logo

SMF31K2JT

Manufacturer

TE CONNECTIVITY

data-sheet
Data sheet
Data sheet
SMF31K2JT Chip Resistor is typically used in power management circuits, signal processing, and precision measurement applications. Its robust design and flame-retardant coating make it suitable for automotive, industrial, and consumer electronics where reliability and safety are critical.
Specification
Specification
RES SMD 1.2K OHM 5% 3W 4122
RES SMD 1.2K OHM 5% 3W 4122
Detailed specification
Detailed specification
1.2 kOhms ±5% 3W Chip Resistor 4122 (10555 Metric), J-Lead Flame Retardant Coating, Safety Metal Film
1.2 kOhms ±5% 3W Chip Resistor 4122 (10555 Metric), J-Lead Flame Retardant Coating, Safety Metal Film
Description
Description
The SMF31K2JT from TE Connectivity is a surface-mounted chip resistor with a resistance value of 1.2 kOhms and a tolerance of ±5%. It is rated for a power dissipation of 3W, making it suitable for high-power applications. The resistor features a J-Lead design and is coated with a flame-retardant material, ensuring safety and reliability in various environments. The construction utilizes a metal film for enhanced performance and stability, making it ideal for precision applications in electronic circuits.
The SMF31K2JT from TE Connectivity is a surface-mounted chip resistor with a resistance value of 1.2 kOhms and a tolerance of ±5%. It is rated for a power dissipation of 3W, making it suitable for high-power applications. The resistor features a J-Lead design and is coated with a flame-retardant material, ensuring safety and reliability in various environments. The construction utilizes a metal film for enhanced performance and stability, making it ideal for precision applications in electronic circuits.
Availability
Availability
Can be ordered from Westcomp
Can be ordered from Westcomp
Contact sales
Contact Gustaf or one of our other skilled sales representatives. They'll help you find the right service option.
Gustaf Eriksson
Upload BOM
Would you like to upload a BOM with stock status and delivery times for all components? Then you can feel free to request a quote.