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PDF HQ6025LH5 Data sheet ( Hoja de datos )

Número de pieza HQ6025LH5
Descripción 25 Amp High Temperature Alternistor Triacs
Fabricantes Littelfuse 
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HQ6025xH5 Series
Teccor® brand Thyristors
25 Amp High Temperature Alternistor Triacs
RoHS
Agency Approval
Agency
Agency File Number
L and K Packages: E71639
Main Features
Symbol
IT(RMS)
VDRM/ VRRM
IGT
Value
25
600
50
Schematic Symbol
Unit
A
V
mA
Description
25Amp bi-directional Alternistor Triac is designed for AC
switching and phase control applications requiring a higher
temperature environment.
Alternistor type devices only operate in quadrants I, II, &
and are used in circuits requiring high dv/dt capability.
Features & Benefits
• 150°C maximum junction
temperature
• RoHS compliant
• Glass – passivated
junctions
• Voltage capability up
to 600 V
• Surge capability up
to 300 A
Applications
Typically used in high-temperature environments where
available heat-sinking is minimal such as heating and white
goods applications.
Internally constructed isolated packages are offered for
ease of heat sinking with highest isolation voltage.
Additional Information
Datasheet
Resources
Samples
MT2
MT1
G
© 2016 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 05/02/16

1 page




HQ6025LH5 pdf
Teccor® brand Thyristors
25 Amp High Temperature Alternistor Triacs
Soldering Parameters
Reflow Condition
Pb – Free assembly
- Temperature Min (Ts(min))
Pre Heat - Temperature Max (Ts(max))
- Time (min to max) (ts)
Average ramp up rate (LiquidusTemp)
(TL) to peak
TS(max) to TL - Ramp-up Rate
Reflow
-Temperature (TL) (Liquidus)
- Temperature (tL)
Peak Temperature (TP)
Time within 5°C of actual peak
Temperature (tp)
Ramp-down Rate
Time 25°C to peakTemperature (TP)
Do not exceed
150°C
200°C
60 – 180 secs
5°C/second max
5°C/second max
217°C
60 – 150 seconds
260+0/-5 °C
20 – 40 seconds
5°C/second max
8 minutes Max.
280°C
TP
TL
TS(max)
TS(min)
25
Ramp-up
Preheat
tS
time to peak temperature
tP
tL
Ramp-down
Time
Physical Specifications
Terminal Material Copper Alloy
Terminal Finish
Body Material
100% Matte Tin Plated
UL recognized epoxy meeting flammability
classification 94V-0
Design Considerations
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 the Thyristor. 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.
Environmental Specifications
Test
High Temperature
Voltage Blocking
Temperature Cycling
Biased Temp &
Humidity
High Temp. Storage
Low-Temp Storage
Resistance to
Solder Heat
Solderability
Lead Bend
Specifications and Conditions
MIL-STD-750: Method 1040, Condition A
Rated VRRM, 150°C, 1008 hours
MIL-STD-750: Method 1051
-40°C to 150°C, 15-minute dwell,
100 cycles
EIA/JEDEC: JESD22-A101
320VDC, 85°C, 85%RH, 1008 hours
MIL-STD-750: Method 1031
150°C, 1008 hours
-40°C, 1008 hours
MIL-STD-750: Method 2031
260°C, 10 seconds
ANSI/J-STD-002, Category 3, Test A
MIL-STD-750: Method 2036, Condition E
© 2016 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 05/02/16

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