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iris's Introduction

What?

IRis is a low power, low cost, high sensitivity infrared detector designed for capturing raw IR digital data transmissions. Think of it like a mon0 interface for IR.

Why?

Typical IR receivers are designed to work with common IR remote controls, and as such they ignore any IR signals that are not modulated at 36-38kHz. But there is so much more to the world of IR than this!

In contrast, IRis was designed to be a simple, general purpose IR detector to aid in the capture and analysis of raw IR transmissions, in particular low data rate signals such as those emitted by chell phone proximity sensors.

Who?

The brainchild of Dale Wooden, and designed by Craig Heffner, IRis is of use to anyone interested in exploring the hidden world of IR around them!

How?

Most IR data is transmitted via on/off pulses (i.e., on-off keying). Powered from a single CR2032 coin cell battery, IRis uses a a sensitive photodiode, high gain transimpedance amplifier, and comparator to detect even very weak IR signals and convert them back into clean digital pulses that can be interpreted and analyzed by nearly any digital system, such as an Arduino or Raspberry Pi. Just connect to the IRis' output pins (connector P1) and point it at an IR source!

Due to its high sensitivity, best performance is obtained by preventing unwanted or ambient light from hitting the IRis photodiode. In conditions where there is low ambient light this is not a major problem, and in areas of greater illumination the issue can be mitigated by placing a shroud around the IR detector to prevent direct contact with unwated light. IR filters can also be used to reduce interference from unwanted light sources, but bear in mind that some bright light sources (e.g., the sun!) emit IR radiation as well.

IRis is still able to detect IR transmissions in the presence of bright ambient light, but at a reduced distance.

How Much?

PCBs (1.24 inches in diameter) are available from OSHPark for less than $8, and components can be ordered in single quantities from Digikey for an additional $8.

IRis PCB 3D View

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iris's Issues

MOSFETs Q1-3

Hi there,

This is really more of an enquiry. Could you tell me what the three MOSFETs (MMBF4117) are doing in the circuit? As far as I can tell, they seem redundant to me.

Thanks!

Detection range of IR much shorter than of TV

First thanks for developing this great device.
I've build it and attached the signal output to active speakers. With that you can hear remote control of television when transmitting. In a quite dark room when facing the RC directly to IRis range is a few meters in which you can hear the RC. Despite it's digital output at some distance audio signal is clearly more quiet. Either signal is so weak that voltage output is lower or less impulses are detected so signal output is more quiet.

When putting IRis about 3.7 meters away from a window, facing at the window detection range is less than 50 cm. Detection range can be improved about 10 cm by applying a IR 760nm filter or putting a tube on, shielding the outside light, light the roles from toilet paper. There was no direct sunlight on IRis. Light measurement gave about 1200 lux at sensor angle. So it was not very bright and still range was reduced a lot.

I wonder how TVs can be remote controlled from a few meters distance even at very bright light conditions. So perhaps there is some possibility to increase detection range by using some technology like TVs do to increase detection range.

There is this cool project https://github.com/tb69rr/Iris using IRis to fingerprint smartphones. With higher detection range at daylight conditions it would get even more powerful.

5V and GND shorted

Hi again,

I am experiencing some difficulties assembling the board. Somehow my +5V pad is shorted to GND.

When I look at the PCB editor, it shows that the B.Cu layer is connected to the +5V pad, but it also seemed to be connected to the circled GND pad.

capture2

(Also, would you be able to include in the documentation the correct output signal when the board is working?)

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