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Home ›  BB31 > BTA12-600B-BTA12-600BW-BTA12-600BW.-BTA12-600C-BTA12-600C.-BTA12-600CW-BTA12-600SW-BTA12-800B-BTA12-800CW-BTB12-600B-BTB12-600C-BTB12-600SW-BTB12-800CW-T1235-800G,12A triac, 600V
BTA12-600B-BTA12-600BW-BTA12-600BW.-BTA12-600C-BTA12-600C. Fast Delivery,Good Price
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Partno Mfg Dc Qty AvailableDescript
BTA12-600B |BTA12600BN/a150avaiThyristor TRIAC 600V 126A 3-Pin(3+Tab) TO-220AB Insulated
BTA12-600BW |BTA12600BWSTN/a997avai12A TRIACS
BTA12-600BW. |BTA12600BWSTN/a3avai12A TRIACS
BTA12-600C |BTA12600CSTN/a1000avai12A TRIACS
BTA12-600C. |BTA12600CSTN/a300avai12A TRIACS
BTA12-600CW |BTA12600CWSTMN/a6avaiThyristor TRIAC 600V 126A 3-Pin(3+Tab) TO-220AB Insulated
BTA12-600SW |BTA12600SWSTN/a959avaiThyristor TRIAC 600V 126A 3-Pin(3+Tab) TO-220AB Insulated
BTA12-800B |BTA12800BSTN/a200avaiThyristor TRIAC 800V 126A 3-Pin(3+Tab) TO-220AB Insulated
BTA12-800CW |BTA12800CWSTN/a122avai12A TRIACS
BTB12-600B |BTB12600BSTN/a1000avaiThyristor TRIAC 600V 126A 3-Pin(3+Tab) TO-220AB
BTB12-600C |BTB12600CSTN/a1000avaiThyristor TRIAC 600V 126A 3-Pin(3+Tab) TO-220AB
BTB12-600SW |BTB12600SWSTN/a2300avai12A triac, 600V
BTB12-800CW |BTB12800CWTEMICN/a321avai12A TRIACS
T1235-800G |T1235800GSTN/a4avai12A TRIACS


BTB12-600SW ,12A triac, 600VFEATURES:A2Symbol Value UnitI12 A GT(RMS)V /V 600 and 800 V A1DRM RRMA2IGT (Q ) 5 to 50 mA1DESCRIPT ..
BTB12-600SWRG ,12A TRIACSFEATURES:A2Symbol Value UnitI12 A GT(RMS)V /V 600 and 800 V A1DRM RRMA2IGT (Q ) 5 to 50 mA1DESCRIPT ..
BTB12-600TWRG ,12A TRIACSBTA/BTB12 and T12 Series®SNUBBERLESS™, LOGIC LEVEL & STANDARD 12A TRIACS MAIN
BTB12-700C , 12A TRIACS
BTB12-800BRG ,12A TRIACSABSOLUTE MAXIMUM RATINGSSymbol Parameter Value Unit²I RMS on-state current (full sine wave)Tc = 105 ..
BTB12-800CW ,12A TRIACSBTA/BTB12 and T12 Series®SNUBBERLESS™, LOGIC LEVEL & STANDARD 12A TRIACS MAIN
BZX84C22LT1G , Zener Voltage Regulators
BZX84C22T-7-F , 150mW SURFACE MOUNT ZENER DIODE
BZX84C24 ,350mW ZENER DIODE 3.3 VOLTS THRU 33 VOLTS 5% TOLERANCEElectrical CharacteristicsT = 25

BTA12-600B-BTA12-600BW-BTA12-600BW.-BTA12-600C-BTA12-600C.-BTA12-600CW-BTA12-600SW-BTA12-800B-BTA12-800CW-BTB12-600B-BTB12-600C-BTB12-600SW-BTB12-800CW-T1235-800G
12A TRIACS
1/7

BTA/BTB12 and T12 Series
SNUBBERLESS™, LOGIC LEVEL & STANDARD
12A TRIACS
September 2002 - Ed: 6A
MAIN FEATURES:
DESCRIPTION

Available either in through-hole or surface-mount
packages, the BTA/BTB12 and T12 triac series is
suitable for general purpose AC switching. They
can be used as an ON/OFF function in
applications such as static relays, heating
regulation, induction motor starting circuits... or for
phase control operation in light dimmers, motor
speed controllers,...
The snubberless versions (BTA/BTB...W and T12
series) are specially recommended for use on
inductive loads, thanks to their high commutation
performances. Logic level versions are designed
to interface directly with low power drivers such as
microcontrollers. By using an internal ceramic
pad, the BTA series provides voltage insulated tab
(rated at 2500V RMS) complying with UL
standards (File ref.: E81734)
ABSOLUTE MAXIMUM RATINGS
BTA/BTB12 and T12 Series
2/7
ELECTRICAL CHARACTERISTICS (Tj = 25°C, unless otherwise specified)
SNUBBERLESS™ and LOGIC LEVEL (3 Quadrants) STANDARD (4 Quadrants)
STATIC CHARACTERISTICS
Note 1: minimum IGT is guaranted at 5% of IGT max.
Note 2: for both polarities of A2 referenced to A1
BTA/BTB12 and T12 Series
3/7
THERMAL RESISTANCES

S = Copper surface under tab
PRODUCT SELECTOR

BTB: non insulated TO-220AB package
BTA/BTB12 and T12 Series
4/7
OTHER INFORMATION
Note: xxx = voltage, yy = sensitivity, z = type
Fig. 1: Maximum power dissipation versus RMS

on-state current (full cycle).
Fig. 2-1: RMS on-state current
versus case
temperature (full cycle).
Fig. 2-2: RMS on-state current versus
ambient
temperature (printed circuit board FR4, copper
thickness: 35μm),full cycle.
Fig. 3: Relative variation of thermal impedance

versus pulse duration.
BTA/BTB12 and T12 Series
5/7
Fig. 4: On-state characteristics (maximum

values).
Fig. 5: Surge
peak on-state current versus
number of cycles.
Fig. 6: Non-repetitive surge
peak on-state
current for a sinusoidal pulse with width< 10ms, and corresponding value of I²t.
Fig. 7: Relative variation of gate trigger current,

holding current and latching current versus
junction temperature (typical values).
Fig. 8-1: Relative variation of critical rate of

decrease of main current versus (dV/dt)c (typical
values) (BW/CW/T1235).
Fig. 8-2: Relative variation
of critical rate of
decrease of main current versus (dV/dt)c (typical
values) (TW).
BTA/BTB12 and T12 Series
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Fig. 9: Relative variation of critical
rate of
decrease of main current versus junction
temperature.
Fig. 10: D²PAK Thermal
resistance junction to
ambient versus copper surface under tab (printed
circuit board FR4, copper thickness: 35 μm).
PACKAGE MECHANICAL DATA

D²P AK (Plastic)
FOOTPRINT DIMENSIONS (in millimeters)

D²PAK (Plastic)
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