Electronics: Difference between revisions

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http://www.trueaudio.com/rta_down.htm
http://www.trueaudio.com/rta_down.htm
== BEAM ==
1381 Solar Engine
[[Image:1381SEfreeform.gif]]
[[image:BEAMSE.JPG]]
[[image:SE_1381_basic.gif]]
[[/Beam Write Up]]


==Useful bits==
==Useful bits==
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=== panasonic 1381 voltage detector===
=== panasonic 1381 voltage detector===


http://members.aon.at/sunbeam/1381.htm<br>
* http://members.aon.at/sunbeam/1381.htm - DEFUNT
http://www.solarbotics.com/products/1381/ <br>
* http://www.solarbotics.com/products/1381/ - GONE
http://beamagination.solarbotics.net/1381Replacements.php<br>
* http://beamagination.solarbotics.net/1381Replacements.php - DEFUNT
 
drop in replacement:
* MCP112 Voltage Trigger ( https://www.solarbotics.com/product/mcp112 )
 
possible alternative: http://www.ti.com/lit/ds/symlink/lm317l-n.pdf
possible alternative: http://www.ti.com/lit/ds/symlink/lm317l-n.pdf


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=== Wireless ===
=== Wireless ===


* ESP8266 serial WIFI wireless module
* [[ESP8266 serial WIFI wireless module]]


== Sensors ==
== Sensors ==
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* http://www.best-microcontroller-projects.com/temperature-recorder.html very good, clear pictures, complete solution.
* http://www.best-microcontroller-projects.com/temperature-recorder.html very good, clear pictures, complete solution.
* [[Temperature Sensor Setup LM35 take one]]
* [[Temperature Sensor Setup LM35 take one]]
* [[LM35 > TMP36]]
* [[LM35 better than TMP36]]


==== ad 7614 ====
==== ad 7614 ====
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http://embeddedday.com/projects/sensor-stick/
http://embeddedday.com/projects/sensor-stick/


==== Humidity ====
=== Humidity ===


* SHT10
* SHT10


==== Air Pressure ====
=== Air Pressure ===


* http://www.adafruit.com/products/1603 BMP180 ( replaces BMP085  )
* http://www.adafruit.com/products/1603 BMP180 ( replaces BMP085  )
=== ranger finder ===
;SRF05 - Ultra-Sonic Ranger
:https://www.robot-electronics.co.uk/htm/srf05tech.htm


== Springfield ==
== Springfield ==
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driving a stepper motor in either dir with 2 pins ( + 1 555 timer +1 shift registr and + 1 darling tone array of course ) http://www.menet.umn.edu/~meno0012/projects/alien/controller.htm
driving a stepper motor in either dir with 2 pins ( + 1 555 timer +1 shift registr and + 1 darling tone array of course ) http://www.menet.umn.edu/~meno0012/projects/alien/controller.htm
== arduino balancing robot ==
https://maker.pro/arduino/projects/build-arduino-self-balancing-robot


== PELTIERs ==
== PELTIERs ==
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http://www.stefanv.com/electronics/esv.html
http://www.stefanv.com/electronics/esv.html


== MOSFET versus Optisiloator Triac Driver ==
== MOSFET versus Optoisolator Triac Driver ==


just took a bunch of MOSFETs off some old mother boards.
just took a bunch of MOSFETs off some old mother boards.
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not that it might be appropriate to use a different type of MOSFET to convert an analog versus a digital signal.
not that it might be appropriate to use a different type of MOSFET to convert an analog versus a digital signal.


There are n-type MOSFETs and p-type MOSFET, dunno the diff just yet.
There are n-type MOSFETs and p-type MOSFET, don't know the diff just yet.


MOSFETs can get complicated as you try to model how well they "translate" signal. an Idea MOSFET translates a signal perfectly, or exactly as you want it to be translated, however in the realworld depending on the configuration and materials, the MOSFET has a certain response to different types of signals such that it's wise to characterize the signal you give it and find a mosfet that's rated for the best response in that range.
MOSFETs can get complicated as you try to model how well they "translate" signal. an Idea MOSFET translates a signal perfectly, or exactly as you want it to be translated, however in the realworld depending on the configuration and materials, the MOSFET has a certain response to different types of signals such that it's wise to characterize the signal you give it and find a MOSFET that's rated for the best response in that range.


Now compare that with an Optoisolating Triac Driver that also might get wired up the same way as a MOSFET, but does a different job. It's meant to protect on curcuit from another.
Now compare that with an Optoisolating Triac Driver that also might get wired up the same way as a MOSFET, but does a different job. It's meant to protect on circuit from another.


Here is an example where a doorbell signal controls a camera shutter
Here is an example where a doorbell signal controls a camera shutter
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power meter:<br>
power meter:<br>
http://scriptkiller.de/en/a29/25c3/power_and_energy-meter/
http://scriptkiller.de/en/a29/25c3/power_and_energy-meter/


== Resistor Guide ==
== Resistor Guide ==
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list of other related http://www.zen22142.zen.co.uk/Circuits/rf/rf.html
list of other related http://www.zen22142.zen.co.uk/Circuits/rf/rf.html
http://circuit-zone.com/?cat=fm_transmitters
http://circuit-zone.com/schematics.php
http://www.electronics-diy.com/
http://www.instructables.com/id/Mini-Audio-Transmitter/?ALLSTEPS great thread.


== Time Synchronization Using Pervasive Time Signals ==
== Time Synchronization Using Pervasive Time Signals ==
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* [[Solar Engine Cheat Sheet]]
* [[Solar Engine Cheat Sheet]]
* [[Wilf's Pummer]]
* [[Wilf's Pummer]]
* [[Arduino Projects of note]]
* list of project http://www.bobblick.com/techref/projects/projects.html
* [[H Bridge]]
* lots of good projects here; https://www.robotroom.com/index.html


[[Category:Electronics]]
[[Category:Electronics]]

Latest revision as of 16:54, 8 October 2023

Projects

  • I have a Velleman p8048'1 which has a pic16f627 PIC on it.

Basics

How-To: Build BEAM Vibrobots
http://www.streettech.com/modules.php?op=modload&name=News&file=article&sid=1618&mode=flat&order=0&thold=1

BEAM


Lecture 1 - Background and Power Supply
http://www.sparkfun.com/commerce/tutorial_info.php?tutorials_id=57&page=7

FM Transmitter
http://africatravels.pbwiki.com/RadioTransmitterCircuits

free Spectrum analyser : True RTA truerta

http://www.trueaudio.com/rta_down.htm

BEAM

1381 Solar Engine

/Beam Write Up

Useful bits

panasonic 1381 voltage detector

drop in replacement:

possible alternative: http://www.ti.com/lit/ds/symlink/lm317l-n.pdf

suggestions:

pn2222 transistor
insert url (how is this useful?, see at http://cachefly.oreilly.com/make/television/08/MiniRobots.pdf ) http://www.solarbotics.com/products/tr2222/

DS2405 Addressable 1-wire Switch
http://rjconway.homeip.net/wordpress/wp-content/uploads/2008/05/ds2405.pdf

for controlling larger power:
Power Solid State Relay
http://rjconway.homeip.net/wordpress/wp-content/uploads/2008/05/ssr-sc842110.pdf

battery meter:
http://profmason.com/?p=689

mulit chemistry battery charger http://members.shaw.ca/Botgoodies2/MultiCharger/MultiCharger.htm

Addressable Dual Digital Potentiometer - DS1803
http://www.maxim-ic.com/quick_view2.cfm/qv_pk/2779/ln/en

Using an Analog Voltage to Control a Digital Potentiometer
http://pdfserv.maxim-ic.com/en/an/AN4051.pdf

Notes on batteries, including notes on Charge Controllers.
http://www.solar-electric.com/deep_cycle_batteries/deep_cycle_battery_faq.htm

http://en.wikipedia.org/wiki/Battery_charger

Notes on battery desulfinator http://screwdecaf.cx/mini-d.html

Generating Electricity with Stepper Motors
http://www.c-realevents.demon.co.uk/steppers/stepmotor.htm

MultiTherm ( gather temp data from multiple Dallas Semiconductor DS18x20 1-Wire® Thermometers
http://www.thebloughs.net/hobbies/electronics/multitherm/

K145 Temperature Monitor Data Logger
http://nashdb.tripod.com/K145.htm

ZOMG Cheap DS1820
http://www.taydaelectronics.com/servlet/the-125/DS18S20-DS1820-1-Wire/Detail

1N4004 - diode/rectifier

Wireless

Sensors

Temperature

LM 35

http://www.scienceprog.com/analog-devices-digital-temperature-sensor-ad7416/

Sensor Stick

http://embeddedday.com/projects/sensor-stick/

Humidity

  • SHT10

Air Pressure

ranger finder

SRF05 - Ultra-Sonic Ranger
https://www.robot-electronics.co.uk/htm/srf05tech.htm

Springfield

http://www.gregorystrike.com/2011/03/13/wireless-thermometer-hacking-for-homebrew-beer/

Stepper motors

http://mechatronics.mech.northwestern.edu/design_ref/actuators/stepper_drive1.html

driving a stepper motor in either dir with 2 pins ( + 1 555 timer +1 shift registr and + 1 darling tone array of course ) http://www.menet.umn.edu/~meno0012/projects/alien/controller.htm

arduino balancing robot

https://maker.pro/arduino/projects/build-arduino-self-balancing-robot

PELTIERs

convert temperature to electricity and vica versa

learn + buy online : http://www.tetech.com/FAQ-Technical-Information.html

Multiplexing inputs

From "Everyday practical Electronics" 2001.03

  • Use CMOS 4066BE which is a stack of 4 spst switches.
  • Might also try 4016BE (4) or 4015BE (8) <-binary control (cool)

Digital voltmeter

Build an Analog Bar Graph Expanded Scale Voltmeter
http://www.stefanv.com/electronics/esv.html

MOSFET versus Optoisolator Triac Driver

just took a bunch of MOSFETs off some old mother boards.

So what's the difference between a MOSFET and an Optoisolator Triac Driver?

A MOSFET can take a small voltage signal and make it large or vica versa, take a large voltage signal and make it small.

not that it might be appropriate to use a different type of MOSFET to convert an analog versus a digital signal.

There are n-type MOSFETs and p-type MOSFET, don't know the diff just yet.

MOSFETs can get complicated as you try to model how well they "translate" signal. an Idea MOSFET translates a signal perfectly, or exactly as you want it to be translated, however in the realworld depending on the configuration and materials, the MOSFET has a certain response to different types of signals such that it's wise to characterize the signal you give it and find a MOSFET that's rated for the best response in that range.

Now compare that with an Optoisolating Triac Driver that also might get wired up the same way as a MOSFET, but does a different job. It's meant to protect on circuit from another.

Here is an example where a doorbell signal controls a camera shutter

http://digital-photography-school.com/how-to-make-a-remote-shutter-release-from-a-doorbell-diy-special

MOCO 3020 Optoisolator Triac Driver - Media:161-12855-0-MOC3010.pdf

the idea I think is that the signal from doorbell is isolated from the shutter control. I play in software alot , so I might liken it to input validation.

You are proecting the delcate camera bits from the door bell bits.


power meter:
http://scriptkiller.de/en/a29/25c3/power_and_energy-meter/

Resistor Guide

So I did some testing with my own multi-meter. I moved the meter's dial from 2000k Ohms, Through 200k, 20k, 2000, all the way to 200 Ohms before I got a reasonable reading from my first resistor. I tested yellow purple gold gold, expecting to get 4.7 Ohms, I got 5.5

  • yellow 4
  • purple 7
  • gold "more the decimal to the left by one.

I test brown green gold gold expecting 1.5 and got 2.5 Ohms. (again with the multi meter dial at 200 Ohms)

  • brwon 1
  • green 5
  • gold "more the decimal to the left by one.

I then tested the multi meter on it's own, simply connecting the two leads and got 0.8, this explains the discrepancies good enough for me.

Next resistor: brown green purple gold ( 1 5 7 ).. I get 151 oms.

I expect 15 0000000 but that can't be right. Violet? Purple? I can't tell, I'm blind.

Next yellow purple black black, 4 7 0 mulitple 0 = 470 Ohms, and that's what I get, SCORE.

brown black brown gold - 1 0 1 = 100 Ohms as meaasured ( dial at 2000 ).


Transistor Guide

Analog to Digital Converters

Low powered data logger

http://www.gedanken.demon.co.uk/temperature-recorder/

Printer Port

Charge controllers

UARTS / Serial

reverse engineering

NIST time radio receiver

20$ GPS + + Receiver

Peltier

http://www.dx.com/p/tec1-12706-semiconductor-thermoelectric-cooler-peltier-white-157283#.U1Mxg_ldV8F

Long Range FM Transmitter

http://www.zen22142.zen.co.uk/Circuits/rf/lrfmtx.htm

list of other related http://www.zen22142.zen.co.uk/Circuits/rf/rf.html

http://circuit-zone.com/?cat=fm_transmitters

http://circuit-zone.com/schematics.php

http://www.electronics-diy.com/


http://www.instructables.com/id/Mini-Audio-Transmitter/?ALLSTEPS great thread.

Time Synchronization Using Pervasive Time Signals

http://hinrg.cs.jhu.edu/joomla/projects/203-ultra-low-power-time-synchronization-using-passive-radio-receivers.html

Buy Online

See Also