 10 V
VGS = 20 V Drain current, ID (Amps) Drain-Source on resistance, RDS(ON) (Ohms) 6 V
5.5 V5 V Tj = 25 C
-60 -40 -20 0 20 40 60 80 100 120 140 Tj / C Normalised RDS(ON) = f(Tj) a 02468 1 0 PHP1N60A Tj = 25 C 150 C Drain current, ID (A) Gate-source voltage, VGS (V) VDS > ID x RDS(on)max -60 -40 -20 0 20 40 60 80 100 120 140 Tj / C VGS(TO) / V max. typ. min. December 1998 4 Rev 1.200
Philips Semiconductors Product specification PowerMOS transistors PHX2N60E Avalanche energy rated Fig.11. Sub-threshold drain current. ID = f(VGS); conditions: Tj = 25 ˚C; VDS = VGS Fig.12. Typical capacitances, Ciss, Coss, Crss. C = f(VDS ); conditions: VGS = 0 V; f = 1 MHz Fig.13. Typical turn-on gate-charge characteristics. VGS = f(QG ); parameter VDS Fig.14. Typical switching times; td(on), tr, td(off), tf = f(RG ) Fig.15. Normalised drain-source breakdown voltage; V(BR)DSS /V(BR)DSS 25 ˚C = f(Tj) Fig.16. Source-Drain diode characteristic. IF = f(VSDS ); parameter Tj 0 1 2 3 4 VGS / V ID / A1E-01 1E-02 1E-03 1E-04 1E-05 1E-06 SUB-THRESHOLD CONDUCTION typ2 % 98 % 0 2 04 06 08 0 1 0 0 100 1000 tr tf PHP1N60A Gate resistance, RG (Ohms) Switching times, td(on), tr, td(off), tf (ns) td(on) td(off) VDD = 300 V RD = 150 Ohms Tj = 25 C 1 10 100 10001 100
1000 PHP1N60A
Drain-source voltage, VDS (V) Capacitances, Ciss, Coss, Crss (pF) Ciss Coss Crss -100 -50 0 50 100 150 0.85 0.9 0.95 1.05 1.1 1.15 Tj, Junction temperature (C) Normalised Drain-source breakdown voltage V(BR)DSS @ Tj V(BR)DSS @ 25 C 0 1 02 03 04 0 PHP1N60A Gate charge, Qg (nC) Gate-Source voltage, VGS (Volts) VDD = 480 V 240 V 120 V ID = 2 A 0 0.5 1 1.5 PHP1N60A Source-Drain voltage, VSDS (V) Source-drain diode current, IF(A) VGS = 0 V
150 C Tj = 25 C
December 1998 5 Rev 1.200
Philips Semiconductors Product specification PowerMOS transistors PHX2N60E Avalanche energy rated Fig.17. Maximum permissible non-repetitive avalanche current (IAS ) versus avalanche time (tp); unclamped inductive load Fig.18. Maximum permissible repetitive avalanche current (IAR ) versus avalanche time (tp) PHP2N60E 0.1 1E-06 1E-05 1E-04 1E-03 1E-02 Avalanche time, tp (s) Non-repetitive Avalanche current, IAS (A)
125 CVDS
Tj prior to avalanche = 25 C PHP2N60E 0.01 0.1 1E-06 1E-05 1E-04 1E-03 1E-02 Avalanche time, tp (s) Maximum Repetitive Avalanche Current, IAR (A) 125 C Tj prior to avalanche = 25 C December 1998 6 Rev 1.200
Philips Semiconductors Product specification PowerMOS transistors PHX2N60E Avalanche energy rated MECHANICAL DATA Dimensions in mm Net Mass: 2 g Fig.19. SOT186A; The seating plane is electrically isolated from all terminals. Notes 1. Observe the general handling precautions for electrostatic-discharge sensitive devices (ESDs) to prevent damage to MOS gate oxide. 2. Refer to mounting instructions for F-pack envelopes. 3. Epoxy meets UL94 V0 at 1/8". 10.3 max 3.2 3.0 4.6 max 2.9 max 2.8 seating plane 6.4 15.8 max 0.6 2.5 2.54 5.08 123 3 max. not tinned 0.5 2.5 0.9 0.7 M0.4 15.8 max. max. 13.5 min. Recesses (2x) 2.5 0.8 max. depth 1.0 (2x) 1.3 December 1998 7 Rev 1.200
Philips Semiconductors Product specification PowerMOS transistors PHX2N60E Avalanche energy rated DEFINITIONS Data sheet status Objective specification This data sheet contains target or goal specifications for product development. Preliminary specification This data sheet contains preliminary data; supplementary data may be published later. Product specification This data sheet contains final product specifications. Limiting values Limiting values are given in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one or more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation of the device at these or at any other conditions above those given in the Characteristics sections of this specification is not implied. Exposure to limiting values for extended periods may affect device reliability.
Application information
Where application information is given, it is advisory and does not form part of the specification. Philips Electronics N.V. 1998 All rights are reserved. Reproduction in whole or in part is prohibited without the prior written consent of the copyright owner. The information presented in this document does not form part of any quotation or contract, it is believed to be accurate and reliable and may be changed without notice. No liability will be accepted by the publisher for any consequence of its use. Publication thereof does not convey nor imply any license under patent or other industrial or intellectual property rights. LIFE SUPPORT APPLICATIONS These products are not designed for use in life support appliances, devices or systems where malfunction of these products can be reasonably expected to result in personal injury. Philips customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify Philips for any damages resulting from such improper use or sale. December 1998 8 Rev 1.200