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LITTELFUSE
| Series | Category | # Parts | Status | Description |
|---|---|---|---|---|
| Part | Spec A | Spec B | Spec C | Spec D | Description |
|---|---|---|---|---|---|
| Series | Category | # Parts | Status | Description |
|---|---|---|---|---|
| Part | Spec A | Spec B | Spec C | Spec D | Description |
|---|---|---|---|---|---|
| Part | Category | Description |
|---|---|---|
LITTELFUSE DRR-DTH-Q2167-2Obsolete | Switches | SWITCH REED CUSTOM |
LITTELFUSE DRR-DTH-70-85Obsolete | Switches | SWITCH REED SPDT 350MA 350V |
LITTELFUSE | Switches | ROCKER SWITCHES |
LITTELFUSE | Switches | SWITCH PUSHBUTTON DPDT 6A 250V |
LITTELFUSE 0HEV040.ZXPCBLObsolete | Circuit Protection | FUSE - HEV LC 425VDC 40A, PCB 3.9MM TERM/ BULK |
LITTELFUSE 0324015.HObsolete | Circuit Protection | FUSE CERM 15A 250VAC 125VDC 3AB |
LITTELFUSE NANOSMD200LR-2Obsolete | Circuit Protection | PTC RESET FUSE 6V 2A 1206 |
LITTELFUSE | Connectors Interconnects | LINEAR IC'S |
LITTELFUSE | Circuit Protection | TVS 1.5KW 36V 5%BI DO-214AB TR13 |
LITTELFUSE | Connectors Interconnects | LINEAR IC'S |
| Series | Category | # Parts | Status | Description |
|---|---|---|---|---|
WJC0402LJUMPF"2T WJC0402 JUMP, 0 Ohm " | Chip Resistor - Surface Mount | 1 | Active | Littelfuse WJC Series is a high-current metal foil jumper chip. |
WJC0402LJUMPFK-A2T WJC0402 JUMP, 0 Ohm Auto | Resistors | 1 | Active | Littelfuse WJC-A Series is a high-current metal foil jumper chip with Kelvin sensing, low resistance, high power chip resistors exhibit excellent performance in resistance, noise performance, surface heat distribution and have a lower surface temperature. |
WJC0603LJUMPF"2T WJC0603 JUMP, 0 Ohm " | Chip Resistor - Surface Mount | 1 | Active | Littelfuse WJC Series is a high-current metal foil jumper chip. |
WJC0805LJUMPF"2T WJC0805 JUMP, 0 Ohm " | Resistors | 1 | Active | Littelfuse WJC Series is a high-current metal foil jumper chip. |
WJC0805LJUMPFN-A2T WJC0805 JUMP, 0 Ohm Auto | Chip Resistor - Surface Mount | 1 | Active | Littelfuse WJC-A Series is a high-current metal foil jumper chip with Kelvin sensing, low resistance, high power chip resistors exhibit excellent performance in resistance, noise performance, surface heat distribution and have a lower surface temperature. |
WJC1206LJUMPF"2T WJC1206 JUMP, 0 Ohm " | Resistors | 1 | Active | Littelfuse WJC Series is a high-current metal foil jumper chip. |
WJC1206LJUMPFN-A2T WJC1206 JUMP, 0 Ohm Auto | Chip Resistor - Surface Mount | 1 | Active | Littelfuse WJC-A Series is a high-current metal foil jumper chip with Kelvin sensing, low resistance, high power chip resistors exhibit excellent performance in resistance, noise performance, surface heat distribution and have a lower surface temperature. |
WKE60Current Transformer 60mm id | Industrial Automation Accessories | 1 | Unknown | The WKE Series of current transformers is a key component of the POWR-GARD ground fault detection product line. These CTs are highly accurate. They convert very small differential currents to an ac voltage and output this signal to the connected POWR-GARD ground fault relay. The WKE Series CTs are made from high-density mu metal which has unique and repeatable output characteristics. Features The WKE CTs have built-in safety features far surpassing those of CTs with a ferrite core. The WKE CT is resistant to open circuit burn out and will saturate at safe, low-level voltages. The CTs are housed with an insulating protection. They have built in brackets to facilitate mounting. Terminal cover may be wire sealed for further protection |
WLTC0508QLR003F2T WLTC0508 1W 50ppm 3 mOhm ±1.0% | Chip Resistor - Surface Mount | 1 | Active | Littelfuse WLTC Series low ohm current sense resistor is designed with long term stability in mind. This series is durable, excels at heat dissipation. The small package is optimal for most applications. |
WLTC0508QLR004F2T WLTC0508 1W 50ppm 4 mOhm ±1.0% | Resistors | 1 | Active | Littelfuse WLTC Series low ohm current sense resistor is designed with long term stability in mind. This series is durable, excels at heat dissipation. The small package is optimal for most applications. |