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STPS15H100C

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STPS15H100C

High voltage power Schottky rectifier

Main product characteristics

A1KA2KIF(AV)VRRMTj (max)VF(max)

2 x 7.5 A100 V175° C0.67 V

KFeatures and Benefits

■■■■■

Negligible switching lossesLow leakage current

Good trade off between leakage current and forward voltage dropLow thermal resistanceAvalanche capability specified

A1A2KA1A2STPS15H100CBDPAKSTPS15H100CHIPAKDescription

Dual center tab Schottky rectifier suited for

switched mode power supply and high frequency DC to DC converters.

Packaged in DPAK and IPAK, this device is intended for use in high frequency inverters.Table 1.

SymbolVRRMIF(RMS)IF(AV)IFSMIRRMPARMTstgTjdV/dt

---------------<1. dPtotdTj

Absolute Ratings (limiting values, per diode)

Parameter

Repetitive peak reverse voltageRMS forward currentAverage forward current

Surge non repetitive forward currentPeak repetitive reverse currentRepetitive peak avalanche powerStorage temperature range

Maximum operating junction temperature (1)Critical rate of rise of reverse voltage

1-------------------------Rth(j–a)

Value10010

Tc = 135° C δ = 0.5

Per diodePer device

7.5157516600-65 to + 175

17510000

UnitVAAAAW°C°CV/µs

tp = 10 ms sinusoidaltp = 2 µs square F= 1 kHztp = 1 µs Tj = 25° C

condition to avoid thermal runaway for a diode on its own heatsink

June 2006 Rev 41/8

www.st.com

8CharacteristicsSTPS15H100C

1 Characteristics

Table 2.

SymbolRth(j-c)Rth(c)

Junction to caseCoupling

Thermal resistance

Parameter

Per diodeTotal

Value42.40.7

°C/WUnit

When the diodes 1 and 2 are used simultaneously :

∆ Tj(diode 1) = P(diode1) x Rth(j-c)(Per diode) + P(diode 2) x Rth(c)Table 3.

SymbolIR(1)

Static electrical characteristics (per diode)

Parameter

Reverse leakage current

Test ConditionsTj = 25° CTj = 125° CTj = 25° CTj = 125° C

VR = VRRMIF = 7.5 AIF = 7.5 AIF = 12 AIF = 12 AIF = 15 AIF = 15 A

0.710.680.62

Min.

Typ.

Max.3

1.3

40.80.670.850.730.0.76

VUnitµAmA

VF(1.)

Forward voltage drop

Tj = 25° CTj = 125° CTj = 25° CTj = 125° C

1.Pulse test: tp = 380 µs, δ < 2%

To evaluate the conduction losses use the following equation:P = 0.58 x IF(AV) + 0.012 IF2(RMS)

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STPS15H100C

Characteristics

Average forward current versus ambient temperature (δ = 0.5)Figure 1.

PF(av)(W)Conduction losses versus average Figure 2.current9δ= 0.576321IF(av)(A)Rth(j-a)=Rth(j-c)87δ= 0.2δ= 0.1δ= 0.05δ= 163Rth(j-a)=70°C/WT21TIF(av)(A)0012

δ=tp/T678tp0δ=tp/T025tpTamb(°C)50751001251501753459Figure 3.

Normalized avalanche power derating versus pulse duration

Figure 4.

Normalized avalanche power derating versus junction temperature1PARM(tp)PARM(1µs)1.21PARM(tp)PARM(25°C)0.10.80.60.010.40.20.0010.010.1

tp(µs)1101001000Tj(°C)00255075100125150Figure 5.

Non repetitive surge peak forward Figure 6.current versus overload duration (maximum values) 1.00.90.80.7Tc=25°CRelative variation of thermal

impedance junction to case versus pulse duration IM(A)10090807060504030201001.E-03ItTc=125°CZth(j-c)/Rth(j-c)0.60.50.40.30.2δ= 0.5Tc=75°Cδ= 0.2δ= 0.1TSingle pulseδ=0.5t(s)1.E-021.E-011.E+000.1tp(s)1.E-021.E-010.01.E-03δ=tp/Ttp1.E+00 3/8

Characteristics

STPS15H100C

Figure 8.

Junction capacitance versus reverse voltage applied (typical values)F=1MHzVosc=30mVTj=25°CFigure 7.

Reverse leakage current versus reverse voltage applied (typical values)Tj=150°CIR(mA)1.E+011.0C(nF)1.E+00Tj=125°C1.E-01Tj=100°CTj=75°C0.11.E-02Tj=50°C1.E-03Tj=25°CVR(V)1.E-04010

VR(V)0.02030405060708090100110100Figure 9.

Forward voltage drop versus forward current

Figure 10.Thermal resistance junction to

ambient versus copper surface under tab (epoxy printed board FR4, Cu: 35µm)Rth(j-a)(°C/W)10090100IFM(A)Tj=125°C(Maximum values)807010Tj=125°C(Typicalvalues)Tj=25°C(Maximum values)6050403020VFM(V)10.00.20.40.60.81.01.21.41.610002468S(cm²)1012141618204/8

STPS15H100CPackage Information

2 Package Information

Epoxy meets UL94,V0Table 4.

DPAK Package mechanical data DimensionsRefMillimetersMin.AA1A2BB2CC2DEGHL2L4V22.200.900.030.5.200.450.486.006.404.409.35Max.2.401.100.230.905.400.600.606.206.604.6010.10InchesMin.0.0860.0350.0010.0250.2040.0170.0180.2360.2510.1730.368Max.0.0940.0430.0090.0350.2120.0230.0230.2440.2590.1810.3970.80 typ.0.600°1.008°0.031 typ.0.0230°0.0398°Figure 11.DPAK Footprint (dimensions in mm)6.76.7331.62.32.31.6 5/8

Package Information

Table 5.

STPS15H100C

IPAK Package mechanical data DimensionsRef.MillimetersMin.AA1A3AEB2L2C2InchesMin.0.0860.0350.0270.0250.204Typ.Max.0.0940.0430.0510.0350.2120.0370.035Typ.Max.2.401.101.300.905.400.952.200.900.700.5.20BB2B3B5D0.300.450.4866.402.284.4016.1090.80.8010°9.401.2010.30.0314.600.1730.600.606.206.600.0170.0190.2360.252CC20.0230.0230.2440.2600.0900.1810.6340.3700.0470.0310.03910°HLL1B3BV1A1DEeeGB5CA3GHLL1L2V16/8

STPS15H100COrdering Information

3 Ordering Information

Ordering typeSTPS15H100CBSTPS15H100CB-TRSTPS15H100CH

MarkingS15H100S15H100S15H100CH

PackageDPAKDPAKIPAK

Weight0.30 g0.30 g0.35 g

Base qty

75250075

Delivery mode

TubeTape andreel

Tube

4 Revision History

DateMar-200408-Jun-2006

Revision

34

Last issue

Changes

Reformatted to current standard. Added IPAK.

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STPS15H100C

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