CLIL - Praktická cvičení
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− | == | + | '''CLIL - Content and Language Integrated Learning''' |
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+ | == T3 - Popis vývoje uP aplikace s RD2kit == | ||
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+ | CLIL - Microcontroller - INTRO | ||
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+ | == T4 – Programování světelné křižovatky == | ||
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+ | CLIL - Programimg Trafic Lights | ||
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+ | == T5 – Programování mikroprocesoru == | ||
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+ | CLIL - Programming Microcontrollers | ||
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+ | == T6 - Realizace mikroprocesorové sestavy == | ||
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+ | CLIL - How to build microcontroller board | ||
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+ | == T7 – Programování automatické pračky == | ||
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+ | CLIL - How to programming washing machine | ||
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+ | http://www.explainthatstuff.com/washingmachine.html | ||
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+ | http://www.howitworksdaily.com/technology/how-does-a-washing-machine-work/ | ||
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+ | == T9 - Popis robota NXT == | ||
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+ | CLIL - NXT robot introduction | ||
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+ | == T10 – Vývoj aplikace s robotem NXT == | ||
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+ | CLIL - How robot NXT works | ||
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+ | == T12 - Vývoj mit aplikace s robotem Boe-Bot == | ||
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+ | CLIL - Experiments with Boe Bot | ||
Aktuální verze z 17. 2. 2013, 19:05
CLIL - Content and Language Integrated Learning
T3 - Popis vývoje uP aplikace s RD2kit
CLIL - Microcontroller - INTRO
T4 – Programování světelné křižovatky
CLIL - Programimg Trafic Lights
T5 – Programování mikroprocesoru
CLIL - Programming Microcontrollers
T6 - Realizace mikroprocesorové sestavy
CLIL - How to build microcontroller board
T7 – Programování automatické pračky
CLIL - How to programming washing machine
http://www.explainthatstuff.com/washingmachine.html
http://www.howitworksdaily.com/technology/how-does-a-washing-machine-work/
T9 - Popis robota NXT
CLIL - NXT robot introduction
T10 – Vývoj aplikace s robotem NXT
CLIL - How robot NXT works
T12 - Vývoj mit aplikace s robotem Boe-Bot
CLIL - Experiments with Boe Bot
Microcontroller - A Beginners Guide
IDE: WinAVR
IDE: AVR Studio
IDE: CodeVisionAVR
MCU WinAVR Install
Understanding Button Debouncing
#include <avr/io.h> int main(void) { DDRB |= 1 << PINB0; //Set Direction for output on PINB0 PORTB ^= 1 << PINB0; //Toggling only Pin 0 on port b DDRB |= 1 << PINB2; //Set Direction for Output on PINB2 DDRB &= ~(1 << PINB1); //Data Direction Register input PINB1 PORTB |= 1 << PINB1; //Set PINB1 to a high reading //DDRB = 0b00000101; //PORTB = 0b0000001; int Pressed = 0; //Initialize/Declare the Pressed variable while (1) { if (bit_is_clear(PINB, 1)) //Check is the button is pressed { //Make sure that the button was released first if (Pressed == 0) { PORTB ^= 1 << PINB0; //Toggle LED in pin 0 PORTB ^= 1 << PINB2; //Toggle LED on pin 2 Pressed = 1; } } else { //This code executes when the button is not pressed. Pressed = 0; } } }
exercise with NXT
maybe: