add use of annax board shift register reset input
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@ -23,6 +23,7 @@ D3 - _clear
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//Pins connected to stuff on annax driver board
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//Pins connected to stuff on annax driver board
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#define PIN_DATA_DRVBRD 33
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#define PIN_DATA_DRVBRD 33
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#define PIN_CLK_DRVBRD 32
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#define PIN_CLK_DRVBRD 32
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#define PIN_RESET_DRVBRD 15
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//#define PIN_CLEAR 25 //active low
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//#define PIN_CLEAR 25 //active low
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@ -12,6 +12,7 @@ void Flipdot::init()
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pinMode(PIN_DATA, OUTPUT);
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pinMode(PIN_DATA, OUTPUT);
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pinMode(PIN_CLK, OUTPUT);
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pinMode(PIN_CLK, OUTPUT);
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pinMode(PIN_OE, OUTPUT);
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pinMode(PIN_OE, OUTPUT);
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pinMode(PIN_LATCH, OUTPUT);
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pinMode(PIN_LATCH, OUTPUT);
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pinMode(PIN_CLEAR, OUTPUT);
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pinMode(PIN_CLEAR, OUTPUT);
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pinMode(PIN_DRIVE, OUTPUT);
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pinMode(PIN_DRIVE, OUTPUT);
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@ -19,12 +20,18 @@ void Flipdot::init()
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pinMode(PIN_DATA_DRVBRD, OUTPUT);
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pinMode(PIN_DATA_DRVBRD, OUTPUT);
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pinMode(PIN_CLK_DRVBRD, OUTPUT);
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pinMode(PIN_CLK_DRVBRD, OUTPUT);
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pinMode(PIN_RESET_DRVBRD, OUTPUT);
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digitalWrite(PIN_OE, HIGH); //Active Low
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digitalWrite(PIN_OE, HIGH); //Active Low
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digitalWrite(PIN_LATCH, LOW);
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digitalWrite(PIN_LATCH, LOW);
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digitalWrite(PIN_DRIVE, LOW);
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digitalWrite(PIN_DRIVE, LOW);
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digitalWrite(PIN_RESET_DRVBRD,HIGH); //high = reset. set low to enable data flow to driverboard shift registers
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}
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}
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@ -83,6 +90,8 @@ bool Flipdot::clearSelectedColumn() {
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delayMicroseconds(MICROS_DRIVEDOTCLEAR);
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delayMicroseconds(MICROS_DRIVEDOTCLEAR);
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digitalWrite(PIN_CLEAR, LOW);
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digitalWrite(PIN_CLEAR, LOW);
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digitalWrite(PIN_DRIVE, LOW);
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digitalWrite(PIN_DRIVE, LOW);
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digitalWrite(PIN_RESET_DRVBRD,HIGH); //reset driverboard shift registers
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return 1;
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return 1;
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}
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}
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@ -108,6 +117,8 @@ bool Flipdot::setSelectedDot() {
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delayMicroseconds(MICROS_DRIVEDOTSET); //Drive Dot
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delayMicroseconds(MICROS_DRIVEDOTSET); //Drive Dot
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digitalWrite(PIN_OE, HIGH); //Active Low
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digitalWrite(PIN_OE, HIGH); //Active Low
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digitalWrite(PIN_DRIVE, LOW);
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digitalWrite(PIN_DRIVE, LOW);
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digitalWrite(PIN_RESET_DRVBRD,HIGH); //reset driverboard shift registers
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return 1;
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return 1;
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}
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}
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@ -125,8 +136,8 @@ bool Flipdot::HBridgeOK() {
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return 1;
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return 1;
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}
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}
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void Flipdot::shiftData() { //send out all data to shift registers
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void Flipdot::shiftData() { //send out all data to shift registers
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//select Rows via shift registers on own controller board
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//select Rows via shift registers on own controller board
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shiftOutSlow(PIN_DATA, PIN_CLK, LSBFIRST, row&0xff); //lower byte
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shiftOutSlow(PIN_DATA, PIN_CLK, LSBFIRST, row&0xff); //lower byte
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@ -135,6 +146,8 @@ void Flipdot::shiftData() { //send out all data to shift registers
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delayMicroseconds(MICROS_SHIFT_LATCH);
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delayMicroseconds(MICROS_SHIFT_LATCH);
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digitalWrite(PIN_LATCH, LOW);
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digitalWrite(PIN_LATCH, LOW);
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digitalWrite(PIN_RESET_DRVBRD,LOW); //get driverboard shift registers out of reset
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//Select Columns via Shift registers
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//Select Columns via Shift registers
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for (uint8_t i=0;i<COLUMNBYTES;i++) { //adsf: previously i<7
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for (uint8_t i=0;i<COLUMNBYTES;i++) { //adsf: previously i<7
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shiftOutSlow(PIN_DATA_DRVBRD, PIN_CLK_DRVBRD, LSBFIRST, col[COLUMNBYTES-1-i]); //asdf previously col·[6-i]
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shiftOutSlow(PIN_DATA_DRVBRD, PIN_CLK_DRVBRD, LSBFIRST, col[COLUMNBYTES-1-i]); //asdf previously col·[6-i]
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@ -160,6 +160,7 @@ void loop_drawClearTest() {
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flipdot.setSelectedDot();
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flipdot.setSelectedDot();
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unsigned long shiftduration=micros()-starttime;
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unsigned long shiftduration=micros()-starttime;
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Serial.println("");
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Serial.println("");
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Serial.print("Duration="); Serial.println(shiftduration);
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Serial.print("Duration="); Serial.println(shiftduration);
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