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Philips Semiconductors Product Specification PowerMOS transistor BUK436W-200A/B GENERAL DESCRIPTION N-channel enhancement mode field-effect power transistor in a plastic envelope. The device is intended for use in Switched Mode Power Supplies (SMPS), motor control, welding, DC/DC and AC/DC converters, and in general purpose switching applications. QUICK REFERENCE DATA SYMBOL VDS ID Ptot RDS(ON) PARAMETER BUK436 Drain-source voltage Drain current (DC) Total power dissipation Drain-source on-state resistance MAX. -200A 200 19 125 0.16 MAX. -200B 200 17 125 0.2 UNIT V A W PINNING - SOT429 (TO247) PIN 1 2 3 tab gate drain source drain DESCRIPTION PIN CONFIGURATION SYMBOL d g 1 2 3 s LIMITING VALUES Limiting values in accordance with the Absolute Maximum System (IEC 134) SYMBOL VDS VDGR VGS ID ID IDM Ptot Tstg Tj PARAMETER Drain-source voltage Drain-gate voltage Gate-source voltage Drain current (DC) Drain current (DC) Drain current (pulse peak value) Total power dissipation Storage temperature Junction Temperature CONDITIONS RGS = 20 k Tmb = 25 C Tmb = 100 C Tmb = 25 C Tmb = 25 C MIN. - 55 -200A 19 12 76 125 150 150 MAX. 200 200 30 -200B 17 11 68 UNIT V V V A A A W C C THERMAL RESISTANCES SYMBOL Rth j-mb Rth j-a PARAMETER Thermal resistance junction to mounting base Thermal resistance junction to ambient CONDITIONS MIN. TYP. 45 MAX. 1.0 UNIT K/W K/W July 1997 1 Rev 1.000 Philips Semiconductors Product Specification PowerMOS transistor BUK436W-200A/B STATIC CHARACTERISTICS Tmb = 25 C unless otherwise specified SYMBOL V(BR)DSS VGS(TO) IDSS IDSS IGSS RDS(ON) PARAMETER Drain-source breakdown voltage Gate threshold voltage Zero gate voltage drain current Zero gate voltage drain current Gate source leakage current Drain-source on-state resistance CONDITIONS VGS = 0 V; ID = 0.25 mA VDS = VGS; ID = 1 mA VDS = 200 V; VGS = 0 V; Tj = 25 C VDS = 200 V; VGS = 0 V; Tj =125 C VGS = 30 V; VDS = 0 V VGS = 10 V; BUK436-200A BUK436-200B ID = 10 A MIN. 200 2.1 TYP. 3.0 1 0.1 10 0.15 0.17 MAX. 4.0 10 1.0 100 0.16 0.20 UNIT V V A mA nA DYNAMIC CHARACTERISTICS Tmb = 25 C unless otherwise specified SYMBOL gfs Ciss Coss Crss td on tr td off tf Ld Ld Ls PARAMETER Forward transconductance Input capacitance Output capacitance Feedback capacitance Turn-on delay time Turn-on rise time Turn-off delay time Turn-off fall time Internal drain inductance Internal drain inductance Internal source inductance CONDITIONS VDS = 25 V; ID = 10 A VGS = 0 V; VDS = 25 V; f = 1 MHz VDD = 30 V; ID = 3 A; VGS = 10 V; Rgen = 50 ; RGS = 50 Measured from contact screw on tab to centre of die Measured from drain lead 6 mm from package to centre of die Measured from source lead 6 mm from package to source bond pad MIN. 8.5 TYP. 16 1500 300 60 20 40 145 50 5 5 12.5 MAX. 2000 400 100 30 60 185 70 UNIT S pF pF pF ns ns ns ns nH nH nH REVERSE DIODE LIMITING VALUES AND CHARACTERISTICS Tmb = 25 C unless otherwise specified SYMBOL IDR IDRM VSD trr Qrr PARAMETER Continuous reverse drain current Pulsed reverse drain current Diode forward voltage Reverse recovery time Reverse recovery charge CONDITIONS IF = 19 A ; VGS = 0 V IF = 19 A; -dIF/dt = 100 A/s; VGS = 0 V; VR = 30 V MIN. TYP. 1.0 180 2.5 MAX. 19 76 1.7 UNIT A A V ns C July 1997 2 Rev 1.000 Philips Semiconductors Product Specification PowerMOS transistor BUK436W-200A/B 120 110 100 90 80 70 60 50 40 30 20 10 0 PD% Normalised Power Derating 10 Zth j-mb / (K/W) BUKx56-lv 1 D= 0.5 0.1 0.2 0.1 0.05 0.02 P D 0 tp tp T t 1E+01 0.01 D= 0 20 40 60 80 100 Tmb / C 120 140 0.001 1E-05 1E-03 t/s T 1E-01 Fig.1. Normalised power dissipation. PD% = 100PD/PD 25 C = f(Tmb) ID% Normalised Current Derating Fig.4. Transient thermal impedance. Zth j-mb = f(t); parameter D = tp/T ID / A 20 10 30 BUK456-200A 7 6 120 110 100 90 80 70 60 50 40 30 20 10 0 40 20 VGS / V = 10 4 0 20 40 60 80 Tmb / C 100 120 140 5 0 0 2 4 6 8 10 12 VDS / V 14 16 18 20 Fig.2. Normalised continuous drain current. ID% = 100ID/ID 25 C = f(Tmb); conditions: VGS 10 V ID / A = VD ID S/ Fig.5. Typical output characteristics, Tj = 25 C. ID = f(VDS); parameter VGS RDS(ON) / Ohm BUK456-200A 100 BUK436-200A,B tp = 10 us 1.0 S RD (O N) 0.8 100 us 4 4.5 5 VGS / V = 5.5 10 AB DC 0.6 1 ms 10 ms 1 100 ms 6 0.4 7 10 0.2 0.1 1 10 100 VDS / V 1000 0 0 10 20 ID / A 30 40 Fig.3. Safe operating area. Tmb = 25 C ID & IDM = f(VDS); IDM single pulse; parameter tp Fig.6. Typical on-state resistance, Tj = 25 C. RDS(ON) = f(ID); parameter VGS July 1997 3 Rev 1.000 Philips Semiconductors Product Specification PowerMOS transistor BUK436W-200A/B 40 ID / A BUK456-200A 4 VGS(TO) / V max. 30 3 typ. 20 Tj / C = 10 150 0 25 min. 2 1 0 0 2 4 VGS / V 6 8 10 -60 -40 -20 0 20 40 60 Tj / C 80 100 120 140 Fig.7. Typical transfer characteristics. ID = f(VGS) ; conditions: VDS = 25 V; parameter Tj Fig.10. Gate threshold voltage. VGS(TO) = f(Tj); conditions: ID = 1 mA; VDS = VGS ID / A SUB-THRESHOLD CONDUCTION 20 gfs / S BUK456-200A 1E-01 1E-02 15 1E-03 2% typ 98 % 10 1E-04 5 1E-05 0 1E-06 0 10 20 ID / A 30 40 0 1 2 VGS / V 3 4 Fig.8. Typical transconductance, Tj = 25 C. gfs = f(ID); conditions: VDS = 25 V a Normalised RDS(ON) = f(Tj) Fig.11. Sub-threshold drain current. ID = f(VGS); conditions: Tj = 25 C; VDS = VGS BUK4y6-200 2.4 2.2 2.0 1.8 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0 10000 C / pF Ciss 1000 Coss 100 Crss -60 -40 -20 0 20 40 60 Tj / C 80 100 120 140 10 0 20 VDS / V 40 Fig.9. Normalised drain-source on-state resistance. a = RDS(ON)/RDS(ON)25 C = f(Tj); ID = 10 A; VGS = 10 V Fig.12. Typical capacitances, Ciss, Coss, Crss. C = f(VDS); conditions: VGS = 0 V; f = 1 MHz July 1997 4 Rev 1.000 Philips Semiconductors Product Specification PowerMOS transistor BUK436W-200A/B 12 10 8 VGS / V BUK456-200 VDS / V =40 40 IF / A BUK456-200A 30 160 6 4 10 20 Tj / C = 150 25 2 0 0 0 1 VSDS / V 2 0 10 20 QG / nC 30 40 Fig.13. Typical turn-on gate-charge characteristics. VGS = f(QG); conditions: ID = 19 A; parameter VDS Fig.14. Typical reverse diode current. IF = f(VSDS); conditions: VGS = 0 V; parameter Tj July 1997 5 Rev 1.000 Philips Semiconductors Product Specification PowerMOS transistor BUK436W-200A/B MECHANICAL DATA Dimensions in mm Net Mass: 5 g 5.3 3.5 21 max 15.5 max seating plane 7.3 16 max 5.3 max 1.8 o 3.5 max 2.5 4.0 max 1 2.2 max 3.2 max 5.45 2 3 0.9 max 1.1 5.45 0.4 M 15.5 min Fig.15. SOT429 (TO247); pin 2 connected to mounting base. 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 SOT429 envelopes. 3. Epoxy meets UL94 V0 at 1/8". July 1997 6 Rev 1.000 Philips Semiconductors Product Specification PowerMOS transistor BUK436W-200A/B DEFINITIONS Data sheet status Objective specification Product specification 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. (c) 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. This data sheet contains target or goal specifications for product development. This data sheet contains final product specifications. Preliminary specification This data sheet contains preliminary data; supplementary data may be published later. 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. July 1997 7 Rev 1.000 |
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