• ShtokCustomWorx NPXL V3 LED Strip PCB Holder. This is the hilt side and for 1" emitters. It is also designed for the both the long pins AND short pins. Note that, for use with Long pins, you will need to purchase an additional lens cover. This is required for use with the long pin PCB. If you do not use a lens cover when using the long pins PCB you can risk bending or damaging your pins.
  • The ShtokCustomWorx NPXL V3 PCB Lens Cover. This is the lens diffusion cover for the V3 PCB holders. Note that the holder is press fit in.
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    Max Forward Voltage 3.6V Max Current 1000mA The most suitable, closest available resistor will be linked below in the 'you may also like' section. You have a little leeway in choosing the correct resistance (due to how LEDs work). it's common to 'dither' the calculated value to the nearest commercially available value. You can always double check the exact resistor values by using our LED Resistor Calculator.
  • Heatsink module for 7/8" / 22.5mm ID tubes. .875" OD x .75" long Heatsink module with center hole. These are designed to fit the Parks/Korbanth sabers such as the Graflex 2.0 These are only made to be used with the tri cree/rebel lens holder and a slightly modified star base.
  • Blue/Blue/White Cree XP-E2 CopperNova Blue Cree Forward Voltage @1000mA = 3.4V White Cree Forward Voltage @1000mA = 3.15V Triple Cree XP-E2 mounted on a SinkPAD-ll copper star providing a direct thermal path between the LED and Star. The most suitable, closest available resistors will be linked below in the 'you may also like' section. You have a little leeway in choosing the correct resistance (due to how LEDs work). it's common to 'dither' the calculated value to the nearest commercially available value. You can always double check the exact resistor values by using our LED Resistor Calculator.
  • Green/Green/White Cree XP-E2 CopperNova Green Cree Forward Voltage @1000mA = 3.7V White Cree Forward Voltage @1000mA = 3.15V Triple Cree XP-E2 mounted on a SinkPAD-ll copper star providing a direct thermal path between the LED and Star. The most suitable, closest available resistors will be linked below in the 'you may also like' section. You have a little leeway in choosing the correct resistance (due to how LEDs work). it's common to 'dither' the calculated value to the nearest commercially available value. You can always double check the exact resistor values by using our LED Resistor Calculator.
  • Red/Green/Royal Blue Cree XP-E2. NOTE We now stock the same superb black PCB models that are used in SaberTrio baselit installs. Green Cree Forward Voltage @1000mA = 3.7V Red Cree Forward Voltage @1000mA = 2.65V Royal Blue Cree Forward Voltage @1000mA = 3.4V
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    Red/Red/White Cree XP-E2 CopperNova Red Cree Forward Voltage @1000mA = 2.65V White Cree Forward Voltage @1000mA = 3.15V Triple Cree XP-E2 mounted on a SinkPAD-ll copper star providing a direct thermal path between the LED and Star. The most suitable, closest available resistors will be linked below in the 'you may also like' section. You have a little leeway in choosing the correct resistance (due to how LEDs work). it's common to 'dither' the calculated value to the nearest commercially available value. You can always double check the exact resistor values by using our LED Resistor Calculator.
  • The MC1 features the same safety and triple mode charging that all of the current generation Xtar chargers have. It gets its power from a USB cable, plugged into a car adapter, wall adapter, power bank, solar charger, or your computer. Features: - Reverse-polarity and short circuit protection circuit - Three-stage charging and 0V battery activation - Micro USB port to supply power for the charger - Adopts IC temperature monitor to avoid over heat - Small charge current when start to charge - Compact size portable - Low heat design Apply to: 10440/14500/14650/16340/17500/1­7670/18350/18500/18650/18700/ 22650/ 25500/26650 3.6V/3.7V Li-ion batteries
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    Max Forward Voltage 2.4V Max Current 1000mA The most suitable, closest available resistor will be linked below in the 'you may also like' section. You have a little leeway in choosing the correct resistance (due to how LEDs work). it's common to 'dither' the calculated value to the nearest commercially available value. You can always double check the exact resistor values by using our LED Resistor Calculator.

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