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BTA20STN/a681avai20A TRIACS
BTA20-600CWRG |BTA20600CWRGSTN/a1205avai20A TRIACS
BTA20-700BWRG |BTA20700BWRGSTN/a900avai20A TRIACS
BTA20-700CWRG |BTA20700CWRGSTN/a850avai20A TRIACS


BTA20-600CWRG ,20A TRIACSFEATURESn High commutation: (dI/dt)c > 18A/mswithout snubbern High surge current: I = 200ATSMGn V u ..
BTA20-700BW ,20A TRIACSFEATURESn High commutation: (dI/dt)c > 18A/mswithout snubbern High surge current: I = 200ATSMGn V u ..
BTA20-700BWRG ,20A TRIACSBTA20 BW/CW®BTB20 BW/CWSNUBBERLESS TRIACSA2
BTA20-700CWRG ,20A TRIACSFEATURESn High commutation: (dI/dt)c > 18A/mswithout snubbern High surge current: I = 200ATSMGn V u ..
BTA208-600D ,Three quadrant triacs guaranteed commutation
BTA208-600D ,Three quadrant triacs guaranteed commutation
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BZX84B7V5LT1 ,Zener Voltage RegulatorsELECTRICAL CHARACTERISTICS − BZX84CxxxLT1 SERIES (STANDARD TOLERANCE)(Pinout: 1-Anode, 2-No Connect ..


BTA20-BTA20-600CWRG-BTA20-700BWRG-BTA20-700CWRG
20A TRIACS
BTA20 BW/CW
BTB20 BW/CW

SNUBBERLESS TRIACS High commutation: (dI/dt)c> 18A/ms
without snubber High surge current: ITSM= 200A VDRMupto 800V BTA Family:Insulating voltage= 2500V(RMS)
(UL recognized: E81734)
FEATURES

The BTA/BTB20 BW/CW triac family are high per-
formance glass passivated chips technology.
The SNUBBERLESS concept offer suppression RC network anditis suitablefor application such phase control and static switchingon inductive resistive load.
DESCRIPTION
ABSOLUTE RATINGS
(limiting values)
BTA20 BW/CW BTB20 BW/CW
GATE CHARACTERISTICS
(maximum values)
PG(AV) =1W PGM= 10W (tp= 20μs) IGM= 4A(tp= 20μs) VGM= 16V(tp= 20μs)
THERMAL RESISTANCE
For either polarityof electrodeA2 voltage with referenceto electrodeA1
ELECTRICAL CHARACTERISTICS
BTA20 BW/CW BTB20 BW/CW
PRODUCT INFORMATION
ORDERING INFORMATION
BTA20 BW/CW BTB20 BW/CW
Fig.3:
Correlation between maximum RMS power
dissipation and maximum allowable temperatures
(Tamb and Tcase)for different thermalresistances
heatsink+ contact (BTB).
Fig.4:
RMS on-state current versus case temper-
ature.
1E-3 1E-2 1E-1 1E+0 1E+1 1E+2 5E+2
Zth/Rth
Fig.5:
Relative variationof thermal impedance
versus pulse duration.
Fig.6:
Relative variationof gate trigger current
and holding current versus junction temperature.
Fig.1:
Maximum RMS power dissipation versus
RMS on-state current(F= 50Hz).(Curves are cut
offby (dI/dt)c limitation)
Fig.2:
Correlation between maximum RMS power
dissipation and maximum allowable temperatures
(Tamb and Tcase)for different thermal resistances
heatsink+ contact (BTA).
BTA20 BW/CW BTB20 BW/CW
Fig.9:
On-state characteristics (maximum values).
Fig.7:
Non repetitive surge peak on-state current
versus numberof cycles.
Fig.8:
Non repetitive surge peak on-state current
fora sinusoidal pulse with width:t≤ 10ms, and cor-
responding valueofI2t.
BTA20 BW/CW BTB20 BW/CW
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implicationor otherwise underany patentor patent rightsof STMicroelectronics. Specifications mentionedinthis publicationare subjectto
change without notice. This publication supersedes and replacesall information previously supplied.
STMicroelectronics productsarenot authorizedforuseas critical componentsinlife support devicesor systems without express writtenap-
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Epoxy meets UL94,V0 Cooling method:C Recommended torque value: 0.8 m.N. Maximum torque value:1 m.N.
OTHER INFORMATION
PACKAGE MECHANICAL DATA

TO-220AB (Plastic)
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