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MikroElektronika

MCU

TX-

MCU

RX-

U2

FT232RL

DCD#

CTS#

CBUS4

CBUS2

CBUS3

OSCO

OSCI

TEST

AGND

NC

CBUS0

CBUS1

GND

VCC

RESET#

GND

3V3OUT

USBDM

USBDP

DSR#

TXD

DTR#

RTS#

VCCIO

RXD

RI#
GND

NC

VCC-3.3

C5

100nF

VCC

C7

100nF

VCC-3.3

C6

100nF

VCC-3.3

C11

100nF

VCC-3.3

C12

100nF

VCC-3.3

C13

100nF

VCC-3.3

C14

100nF

VCC-3.3

C15

100nF

VCC-3.3

C16

100nF

VCC-3.3

C17

100nF

VCC-3.3

C10

100nF

VCC

RESET#

USBDP

USBDM

D+
GND

VCC
D-

R3
10K

R2
4K7

VCC

E1

10uF

PB6/TCK

PDI

PB4/TMS

RESET#

PB7/TDO

PB5/TDI

RESET#

PC2

J1

J3

J2

J4

PD2
PC3
PD3

VCC

VCC-3.3

VCC-3.3

VCC-3.3

JTAG

PDI

CN5

CN4

X2
32.768kHz

C3

PQ0/TOSC1

PQ1/TOSC2

22pF

C4

22pF

VCC-3.3

AVCC

ATXMEGA128A1

P

A

5

PD1

PD2

PD3

PD4

PD5

PD6

PD7

GND

VCC

PE0

PE1

PE2

PE3

PE4

PE5

PE6

PE7

GND

VCC

PF0

PF1

PF2

PF3

PF4

PF5

P

A

4

P

A

3

P

A

2

P

A

1

P

A

0

A

VCC

GND

XT

AL1/PR1

XT

AL2/PR0

RESET

PDI

PQ3

PQ2

OSC2/PQ1

OSC1/PQ0

GND

VCC

PK7

PK6

PK5

PK4

PK3

PK2

PK1

PD0

PF6

PF7

GND

VCC

PH0

PH1

PH2

PH3

PH4

PH5

PH6

PH7

GND

VCC

PJ0

PJ1

PJ2

PJ3

PJ4

PJ5

PJ6

PJ7

GND

VCC

PK0

VCC

GND

PC7

PC6

PC5

PC4

PC3

PC2

PC1

PC0

VCC

GND

PB7

PB6

PB5

PB4

PB3

PB2

PB1

PB0

AVCC

GND

PA7

PA6

CN2

PB5/TCK

RESET#

PB0

PA3

PC6

PK5

PD6

PJ5

PE6

PH5

PE4

PH7

PC0

PO3

PB2

PA1

PD0

PK3

PE0

PJ3

PF0

PH3

PC2

PQ1/TOSC2

PD2

PK1

PE2

PJ1

PF2

PH1

PB4/TMS

PR1/XTAL1

PA6

PA5

PC4

PK7

PD4

PJ7

PF4

PF7

PB7/TD0

PDI

PB1

PA2

PC7

PK4

PD7

PJ4

PE7

PH4

PC1

PQ2

PB3

PA0

PD1

PK2

PE1

PJ2

PF1

PH2

PC3

PQ0/TOSC1

PD3

PK0

PE3

PJ0

PF3

PH0

PB5/TDI

PR0/XTAL2

PA7

PA4

PC5

PK6

PD5

PJ6

PE5

PH6

PF5

PF6

VCC-3.3

VCC-3.3

VCC-3.3

VCC-3.3

CN3

CN1

X1
8MHz

U3E
74HC04

U3C
74HC04

PR1/XTAL1

1M

R6
1K

R5

R1

0

C2

22pF

C1

22pF

C20

100nF

VCC

U3A
74HC04

U3B
74HC04

U3D
74HC04

U3F
74HC04

1

2

3

4

9

8

13

12

C18

C19

100nF

100nF

VCC-3.3

AVCC

L1
10uH

Figure 2

: mikroXMEGA development system connection schematic

Downloaded from

Arrow.com.

Downloaded from

Arrow.com.

Downloaded from

Arrow.com.

Содержание mikroXMEGA MIKROE-580

Страница 1: ...onents and the use of machines of the last generation for mounting and testing thereof are the best guarantee of high reliability of our devices Due to simple design a large number of add on modules a...

Страница 2: ...be placed Likewise in order to use PD2 RX and PD3 TX pins jumpers J2 and J4 should be placed The CN4 PDI is used for programming debugging via PDI interface The CN5 JTAG connector is used for program...

Страница 3: ...Q2 OSC2 PQ1 OSC1 PQ0 GND VCC PK7 PK6 PK5 PK4 PK3 PK2 PK1 PD0 PF6 PF7 GND VCC PH0 PH1 PH2 PH3 PH4 PH5 PH6 PH7 GND VCC PJ0 PJ1 PJ2 PJ3 PJ4 PJ5 PJ6 PJ7 GND VCC PK0 VCC GND PC7 PC6 PC5 PC4 PC3 PC2 PC1 PC0...

Страница 4: ...ed in the microcontroller memory Connect the development system to a PC via the USB connector CN2 Power the board via two pads 3 3V and GND Figure 4 Programming the microcontroller Figure 5 Powering t...

Страница 5: ...he Change Settings button Click on the OK button Click on the Connect button within 5s after the development system is connected to PC Select the COM port on the PC that the development system is conn...

Страница 6: ...ton Click on the Begin uploading button Follow the process of uploading in the progress bar Choose a hex file you want to load into the microcontroller Click on the Open button Downloaded from Arrow c...

Страница 7: ...velopment system by turning it off for a few seconds and turning it on again After that the microcontroller supplied on the development system has been programmed and ready for use Downloaded from Arr...

Страница 8: ...onal information please place your ticket at www mikroe com en support If you have any questions comments or business proposals do not hesitate to contact us at office mikroe com Downloaded from Arrow...

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