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XIV LIST OF FIGURES
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3.35 3.36 3.37 3.38 3.39 3.40 3.41 3.42 4.1 4.2 4.3 4.4 4.5 4.6 4.7 5.1 5.2 5.3 5.4 5.5 5.6 5.7 5.8 5.9 5.10 5.11 5.12 5.13 5.14 5.15 5.16 6.1 6.2 6.3 6.4 6.5 6.6 6.7 6.8 6.9 6.10 6.11
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A clock prescaler for TimerO as well as Timer1. 49 Timer/CounterO block diagram. 49 Timer/Counter1 block diagram. 50 UART transmitter block diagram. 51 UART receiver block diagram. 52 Nested interrupt execution. 54 Watchdog timer block diagram. 56 Current consumption by a Tiny22 processor in internal oscillator mode during the active and power down mode. 57 Direct single register access. 60 Direct double register access. 61 Direct I/O memory access. 62 Direct data memory access. 63 Indirect data memory access. 63 Indirect program memory instructions. 64 Relative program memory instructions. 64 A minimum configuration AVR circuit. 82 A rectifier and filter unit. 83 A super simple power supply circuit for the AVR processor powered by the RTS signal pin of the RS-232 port and using a zener diode. 86 Crystal oscillator. 88 Ceramic resonator. 88 Ceramic resonator connected to the oscillator pins of the AVR processor. 89 A quartz crystal connections to the oscillator pins of the AVR processor. 89 Oscillator startup using a parallel resonant crystal after the supply input is applied to the processor. 90 Circuit schematic for the 32KHz clock crystal test circuit. 91 32-kHz oscillator start-up time. 91 Current consumption by an AT90S1200 processor when operated with a 32-kHz clock crystal. 92 Circuit to measure the oscillator frequency variation as a function of supply voltage. 93 Variation of RC system clock frequency as a function of supply voltage. 93 A simple reset circuit. 95 RST signal and the start of the program execution on an AVR processor. 95 Using the DS1233 with an AVR processor. 96 A simple introductory circuit to light a LED. 98 Controlling LEDs with switches. 99 Signal bounce on a mechanical switch when it is released. 101 Connecting AT90S8515 to a PC serial port. Other components that go with MAX232 are not illustrated. 107 Timing the RS-232 signal. The first bit is the Start bit and the last bit is the Stop bit. 109 8-bit digital input port using a parallel-in serial-out shift register. 110 8-bit digital output port using a serial-in parallel-out shift register. 111 8-bit bidirectional digital I/O port expander. 112 AVR interface to PCF8574. 113 An analog signal being sampled and encoded by an ADC. The number output of the ADC is on the Y axis and the time is on the X axis. 114 Analog comparator block diagram. 114
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LIST OF FIGURES XV
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6.12 Block diagram for a crude analog-to-digital converter using the on-chip comparator on an AVR processor. 115 6.13 A linear and an exponential plot for a small input range. This plot gives an idea of the amount of nonlinearity between the count accumulated using the simple RC charging scheme and the ideal count. 115 6.14 Block diagram for an improved analog-to-digital converter using the on-chip comparator on an AVR processor. 116 6.15 Block diagram for a temperature sensor interface to the comparator-based ADC. 117 6.16 Block diagram of MAX186 ADC. 118 6.17 MAX186 control byte format. 120 6.18 Timing diagram of a typical MAX186 conversion process as recorded on a logic analyzer. 120 6.19 Circuit schematic for an AT90S2313 processor interface to the MAX186 ADC. 122 6.20 MAX111 interface to the AVR processor. 123 6.21 Timing diagram of the conversion and readout process of the MAX111. 125 6.22 A continuously varying PWM signal. The average value of the signal changes by 25% in each period. 126 6.23 PWM DAC using an AT90S2313 and an output RC filter. 126 6.24 R-2R ladder DAC implementation with an AVR controller. 127 6.25 Block diagram of MAX521 DAC. 128 6.26 Communication format for MAX521 serial DAC. All transmission begins with a START condition and ends with a STOP condition. 130 6.27 Structure of the address and command bytes. 131 6.28 Connecting multiple MAX521s on a single bus. 133 6.29 Connecting AT90S2313 AVR processor to MAX521 DAC. 134 6.30 Seven-segment LED Display Interface to the AVR processor. 134 6.31 A Multiplexed Seven Segment LED Display Interface to the AVR processor. 135 6.32 An alphanumeric LED display. 135 6.33 Block diagram for a 5-x-7 dot-matrix display to AVR interface. 136 6.34 Circuit schematic for a 5-x-7 dot-matrix display interface. 137 6.35 A 5-x-7 dot matrix display test board photograph. 138 6.36 LCD character codes. 139 6.37 Circuit schematic for an AT90S2313 processor interface to a 2-line, 16-character LCD. 140 6.38 ULN2003A darlington array. 141 6.39 ULN2003A drivers used to drive inductive loads. 142 6.40 A stepper motor sequencer and driver interface to AVR. 142 6.41 Circuit schematic for a stepper motor sequencer and driver for the AVR processors. 143 6.42 Ramping the stepper motor speed. 144 6.43 EEPROM device address. 144 6.44 EEPROM write byte. 145 6.45 EEPROM current address read. 146 6.46 EEPROM random read. 147 6.47 Circuit schematic for an AT90S2313 processor interface to a serial EEPROM. 148 6.48 RTC interface to an AT90S2313. 148 6.49 Circuit schematic for an AT90S2313 processor interface to an RTC. 149 6.50 An arbitrary waveform example. 151
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