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OLIMEXINO-STM32 development board Users Manual All boards produced by Olimex are ROHS compliant Revision B, October 2011 Designed by OLIMEX Ltd, 2011 Page 1

OLIMEXINO-STM32 development board Users Manual development board Users Manual All boards produced by Olimex are ROHS compliant Revision B, October 2011 Designed by OLIMEX Ltd, 2011

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Page 1: OLIMEXINO-STM32 development board Users Manual development board Users Manual All boards produced by Olimex are ROHS compliant Revision B, October 2011 Designed by OLIMEX Ltd, 2011

OLIMEXINO-STM32 development board Users Manual

All boards produced by Olimex are ROHS compliant

Revision B, October 2011Designed by OLIMEX Ltd, 2011

Page 1

Page 2: OLIMEXINO-STM32 development board Users Manual development board Users Manual All boards produced by Olimex are ROHS compliant Revision B, October 2011 Designed by OLIMEX Ltd, 2011

INTRODUCTION:

What is Arduino?

Arduino is an open-source electronics prototyping platform, designed to make the process of using electronics in multidisciplinary projects more accessible. The hard-ware consists of a simple open hardware design for the Arduino board with an At-mel AVR processor and on-board I/O support. The software consists of a standard programming language and the boot loader that runs on the board.

Arduino hardware is programmed using a Wiring-based language (syntax + librar-ies), similar to C++ with some simplifications and modifications, and a Processing-based IDE.

The project began in Ivrea, Italy in 2005 to make a device for controlling student-built interaction design projects less expensively than other prototyping systems available at the time. As of February 2010 more than 120,000 Arduino boards had been shipped. Founders Massimo Banzi and David Cuartielles named the project after a local bar named Arduino. The name is an Italian masculine first name, mean-ing "strong friend". The English pronunciation is "Hardwin", a namesake of Ardu-ino of Ivrea

More information could be found at the creators web page http://arduino.cc/ and in the Arduino Wiki http://en.wikipedia.org/wiki/Arduino

To make the story short - Arduino is easy for the beginners with lack of Electronics knowledge, but also do not restrict the professionals as they can program it in C++ or mix of Arduino/C++ language.

There are thousands of projects which makes the startup easy as there is barely no field where Arduino enthusiasts to have not been already.

Arduino has inspired two other major derivates - MAPLE and PINGUINO. Based on 8-bit AVR technology the computational power of Arduino boards are modest, this is why team from MIT developed MAPLE project which is based on ARM7 STM32F103RBT6 micro-controller, the board have same friendly IDE as Arduino and offers the same capabilities as hardware and software but runs the Arduino code much faster. Maple project can be found at http://leaflabs.com

Page 2

Page 3: OLIMEXINO-STM32 development board Users Manual development board Users Manual All boards produced by Olimex are ROHS compliant Revision B, October 2011 Designed by OLIMEX Ltd, 2011

BOARD FEATURES:

We enter in Arduino/MAPLE field 5 years after the design was introduced, and this allowed us to see and skip all the errors the Arduino inventors did :-)

We had the possibility to read current customer feedback and to implement what they wanted to see in the original Arduino.

1. Original Arduino/MAPLE uses linear power supply, this limits the input voltage range. We designed the power supply to accept power from 9 to 30V DC thus making possible to take virtually any power supply adapter on the market, also enable application which are in industrial power supply 24VDC.

2. We carefully selected all components to work reliable in INDUSTIRAL temperature range -25+85C so the board can be used in INDUSTIRAL applications while the original design is to Commercial 0-70C operating temperature.

3. The original Arduino/MAPLE design is not good for portable applications as consumes too much power with the linear vltage regulators, we put ULTRA LOW POWER voltage regulators and the consumption is only few microamps, which enables handheld and battery powered applications.

4. We add Li-Ion rechargable battery power supply option with BUILD-IN on board charger, so when you attach battery it is automatically charged and kept in this state until the other power source (USB or external adapter) is removed and it AUTOMATICALLY will power the board - no jumpers, no switches!

5. Our board have UEXT connector which allow many existing modules like RF, ZIGBEE, GSM, GPS to be connected.

6. Our board have SD-MMC card

7. Our board have CAN driver on board

8. Our desing allow RTC - Real Time Clock.

9. We made our design noise immune.

10. We use separate voltage regulator for the Analog part, which allow the ADC to be read correctly without the digital noise pickup.

11. Optionally if someone need higher precision and temperature stability in Analog reading we have provision on the board for Aref preciese source.

12. The LEDs and the BUTTONs are on the edge of the board so there is easy access even if the boards have shields on them.

13. All components are LOWER than the connectors, so the shields do not in-terference with them.

14. mini USB connector is used which is common and used in most cell phones, so you do not have to buy other cables

15. Original Arduino design had flaw and the connectors were not spaced at 0.1" this make perfo board use impossible, to keep the compatibility we have same spacing but we add next to this connector on 0.1" which customer can use with per-forated boards.

Page 3

Page 4: OLIMEXINO-STM32 development board Users Manual development board Users Manual All boards produced by Olimex are ROHS compliant Revision B, October 2011 Designed by OLIMEX Ltd, 2011

16. All signals on the connectors are printed on top and on bottom of the board, so when you check with probe you know exactly which port you are measuring.

17. 4 mount holes make board attachment easier

ELECTROSTATIC WARNING:

The OLIMEXINO-STM32 board is shipped in protective anti-static packaging. The board must not be subject to high electrostatic potentials. General practice for working with static sensitive devices should be applied when working with this board.

BOARD USE REQUIREMENTS:

Cables: You'll need mini USB cable for connecting the board to PC. For programming - the cable you will need depends on the programmer/debugger you use. If you use ARM-JTAG-EW, ARM-USB-TINY or ARM-USB-TINY-H, you will need USB A-B cable, if you use ARM-USB-OCD or ARM-USB-OCD-H, you will need USB A-B cable and RS232 cable.

Hardware: Programmer/Debugger ARM-USB-OCD, ARM-USB-OCD-H, ARM-USB-TINY, ARM-USB-TINY-H, ARM-JTAG-EW or other compatible programming/debugging tool if you work with EW-ARM. You will also need ARM-JTAG-20-10 adapter for programming the board.

Page 4

Page 5: OLIMEXINO-STM32 development board Users Manual development board Users Manual All boards produced by Olimex are ROHS compliant Revision B, October 2011 Designed by OLIMEX Ltd, 2011

SCHEMATIC:

Page 5

SW-SIDE_WT CM-T R(3X4)

10uF

/6.3

V10

0nF

100n

F10

0nF

100n

F4.

7uF/

6.3V

10nF

100n

FN

A(4

7pF)

NA

(47p

F)

10pF

10pF

27pF

27pF

47uF

/6.3

V/T

AN

T B

CE 100uF/35V/6.3x11m m/RM2.5

100nF

820pF

CE 470uF/10V/6.3x11mm/RM2.5

10uF/6.3V

2.2u

F

2.2u

F

100n

F

2.2u

F

100nF

10uF/6.3V

10uF/6.3V

10nF

2.2u

F2.

2uF

100n

F

TB3-

3.5M

M

Open

NA

NA

NA

NA

1N58

19S

/SS

14

1N5819S/SS14

1N58

19S

/SS

14

1N58

19S

/SS

14

1N58

19S

/SS

14

1N41

48/m

ini-m

elf

D10

:Ope

n/D

4:C

lose

Ope

n

PN

2x8

IRLM

L640

2

CL1

0uH

SW

68

NA

CL4

70nH

/080

5/1.

76R

/250

mA

GREEN(GYX-SD-TC0805SGC)

Clo

se

YELLOW(GYX-SD-T C0805SYC)

DW

02R

VIN

+5V

+5V

VIN

+5V

+5V

YD

J-11

36

RED(GYX-SD-TC0805SGC)

Q8.

000M

Hz/

20pF

/HC

-49S

M(S

MD

)

3276

8Hz/

6pF

Ope

n

15k

22k

22R

22R

1.5k

330R

330R

4.7k

4.7k

10k

100k

100k

100k

10k

1M

0.47

R

0.47

R

3k/1% 1k/1%

330R

15k

0R(N

A)

120R

10k

0R(N

A)

NA(4.7k)

NA(4.7k)10

k

330R

1k 10k

1M1k

SW-SIDE_WTCM-T R(3X4)

MIC

RO

GP

H12

7SM

T-02

x05(

PIN

7-C

UT)

DT

A11

4YK

A

STM

32F1

03R

BT6

(LQ

FP64

)

MC

3306

3AD

R(S

O8)

MC

P73

812T

-420

I/O

T

MC

P25

51-I

/SN

NA

NA

BH

10R

MIC

RO

_B

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

3.3V

_AV

CC

3.3V

_AV

CC

3.3V

_AV

CC

3.3V

_AV

CC

MC

P170

0T-3

302E

/MB

MC

P170

0T-3

302E

/MB

NA

D0(

RX

D2)

,D1(

TXD

2),D

2,D

3(LE

D2)

,D[4

..6],D

7(TX

D1)

,D8(

RX

D1)

,D9,

D10

(#S

S1)

,D11

(MO

SI1

),D

12(M

ISO

1),D

13(S

CK

1/LE

D1)

,D14

(CA

NR

X)

TRS

T,TD

I,TM

S/S

WD

IO,T

CK

/SW

CLK

,TD

O/S

WO

,RE

SE

T

BO

OT0

BO

OT0

BO

OT0

D0(

RX

D2)

D0(

RX

D2)

D1(

TXD

2)

D1(

TXD

2)D

2D

2

D3(

LED

2)D

3(LE

D2)

D3(

LED

2)

D4

D4

D4

D5

D5

D6

D6

D7(

TXD

1)

D7(

TXD

1)

D7(

TXD

1)

D8(

RX

D1)

D8(

RX

D1)

D8(

RX

D1)

D9

D9

D10

(#S

S1)

D10(#SS1)

D10

(#S

S1)

D11

(MO

SI1

)

D11

(MO

SI1

)

D11

(MO

SI1

)

D12

(MIS

O1)

D12

(MIS

O1)

D12

(MIS

O1)

D13

(SC

K1/

LED

1)

D13

(SC

K1/

LED

1)

D13

(SC

K1/

LED

1)

D13

(SC

K1/

LED

1)

D14

(CA

NR

X)

D14

(CA

NR

X)

D14

(CA

NR

X)

D15

(A0)

D15

(A0)

D16

(A1)

D16

(A1)

D17

(A2)

D17

(A2)

D18

(A3)

D18

(A3)

D19

(A4)

D19

(A4)

D20

(A5)

D20

(A5)

D21

(CA

N_C

TRL)

D21

(CA

N_C

TRL)

D22

D23

D23

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T

D23

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T

D24

(CA

NTX

)

D24

(CA

NTX

)

D24

(CA

NTX

)

D25

(MM

C_C

S)

D25

(MM

C_C

S)

D25

(MM

C_C

S)

D26

D26

D27

D27

D28

D28

D29

(SC

L2)

D29

(SC

L2)

D29

(SC

L2)

D30

(SD

A2)

D30

(SD

A2)

D30

(SD

A2)

D31

(#S

S2)

D31

(#S

S2)

D32

(SC

K2)

D32

(SC

K2)

D32

(SC

K2)

D33

(MIS

O2)

D33

(MIS

O2)

D33

(MIS

O2)

D34

(MO

SI2

)

D34

(MO

SI2

)D

34(M

OS

I2)

D35

D35

D36

D36

D37

D37

DIS

C

DIS

C

RE

SE

T RE

SE

T

RE

SE

T

RE

SE

T

RE

SE

T

TCK

/SW

CLK

TCK

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CLK

TDI

TDI

TDO

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O

TDO

/SW

O

TMS

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DIO

TMS

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DIO

TRS

T

TRS

T

UE

XT_

#CS

UE

XT_

#CS

US

BD

M

US

BD

M

US

BD

PU

SB

DP

US

B_P

US

B_P

BU

T

C1

C2

C3

C4

C5

C6

C7

C8

C9

C10

C11

C12

C13

C14

C15

C16

C17

C18

C19

C20

C21

C22

C23

C24

C25

C26

C27

C28

C29

C30

C31

123C

AN

12CAN_T

1 2 3 4 5 6

CO

N1

1 2 3 4 5 6

CO

N2

1 2 3 4 5 6 7 8CO

N3

1 2 3 4 5 6 7 8CO

N4

D1

D2

D3

D4

D5

D6

1

2

3D10

/D4

12

D23

_E

12

34

56

78

910

1112

1314

1516

EX

T

FET1

L1

L2

L3

LED

1

12

LED

1_E

LED

2

1 2

LIP

O_B

AT

3V3

3V3A

A0

A1

A2

A3

A4

A5

D0

D1

D2

D3

D4

D5

D6

D7

D8

D9

D10

D11

D12

D13

D14

GN

D

GN

D

GN

DA

RS

T

VIN

PW

R_J

PWR_LED

Q1

Q2

12R

-T

R1

R2

R3

R4

R5

R6

R7

R8

R9

R10

R11

R12

R13

R14

R15

R16

R17

R18 R19

R20

R21

R22

R23

R24

R25

R26

R27

R28

R29

R30

R31

R32

R33

RS

T

CD

/DA

T3/C

S2

CLK

/SC

LK5

CM

D/D

I3

DA

T0/D

O7

DA

T1/R

ES

8D

AT2

/RE

S1

VD

D4

VS

S6

SD

/MM

C

12

34

56

78

910

SW

D

T1

BO

OT0

60

NR

ST

7

PA

0-W

KU

P/U

SA

RT2

_CTS

/AD

C0/

TIM

2_C

H1_

ETR

14

PA

1/U

SA

RT2

_RTS

/AD

C1/

TIM

2_C

H2

15

PA

2/U

SA

RT2

_TX

/AD

C2/

TIM

2_C

H3

16

PA

3/U

SA

RT2

_RX

/AD

C3/

TIM

2_C

H4

17

PA

4/S

PI1

_NS

S/U

SA

RT2

_CK

/AD

C4

20

PA

5/S

PI1

_SC

K/A

DC

521

PA

6/S

PI1

_MIS

O/A

DC

6/TI

M3_

CH

1/TI

M1_

BK

IN22

PA

7/S

PI1

_MO

SI/A

DC

7/TI

M3_

CH

2/TI

M1_

CH

1N23

PA

8/U

SA

RT1

_CK

/TIM

1_C

H1/

MC

O41

PA

9/U

SA

RT1

_TX

/TIM

1_C

H2

42

PA

10/U

SA

RT1

_RX

/TIM

1_C

H3

43

PA

11/U

SA

RT1

_CTS

/CA

NR

X/U

SB

DM

/TIM

1_C

H4

44

PA

12/U

SA

RT1

_RTS

/CA

NTX

/US

BD

P/T

IM1_

ETR

45

PA

13/J

TMS

/SW

DIO

46

PA

14/J

TCK

/SW

CLK

49

PA

15/J

TDI/T

IM2_

CH

1_E

TR/S

PI1

_NS

S50

PB

0/A

DC

8/TI

M3_

CH

3/TI

M1_

CH

2N26

PB

1/A

DC

9/TI

M3_

CH

4/TI

M1_

CH

3N27

PB

2/B

OO

T128

PB

3/JT

DO

/TIM

2_C

H2/

TRA

CE

SW

O/S

PI1

_SC

K55

PB

4/JT

RS

T/TI

M3_

CH

1/S

PI1

_MIS

O56

PB

5/I2

C1_

SM

BA

I/TIM

3_C

H2/

SP

I1_M

OS

I57

PB

6/I2

C1_

SC

L/TI

M4_

CH

1/U

SA

RT1

_TX

58

PB

7/I2

C1_

SD

A/T

IM4_

CH

2/U

SA

RT1

_RX

59

PB

8/TI

M4_

CH

3/I2

C1_

SC

L/C

AN

RX

61

PB

9/TI

M4_

CH

4/I2

C1_

SD

A/C

AN

TX62

PB

10/I2

C2_

SC

L/U

SA

RT3

_TX

/TIM

2_C

H3

29

PB

11/I2

C2_

SD

A/U

SA

RT3

_RX

/TIM

2_C

H4

30

PB

12/S

PI2

_NS

S/I2

C2_

SM

BA

L/U

SA

RT3

_CK

/TIM

1_B

KIN

33

PB

13/S

PI2

_SC

K/U

SA

RT3

_CTS

/TIM

1_C

H1N

34

PB

14/S

PI2

_MIS

O/U

SA

RT3

_RTS

/TIM

1_C

H2N

35

PB

15/S

PI2

_MO

SI/T

IM1_

CH

3N36

PC

0/A

DC

108

PC

1/A

DC

119

PC

2/A

DC

1210

PC

3/A

DC

1311

PC

4/A

DC

1424

PC

5/A

DC

1525

PC

6/TI

M3_

CH

137

PC

7/TI

M3_

CH

238

PC

8/TI

M3_

CH

339

PC

9/TI

M3_

CH

440

PC

10/U

SA

RT3

_TX

51

PC

11/U

SA

RT3

_RX

52

PC

12/U

SA

RT3

_CK

53

PC

13/A

NTI

_TA

MP

2

PC

14/O

SC

32_I

N3

PC

15/O

SC

32_O

UT

4

PD

0/O

SC

_IN

5

PD

1/O

SC

_OU

T6

PD

2/TI

M3_

ETR

54

VB

AT

1

VD

D32

VD

D48

VD

D64

VD

D19

VD

DA

13

VS

S31

VS

S47

VS

S63

VS

S18

VS

SA

12

U1

DC8

FB5

IS7 SC

1

SE

2TC

3

VCC6VSS

4

U2

CE

1

PR

OG

5

VB

AT

3V

DD

4

VS

S2

U3

CA

NH

7

CA

NL

6R

S8

RX

D4

TXD

1

VD

D3

VR

EF

5

VS

S2

U4

3

12

GN

D

VC

CR

ES

ET

U5

1234 5 6

U6

12

34

56

78

910

UE

XT

D+D-

GN

D

GND1GND2

GND3GND4

ID

VB

USUS

B

GN

D1

VIN

2

VO

UT

3

VR

1 GN

D1

VIN

2

VO

UT

3

VR

2

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http

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POWER ANALOG DIGITAL DIGITALSTM32-MAPLE: PLATFORM & CONNECTORS

GND

0R

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10

k4 7 k

BAT

TER

YC

HAR

GE

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USB

+ -

LED

S

BUTT

ON

S

STM

32-M

AP

LE_P

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POW

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ICE

Bat

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Seria

l wire

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Exte

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n

Page 6: OLIMEXINO-STM32 development board Users Manual development board Users Manual All boards produced by Olimex are ROHS compliant Revision B, October 2011 Designed by OLIMEX Ltd, 2011

BOARD LAYOUT:

Page 6

Page 7: OLIMEXINO-STM32 development board Users Manual development board Users Manual All boards produced by Olimex are ROHS compliant Revision B, October 2011 Designed by OLIMEX Ltd, 2011

POWER SUPPLY CIRCUIT:

OLIMEXINO-STM32 can take power supply from:

– external power supply (9-30) VDC.

– + 5V from USB

– 3.7 V Li-ion battery

The programmed board power consumption is about 50 mA with all peripherals enabled

RESET CIRCUIT:

OLIMEXINO-STM32 reset circuit includes D6 (1N4148), R28 (10kΩ), R29 (330Ω), C31 (100nF), STM32F103RBT6 pin 7 (NRST) and RESET button.

CLOCK CIRCUIT:

Quartz crystal Q1 8 MHz is connected to STM32F103RBT6 pin 5 (PD0/OSC_IN) and pin 6 (PD1/OSC_OUT).

Quartz crystal Q2 32.768 kHz is connected to STM32F103RBT6 pin 3 (PC14/OSC32_IN) and pin 4 (PC15/OSC32_OUT).

JUMPER DESCRIPTION:

LED1_E

This jumper, when is closed, enables LED1.

Default state is closed.

D23_EThis jumper, when is closed, connects STM32F103RBT6 pin (PC15/OSC32_OUT) – signal D23 to EXT pin 1, and when is opened, D23 is not connected to EXT.Default state is opened.

R-TThis jumper, when is closed, connects TRST and RESET, and when is opened, TRST and RESET are separated. Default state is opened.

CAN_TThis jumper, when is closed, CAN termination is enabled, and when is opened, CAN termination is disabled.Default state is opened.

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D10/D4

This jumper, when is in position D10, UEXT pin 10 (UEXT_#CS) is connected to STM32F103RBT6 pin 20 (PA4/SPI1_NSS/USART2_CK/ADC4) – signal D10, and

when is in position D4, UEXT pin 10 (UEXT_#CS) is connected to STM32F103RBT6 pin 57 (PB5/I2C1_SMBAI/TIM3_CH2/SPI1_MOSI) – signal D4.

Default state is in position D4.

INPUT/OUTPUT:

Status Led with name LED1 (green) connected via jumper LED1_E to STM32F103RBT6 pin 21 (PA5/SPI1_SCK/ADC5) – signal D13(SCK/LED1).

Status Led with name LED2 (yellow) connected to STM32F103RBT6 pin 15 (PA1/USART2_RTS/ADC1/TIM2_CH2) – signal D3(LED2).

Power-on LED (red) with name PWR_LED – this LED shows that the board is power supplied.

User button with name BUT connected to STM32F103RBT6 pin 40 (PC9/TIM3_CH4) via R33 (1kΩ) and pin 60 (BOOT0) – signal BOOT0.

User button with name RST connected to STM32F103RBT6 pin 7 (NRST).

EXTERNAL CONNECTORS DESCRIPTION:SWD:

Pin # Signal Name

1 VCC

2 TMS/SWDIO

3 GND

4 TCK/SWCLK

5 GND

6 TDO/SWO

7 Cut off

8 TDI

9 GND

10 RESET

Note that pin 7 of SWD connector is cut off.

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UEXT:

Pin # Signal Name

1 VCC

2 GND

3 D7(TXD1)

4 D8(RXD1)

5 D29(SCL2)

6 D30(SDA2)

7 D12(MISO1)

8 D11(MOSI1)

9 D13(SCK/LED1)D13(SCK1/LED1)

10 UEXT_#CS

PWR_JACK:

Pin # Signal Name

1 Power Input

2 GND

CON1 – POWER:

Pin # Signal Name

1 RESET

2 VCC (3V3)

3 VDD (3V3A)

4 GND

5 GND

6 VIN

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CON2 – ANALOG:

Pin # Signal Name

1 D15(A0)

2 D16(A1)

3 D17(A2)

4 D18(A3)

5 D19(A4)

6 D20(A5)

CON3 – DIGITAL:

Pin # Signal Name

1 D0(RXD2)

2 D1(TXD2)

3 D2

4 D3(LED2)

5 D4

6 D5

7 D6

8 D7(TXD1)

CON4 – DIGITAL:

Pin # Signal Name

1 D8(RXD1)

2 D9

3 D10(#SS1)

4 D11(MOSI1)

5 D12(MISO1)

6 D13(SCK/LED1)D13(SCK1/LED1)

7 GND

8 D14(CANRX)

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LI_BAT:

Pin # Signal Name

1 VBAT

2 GND

USB:

Pin # Signal Name

1 +5V_USB

2 D -

3 D +

4 Not connected

5 GND

SD/MMC:

Pin # Signal Name

1 MCIDAT2

2 D25(MMC_CS)

3 D34(MOSI2)

4 MMC_PWR

5 D32(SCK2)

6 GND

7 D33(MISO2)

8 MCIDAT1

9 Not connected

10 Not connected

11 Not connected

12 Not connected

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EXT:

Pin # Signal Name Pin # Signal Name

1 D23_EXT 2 D24(CANTX)

3 D25(MMC_CS) 4 D26

5 D27 6 D28

7 D29(SCL2) 8 D30(SDA2)

9 D31(#SS2) 10 D32(SCK2)

11 D33(MISO2) 12 D34(MOSI2)

13 D35 14 D36

15 D37 16 GND

CAN:

Pin # Signal Name

1 GND

2 CANL

3 CANH

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MECHANICAL DIMENSIONS:

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AVAILABLE DEMO SOFTWARE:

- The software consists of boot loader that runs on the board and a simple blinking led project.

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ORDER CODE:

OLIMEXINO-STM32 - assembled and tested board

How to order?

You can order to us directly or by any of our distributors.Check our web www.olimex.com/dev for more info.

Revision history:

Board's revision Rev. A, April 2011

Manual's revision Rev. A, August 2011- At first page “Copyright(c) 2011, OLIMEX Ltd, All rights reserved” is replaces with “Designed by OLIMEX Ltd., 2011”- In schematic “COPYRIGHT(C) 2011, OLIMEX Ltd.” replaced with “DESIGNED BY OLIMEX LTD, 2011”

Rev. B, October 2011- in schematic – C6 (100nF) is replaced with 4.7µF

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Disclaimer:

© 2011 Olimex Ltd. Olimex®, logo and combinations thereof, are registered trademarks of Olimex Ltd. Other terms and product names may be trademarks of others.The information in this document is provided in connection with Olimex products. No license, express or implied or otherwise, to any intellectual property right is granted by this document or in connection with the sale of Olimex products. Neither the whole nor any part of the information contained in or the product described in this document may be adapted or reproduced in any material from except with the prior written permission of the copyright holder.The product described in this document is subject to continuous development and improvements. All particulars of the product and its use contained in this document are given by OLIMEX in good faith. However all warranties implied or expressed including but not limited to implied warranties of merchantability or fitness for purpose are excluded.This document is intended only to assist the reader in the use of the product. OLIMEX Ltd. shall not be liable for any loss or damage arising from the use of any information in this document or any error or omission in such information or any incorrect use of the product.

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