BTB08-XXXCW中文资料
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BTA08, BTB08 and T8 Series
8A TRIACS
SNUBBERLESS , LOGIC LEVEL & STANDARD
Table 1: Main Features
SymbolIT(RMS)VDRM/VRRMIGT (Q1)
Value8600 and 8005 to 50
UnitAVmA
DESCRIPTION
Available either in through-hole or surface-mountpackages, the BTA08, BTB08 and T8 triac seriesis suitable for general purpose AC switching. Theycan be used as an ON/OFF function in applica-tions such as static relays, heating regulation, in-duction motor starting circuits... or for phasecontrol operation in light dimmers, motor speedcontrollers,...
The snubberless versions (BTA/BTB...W and T8series) are specially recommended for use oninductive loads, thanks to their high commutationperformances.
Logic level versions are designed to interfacedirectly with low power drivers such asmicrocontrollers.
By using an internal ceramic pad, the BTA seriesprovides voltage insulated tab (rated at2500VRMS) complying with UL standards (file ref.:E81734).
Table 2: Order Codes
Part NumberBTA08-xxxxxRGT8xx-xxxGT8xx-xxxH
MarkingSee page table 8 on
page 10
February 2006REV. 61/11
BTA08, BTB08 and T8 Series
Table 3: Absolute Maximum RatingsSymbolIT(RMS)
Parameter
RMS on-state current (full sine wave)
IPAK/D2PAK/T = 110°CDPAK/TO-220ABcTO-220AB Ins.
Tc = 100°Ct = 20 mst = 16.7 ms
808436
Tj = 125°CTj = 125°CTj = 125°C
5041- 40 to + 150- 40 to + 125
AA²sA/µsAW°C
Value8
UnitA
ITSMI²tdI/dtIGMPG(AV)TstgTj
Non repetitive surge peak on-state F = 50 Hzcurrent (full cycle, Tj initial = 25°C)F = 60 HzI²t Value for fusing
Critical rate of rise of on-state cur-rent IG = 2 x IGT , tr ≤ 100 nsPeak gate current
tp = 10 msF = 120 Hztp = 20 µs
Average gate power dissipationStorage junction temperature range
Operating junction temperature range
Tables 4: Electrical Characteristics (Tj = 25°C, unless otherwise specified)
■
SNUBBERLESS and Logic Level (3 quadrants)SymbolIGT (1)VGTVGDIH (2)ILdV/dt (2)
Test Conditions
Quad-rant
I-II-IIIMAX.I - II - IIIMAX.
MIN.MAX.
I - IIIII
MAX.MIN.
152530405.4
MIN.
2.8-355060400--4.5
101015203.51.5-T8T810T83510
35
TW51.30.2
152530405.42.98-355060400--4.5
507080
BTA08 / BTB08SW10
CW35
BW50
UnitmAVVmAmA
VD = 12 V RL = 30
VD = VDRM RL = 3.3 k
I - II - III
Tj = 125°CIT = 100 mAIG = 1.2 IGT
VD = 67 %VDRM gate openTj = 125°C
(dV/dt)c = 0.1 V/µs Tj = 125°C
1000V/µs--7
A/ms
(dI/dt)c (2)(dV/dt)c = 10 V/µs Tj = 125°C
Without snubber Tj = 125°C
2/11
BTA08, BTB08 and T8 Series
■
Standard (4 quadrants)SymbolIGT (1)VGTVGDIH (2)ILdV/dt (2)
VD = VDRM RL = 3.3 k Tj = 125°CIT = 500 mAIG = 1.2 IGT
VD = 67 %VDRM gate open Tj = 125°C
I - III - IV
II
Test Conditions
QuadrantI - II - IIIIVALLALL
MAX.MAX.MIN.MAX.MAX.MIN.MIN.
2540802005
BTA08 / BTB08C2550
1.30.2
505010040010B50100
UnitmAVVmAmAV/µsV/µs
VD = 12 V RL = 30
(dV/dt)c (2)(dI/dt)c = 5.3 A/ms Tj = 125°CTable 5: Static CharacteristicsSymbolVT (2)Vto (2)Rd (2)IDRMIRRM
Test Conditions
ITM = 11 A tp = 380 µsThreshold voltageDynamic resistanceVDRM = VRRM
Tj = 25°CTj = 125°CTj = 125°CTj = 25°CTj = 125°C
Value
MAX.MAX.MAX.MAX.
1.550.855051
UnitVVm µAmA
Note 1: minimum IGT is guaranted at 5% of IGT max.Note 2: for both polarities of A2 referenced to A1.
Table 6: Thermal resistanceSymbolRth(j-c)
Junction to case (AC)
S = 1 cm²
Rth(j-a)
Junction to ambient
S = 0.5 cm²
Parameter
IPAK / D2PAK / DPAK / TO-220ABTO-220AB InsulatedD2PAKDPAK
TO-220AB / TO-220AB InsulatedIPAK
S = Copper surface under tab.
Value1.62.5457060100
Unit°C/W
°C/W
3/11
BTA08, BTB08 and T8 Series
Figure 1: Maximum power dissipation versusRMS on-state current (full cycle)
Figure 2: RMS on-state current versus casetemperature (full cycle)
Figure 3: RMS on-state current versus ambienttemperature (printed circuit board FR4, copperthickness: 35µm) (full cycle)
Figure 4: Relative variation of thermalimpedance versus pulse duration
Figure 5: On-state characteristics (maximumvalues)
Figure 6: Surge peak on-state current versusnumber of cycles
4/11
BTA08, BTB08 and T8 Series
Figure 7: Non-repetitive surge peak on-statecurrent for a sinusoidal pulse with width tp < 10 msand corresponding value of I2t
Figure 8: Relative variation of gate triggercurrent, holding current and latching currentversus junction temperature (typical values)
Figure 9: Relative variation of critical rate ofdecrease of main current versus (dV/dt)c(typical values) (Snubberless & Logic leveltypes)
Figure 10: Relative variation of critical rate ofdecrease of main current versus (dV/dt)c(typical values) (Standard types)
Figure 11: Relative variation of critical rate ofdecrease of main current versus junctiontemperature
Figure 12: DPAK and D2PAK Thermal resistancejunction to ambient versus copper surface undertab (printed circuit board FR4, copper thickness:35µm)
5/11
BTA08, BTB08 and T8 Series
Figure 13: Ordering Information Scheme (BTA08 and BTB08 series)
Figure 14: Ordering Information Scheme (T8 series)
Table 7: Product Selector
Part Number
BTA/BTB08-xxxBBTA/BTB08-xxxBWBTA/BTB08-xxxCB …… 此处隐藏:5673字,全部文档内容请下载后查看。喜欢就下载吧 ……
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