Atmel Raven Development Kit, USB Stick, AT86RF230 Radio Adapter with Atmega1287.
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Go to the source code of this file.
Defines |
#define | HIF_TYPE (HIF_AT90USB) |
#define | HWTIMER_REG (TCNT1) |
#define | HWTIMER_TICK ((1.0*HWTMR_PRESCALE)/F_CPU) |
#define | HWTIMER_TICK_NB (0xFFFFUL) |
#define | HWTMR_PRESCALE (1) |
#define | LED_ACTIVITY (0) |
#define | LED_CLR(x) |
#define | LED_GET_VALUE() |
#define | LED_INIT() |
#define | LED_NUMBER (3) |
#define | LED_SET(x) |
#define | LED_SET_VALUE(x) |
#define | LED_TOGGLE(ln) |
#define | LED_USB_CONFIGURED (3) |
#define | LED_VAL(msk, val) do{}while(0) |
#define | NO_KEYS |
#define | TIMER_INIT() |
#define | TIMER_IRQ_vect TIMER1_OVF_vect |
#define | TIMER_POOL_SIZE (4) |
#define | TIMER_TICK (HWTIMER_TICK_NB * HWTIMER_TICK) |
#define | USB_BCD_RELEASE URACOLI_USB_BCD_RELEASE |
#define | USB_PID URACOLI_USB_PID |
#define | USB_PRODUCT_NAME URACOLI_USB_PRODUCT_NAME |
#define | USB_VENDOR_NAME URACOLI_USB_VENDOR_NAME |
#define | USB_VID URACOLI_USB_VID |
Detailed Description
Atmel Raven Development Kit, USB Stick, AT86RF230 Radio Adapter with Atmega1287.
This board wiring fits the Atmel radio development kit hardware.
The wiring of the radio and the AT90USB1287 is shown below:
AVR RF230
--- -----
PB4 --> SLPTR
PD6/T1 <-- MCLK
PD4/ICP1 <-- IRQ
PB5 --> RSTN
PB0 --> SEL
PB2 --> MOSI
PB3 <-- MISO
PB1 --> SCLK
PB7 --> TST
Schematic AVR Index
--------- --- -----
LED2: PD5 (#0) red
LED3: PE7 (#1) green
LED4: PE6 (#2) yellow
LED1: PD7 (#3) blue (VBUS, USB supply)
Fuses/Locks?????:
LF: 0xe2 - 8MHz internal RC Osc.
HF: 0x11 - without boot loader
HF: 0x10 - with boot loader
EF: 0xff
LOCK: 0xef - protection of boot section
Original Fuses/Locks
LF: 0xde
HF: 0x91
EF: 0xfb
LOCK: 0xff
Bootloader:
Start at byte=0x1e000, address=0xf000, size = 4096 instructions/ 8192 bytes
- Build Options
Define Documentation
Value:switch (x) { \
case 3: PORTD &= ~_BV(7); break; \
case 0: PORTD |= _BV(5); break; \
case 1: PORTE |= _BV(7); break; \
case 2: PORTE |= _BV(6); break; \
}
#define LED_GET_VALUE |
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Value:( \
((PORTD & _BV(5))? 0: 1) | \
((PORTE & _BV(7))? 0: 2) | \
((PORTE & _BV(6))? 0: 4) \
)
Value:do { \
DDRD |= _BV(7) | _BV(5); DDRE |= _BV(7) | _BV(6); \
PORTD &= ~_BV(7); PORTD |= _BV(5); PORTE |= _BV(7) | _BV(6); \
} while (0)
Value:switch (x) { \
case 3: PORTD |= _BV(7); break; \
case 0: PORTD &= ~_BV(5); break; \
case 1: PORTE &= ~_BV(7); break; \
case 2: PORTE &= ~_BV(6); break; \
}
#define LED_SET_VALUE |
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x |
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Value:do { \
if (x & 1) PORTD &= ~_BV(5); else PORTD |= _BV(5); \
if (x & 2) PORTE &= ~_BV(7); else PORTE |= _BV(7); \
if (x & 4) PORTE &= ~_BV(6); else PORTE |= _BV(6); \
} while (0)
#define LED_TOGGLE |
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ln |
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Value:switch (ln) { \
case 3: PORTD ^= _BV(7); break; \
case 0: PORTD ^= _BV(5); break; \
case 1: PORTE ^= _BV(7); break; \
case 2: PORTE ^= _BV(6); break; \
}
#define LED_VAL |
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msk, |
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val | |
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| | do{}while(0) |
Value:do{ \
TCCR1B |= (_BV(CS10)); \
TIMSK1 |= _BV(TOIE1); \
}while(0)