
Characteristics - Electrical
Characteristics - Environmental
Test Condition SM (Wire) SM (Metal Film)
Temperature Coefficient -55°C – +200°C ± 200ppm /°C ± 100ppm /°C
of Resistance:
Short Time Overload: 5 times of rated wattage for 5 sec. ± 1% ± 0.5%
Rated Load: Rated voltage for 30 minutes ± 1% ± 0.5%
Insulation Resistance: 500VDC 10,000 MΩ 10,000 MΩ
Load Life: 70°C 1.5 hrs on 0.5 hrs off for 1000 hrs ± 2% ± 1%
Humidity Load Life: 40°C ±2°C @ 90-95% RH 500 hrs ± 2% ± 1%
1.5 hrs on 0.5 hrs off
Voltage Withstand: 500VAC for 60 seconds No Physical damage
Solderability: 235°C ±5°C for 2 seconds 95% coverage
Resistance to 270°C ±5°C for 10 ±1seconds Resistance value change
Soldering Heat: within ± 1%
SM (Wire) SM (Metal Film)
Values SM_2: R10 – 200R 201R – 2M
Values SM_3: R10 – 300R 301R – 2M
Values SM_5: R10 – 500R 501R – 2M
Value Grid: E24
Resistance Tolerance: 1% or 5%
Power Rating @ 25°C SM_2: 2.0 Watts
Power Rating @ 25°C SM_3: 3.0 Watts
Power Rating @ 25°C SM_5: 5.0 Watts
Derating: See Curve Below
Max Operating Voltage SM_2: 300 Volts
Max Operating Voltage SM_3: 500 Volts
Max Operating Voltage SM_5: 500 Volts
SMD Moulded Power Resistor
Type SM Series
1773242 CIS WR 04/2012 Dimensions are in millimeters Dimensions are shown for For email, phone or live chat, go to: te.com/help
and inches unless otherwise reference purposes only.
specified. Values in brackets Specifications subject
are standard equivalents. to change.
Key Features
■Low Profile Design
■Available on Tape
■Very Wide Value Range
■Ideal for Power Circuitry
■Available in 2,3 or 5 Watts
■Flameproof Coating UL94V0
TE Connectivity (TE) introduces a surface mount power resistor suited to meet today's
circuit design needs. Each size offers low profile case design with flexible tinned copper
terminations for reliable solder joints. All styles utilize a fully welded construction
technique, unlike other designs that rely solely on tinned termination
onnections. These features allow the SM Series to withstand the higher temperatures
associated with reflow, vapour phase, or infrared (IR) manufacturing processes without
degradation.