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Photon Wearable Shield Hookup Guide

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Photon Wearable Shield Hookup Guide

CONTRIBUTORS: HELLOTECHIE

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Introduction

The SparkFun Photon Wearable Shield breaks out each pin on the Photon, so it is easier to use the Photon in WiFi wearables projects. Due to the large pins, you can also use other conductive materials like copper tape and conductive paint for non-wearable projects.

Photon Wearable Photon Shield

Please Note: All SparkFun shields for the Photon are also compatible with the Core from Particle. The WKP, DAC and VBT pins on the Photon will be labeled A7, A6 and 3V3*, respectively, on the Core, but will not alter the functionality of any of the Shields.

Suggested Reading

If you have never worked with the Photon or the Core before, we highly recommend visiting the getting started documentation available on the Particle site.

If you are unfamiliar with any of the concepts below, we suggest checking out those tutorials as well.

Hardware Overview

This might be a simple shield for the Photon, but you can use it in many different types of projects! Here is a list of hardware features for this shield.

Female Headers for the Photon

Photon Wearable Shield SMD headers

Double check that you put the Photon in the female headers the correct way!

No soldering required! The shield comes with two SMD headers already soldered on, which makes easy to place the Photon on top and start a new project. There is a white Photon silkscreen outline to help show what direction the Photon needs to be placed.

Large Sewable Pins

Photon Wearable Shield Large Sewable pads

There is a large pad for each one of the Photon’s pins.

The larger pins makes it possible to use different types of conductive materials to connect sensors, LEDs, and other components to the Photon. Conductive paint, conductive thread, and copper tape are just few different conductive materials you can use with the large pins. When prototyping, the large pads makes it easy to use alligator clips.

Alligator clips for Photon Wearable Shield

Alligator clips are great to make sure connections and code examples are correct before sewing components into a garment.

Normal Sized Pins

Photon Wearable Shield Normal Pins holes

There are normal sized pins for soldering hook-up wire to the shield. Which, is great for projects needing tons of LEDs or a solid connection.

Hardware Hookup (Conductive Thread, Paint, and Tape)

There are different types conductive materials that can be used with the shield. Depending on the project, some materials are better then others. Here are the most common conductive materials to hook-up external components to the shield and the Photon.

Conductive Thread

Want to make an IoT wearable fitness project and be able to sew an accelerometer into your clothes? Sewing withconductive thread is a great way to add sensors into a wearables or other e-textiles projects. It provides more flexibility then standard hook-up wire.

Conductive thread Photon Wearable Shield

Tip: Loop around a large pin hole and component three or more times, with conductive thread, to get a solid connection.

The Photon can also work with 3.3V LilyPad products like the LilyPad Temperature Sensor, LilyPad Accelerometer, andLilyPad Vibe Board.

Conductive Paint

Thinking of doing an interactive art painting or wall? Conductive paint opens doors for traditional artists and tinkers to combine art and electronics together. The conductive paint can go under or over the large pads on the shield.

Conductive Wearable Paint

Great for art installations!

Copper Tape

Copper tape is great for paper crafts or other e-crafts. Copper tape has an adhesive backing, which isn’t as conductive as the nonadhesive side. We recommend to place the copper tape under the large pads on the shield.

Copper Tape Photon Wearable Shield

Use the copper tape with the large pins on the shield.

Resources & Going Further

Now that you know a little bit more about the Photon Wearables Shield, it is time to start your project! These links may be useful in your journey:

Check out these related wearables tutorials:



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