Via Flickr:
Remote Shooter 3.0 is a smart device to control wireless your digital camera from an Android APP, tablet or a PC.
Now on Indiegogo.com crowfonding campaign:
igg.me/at/remshoot30/x/2778971
Spread the word!
thanks!
Visualizzazione post con etichetta intervalometer. Mostra tutti i post
Visualizzazione post con etichetta intervalometer. Mostra tutti i post
martedì 23 aprile 2013
Remote Shooter 3.0
Etichette:
android,
app inventor,
canon,
controllo remoto macchina fotografica,
geeks,
intervalometer,
remote photography equipment,
time lapse camera,
time lapse photography,
time lapse video
martedì 16 aprile 2013
Nikon Remote Shutter for Canon
Ok it's a fake, if you are searching for your digital cam a real, wireless and flexible remote shutter, time lapse and more, go to http://igg.me/at/remshoot30
This was my first serious SLR Camera, a CanonFlex RP, when i was 16 years old.
This was my first serious SLR Camera, a CanonFlex RP, when i was 16 years old.
Etichette:
android,
canon,
controllo remoto macchina fotografica,
geeks,
intervallometro,
intervalometer,
nikon,
Remote controlling cameras,
time lapse camera,
time lapse photography,
time lapse video
giovedì 24 maggio 2012
BT Remote Shooter 1.0: Bluetooth Control cameras for Android
NEW:
tested on:Nikon Coolpix AW100
Nikon D50
Canon Powershot A300
Canon Poweshot S500
The idea stems from the desire to experiment with on Android App Inventor and the practical need to expand the graphic interface of the Remote Shooter 1.0 to make it both easier and faster entry of parameters for Time Lapse or prospective role in the study.
If it is necessary to insert large intervals of time or number of shots, we realized that it could be difficult and perhaps even tedious, use only the up / down on the board.
For those unfamiliar with the project Remote Shooter 1.0, is essentially a sophisticated remote control for remote shooting (but not only) digital camera via USB, in fact, many models of compact and DSLR cameras, Nikon and Canon, for example, are compatible PTP mode with the USB PIC-AP-BOARD (PIC Auto Programming Board) and the firmware RemShoot 1.0 (Remote Shooter).
The ability to remotely activate many functions (first click) on digital cameras, makes it possible to take pictures sometimes impossible or at least difficult to achieve with the traditional method because of human reaction times.
The PTP and applications in photography.
Most digital cameras to provide medium-high level command set PTP for their remote control, or simply to transfer images to a PC.
Using the appropriate commands and properties the photo enthusiast can:
1) remotely the shutter button (shutter),
2) Make an Interval (Time Lapse)
3) Take pictures automatically based on events detected by sensors of light and sound.
Making jerky in the world of high speed photography '(a falling drop of water or other liquid, explosion of balloons etc) or take shots at regular intervals (even hours) while Time Lapse (eg to record the blossoming of a flower or the hatching of an egg) and 'easily achieved by combining this system with appropriate sensors, motion, light or sound.
To check if your camera can be controlled by RemShoot RemShoot BT 1.0 or 1.0 you should run the test compatibility with your application for windows (XP and Seven):
http://goo.gl/2BVMg
Once you extract the download, run the executable and follow the instructions PTPControlCheck.exe.
Interesting feature is that RemShoot BT 1.0 Firmware is upgradeable via a USB stick.
If you are interested in Remote Shooter assembled and tested, with LCD display, you can find it on Ebay Italy (BT Module not included)
examples:
My Portfolio on flickr.com
Read more
Etichette:
android,
app inventor,
apps,
archos,
controllo fotocamera pc,
DIY,
dslr,
high speed photo,
intervalometer,
nikon,
photography,
pic-ap-board,
Remote controlling cameras,
remote shutter,
usb ptp
lunedì 21 maggio 2012
Remote Shooter BT 1.0: Controllo Bluetooth di macchine fotografiche per Android
NEW:
Testato su:Nikon Coolpix AW100
Nikon D50
Canon Powershot A300
Canon Poweshot S500
L'idea nasce dalla curiosità di sperimentare su Android con App Inventor e dalla necessità pratica di espandere l'interfaccia grafica del Remote Shooter 1.0 per rendere al contempo più semplice e rapido l'inserimento dei parametri di Time Lapse o di future funzioni allo studio.
Nel caso infatti sia necessario inserire grandi intervalli di tempo o numero di scatti, ci siamo resi conto che poteva essere complicato e forse anche tedioso, usare solo i tasti up/down sulla board.
Per chi non conoscesse il progetto Remote Shooter 1.0, è sostanzialmente un sofisticato telecomando per lo scatto remoto (ma non solo) di macchine fotografiche digitali tramite la porta USB, molti modelli infatti di compatte e DSLR, Nikon e Canon ad esempio, sono compatibili in PTP mode con la scheda USB PIC-AP-BOARD (PIC Auto Programming Board) ed il firmware RemShoot 1.0 (Remote Shooter).
La possibilità di attivare remotamente molte funzioni (prima di tutto lo scatto) sulle macchine fotografiche digitali, rende possibile realizzare fotografie a volte impossibili o almeno difficili da realizzare con il metodo tradizionale a causa dei tempi di reazione umani.
Il protocollo PTP e applicazioni nella fotografia.
Gran parte delle macchine fotografiche digitali di fascia medio alta mettono a disposizione un set di comandi PTP per il loro controllo remoto, o semplicemente per il trasferimento delle immagini su un pc.
Utilizzando gli opportuni comandi e proprietà l’appassionato di fotografia potrà:
1) Remotizzare il pulsante di scatto (shutter),
2) Realizzare un Intervallometro (Time Lapse)
3) Scattare foto automatiche sulla base di eventi rilevati da sensori di luce e suono.
Fare scatti nel mondo della fotografia ad alta velocita’ (caduta di una goccia d’acqua o altro liquido, esplosioni di palloncini etc) o fare scatti a intervalli regolari (anche di molte ore) con la funzione Time Lapse (ad esempio per registrare lo sbocciare di un fiore o lo schiudersi di un uovo) e’ facilmente realizzabile abbinando a questo sistema opportuni sensori di movimento, luce o suono.
Per verificare se la tua fotocamera può essere controllata da RemShoot 1.0 o RemShoot BT 1.0 si consiglia di eseguire il test di compatibilità con l’applicazione per windows (XP e Seven):
http://goo.gl/2BVMg
Una volta effettuato il download estraete il file, lanciate l’eseguibile PTPControlCheck.exe e seguite le istruzioni.
Interessante caratteristica di RemShoot BT 1.0 è che Il firmware è aggiornabile tramite una chiavetta USB.
Se ti interessa Remote Shooter montato e collaudato, completo di display, puoi trovarlo su Ebay Italia (escluso modulo bluetooth)
esempi:
Leggi tutto
Etichette:
android,
apps,
cellulare,
controllo fotocamera pc,
DIY,
dslr,
flash,
fotografia,
high speed photo,
intervallometro,
intervalometer,
pic-ap-board,
Remote controlling cameras,
scatto remoto,
smartphone,
time lapse
giovedì 29 marzo 2012
Remote Shooter 1.0: USB remote control system for cameras
Modern digital cameras not only use the USB port to transfer images to PC (USB Mass Storage), but also to receive specific control commands that control certain functions (USB PTP).
Based on the prototype presented on http://glptech.blogspot.it/2011/12/controlling-digital-camera-via-usb-port.html
Remote Shooter 1.0 is the complete solution for remote control shooting with Time Lapse functions and events.
Many models of compact and DSLR cameras, Nikon and Canon in particular, are compatible with the USB PIC-AP-BOARD (PIC Auto Programming Board) and the firmware RemShoot 1.0 (Remote Shooter)
The ability to remotely activate many functions (but especially the shot) on digital cameras give the opportunity of take pictures that sometimes is manually impossible or at least difficult to achieve with the traditional method because of human reaction times.
NEW:
tested on:Nikon Coolpix AW100
Nikon D50
Canon Powershot A300
Canon Poweshot S500
PTP and applications in photography.
The PTP commands more interesting to implement for the photo enthusiast are:
1) Remoting the shutter button (shutter),
2) Interval (Time Lapse)
3) Set / read values of shutter speed, aperture, etc..
4) Shutter controlled by light sensors and sound reacting to external events
Making jerky in the world of high speed photography (a falling drop of water or other liquid, explosion of balloons etc) or take shots at regular intervals (even hours) while Time Lapse (eg to record the blossoming of a flower or the hatching of an egg) is easily achieved by combining this system with appropriate sensors, motion, light or sound.
5) Bracketing (for cameras that provide the function) to make postelaborazioni in HDR. For those not aware, the bracketing feature (usually found on DSLR) cameras in the shows "varied exposure to fork", this includes the performance of at least 3 photos in succession separated by a value of over-and underexposure (longer and shorter than expected) that allows you to "hit" the perfect photo or obtain special software with a special effect (HDR, High Dynamic Range) superimposing the three images.
The firmware Remshoot 1.0
RemShoot 1.0 handles the shooting of pictures simultaneously in two different ways:
1) Through PTP, using the camera's USB connection and remotely shooting.
2) Using a command pin to safety trigger an external flash. (recommended use of the camera in bulb mode and in darkened environment)
For shots in high speed, as fast, the USB protocol in some cases may not be qualified.
The functions currently available are:
1) Remoting the shutter button (shutter),
Warning: the remote cord used is that provided for the Generic PTP, used by most compact and DSLR cameras that claim to support the PTP protocol and remote control.
2) Interval (Time Lapse)
parameters:
firing frequency, in seconds
number of shots
3) Shutter controlled by light sensors and sound reacting to external events.
parameters:
sensor enabled / disabled
delay in microseconds (necessary in order to synchronize the best shooting with the position of the moving object intercepted by the sensor used)
Compatibility
To check if your camera can be controlled by RemShoot 1.0 is recommended that you download the application compatibility testing for Windows (XP and Seven): http://goo.gl/2BVMg
Fast link
| http://goo.gl/2BVMg |
Once you have downloaded it, extract the files, connect your camera to a USB port of your PC (make sure to set PTP mode, NOT Mass Storage Mode), PTPControlCheck.exe run the executable and follow the instructions.
| The USB PIC-AP-board ready for use, programmed with the firmware RemShoot 1.0. |
The philosophy that inspired the PIC-AP-BOARD project:
Invent : Create your own project
Develop : Develop and test on-board PIC-AP Board
Use : complete it and use the same board PIC-AP-Board for your target project.
After several years of testing on development boards more or less evolved (from Microchip products Pic18 to PIC32), we realized that we needed a board of our own and be more self-sufficient as possible, easily powered, equipped with lcd display and keys, and the right number of pin I / O available, first of all capable of selfprogramming without use of external programmers, on which to develop a project more or less complex, which once consolidated revolved on the same board without other passages, but whose firmware be easily updated by anyone.
Using the USB PIC-AP-board for various uses
The USB PIC-AP-Board even if they already came with firmware 1.0 RemShoot for controlling a digital camera, can, thanks to its power to function (USB, I2C, SPI, ADC, Timers, PWM, UART, etc.), memory and expandability to be used for purposes other than photography.
The fact sheet can be connected via USB to a PC is powered by independent power supplied from the PC (USB device self-powered or bus powered) thus allowing a wide variety of uses, of course with the right firmware that can be modified by the particular USB boot loader used for updating, thus allowing you to program the card with a simple USB stick with no specific type of programmer for PIC, in each case by the most experienced programmers can also be programmed via ICSP.
To show the great flexibility of the board we are working to complete other projects that we'll publish for fans of Electronica Open Source Blog, dedicated to the use of graphic displays, or even to connect wireless or wired with PC and Smartphone devices and Android in general, using different categories of sensors or the ability to control external equipment.
Using the USB PIC-AP-board for various uses
The USB PIC-AP-Board even if they already came with firmware 1.0 RemShoot for controlling a digital camera, can, thanks to its power to function (USB, I2C, SPI, ADC, Timers, PWM, UART, etc.), memory and expandability to be used for purposes other than photography.
The fact sheet can be connected via USB to a PC is powered by independent power supplied from the PC (USB device self-powered or bus powered) thus allowing a wide variety of uses, of course with the right firmware that can be modified by the particular USB boot loader used for updating, thus allowing you to program the card with a simple USB stick with no specific type of programmer for PIC, in each case by the most experienced programmers can also be programmed via ICSP.
To show the great flexibility of the board we are working to complete other projects that we'll publish for fans of Electronica Open Source Blog, dedicated to the use of graphic displays, or even to connect wireless or wired with PC and Smartphone devices and Android in general, using different categories of sensors or the ability to control external equipment.
Technical specification of USB PIC-AP-BOARD
USB PIC-AP-BOARD : Functional blocks. |
The board is built in large part to make it compact SMD (5x7 cm) and easily portable, in addition to the LCD, need to work only 2 AA batteries 1.5 V AA
USB PIC-AP-BOARD
Microcontroller: PIC24FJ256GB106
1x USB Host / Device (Bus Powered or Self-Powered)
1x USB MODE jumper
1x 14-pin LCD connector
1x 8x2 LCD DISPLAY
3x Buttons
16 Input / Output pins and power (5V and 3.3V)
2x I2C port
1x serial port
1x Power LED
1x ICSP connector for Debug / Program
Power: 3V with 2 AA batteries 1.5 V
The DC-DC converter provides high efficiency at 3.3V and 5V voltages required to power the card, USB devices and any external circuits connected to the expansion connectors
The kit RemShoot 1.0
For those interested in the solution and tested, ready for use, the kit consists of:
1) Card 1x USB PIC-AP-board mounted, tested and loaded firmware RemShoot1.0 (upgradable)
2) 1x LCD 8x2
3) User Manual supplied with the wiring diagram and pin configuration of port expansion
4) File Gerber board design USB PIC-AP-BOARD
5) File. Hex bootloader USB Adapter-specific for USB PIC-AP-BOARD
6) File. Hex firmware 1.0 RemShoot
Remarkable that with its USB Host bootloader, the board can be reprogrammed or updated all through a simple USB key dongle without using any kind of programmers.
For projects we recommend the use of tools like Microchip MPLAB and Microchip C30 compiler, you compile the project, copy the file. Hex on the USB stick, once connected to the PIC-AP-BOARD, program itself in seconds.
| Example of a light detector joint with a laser beam |
|
| ||||
| Shoots remotely controlled by a laser beam |
| A shoot remotely controlled by a sound trigger |
Read more on EMCelettronica Open Source(sorry, is in Italian)
For electronics enthusiasts and DIY Remote Shooter, the project documentation is available at only 9 euros. You can make it yourself (do-it-yourself) by downloading the documentation (schematic, wiring diagram, parts list, assembly plan, gerber files, executable code) from the site EMCelettronica Open Source.
If you are interested in Remote Shooter assembled and tested, with LCD display, you can find it on Ebay Italy
For every doubt contact me at gianluigi.perrella@gmail.com
Etichette:
controllo fotocamera pc,
DIY,
flash,
fotografia,
high speed photo,
intervalometer,
nikon,
pic-ap-board,
Remote controlling cameras,
remote shooter,
remote shutter,
scatto remoto,
sound trigger,
time lapse
mercoledì 21 marzo 2012
Remote Shooter 1.0: sistema di controllo remoto USB per macchine fotografiche
Da diverso tempo le moderne fotocamere digitali possono utilizzare la porta USB non solo per trasferire immagini al PC (USB Mass Storage) , ma anche per ricevere specifici comandi di controllo che ne controllano alcune funzioni (USB PTP). Remote Shooter 1.0 è la soluzione completa per il controllo remoto dello scatto con funzioni di Time Lapse e ad eventi
Molti modelli di compatte e DSLR, Nikon e Canon in particolare, sono compatibili con la scheda USB PIC-AP-BOARD (PIC Auto Programming Board) ed il firmware RemShoot 1.0 (Remote Shooter)
La possibilità di attivare remotamente molte funzioni (ma in particolare lo scatto) sulle macchine fotografiche digitali rende possibile realizzare fotografie a volte impossibili o almeno difficili da realizzare con il metodo tradizionale a causa dei tempi di reazione umani.
Protocollo PTP e applicazioni nella fotografia.
I comandi PTP piu’ interessanti da implementare per l’appassionato di fotografia sono:
1) Remotizzazione del pulsante di scatto (shutter),
2) Intervallometro (Time Lapse)
3) Impostazione/lettura dei valori tempi di scatto, apertura diaframma etc.
4) Scatto comandato da sensori di luce e suono in base ad eventi esterni
Fare scatti nel mondo della fotografia ad alta velocita’ (caduta di una goccia d’acqua o altro liquido, esplosioni di palloncini etc) o fare scatti a intervalli regolari (anche di molte ore) con la funzione Time Lapse (ad esempio per registrare lo sbocciare di un fiore o lo schiudersi di un uovo) e’ facilmente realizzabile abbinando a questo sistema opportuni sensori di movimento, luce o suono.
5) Bracketing (per le fotocamere che ne prevedono la funzione) per effettuare postelaborazioni in tecnica HDR. Per chi non fosse a conoscenza, la funzione Bracketing (in genere si trova sulle DSLR) nelle macchine fotografiche indica la "esposizione variata a forcella", questa prevede l'esecuzione di almeno 3 foto in successione separate tra loro da un valore di sovra e sottoesposizione (tempo più lungo e più corto del previsto) che permette di "centrare" la foto perfetta o di ottenere con speciali software un effetto particolare (HDR, High Dynamic Range) sovrapponendo le tre foto.
NEW:
tested on:Nikon Coolpix AW100
Nikon D50
Canon Powershot A300
Canon Poweshot S500
Per verificare se la tua fotocamera può essere controllata da RemShoot
1.0 si consiglia di eseguire il test di compatibilità scaricando l’applicazione
per windows (XP e Seven):
http://goo.gl/2BVMg
http://goo.gl/2BVMg
Una volta effettuato il download estraete il file, collegate la vostra
macchina fotografica ad una porta USB del vostro PC, (assicuratevi di impostare
PTP Mode e non Mass Storage), lanciate l’eseguibile PTPControlCheck.exe e
seguite le istruzioni.
La scheda USB PIC-AP-BOARD pronta all'uso, corredata del firmware RemShoot 1.0
La filosofia con la quale nasce la PIC-AP-BOARD:
Invent: Crea il tuo progetto
Develop: Sviluppalo e testalo sulla scheda PIC-AP-BOARD
Use: Completalo e usa la stessa scheda PIC-AP-BOARD per il tuo progetto finito.
Se ti interessa Remote Shooter montato e collaudato, completo di display, puoi trovarlo su Ebay Italia
Leggi tutto su EMCelettronica Open Source
Etichette:
controllo fotocamera pc,
DIY,
fotografia,
high speed photo,
intervalometer,
nikon,
open source,
pic-ap-board,
Remote controlling cameras,
remote shooter,
remote shutter,
scatto remoto,
sound trigger,
time lapse
venerdì 23 dicembre 2011
Controlling a digital camera via USB port, now with a Microchip PIC24 family microprocessor
Now with a PIC processor (24 or 32 of the Microchip family) you can control a camera that automatically execute many commands with a system based on a Microchip microcontroller functions with USB Host / OTG embedded.
NEW:
tested on:Nikon Coolpix AW100
Nikon D50
Canon Powershot A300
Canon Poweshot S500
The basis of the project
Always been passionate about photography and electronics, i tried to combine my two hobbies in order to explore new filming techniques and high-speed, with the help of automated systems. The first problem 'was born as camera manufacturers often do not disseminate technical information on the functions of their internal models. Inspired by some of Arduino projects, (particularly that of Alex Glushchenko) and Linux (http://sourceforge.net/projects/libptp/, http://libptp.sourceforge.net/README) after months of work with a friend more skilled than I in C programming, we have designed and built a prototype that implements some USB host control functions of digital cameras via USB PTP protocol, using the embedded functions available on a PIC24F.Compatible between brands and models (PTP functions are not implemented in the same way), we tested some compact DSLR Nikon and Canon. The commands more 'interesting to implement for the photo enthusiast are:
1) Remoting of the shutter button (shutter)
2) Set / Read values of shutter speed, aperture, etc..
3) Interval (Time Lapse)
4) Remote control of motorized lens focus, depending on the cameras.
5) Bracket (for cameras that provide the function) to perform post-processing in HDR. For those not aware, the bracketing feature (usually found on DSLR) cameras in the shows "varied exposure bracketing", this includes the performance of at least 3 photos in sequence separated by a value of over-and underexposure (longer and shorter than expected) that allows you to "hit" the perfect photo or obtain a particular effect with special software, HDR (High Dynamic Range) by superimposing the three images (eg HDR).
The ability to remotely activate many functions (but especially the shot) on digital cameras make possible many photographs sometimes impossible or at least difficult to achieve with the traditional method because of human reaction times.I refer to as jerky in the world of high-speed photography '(fall of a drop of water or other liquid, explosion of balloons, etc.) or techniques of photography on a regular basis (even several hours) as the time-lapse (for example, to record the blossoming of a flower or the hatching of an egg) and 'easily achieved by combining this system with appropriate sensors, motion, light or sound
If you are interested in Remote Shooter assembled and tested, with LCD display, you can find it on Ebay Italy
Description of the prototype and function blocks.
We start with the description of the prototype starting its functional blocks. To work in the field the system must be powered by batteries and consume very little. The first checks the entire system consumes about 90mA with peak and 110mA when 'the backlight of the LCD display (timed and controlled directly from an output pin of the microcontroller).
Now let's see in detail the individual functional blocks:
The first block consists of a PWM Step-Up DC-DC converter (NCP1450) with 2 AA batteries, which brings the voltage to 5 volts, with about 800mA max load. The chip 'was chosen because' it is quite efficient (88% max) and can 'work with input voltages from 1.5 to 4.2 volts. Though the CPU and also the LCD display (including backlight) work at 3.3 volts, the voltage to 5 volts is required for USB host functions and to power sensors or external circuits.
Carry the basic layout of the chip that we used in the prototype.
The second block is represented by a classic low dropout regulator (Reg1117) which reduces the voltage to 3.3 volts.Top right we have the three buttons that perform the function of navigation and choose from the menu that appears on the LCD 8x2 (double row connector on the left, with adjacent trimmer contrast).At the center of the PCB we PIC24FJ256GB106 the processor that has a quartz oscillator clock at 20MHz and 72MHz internal PLL configured. For programming and 'was prepared ICSP port (bottom left), as a programmer / debugger use the PICkit2 and 3 with the Microchip MPLAB sw.On the right we find the USB port in Host Configuration and down, centrally located, two rows of connectors for expansion I / O and any communication with sensors / devices or I2C serial (with appropriate external level translators).The prototype had a lot of potential '(the chip and' one of the most powerful and complete PIC24F family with 16Mips power, a lot of memory and 64-pin) can 'be used not only for the purpose for which and' born, but also as a tool development, and 'Simply use the expansion port to connect an analog voltage to be measured or PWM outputs to activate motors etc..Despite some concerns 'Initially, it was' chosen to achieve all or most of the PCB in SMD technology. The questions consisted of mounting a successful prototype SMD having no virtually no previous experience in this technique, and even more 'no technological means as this, and' a hobby for us. In fact the problem 'was brilliantly and in a few minutes, with the technology of the electric cooker at about 210 ° C and the miraculous solder paste that makes everything very simple, the constituent assembly formed in 0805 to 64-TQFP processor pin.Gli any short between pins of the chip during cooking were removed using desoldering braid flux and everything and then tested with the tester.Stages of assemblyThe prototype already 'welded during assembly, ready for the first functional tests (power supplies, buttons, displays etc.)
The prototype boxed and ready for the first field tests.
For communication with external sensors we used a DB9F connector which brings out the power supply to 5 volts and some pins of I / O.
The test image shooting camera when the sensor detects the interruption of the laser beam.
Setup based on a laser pen (left) and LDR (right) with attached Schmitt trigger circuit (with a 74HC14)
Here are some field test to give an idea of the potential with the integration of sensors which pick up sound or light:
| Sound Trigger test |
| Sound Trigger Test |
| Laser Beam Detector |
| Laser Beam Detector |
Link to some tests made with the prototype:
Test Time Lapse Video
Hi Tech Projects
For contacts mail me at gianluigi.perrella@gmail.com
Etichette:
canon,
DIY,
dslr,
Fai da te,
fotografia,
geeks,
high speed photo,
intervallometro,
intervalometer,
laser beam,
microchip,
nikon,
open source,
photography,
pic,
Remote controlling cameras,
sound trigger,
time lapse
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