VP0300L_V01 VISHAY | Alldatasheet

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VP0300L/LS, VQ2001J/P Vishay Siliconix Document Number: 70217 S-04279—Rev. E, 16-Jul-01 www.vishay.com 11-1 P-Channel 30-V (D-S) MOSFETs /C0080/C0082/C0079/C0068/C0085/C0067/C0084/C0032/C0083/C0085/C0077/C0077/C0065/C0082/C0089 Part Number V(BR)DSS Min (V) rDS(on) Max (/C0087) VGS(th) (V) ID (A) VP0300L 2.5 @ VGS = –12 V –2 to –4.5 –0.32 VP0300LS 2.5 @ VGS = –12 V –2 to –4.5 –0.5 VQ2001J –30 2 @ VGS = –12 V –2 to –4.5 –0.6 VQ2001P 2 @ VGS = –12 V –2 to –4.5 –0.6 /C0070/C0069/C0065/C0084/C0085/C0082/C0069/C0083 /C0066/C0069/C0078/C0069/C0070/C0073/C0084/C0083 /C0065/C0080/C0080/C0076/C0073/C0067/C0065/C0084/C0073/C0079/C0078/C0083 /C0068High-Side Switching /C0068Low On-Resistance: 1.5 /C0087 /C0068Moderate Threshold: –3.1 V /C0068Fast Switching Speed: 17 ns /C0068Low Input Capacitance: 60 pF /C0068Ease in Driving Switches /C0068Low Offset (Error) Voltage /C0068Low-Voltage Operation /C0068High-Speed Switching /C0068Easily Driven Without Buffer /C0068Drivers: Relays, Solenoids, Lamps, Hammers, Displays, Memories, Transistors, etc. /C0068Battery Operated Systems /C0068Power Supply, Converter Circuits /C0068Motor Control TO-226AA (TO-92) Top View S D G TO-92S (Copper Lead Frame) Top View S D G Plastic: VQ2001J Sidebraze: VQ2001P VP0300L VP0300LS Top View Dual-In-Line D 1 D 4 S1 S4 G 1 G 4 NC NC G 2 G 3 D 2 D 3 P P P P For device marking, see the last page of this data sheet. /C0065/C0066/C0083/C0079/C0076/C0085/C0084/C0069/C0032/C0077/C0065/C0088/C0073/C0077/C0085/C0077/C0032/C0082/C0065/C0084/C0073/C0078/C0071/C0083/C0032/C0040/C0084/C0065/C0032/C0061/C0032/C0050/C0053/C0095/C0067/C0032/C0085/C0078/C0076/C0069/C0083/C0083/C0032/C0079/C0084/C0072/C0069/C0082/C0087/C0073/C0083/C0069/C0032/C0078/C0079/C0084/C0069/C0068/C0041 VQ2001J/P Parameter Symbol VP0300L VP0300LS Single Total Quad Unit Drain-Source Voltage VDS –30 –30 –30 –30 Gate-Source Voltage VGS /C003420 /C003420 /C003420 /C003420 V Continuous Drain Current TA= 25/C0095C –0.32 –0.5 –0.6 –0.6Continuous Drain Current (TJ = 150/C0095C) TA= 100/C0095C Pulsed Drain Currenta IDM –2.4 –3 –2 –2 TA= 25/C0095C 0.8 0.9 1.3 2 Power Dissipation TA= 100/C0095C PD 0.32 0.4 0.52 0.8 W Thermal Resistance, Junction-to-Ambient R thJA 156 139 96 62.5 /C0095C/W Operating Junction and Storage Temperature Range TJ, Tstg –55 to 150 /C0095C Notes a. Pulse width limited by maximum junction temperature. For applications information see AN804.

VP0300L/LS, VQ2001J/P Vishay Siliconix www.vishay.com 11-2 Document Number: 70217 S-04279— Rev. E, 16-Jul-01 /C0083/C0080/C0069/C0067/C0073/C0070/C0073/C0067/C0065/C0084/C0073/C0079/C0078/C0083/C0032/C0040/C0084/C0065/C0032/C0061/C0032/C0050/C0053/C0095/C0067/C0032/C0085/C0078/C0076/C0069/C0083/C0083/C0032/C0079/C0084/C0072/C0069/C0082/C0087/C0073/C0083/C0069/C0032/C0078/C0079/C0084/C0069/C0068/C0041 Limits VP0300L/LS VQ2001J/P Parameter Symbol Test Conditions Typa Min Max Min Max Unit Static Drain-Source Breakdown Voltage V(BR)DSS VGS = 0 V, ID = –10 /C0109A –55 –30 –30 Gate-Threshold Voltage VGS(th) VDS = VGS , ID = –1 mA –3.1 –2 –4.5 –2 –4.5 V VDS = 0 V, VGS = /C003416 V /C0034100 Gate-Body Leakage IGSS TJ = 125/C0095C /C0034500 nA VDS = 0 V, VGS = /C003420 V /C0034100 VDS = –24 V, VGS = 0 V –10 Zero Gate Voltage Drain Current IDSS TJ = 125/C0095C –500 –500 /C0109A VDS = –30 V, VGS = 0 V –10 On-State Drain Currentb ID(on) VDS = –10 V, VGS = –12 V –2.8 –1.5 –1.5 A b VGS = –12 V, ID = –1 A 1.5 2.5 2 /C0087Drain-Source On-Resistanceb rDS(on) TJ = 125/C0095C 2.6 3.6 3.6 /C0087 Forward Transconductanceb gfs VDS = –10 V, ID = –0.5 A 370 200 200 Common Source Output Conductanceb gos VDS = –7.5 V, ID = –0.05 A 0.25 mS Dynamic Input Capacitance C iss 60 150 150 Output Capacitance C oss VDS = –15 V, VGS = 0 V f = 1 MHz 40 100 100 pF Reverse Transfer Capacitance C rss f = 1 MHz 10 60 60 Switchingc Turn-On Time tON VDD = –25 V, RL = 23 /C0087 /C0094 19 30 Turn-Off Time tOFF ID /C0094 –1 A, VGEN = –10 V R G = 25 /C0087 17 30 Turn-On Time tON VDD =–15 V, RL = 23 /C0087 /C0094 19 30 ns Turn-Off Time tOFF ID /C0094 –0.6 A, VGEN = –10 V R G = 25 /C0087 16 30 Notes a. For DESIGN AID ONLY, not subject to production testing. VPEA03 b. Pulse test: PW /C0118300 /C0109s duty cycle /C01182%. c. Switching time is essentially independent of operating temperature.

VP0300L/LS, VQ2001J/P Vishay Siliconix Document Number: 70217 S-04279— Rev. E, 16-Jul-01 www.vishay.com 11-3 /C0084/C0089/C0080/C0073/C0067/C0065/C0076/C0032/C0067/C0072/C0065/C0082/C0065/C0067/C0084/C0069/C0082/C0073/C0083/C0084/C0073/C0067/C0083/C0032/C0040/C0084/C0065/C0032/C0061/C0032/C0050/C0053/C0095/C0067/C0032/C0085/C0078/C0076/C0069/C0083/C0083/C0032/C0079/C0084/C0072/C0069/C0082/C0087/C0073/C0083/C0069/C0032/C0078/C0079/C0084/C0069/C0068/C0041 –2.0 –1.6 –1.2 –0.8 –0.4 Output Characteristics Transfer Characteristics VDS – Drain-to-Source Voltage (V) VGS = –10 V –5 V –8 V –7 V –6 V VGS – Gate-to-Source Voltage (V) –1000 –800 –600 –400 –200 TJ = –55/C0095C 25/C0095C 125/C0095C –4 V –9 V Source-Drain Diode Forward Voltage –10 K –1 K –100 –10 VSD – Source-to-Drain Voltage (V) 0.75 0.90 1.05 1.20 1.35 1.50 1.65 –50 –25 0 25 50 75 100 125 150 On-Resistance vs. Junction Temperature VGS = –4.5 V ID = –0.5 A TJ – Junction Temperature (_C) VGS = –10 V ID = –0.1 A 0 1000 2000 3000 4000 5000 Gate Charge Q g – Total Gate Charge (pC)VDS – Drain-to-Source Voltage (V) Capacitance 175 150 125 100 C rss C oss C iss VDS = –15 V ID = –1 A VDS = –24 V ID = –1 A –18 –15 –12 VGS = 0 V f = 1 MHz –0.50 TJ = 25/C0095C TJ = 150/C0095C ID – Drain Current (A) ID – Drain Current (mA) C – Capacitance (pF) VGS – Gate-to-Source Voltage (V) rDS(on) – On-Resistance ( Ω ) (Normalized) IS – Source Current (A)

VP0300L/LS, VQ2001J/P Vishay Siliconix www.vishay.com 11-4 Document Number: 70217 S-04279— Rev. E, 16-Jul-01 /C0084/C0089/C0080/C0073/C0067/C0065/C0076/C0032/C0067/C0072/C0065/C0082/C0065/C0067/C0084/C0069/C0082/C0073/C0083/C0084/C0073/C0067/C0083/C0032/C0040/C0084/C0065/C0032/C0061/C0032/C0050/C0053/C0095/C0067/C0032/C0085/C0078/C0076/C0069/C0083/C0083/C0032/C0079/C0084/C0072/C0069/C0082/C0087/C0073/C0083/C0069/C0032/C0078/C0079/C0084/C0069/C0068/C0041 3.0 2.5 2.0 1.5 1.0 On-Resistance vs. Gate-to-Source Voltage VGS – Gate-to-Source Voltage (V) ID = –0.5 A ID = –0.2 A Threshold Region –10 K –1 K VGS – Gate-Source Voltage (V) VDS = –10 V 25/C0095C –55/C0095C 100/C0095C TJ = 150/C0095C –100 –10 rDS(on) – On-Resistance ( Ω ) ID – Drain Current (µA) /C0084/C0072/C0069/C0082/C0077/C0065/C0076/C0032/C0082/C0065/C0084/C0073/C0078/C0071/C0083 10 K Duty Cycle = 0.5 0.2 0.1 0.05 0.02 Single Pulse 0.01 0.1 0.01 0.1 1 100 10 1 K Normalized Effective Transient Thermal Impedance, Junction-to-Ambient (TO-226AA, VP0300L Only) Normalized Effective Transient Thermal Impedance t1 – Square Wave Pulse Duration (sec) 1. Duty Cycle, D = 2. Per Unit Base = RthJA = 156/C0095C/W 3. TJM – TA = PDM ZthJA(t) Notes: PDM /C0068/C0069/C0086/C0073/C0067/C0069/C0032/C0077/C0065/C0082/C0075/C0073/C0078/C0071/C0083 VP0300L “S” VP 0300L xxyy Front View: VP0300LS “S” VP 0300LS xxyy “S” = Siliconix Logo f = Factory Code ll = Lot Traceability xxyy = Date Code VQ2001J VQ2001J “S”f//xxyy Top View: VP0300LS VQ2001P “S”f//xxyy

Document Number: 91000 www.vishay.com Revision: 18-Jul-08 1 Disclaimer Legal Disclaimer Notice Vishay All product specifications and data are subject to change without notice. Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, “Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained herein or in any other disclosure relating to any product. Vishay disclaims any and all li ability arising out of the use or application of any product described herein or of any information provided herein to the maximum extent permit ted by law. The product specifications do not expand or otherwise modify Vishay’s terms and conditions of purcha se, including but not limited to the warranty expressed therein, which apply to these products. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document or by any conduct of Vishay. The products shown herein are not designed for use in medi cal, life-saving, or life-sustaining applications unless otherwise expressly indicated. Customers using or selling Vishay products not expressly indicated for use in such applications do so entirely at their own risk and agree to fully indemnify Vishay for any damages arising or resulting from such use or sale. Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications. Product names and markings noted herein may be trademarks of their respective owners.