Q6010LTHTP56 [LITTELFUSE]
TRIAC With INT Trigger;型号: | Q6010LTHTP56 |
厂家: | LITTELFUSE |
描述: | TRIAC With INT Trigger 三端双向交流开关 |
文件: | 总8页 (文件大小:232K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
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Teccor® brandThyristors
4 / 6 / 8 / 10 / 15 Amp Quadracs
QxxxxLTx Series
Description
The Quadrac is an internally triggeredTriac designed for
AC switching and phase control applications. It is aTriac
and DIAC in a single package, which saves user expense
by eliminating the need for separateTriac and DIAC
components.
Standard type devices normally operate in Quadrants I & III
triggered from AC line.
Alternistor type Quadracs are used in circuits requiring high
dv/dt capability.
Features & Benefits
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200 A
Agency Approval
(MBTTꢀoꢀQBTTJWBUFEꢀ
junctions
Agency
Agency File Number
L Package : E71639
®
600 V
Schematic Symbol
Applications
Excellent for AC switching and phase control applications
such as lighting and heating. Typical applications are AC
solid-state switches, light dimmers, power tools, home/
brown goods and white goods appliances.
MT2
MT1
Alternistor Quadracs (no snubber required) are used in
applications with extremely inductive loads requiring
highest commutation performance.
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Main Features
Internally constructed isolated package is offered for ease
of heat sinking with highest isolation voltage.
Symbol
IT(RMS)
Value
4 to 15
Unit
A
VDRM / VRRM
DIAC VBO
400 to 600
33 to 43
V
V
QxxxxLTx Series
©2013 Littelfuse, Inc
Specifications are subject to change without notice.
169
Revised: 09/23/13
Teccor® brandThyristors
4 / 6 / 8 / 10 / 15 Amp Quadracs
Absolute Maximum Ratings
Value
Symbol
Parameter
Unit
Qxx04LT:TC = 95°C
Qxx06LT/Qxx08LT/Qxx10LT:TC = 90°C
Qxx15LT:TC = 80°C
IT(RMS)
RMS forward current
4
6
8
10
15
A
A
single half cycle; f = 50Hz;
TJ (initial) = 25°C
46
55
65
83
100
167
200
ITSM
Peak non-repetitive surge current
single half cycle; f = 60Hz;
TJ (initial) = 25°C
80
100
120
60
I2t
I2t value for fusing
Critical rate-of-rise of on-state current
Peak gate current
tp = 8.3ms
f = 60Hz;TJ =125°C
TJ = 125°C
12.5
50
26.5
41
70
166
100
A2s
A/μs
A
di/dt
IGM
1.5
Storage temperature range
Operating junction temperature range
-40 to 150
-40 to 125
°C
Tstg
TJ
°C
Note: xx = voltage
Electrical Characteristics (TJ = 25°C, unless otherwise specified) – Standard Quadrac
Value
Symbol
Test Conditions
Unit
IH
IT = 200mA (initial)
MAX.
40
75
50
50
50
3
50
60
60
200
175
150
120
4
70
mA
400V
600V
400V
600V
150
125
100
85
175
150
120
100
300
200
200
150
VD = VDRM; gate open;TJ=100°C
VD = VDRM; gate open;TJ=125°C
MIN.
MIN.
dv/dt
V/ꢀs
dv/dt(c)
tgt
di/dt(c) = 0.54 x IT(rms) / ms;TJ = 125°C
(note 1)
MIN.
TYP.
V/ꢀs
ꢀs
3
(1) Reference test circuit in figure 10 and waveform in figure 11; CT = 0.1ꢀF with 0.1ꢀs rise time.
Note: xx = voltage
Electrical Characteristics (TJ = 25°C, unless otherwise specified) – Alternistor Quadrac
Value
Symbol
IH
Test Conditions
Unit
mA
IT = 20mA (initial)
MAX.
50
50
60
70
400V
600V
400V
600V
575
425
450
350
25
925
VD = VDRM; gate open;TJ=100°C
VD = VDRM; gate open;TJ=125°C
MIN.
MIN.
775
700
600
30
dv/dt
V/ꢀs
dv/dt(c)
tgt
di/dt(c) = 0.54 x IT(rms) / ms;TJ = 125°C
(note 1)
MIN.
TYP.
V/ꢀs
ꢀs
3
(1) Reference test circuit in figure 10 and waveform in figure 11; CT = 0.1ꢀF with 0.1ꢀs rise time.
Note: xx = voltage
QxxxxLTx Series
©2013 Littelfuse, Inc
Specifications are subject to change without notice.
170
Revised: 09/23/13
Teccor® brandThyristors
4 / 6 / 8 / 10 / 15 Amp Quadracs
Trigger DIAC Specifications
Symbol
Test Conditions
Value
3
Unit
ΔVBO
Breakover Voltage Symmetry
MAX.
MIN.
MAX.
MIN.
MAX.
MAX.
V
33
43
5
VBO
Breakover Voltage, forward and reverse
V
[ΔV± ±
IBO
Dynamic Breakback Voltage, forward and reverse (note 1)
Peak Breakover Current
V
25
0.1
uA
μF
CT
Trigger Firing Capacitance
(1) Reference test circuit in figure 10 and waveform in figure 11.
Static Characteristics
Symbol
VTM
Test Conditions
IT = 1.41 x IT(rms) A; tp = 380ꢀs
Value
1.6
Unit
MAX.
MAX.
V
TJ = 25°C
10
IDRM / IRRM
VDRM / VRRM
TJ = 100°C
TJ = 125°C
500
2000
μA
Thermal Resistances
Symbol
Parameter
Junction to case (AC)
Junction to ambient
Value
Unit
Qxx04LT
3.6
3.3
Qxx06LT /
Qxx06LTH
Qxx08LT /
Qxx08LTH
2.8
2.6
°C/W
°C/W
Rꢀ(J-C)
Qxx10LT /
Qxx10LTH
Qxx15LT /
Qxx15LTH
2.1
50
Rꢀ(J-A)
Note : xx = voltage
QxxxxLTx Series
©2013 Littelfuse, Inc
Specifications are subject to change without notice.
171
Revised: 09/23/13
Teccor® brandThyristors
4 / 6 / 8 / 10 / 15 Amp Quadracs
Figure 1: Normalized DC Holding Current
vs. JunctionTemperature
Figure 2: On-State Current vs. On-StateVoltage
(Typical) (4A)
2.0
1.5
1.0
0.5
0.0
16
TJ = 25°C
14
12
10
8
Qxx04LT
6
4
2
0
0.7
0.8
0.9
1.0
1.1
1.2
1.3
1.4
1.5
1.6
Instantaneous On-state Voltage (vT) – Volts
-40
-15
10
35
60
85
110
Junction Temperature (TJ) -- °C
Figure 3: On-State Current vs. On-StateVoltage
(Typical) (6A to 15A)
Figure 4: Power Dissipation vs. RMS On-State
Current (Typical) (4A)
50
4.0
3.5
3.0
45
40
35
30
25
20
15
10
5
TJ = 25°C
Qxx15LT
Qxx15LTH
Qxx04LT
2.5
2.0
1.5
1.0
Qxx06LT/Qxx06LTH
Qxx08LT/Qxx08LTH
Qxx10LT/Qxx10LTH
CURRENT WAVEFORM: Sinusoidal
LOAD: Resistive or Inductive
CONDUCTION ANGLE: 360°
0.5
0
0.0
0.0
0.5
1.0
1.5
2.0
2.5
3.0
3.5
4.0
0.7
0.8
0.9
1.0
1.1
1.2
1.3
1.4
1.5
1.6
1.7
RMS On-State Current [IT(RMS)] - (Amps)
Instantaneous On-state Voltage (vT) – Volts
Figure 5: Power Dissipation vs. RMS On-State Current
(Typical) (6A to 15A)
Figure 6: Maximum Allowable CaseTemperature
vs. RMS On-State Current
130
18
16
CURRENT WAVEFORM: Sinusoidal
LOAD: Resistive or Inductive
CONDUCTION ANGLE: 180°
120
110
100
90
Qxx08LT
Qxx08LTH
14
Qxx15LT
Qxx15LTH
12
10
8
Qxx06LT/Qxx06LTH
Qxx08LT/Qxx08LTH
Qxx10LT/Qxx10LTH
Qxx10LT
Qxx10LTH
Qxx15LT
Qxx15LTH
Qxx04LT
6
Qxx06LT
Qxx06LTH
4
CURRENT WAVEFORM: Sinusoidal
LOAD: Resistive or Inductive
CONDUCTION ANGLE: 360°
80
2
0
70
0
2
4
6
8
10
12
14
16
0
2
4
6
8
10
12
14
16
RMS On-State Current [IT(RMS)] - (Amps)
RMS On-State Current [IT(RMS)] - Amps
QxxxxLTx Series
©2013 Littelfuse, Inc
Specifications are subject to change without notice.
172
Revised: 09/23/13
Teccor® brandThyristors
4 / 6 / 8 / 10 / 15 Amp Quadracs
Figure 7: Surge Peak On-State Current vs. Number of Cycles
1000
Supply Frequency: 60Hz Sinusoidal
Load: Resistive
RMS On-State Current: [IT(RMS)±: Maximum Rated
Value at Specific Case Temperature
Qxx15LT/Qxx15LTH
Qxx10LT/Qxx10LTH
Notes:
100
Qxx08LT/Qxx08LTH
1. Gate control may be lost during and immediately
following surge current interval.
2. Overload may not be repeated until junction
temperature has returned to steady-state
rated value.
Qxx06LT/Qxx06LTH
10
Qxx04LT
1
1
10
100
1000
Surge Current Duration -- Full Cycles
Note: xx = voltage
Figure 9:Test Circuit
Figure 8: DIACVBO Change vs. Junction Temperature
6%
4%
RL
2%
MT2
D.U.T.
120 V
60 Hz
0%
-2%
-4%
-6%
-8%
T
VC
MT1
CT = 0.1 μF
-40
-20
0
20
40
60
80
100
120
140
Junction Temperature (TJ) -- °C
Figure 11: Peak Output Current vsTriggering
Capacitance (Per Figure 9)
Figure 10:Test CircuitWaveform
VC
300
250
200
+VBO
ΔV+
0
t
ΔV-
-VBO
V Device)
150
100
50
5
Typical (3
IL
+IPK
0
t
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
-IPK
Triggering Capacitance (CT) –
μF
Typical pulse base width is 10μs
QxxxxLTx Series
©2013 Littelfuse, Inc
Specifications are subject to change without notice.
173
Revised: 09/23/13
Teccor® brandThyristors
4 / 6 / 8 / 10 / 15 Amp Quadracs
Soldering Parameters
Reflow Condition
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tP
TP
-Temperature Min (Ts(min)
)
150°C
Ramp-up
TL
TS(max)
Pre Heat -Temperature Max (Ts(max)
-Time (min to max) (ts)
)
200°C
tL
ꢁꢂꢀoꢀꢃꢄꢂꢀTFDT
Ramp-down
Preheat
Average ramp up rate (LiquidusTemp)
(TL) to peak
5°C/second max
TS(min)
tS
TS(max) toTL - Ramp-up Rate
5°C/second max
-Temperature (TL) (Liquidus)
-Temperature (tL)
217°C
25
Reflow
time to peak temperature
ꢁꢂꢀoꢀꢃꢅꢂꢀTFDPOET
260°C +0/-5
Time
PeakTemperature (TP)
Time within 5°C of actual peak
Temperature (tp)
ꢆꢂꢀoꢀꢇꢂꢀTFDPOET
Ramp-down Rate
5°C/second max
8 minutes Max.
280°C
Time 25°C to peakTemperature (TP)
Do not exceed
Physical Specifications
Environmental Specifications
Test
Specifications and Conditions
Terminal Finish
1005 MatteTin-plated
MIL-STD-750: Method 1040, Condition A
Rated VDRM (VAC-peak), 125°C, 1008
hours
HighTemperature
Voltage Blocking
UL Recognized epoxy meeting
flammability classification 94v-0
Body Material
Lead Material
MIL-STD-750: Method 1051
-40°C to 150°C, 15-minute dwell,
100 cycles
Temperature Cycling
Copper Alloy
BiasedTemperature & EIA/JEDEC: JESD22-A101
Humidity
320VDC, 85°C, 85%RH, 1008 hours
MIL-STD-750: Method 1031
150°C, 1008 hours
HighTemp Storage
Design Considerations
Low-Temp Storage
Thermal Shock
Autoclave
-40°C, 1008 hours
Careful selection of the correct device for the application’s
operating parameters and environment will go a long way
toward extending the operating life of theThyristor. Good
design practice should limit the maximum continuous
current through the main terminals to 75% of the device
rating. Other ways to ensure long life for a power discrete
semiconductor are proper heat sinking and selection of
voltage ratings for worst case conditions. Overheating,
overvoltage (including dv/dt), and surge currents are
the main killers of semiconductors. Correct mounting,
soldering, and forming of the leads also help protect
against component damage.
MIL-STD-750: Method 1056
0°C to 100°C, 5-minute dwell,
10-second transfer, 10 cycles
EIA/JEDEC: JESD22-A102
(Pressure CookerTest) 121°C, 100%RH, 2atm, 168 hours
Resistance to
Solder Heat
MIL-STD-750: Method 2031
260°C, 10 seconds
Solderability
Lead Bend
ANSI/J-STD-002, Category 3, Test A
MIL-STD-750: Method 2036, Condition E
QxxxxLTx Series
©2013 Littelfuse, Inc
Specifications are subject to change without notice.
174
Revised: 09/23/13
Teccor® brandThyristors
4 / 6 / 8 / 10 / 15 Amp Quadracs
Dimensions —TO-220AB (L-Package) — Isolated MountingTab
T
C MEASURING POINT
Inches
Millimeters
Min
O
Dimension
8.13
.320
A
E
P
Min
Max
0.420
0.115
0.250
0.620
0.147
0.130
0.575
0.035
0.205
0.105
0.075
0.095
0.024
0.188
0.060
0.048
Max
10.67
2.92
6.35
15.75
3.73
3.30
14.61
0.89
5.21
2.67
1.91
B
A
B
C
D
E
0.380
0.105
0.230
0.590
0.142
0.110
0.540
0.025
0.195
0.095
0.060
0.085
0.018
0.178
0.045
0.038
9.65
2.67
5.84
14.99
3.61
2.79
13.72
0.64
4.95
2.41
1.52
C
AREA (REF.)
2
13.36
.526
0.17 in
D
7. 01
.276
F
F
R
G
G
H
J
L
H
K
N
K
J
MT1 MT2
M
T (Trigger)
Note: Maximum torque
to be applied to mounting tab
is 8 in-lbs. (0.904 Nm).
L
M
N
O
P
2.16
0.46
4.52
1.14
2.41
0.61
4.78
1.52
R
0.97
1.22
Product Selector
Voltage
Part Number
Type
Package
400V
600V
800V
1000V
Qxx04LT
Qxx06LT
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
Quadrac
Quadrac
TO-220L
TO-220L
TO-220L
TO-220L
TO-220L
TO-220L
TO-220L
TO-220L
TO-220L
Qxx06LTH
Qxx08LT
Alternistor Quadrac
Quadrac
Qxx08LTH
Qxx10LT
Alternistor Quadrac
Quadrac
Qxx10LTH
Qxx15LT
Alternistor Quadrac
Quadrac
Qxx15LTH
Note: xx = Voltage
Alternistor Quadrac
QxxxxLTx Series
©2013 Littelfuse, Inc
Specifications are subject to change without notice.
175
Revised: 09/23/13
Teccor® brandThyristors
4 / 6 / 8 / 10 / 15 Amp Quadracs
Packing Options
Part Number
Marking
Qxx04LT
Qxx04LT
Qxx06LT
Qxx06LT
Qxx06LTH
Qxx06LTH
Qxx08LT
Qxx08LT
Qxx08LTH
Qxx08LTH
Qxx10LT
Qxx10LT
Qxx10LTH
Qxx10LTH
Qxx15LT
Qxx15LT
Qxx15LTH
Qxx15LTH
Weight
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
2.2 g
Packing Mode
Bulk
Base Quantity
500
Qxx04LT
Qxx04LTTP
Qxx06LT
Tube
Bulk
500 (50 per tube)
500
Qxx06LTTP
Qxx06LTH
Qxx06LTHTP
Qxx08LT
Tube
Bulk
500 (50 per tube)
500
Tube
Bulk
500 (50 per tube)
500
Qxx08LTTP
Qxx08LTH
Qxx08LTHTP
Qxx10LT
Tube
Bulk
500 (50 per tube)
500
Tube
Bulk
500 (50 per tube)
500
Qxx10LTTP
Qxx10LTH
Qxx10LTHTP
Qxx15LT
Tube
Bulk
500 (50 per tube)
500
Tube
Bulk
500 (50 per tube)
500
Qxx15LTTP
Qxx15LTH
Qxx15LTHTP
Note: xx = Voltage
Tube
Bulk
500 (50 per tube)
500
Tube
500 (50 per tube)
Part Numbering System
Part Marking System
Q 60 10 L T H 56
TO-220 AB - (L Package)
DEVICE TYPE
Q: Quadrac
LEAD FORM DIMENSIONS
xx: Lead Form Option
VOLTAGE RATING
40: 400V
60: 600V
Q6010LTH
YMXXX
TRIAC TYPE
(blank): Standard Triac
H: Alternistor Triac
Trigger
T: Internal Diac (33V – 43V)
®
CURRENT RATING
04: 4A
06: 6A
08: 8A
10: 10A
15: 15A
PACKAGE TYPE
L: TO-220 (Isolated)
Date Code Marking
Y:Year Code
M: Month Code
XXX: Lot Trace Code
QxxxxLTx Series
©2013 Littelfuse, Inc
Specifications are subject to change without notice.
176
Revised: 09/23/13
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