Technical Document
Specifications
Brand
TE ConnectivityResistance
15mΩ
Power Rating
4W
Tolerance
±5%
Technology
Metal Foil
Series
SBL
Maximum Operating Temperature
+250°C
Minimum Operating Temperature
-55°C
Country of Origin
India
Product details
SBL Series, Axial
TE Connectivity SBL series through hole resistors are a low Ohmic non-inductive resistor with a low temperature coefficient in a fully insulated ceramic housing. These through hole fixed resistors are ideal for applications in power supply regulation. The solid metal element has welded copper terminals and is encapsulated in a ceramic housing filled with silica sand.
Features
Solid metal element
4 Watt & 5 Watt Version
Low temperature coefficient
Non-inductive
Applications
Power supply regulation
Motor control current monitoring
Overload sensors and radio frequency
Feedback control loops
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€ 2.62
Each (Supplied in a Box) (Exc. Vat)
€ 3.09
Each (Supplied in a Box) (inc. VAT)
Production pack (Box)
1
€ 2.62
Each (Supplied in a Box) (Exc. Vat)
€ 3.09
Each (Supplied in a Box) (inc. VAT)
Production pack (Box)
1
Buy in bulk
quantity | Unit price |
---|---|
1 - 9 | € 2.62 |
10 - 49 | € 2.47 |
50 - 99 | € 2.32 |
100 - 249 | € 2.26 |
250+ | € 2.08 |
Technical Document
Specifications
Brand
TE ConnectivityResistance
15mΩ
Power Rating
4W
Tolerance
±5%
Technology
Metal Foil
Series
SBL
Maximum Operating Temperature
+250°C
Minimum Operating Temperature
-55°C
Country of Origin
India
Product details
SBL Series, Axial
TE Connectivity SBL series through hole resistors are a low Ohmic non-inductive resistor with a low temperature coefficient in a fully insulated ceramic housing. These through hole fixed resistors are ideal for applications in power supply regulation. The solid metal element has welded copper terminals and is encapsulated in a ceramic housing filled with silica sand.
Features
Solid metal element
4 Watt & 5 Watt Version
Low temperature coefficient
Non-inductive
Applications
Power supply regulation
Motor control current monitoring
Overload sensors and radio frequency
Feedback control loops