N-Channel 30-V (D-S) MOSFET

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1 SiDS N-Channel -V (D-S) MOSFET PRODUCT SUMMARY V DS (V) R DS(on) (Ω) I D (A) Q g (Typ.).68 at V GS =. V.6 a nc.8 at V GS =. V. TO-6 (SOT-) FEATURES Halogen-free According to IEC 69-- Definition TrenchFET Power MOSFET % R g Tested Compliant to RoHS Directive /9/EC APPLICATIONS DC/DC Converter for Portable Devices Load Switch G D D S G Top View SiDS (P)* * Marking Code Ordering Information: SiDS-T-GE (Lead (Pb)-free and Halogen-free) S N-Channel MOSFET ABSOLUTE MAXIMUM RATINGS T A = C, unless otherwise noted Parameter Symbol Limit Unit Drain-Source Voltage V DS Gate-Source Voltage V GS ± V T C = C.6 a Continuous Drain Current (T J = C) T C = 7 C. I D T A = C. b, c T A = 7 C. b, c A Pulsed Drain Current I DM T C = C. Continuous Source-Drain Diode Current T A = C I S.9 b, c T C = C.7 Maximum Power Dissipation T C = 7 C. P D T A = C. b, c W T A = 7 C.7 b, c Operating Junction and Storage Temperature Range T J, T stg - to Soldering Recommendations (Peak Temperature) d, e 6 C THERMAL RESISTANCE RATINGS Parameter Symbol Typical Maximum Unit Maximum Junction-to-Ambient b, d t s R thja 9 C/W Maximum Junction-to-Foot (Drain) Steady State R thjf 6 7 Notes: a. Package limited b. Surface mounted on " x " FR board. c. t = s. d. Maximum under steady state conditions is C/W. Document Number: 67 S--Rev. A, 8-Jan-

2 SiDS SPECIFICATIONS T J = C, unless otherwise noted Parameter Symbol Test Conditions Min. Typ. Max. Unit Static Drain-Source Breakdown Voltage V DS V GS = V, I D = µa V V DS Temperature Coefficient ΔV DS /T J I D = µa V GS(th) Temperature Coefficient ΔV GS(th) /T J -. mv/ C Gate-Source Threshold Voltage V GS(th) V DS = V GS, I D = µa.6. V Gate-Source Leakage I GSS V DS = V, V GS = ± V ± na V DS = V, V GS = V Zero Gate Voltage Drain Current I DSS V DS = V, V GS = V, T J = C µa On-State Drain Current a I D(on) V DS V, V GS = V A V GS =. V, I D =.9 A Drain-Source On-State Resistance a..68 R DS(on) V GS =. V, I D =.6 A.7.8 Ω Forward Transconductance a g fs V DS = V, I D =.9 A S Dynamic b Input Capacitance C iss Output Capacitance C oss V DS = V, V GS = V, f = MHz pf Reverse Transfer Capacitance C rss 9 V Total Gate Charge Q DS = V, V GS = V, I D =. A 6. g. nc Gate-Source Charge Q gs V DS = V, V GS =. V, I D =. A.8 Gate-Drain Charge Q gd. Gate Resistance R g f = MHz Ω Turn-On Delay Time t d(on) Rise Time t r V DD = V, R L = 6 Ω Turn-Off Delay Time t d(off) I D. A, V GEN =. V, R g = Ω Fall Time t f Turn-On Delay Time t d(on) ns Rise Time t r V DD = V, R L = 6 Ω Turn-Off Delay Time t d(off) I D. A, V GEN = V, R g = Ω Fall Time t f Drain-Source Body Diode Characteristics Continuous Source-Drain Diode Current I S T C = C. Pulse Diode Forward Current I SM A Body Diode Voltage V SD I S =. A, V GS = V.8. V Body Diode Reverse Recovery Time t rr ns Body Diode Reverse Recovery Charge Q rr nc I F =. A, di/dt = A/µs, T J = C Reverse Recovery Fall Time t a 7 ns Reverse Recovery Rise Time t b Notes: a. Pulse test; pulse width µs, duty cycle %. b. Guaranteed by design, not subject to production testing. Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. Document Number: 67 S--Rev. A, 8-Jan-

3 SiDS TYPICAL CHARACTERISTICS C, unless otherwise noted V GS = V thru V I D - Drain Current (A) 9 6 V GS =. V V GS = V I D - DrainCurrent (A) T C = C T C = C T C = - C V DS - Drain-to-Source Voltage (V) Output Characteristics V GS - Gate-to-Source Voltage (V) Transfer Characteristics C iss.6 6 R DS(on) - On-Resistance (Ω)..8. V GS =. V V GS =. V C - Capacitance (pf) C oss. 6 9 I D - DrainCurrent(A) On-Resistance vs. Drain Current and Gate Voltage C rss V DS - Drain-to-SourceVoltage (V) Capacitance I D =. A.7.6 I D =.9A V GS =. V V GS - Gate-to-Source Voltage (V) 8 6 V DS = V V DS = 7. V V DS = V R DS(on) - On-Resistance (Normalized) V GS =. V 6 8 Q g - Total Gate Charge (nc) Gate Charge T J - Junction Temperature ( C) On-Resistance vs. Junction Temperature Document Number: 67 S--Rev. A, 8-Jan-

4 SiDS TYPICAL CHARACTERISTICS C, unless otherwise noted.. I D =.9 A I S - Source Current (A) T J = C T J = C R DS(on) - On-Resistance (Ω) T J = C T J = C V SD - Source-to-Drain Voltage (V) Source-Drain Diode Forward Voltage. V GS - Gate-to-Source Voltage (V) On-Resistance vs. Gate-to-Source Voltage... I D = µa V GS(th) (V).. Power (W) T J - Temperature ( C) Threshold Voltage Time (s) Single Pulse Power I D - Drain Current (A).. T A = C Single Pulse Limited by R DS(on) * BVDSS Limited µs ms ms ms s s, DC. V DS - Drain-to-Source Voltage (V) * V GS >minimum V GS at which R DS(on) is specified Safe Operating Area, Junction-to-Ambient Document Number: 67 S--Rev. A, 8-Jan-

5 SiDS TYPICAL CHARACTERISTICS C, unless otherwise noted.. I D - Drain Current (A) Package Limited Power (W).. 7 T C - Case Temperature ( C) Current Derating*. 7 T C - Case Temperature ( C) Power Derating * The power dissipation P D is based on T J(max) = C, using junction-to-case thermal resistance, and is more useful in settling the upper dissipation limit for cases where additional heatsinking is used. It is used to determine the current rating, when this rating falls below the package limit. Document Number: 67 S--Rev. A, 8-Jan-

6 SiDS TYPICAL CHARACTERISTICS C, unless otherwise noted Duty Cycle =. Normalized Effective Transient Thermal Impedance Single Pulse Notes: Square Wave Pulse Duration (s) Normalized Thermal Transient Impedance, Junction-to-Ambient P DM t t t. Duty Cycle, D = t. Per Unit Base = R thja = C/W. T JM -T A =P DM Z (t) thja. Surface Mounted Normalized Effective Transient Thermal Impedance. Duty Cycle =..... Single Pulse Square Wave Pulse Duration (s) Normalized Thermal Transient Impedance, Junction-to-Foot maintains worldwide manufacturing capability. Products may be manufactured at one of several qualified locations. Reliability data for Silicon Technology and Package Reliability represent a composite of all qualified locations. For related documents such as package/tape drawings, part marking, and reliability data, see /ppg?67. 6 Document Number: 67 S--Rev. A, 8-Jan-

7 Legal Disclaimer Notice Vishay Disclaimer 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 liability arising out of the use or application of any product described herein or of any information provided herein to the maximum extent permitted by law. The product specifications do not expand or otherwise modify Vishay s terms and conditions of purchase, 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 medical, 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. Document Number: 9 Revision: 8-Jul-8

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