Technical Document
Specifications
Brand
VishayResistance
1Ω
Power Rating
100W
Tolerance
±5%
Technology
Thick Film
Series
LTO100
Package/Case
TO-247
Temperature Coefficient
±150ppm/°C
Maximum Operating Temperature
+175°C
Lead Pitch
10.16mm
Minimum Operating Temperature
-55°C
Country of Origin
Czech Republic
Product details
LTO100 Series 100W Thick Film Power Resistors
LTO100 series 1000W thick film power resistors with a compact TO-247 package and a 100W at 25°C case temperature heatsink mounted. These LTO100 series 100W power resistors have a direct ceramic mounting on heatsink, a broad resistance range of 0.015 Ω to 1 MΩ, are non inductive and are AEC-Q200 qualified.
Thick film ceramic resistors
100 Watt at 25°C case temperature heatsink mounted
Direct mounting ceramic on heatsink
TO-247 package
Isolated case
Adjusted by sand trimming to reduce hot spots
SR 49.59
SR 49.59 Each (ex VAT)
SR 57.03
SR 57.03 Each (inc. VAT)
Standard
1
SR 49.59
SR 49.59 Each (ex VAT)
SR 57.03
SR 57.03 Each (inc. VAT)
Stock information temporarily unavailable. please contact rs@ae.com.sa for more details.
Standard
1
Stock information temporarily unavailable. please contact rs@ae.com.sa for more details.
Technical Document
Specifications
Brand
VishayResistance
1Ω
Power Rating
100W
Tolerance
±5%
Technology
Thick Film
Series
LTO100
Package/Case
TO-247
Temperature Coefficient
±150ppm/°C
Maximum Operating Temperature
+175°C
Lead Pitch
10.16mm
Minimum Operating Temperature
-55°C
Country of Origin
Czech Republic
Product details
LTO100 Series 100W Thick Film Power Resistors
LTO100 series 1000W thick film power resistors with a compact TO-247 package and a 100W at 25°C case temperature heatsink mounted. These LTO100 series 100W power resistors have a direct ceramic mounting on heatsink, a broad resistance range of 0.015 Ω to 1 MΩ, are non inductive and are AEC-Q200 qualified.
Thick film ceramic resistors
100 Watt at 25°C case temperature heatsink mounted
Direct mounting ceramic on heatsink
TO-247 package
Isolated case
Adjusted by sand trimming to reduce hot spots


