Powerex,Inc.,200 Hillis Street,Youngwood,Pennsylvania 15697-1800 (412) 925-7272OUTLINE DRAWINGCDELAHлGFBNPMKJJECONNECTION DIAGRAM T1 TERMINAL T2 TERMINAL GATE T2 TERMINALOutline Drawing(Conforms to TO-220)DimensionsInchesMillimetersDimensionsInchesMillimetersA0.63 Max.16.0 Max.J0.992.54B0.49 Max.12.5 Max.K0.102.6C0.41 Max.10.5 Max.L0.0511.3D0.287.0M0.0511.3E0.184.5N0.0391.0F0.15 Max.3.8 Max.P0.0310.8G0.142 ±0.008 Dia.3.6 ±0.2 Dia.Q0.0200.5H0.125 ±0.0083.2 ±0.2BCR12CMTriac12 Amperes/400-600 VoltsDescription:A triac is a solid state silicon AC switch which may be gate triggered from an off-state to anon-state for either polarity ofapplied voltage.Features:□Glass Passivation□Selected for Inductive LoadsApplications:□AC Switch□Heating□Motor Controls□Lighting□Solid State Relay□Switch Mode Power SupplyOrdering Information:Example:Select the completeeight, nine or ten digit part numberyou desire from the table - i.e.BCR12CM-8 is a 400 Volt, 12 Ampere TriacVDRMInductiveTypeVolts CodeLoad*BCR12CM400-8L60-12*For inductive load, add L.T-57元器件交易网www.cecb2b.com
Powerex,Inc.,200 Hillis Street,Youngwood,Pennsylvania 15697-1800 (412) 925-7272BCR12CMTriac12 Amperes/400-600 VoltsAbsolute Maximum Ratings,Ta= 25 °C unless otherwise specified
Ratings
Repetitive Peak Off-state Voltage Non-repetitive Peak Off-state Voltage On-state Current, Tc= 98°C
Non-repetitive Peak Surge, One Cycle (60 Hz)I2t for Fusing, t = 8.3 msec
Peak Gate Power Dissipation, 20 secAverage Gate Power DissipationPeak Gate CurrentPeak Gate VoltageStorage TemperatureOperating TemperatureWeight
SymbolVDRMVDSMIT(RMS)ITSMI2tPGMPG(avg)IGMVGMTstgTj–
BCR12CM-8400500121206050.5210-40 to 125-40 to 125
2.3
BCR12CM-12
600720121206050.5210-40 to 125-40 to 125
2.3
UnitsVoltsVoltsAmperesAmperesA2secWattsWattsAmperesVolts°C°CGrams
T-58
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Powerex,Inc.,200 Hillis Street,Youngwood,Pennsylvania 15697-1800 (412) 925-7272BCR12CMTriac12 Amperes/400-600 VoltsElectrical and Thermal Characteristics,Tj= 25 °C unless otherwise specified
Characteristics
Gate Parameters
DCGate Trigger CurrentMT2+ Gate+MT2+ Gate–MT2– Gate–DCGate Trigger VoltageMT2+ Gate+MT2+ Gate–MT2– Gate–DCGate Non-trigger VoltageAllVGD
1/2 VDRM
––125°C0.2––VoltsVGT6V6V6V6⍀6⍀6⍀330⍀330⍀330⍀25°C25°C25°C––––––1.51.51.5VoltsVoltsVoltsIGT6V6V6V6⍀6⍀6⍀330⍀330⍀330⍀25°C25°C25°C––––––303030mAmAmASymbol
Test Conditions (Trigger Mode)VDRLRGTj
Min.
BCR12CM
Typ.
Max.
Units
T-59
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Powerex,Inc.,200 Hillis Street,Youngwood,Pennsylvania 15697-1800 (412) 925-7272BCR12CMTriac12 Amperes/400-600 VoltsElectrical and Thermal Characteristics,Tj= 25 °C unless otherwise specified
Characteristics
Thermal Resistance, Junction-to-caseVoltage – Blocking State Miximums Repetitive Off-state Current
Current – Conducting State MaximumsPeak On-state Voltage
Critical Rate-of-rise of CommutatingOff-state Voltage (Commutating dv/dt) v for inductive load (L)(Switching)
SymbolRth(j-c)IDRMVTM(dv/dt)c
Test Conditions
–
Gate Open CircuitedVD= VDRM, Tj= 125°C
Tc= 25°C, ITM= 20A
–
Min.––––
Typ.––––
Max.1.821.6–
Units°C/WmAVoltsV/s
⌬PartNumber
Commutatingdv/dt, (dv/dt)c
VDRM(V/sec)(Volts)Minimum
1010Test ConditionTj= 125°C,Commutating Voltage &Current Waveform(Inductive Load)
SUPPLYVOLTAGEMAINCURRENTMAINVOLTAGE(dv/dt)Ct(di/dt)CtVDtVDBCR12CM-8L400BCR12CM-12L600Rate of DecayOn-state Commutating Current(di/dt)c= -6A/msec:Peak Off-stateVoltageVD= 400VT-60
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Powerex,Inc.,200 Hillis Street,Youngwood,Pennsylvania 15697-1800 (412) 925-7272BCR12CMTriac12 Amperes/400-600 VoltsMAXIMUM ON-STATECHARACTERISTICS)S3.8
TLOTj = 25oCV( T,j = 125oCTV ,EG3.0
ATLOV ETAT2.2
S-NO SUOEN1.4
ATNATSNI0.610-1
100101102INSTANTANEOUS ON-STATE CURRENT, IT, (AMPERES)
FOLLOWING RATED LOAD CONDITIONS
MAXIMUM SURGE CURRENT
)S200EREPMA( ,160
MSTI ,TNER120
RUC EGR80
US KAEP M40UMIXAM0100
101
102CYCLES AT 60 Hz
ALLOWABLE AMBIENT TEMPERATURE
VS. RMS ON-STATE CURRENT160NATURAL CONVECTION, NO FIN140
CURVES APPLY REGARDLESS)COF THE CONDUCTION ANGLE°( ,a120RESISTIVE, INDUCTIVE LOADST ,ERU100TAREP80MET T60NEIBM40A200
0
0.40.81.21.62.02.42.83.2
RMS ON-STATE CURRENT, IT(RMS), (AMPERES)
IMPEDANCE CHARACTERISTICS
TRANSIENT THERMAL
(JUNCTION-TO-CASE))TT2.4102103AW/C°( 2.0,)c-j(htZ ,E1.6CNADEP1.2MI LAMR0.8EHT TNE0.4ISNART010-1
100101102
CYCLES AT 60 Hz
ALLOWABLE CASE TEMPERATUREVS. RMS ON-STATE CURRENT160360°140
CONDUCTIONRESISTIVE,)C°( 120INDUCTIVELOADS,CT ,ER100UTAR80EPMET60 ESFOR AC CONTROLAC40THIS GRAPH NEARLYAPPLIES REGARDLESS20
OF THE CONDUCTIONANGLE0
0246810121416RMS ON-STATE CURRENT, IT(RMS), (AMPERES)MAXIMUM ON-STATEPOWER DISSIPATION
32)ST28TAW( ,24N360° OICONDUCTIONTAP20RESISTIVE,ISINDUCTIVESID16LOADS REWO12P MUM8IXAM40
0
2
4
6
8
10
12
14
16
RMS ON-STATE CURRENT, IT(RMS), (AMPERES)
GATE CHARACTERISTICS
(I, II, III)
102
)STLG(avg) = 0.5WOV101
VGM = 10VP( ,GPGMV = 5W ,EGATVGT = 1.5VLOV ET100
AIRGT I,GIIGM = 2AFGT I,IRGT III10-1
VGD = 0.2V101
102103104
GATE CURRENT, IG, (mA)
ALLOWABLE AMBIENT TEMPERATURE
VS. RMS ON-STATE CURRENT
160FIN: A PLATE PAINTED BLACK140 WITH GREASE)CCURVES APPLY REGARDLESS°( ,a120OF THE CONDUCTION ANGLET ,ERU10060 x 60 x t 2.3TAR100 x 100 x t 2.3EP80120 x 120 x t 2.3MET T60NEIRESISTIVE,BM40INDUCTIVEALOADS20NATURAL0CONVECTION0246810121416
RMS ON-STATE CURRENT, IT(RMS), (AMPERES)
VS. JUNCTION TEMPERATURE
GATE TRIGGER CURRENT(TYPICAL)
103
%001 x ))CC°°t5(2 ,(T ,NTENRERRURCU102
RC ERGEGGIRGITR ET TEATGAIFGT IGIRGT IIRGT III101
-60-40-20020406080100 120 140
JUNCTION TEMPERATURE, Tj, (°C)
T-61
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Powerex,Inc.,200 Hillis Street,Youngwood,Pennsylvania 15697-1800 (412) 925-7272BCR12CMTriac12 Amperes/400-600 VoltsVS. JUNCTION TEMPERATURE
GATE TRIGGER VOLTAGE(TYPICAL)103
%001 x ))CC°°t5(2 ,(E ,GEAGTALTOL2VO10 RV ERGEGGIRGITR ET TEATGAG101
-60-40-20020406080100 120 140
JUNCTION TEMPERATURE, Tj, (°C)
RATE OF RISE OF OFF-STATE VOLTAGE
BREAKOVER VOLTAGE VS.
(TYPICAL)
160
%0T0j = 125°C1 xI QUADRANT )s)III QUADRANTs//V V120
x1 == ttdd//vvdd(( ,,EEGG80
#2AATTLLOOVV RREEVVOO40#1KKAAEERRBB0101
102103104
RATE OF RISE OF OFF-STATE VOLTAGE, dv/dt, (V/s)
VS. GATE CURRENT PULSE WIDTH
GATE TRIGGER CURRENT
(TYPICAL)
103
%001 x ))wCt(D (, T ,NTENRERRURCU102
RC ERGEGGIRGITR ETT j = 25°CTEATIGAFGT IGIRGT IIRGT III101
100
101
102
GATE CURRENT PULSE WIDTH, tw, (s)
T-62
VS. JUNCTION TEMPERATURE
HOLDING CURRENT
(TYPICAL)
VS. JUNCTION TEMPERATURE
BREAKOVER VOLTAGE(TYPICAL)
103
160
%00)1A xm 120
() ),CCH°I°t5 ,(2T ,(E N,EGERAGRTAU102LTOL80
CVO G RV NIERDVELOOVKOHAKEA40
REBRB101
0
-60-40-20020406080100 120 140
-60-40-20020406080100 120 140
JUNCTION TEMPERATURE, Tj, (°C)
JUNCTION TEMPERATURE, Tj, (°C)
REPETITIVE PEAK OFF-STATE CURRENT
VS. JUNCTION TEMPERATURE
(TYPICAL)
COMMUTATION CHARACTERISTICS
(TYPICAL)
%00105
103
1 x) sTj = 125oCVOLTAGE WAVEFORM))CC/I°V°t5( (2, ,(ET = 4At = 500sT ,NTFGVENOAD = 200V(dv/dt)cVD REf = 3HzRRCURRENT WAVEFORMUR104ETSLIO102
CURV ECFG MINIMUMIT(di/dt)cTEO NIATETTATACHARAC-STAT-SRUTERISTICStF- FFLMOFAVALUE KO 103CMIOAKT101
IC EAREPECTIII QUADRANT EPA VETSITV-IIFTTIFI QUADRANTETOPEEPRER102
100
-60-40-20020406080100 120 140
100
101102103
JUNCTION TEMPERATURE, Tj, (°C)
RATE OF DECAY OF ON-STATECOMMUTATING CURRENT, (A/ms)
GATE TRIGGER CHARACTERISTICS
TEST CIRCUITS
6⍀6⍀A6VRAGV6VRG
VTEST PROCEDURE ITEST PROCEDURE II
6⍀A6VRG
VTEST PROCEDURE III
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