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This is a screencap from episode 20 of season 6 of "24," showing a "Russian FS-sub circuit board" containing Russian nuclear warhead unlock codes. The prop itself is a modified BASIC Stamp bs2p40 microcontroller from Parallax.

 

Closeup of the Parallax chip in the next pic.

Comparison shot in the pic after that.

The DP32 takes advantage of the powerful PIC32MX250F128B microcontroller. This microcontroller features a 32-bit MIPS processor core running at 40 MHz, 128K of flash program memory, and 32K of SRAM data memory. It is suitable for building projects directly on the board utilizing the provided prototyping area, but it can also be used as a device programmer to program the microcontrollers for inclusion in custom built projects.

 

store.digilentinc.com/chipkit-dp32-dip-package-prototypin...

THe laser 'gun' is made by using a microcontroller to modulate the laser beam, which is then turned on by a switch, (a trigger) which when pressed, sends out a modulated light beam for fifty milliseconds and after that, pauses for 200 milliseconds thus, only allowing firing of the gun approximately five times a second. The beam is modulated at 20 khz and the demodulation sampling techniques allows the intensity of modulated light to be registered 40 times per second.

 

Custom made heasinks for spirograph controller.

I used some scrap aluminum to make improvised heatsinks.

For more details have a look at the project Website.

alan-parekh.com/projects/gear-clock/

chipKIT Wi-FIRE: WiFi Enabled PIC32MZ Microcontroller Board

 

Building on the previous successes with the chipKIT WF32, the Wi-FIRE uses the same 43 available I/O pins, 12 analog inputs, 3.3 operating voltage, 4 user LEDs, potentiometer, buttons, uses MRF24 on-board wireless module, microSD Card, dedicated SPI Signals and high efficiency switching 3.3V switching power supply for low-power operation.

 

The Wi-FIRE is significantly faster than its WF32 counterpart, with 200 MHz operation speed, 2MB of Flash, 512kB RAM, High-Speed USB and a 50MHz SPI. The PIC32MZ core includes the MIPS M5150 CPU Core from Imagination Technologies. The M5150 is a highly efficient, compact core that is optimized for cloud-connected based projects, using Imagination Technologies' FlowCloud software.

 

store.digilentinc.com/chipkit-wi-fire-wifi-enabled-mz-mic...

 

The DP32 takes advantage of the powerful PIC32MX250F128B microcontroller. This microcontroller features a 32-bit MIPS processor core running at 40 MHz, 128K of flash program memory, and 32K of SRAM data memory. It is suitable for building projects directly on the board utilizing the provided prototyping area, but it can also be used as a device programmer to program the microcontrollers for inclusion in custom built projects.

 

store.digilentinc.com/chipkit-dp32-dip-package-prototypin...

Product image of components from the Jennic range - www.sequoia.co.uk/components/manufacturer_list.php?m=12&a...

 

Jennic is a market leader in ZigBee, 6LoWPAN, IEEE802.15.4 wireless microcontrollers, modules and evaluation kits.

I designed and built a passive infrared trigger for my Canon EOS 5D camera (will work with any camera with a remote shutter release socket) to take pictures when something (an animal) sets off the PIR sensor. This will allow me to set the camera up to automatically capture anythng that moves in front of the sensor. I used a microcontroller to control the camera wake up and shutter release relays. This gives me the ability to control the frequency and number of shots. For the prototype I trigger the wake up relay for 300ms then the shutter release relay for 300ms followed by a 300ms pause before checking the input again to see if there is still movement in front of the PIR sensor. I also put a long delay (1 second) after 5 continuous shots. Depending on results I may replace this long delay with a wait until the PIR is no longer being triggered to prevent too many pictures of one event if the animal stays in range of the PIR sensor for a while. The cool thing is that the camera can go into sleep mode allowing the battery to last for days as the circuit wakes the camera up when movement is detected.

The Digilent Cerebot Nano board is useful for embedded control and robotics projects for both students and hobbyists. With it's versatile design and programmable microcontroller, it will allow you to control different external devices and program the board for multiple uses. The board has many I/O connectors, power supply options, and supports a number of programming tools, including Atmel AVR Studio 4 and WinAVR.

 

store.digilentinc.com/cerebot-nano-small-form-factor-atme...

The master model for the robot used in our Mobile Robotics classes in Jersey Shore, PA. The bot as pictured measures 6" long, 5.5" wide, and 3.1" high.

This bot is built around a surplus board originally used with the "Build Your Own Sumo Robot" book by TAB Books. The onboard microcontroller is a Parallax Basic Stamp BS2. The stock board also includes IR proximity detectors, dual H-bridge motor drivers, and 11 available I/Os. Power is supplied by 4 AA batteries. Motive power consists of a pair of small efficient surplus MicroMo / Faulhaber gearmotors with integral quadrature encoders.

Sensors include 2 IR proximity detectors, 2 quadrature encoders, and the front bumper which connects to 2 microswitches to sense physical contact. Except for the main board, I produced all of the parts including the wheels.

Photos from our craft room. This is a dump of photos from my phone. Many may be duplicates or similar angles.

The 5V 4000mA switching power supply comes with US and EU plug adapters and is for use with Digilent FPGA & Microcontroller boards.

 

store.digilentinc.com/5v-4000ma-switching-power-supply/

@ DATA 30, Flux Cafe, Science Gallery, Dublin

 

@ DATA 30, Flux Cafe, Science Gallery, Dublin

This a small project on controlling D.C motor with USB pic18f4550 interface board with L293D motor Driver. L293d DC motor driver is linked to pic18f4550 which is controlled by USB from computer. -

 

www.rakeshmondal.info/dc-motor-control-intro

2005-2010

 

Found plastic flowers, foam, light sensors, mp3 players, microcontroller, speakers, birdsong

 

An ersatz version of nature; beautiful, yet a little bit deadly when one considers the natural resources required to create such impeccable imitations of vegetation. Is it also a reflection of human hubris... what else motivates the manufacturing of fake flowers? Why replace the ephemeral with plastic permanence? What joy is there in a whiff of a petroleum-based bouquet rather than the delicate scent of a rose? Secret Garden offers an opportunity to contemplate these questions at the same time it tries to seduce you with extravagant color and joyous birdsong performed just for you.

 

Ann Resnick, Tom McGuire, John Harrison

$15,000

First Beagleboard project - "OpenSprinkler" sprinkler system.

The chipKIT™ Pro MX7 is a microcontroller development board based on the Microchip® PIC32MX795F512L, a member of the 32-bit PIC32 microcontroller family. It is compatible with Digilent's line of peripheral modules (Pmod), and is suitable for use with the Microchip MPLAB IDE tools. The chipKIT Pro MX7 is also compatible for use with the chipKIT MPIDE development environment.

 

The chipKIT Pro MX7 provides 52 I/O pins that support a number of peripheral functions, such as UART, SPI, and I2C ports as well as five pulse-width modulated outputs and five external interrupt inputs. Its network and communications features also include a 10/100 Ethernet interface, Full Speed USB 2.0 OTG interface, and dual CAN network interfaces. Ten of the I/O pins can be used as analog inputs in addition to their use as digital inputs and outputs.

 

store.digilentinc.com/chipkit-pro-mx7-advanced-peripheral...

This morning I got this in the mail from adafruit :D

The finished enclosure, ready for mounting the switches and microcontroller.

chipKIT™ Pi™ (designed for Raspberry Pi®) is the latest chipKIT platform from Microchip® and Element14. It features a 32-bit PIC32 microcontroller in a prototyping-friendly, low pin count SPDIP package. The PIC32's performance, memory, and integrated peripherals allow users to create applications including touch sensing, audio processing, and advanced control. The board is supported by the free chipKIT MPIDE that can be hosted on the Raspberry Pi.

 

store.digilentinc.com/chipkit-pi-add-on-board-for-raspber...

The Digilent Line-Following Servo Robot Kit (SRK+Line) provides the perfect starting point for those new to robotics, but has the power to be used for advanced designs and applications as well. The MRK pairs our powerful chipKITâ„¢ MX3 microcontroller development board with a rugged steel platform and all the motors, wheels, sensors, and other parts needed to build a complete robot. Using your SRK+Line's powerfulchipKIT MX3 microcontroller, you'll be able to add all sorts of functionality to your robot. Add some of our extensive line of peripheral modules (Pmodsâ„¢) and you can design almost anything!

 

store.digilentinc.com/srk-line-complete-kit-to-assemble-l...

The Digilent Servo Robot Kit (SRK) provides the perfect starting point for those new to robotics, but has the power to be used for advanced designs and applications as well. The SRK pairs our powerful chipKITâ„¢ MX3 microcontroller development board with a rugged steel platform and all the motors, wheels, and other parts needed to build a complete robot. Using your SRK's powerful chipKIT MX3 microcontroller, you'll be able to add all sorts of functionality to your robot. Add some of our extensive line of peripheral modules (Pmodsâ„¢) and you can design almost anything!

 

store.digilentinc.com/srk-basic-servo-robot-parts-kit-inc...

 

The chipKIT™ Max32 is a prototyping platform that adds the performance of the Microchip® PIC32 microcontroller. The Max32 features a USB serial port interface for connection to the IDE and can be powered via USB or an external power supply.

 

The Max32 board takes advantage of the powerful PIC32MX795F512 microcontroller, which features a 32-bit MIPS processor core running at 80 MHz, 512K of flash program memory and 128K of SRAM data memory. In addition, the processor provides a USB 2 OTG controller, 10/100 Ethernet MAC and dual CAN controllers that can be accessed via add-on I/O shields.

 

store.digilentinc.com/chipkit-max32-microcontroller-board...

Trying to expand the BASIC Stamp breadboard area

Tess Oldfield

MFA Digital + Media 2023

 

Composition No.2 in A major

 

Whirly tube, arduino microcontroller, nema 34 stepper motor, stepper motor driver, power supply, plywood, acrylic

 

Whirly Chorus is an instrumental series that combines a common children’s noise maker, Whirly Tube, with electronic interfaces. A whirly tube also known as a buggle resonator, Free-Ka or corrugaphone is an experimental instrument made of ribbed plastic tubing. Open at both of its ends, the faster the speed the higher the note it produces in a harmonic series. By combining this analog instrument with digital interfaces, Oldfield has been able to push the whirly tube beyond human limits. Oldfield is currently exploring music composition by designing multiple instruments using physical computing. The process of transforming found instruments into digital installations allows the work to engage with contemporary new media practices and experimental music composition.

 

Duration: 2 minutes and 10 seconds.

The piece is activated on the hour, and at 20 past the hour and 40 past the hour.

My modified LadyAda Boarduino with HopeRF RFM12B module (inspired by JeeNode) is working...!! yipee..!!

I still get good connection end-to-end in my apartment, around 30mtr, but have not test outside, I guess it should be better..

Middle school students worked with Shauna on making Arduino microcontrollers during BOOMbox drop in hours.

This is a test board showing a PIC18F4550 microcontroller driving an LCD module (a Dick Smith Cat Z 4172). The LCD is showing some (fake, for now) figures that might be displayed on a load cell system.

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