The official mbed C/C SDK provides the software platform and libraries to build your applications.

Dependents:   SeeedTouchLCD

Fork of mbed by mbed official

(01.May.2014) started sales! http://www.switch-science.com/catalog/1717/

(13.March.2014) updated to 0.5.0

This is a pin conversion PCB from mbed 1768/11U24 to arduino UNO.

  • So if you have both mbed and arduino shields, I guess you would be happy with such a conversion board :)

Photos

  • Board photo vvv /media/uploads/k4zuki/mbedshield050.brd.png
  • Schematic photo vvv /media/uploads/k4zuki/mbedshield050.sch.png
  • Functionality photo vvv /media/uploads/k4zuki/mbedshieldfunc.jpg

Latest eagle files

PCB >> /media/uploads/k4zuki/mbedshield050.brd
SCH >> /media/uploads/k4zuki/mbedshield050.sch

BIG changes from previous version

  1. Ethernet RJ45 connector is removed.
    1. http://mbed.org/components/Seeed-Ethernet-Shield-V20/ is the biggest hint to use Ethernet!
  2. Most ALL of components can be bought at Akizuki http://akizukidenshi.com/
    1. But sorry, they do not send parts to abroad
  3. Pinout is changed!
arduino0.4.00.5.0
D4p12p21
D5p11p22
MOSI_nonep11
MISO_nonep12
SCK_nonep13

This design has bug(s)

  1. I2C functional pin differs between 1768 and 11U24.

Fixed bugs here

  1. MiniUSB cable cannot be connected on mbed if you solder high-height electrolytic capacitor on C3.
    1. http://akizukidenshi.com/catalog/g/gP-05002/ is the solution to make this 100% AKIZUKI parts!
  2. the 6-pin ISP port is not inprimented in version 0.4.0
    1. it will be fixed in later version 0.4.1/0.4.2/0.5.0 This has beenfixed

I am doing some porting to use existing arduino shields but it may faster if you do it by yourself...

you can use arduino PinName "A0-A5,D0-D13" plus backside SPI port for easier porting.

To do this you have to edit PinName enum in

  • "mbed/TARGET_LPC1768/PinNames.h" or
  • "mbed/TARGET_LPC11U24/PinNames.h" as per your target mbed.

here is the actual list: This list includes define switch to switch pin assignment

part_of_PinNames.h

        USBTX = P0_2,
        USBRX = P0_3,

//from here mbeDshield mod
        D0=p27,
        D1=p28,
        D2=p14,
        D3=p13,
#ifdef MBEDSHIELD_050
        MOSI_=p11,
        MISO_=p12,
        SCK_=p13,
        D4=p21,
        D5=p22,
#else
        D4=p12,
        D5=p11,
#endif
        D6=p23,
        D7=p24,
        D8=p25,
        D9=p26,
        D10=p8,
        D11=p5,
        D12=p6,
        D13=p7,
        A0=p15,
        A1=p16,
        A2=p17,
        A3=p18,
        A4=p19,
        A5=p20,
        SDA=p9,
        SCL=p10,
//mbeDshield mod ends here
        // Not connected
        NC = (int)0xFFFFFFFF
Committer:
emilmont
Date:
Tue Feb 19 10:00:15 2013 +0000
Revision:
60:3d0ef94e36ec
Add Freescale FRDM-KL25Z

Who changed what in which revision?

UserRevisionLine numberNew contents of line
emilmont 60:3d0ef94e36ec 1 /* mbed Microcontroller Library
emilmont 60:3d0ef94e36ec 2 * Copyright (c) 2006-2013 ARM Limited
emilmont 60:3d0ef94e36ec 3 *
emilmont 60:3d0ef94e36ec 4 * Licensed under the Apache License, Version 2.0 (the "License");
emilmont 60:3d0ef94e36ec 5 * you may not use this file except in compliance with the License.
emilmont 60:3d0ef94e36ec 6 * You may obtain a copy of the License at
emilmont 60:3d0ef94e36ec 7 *
emilmont 60:3d0ef94e36ec 8 * http://www.apache.org/licenses/LICENSE-2.0
emilmont 60:3d0ef94e36ec 9 *
emilmont 60:3d0ef94e36ec 10 * Unless required by applicable law or agreed to in writing, software
emilmont 60:3d0ef94e36ec 11 * distributed under the License is distributed on an "AS IS" BASIS,
emilmont 60:3d0ef94e36ec 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
emilmont 60:3d0ef94e36ec 13 * See the License for the specific language governing permissions and
emilmont 60:3d0ef94e36ec 14 * limitations under the License.
emilmont 60:3d0ef94e36ec 15 */
emilmont 60:3d0ef94e36ec 16 #ifndef MBED_PERIPHERALNAMES_H
emilmont 60:3d0ef94e36ec 17 #define MBED_PERIPHERALNAMES_H
emilmont 60:3d0ef94e36ec 18
emilmont 60:3d0ef94e36ec 19 #include "cmsis.h"
emilmont 60:3d0ef94e36ec 20
emilmont 60:3d0ef94e36ec 21 #ifdef __cplusplus
emilmont 60:3d0ef94e36ec 22 extern "C" {
emilmont 60:3d0ef94e36ec 23 #endif
emilmont 60:3d0ef94e36ec 24
emilmont 60:3d0ef94e36ec 25 typedef enum {
emilmont 60:3d0ef94e36ec 26 UART_0 = (int)UART0_BASE,
emilmont 60:3d0ef94e36ec 27 UART_1 = (int)UART1_BASE,
emilmont 60:3d0ef94e36ec 28 UART_2 = (int)UART2_BASE
emilmont 60:3d0ef94e36ec 29 } UARTName;
emilmont 60:3d0ef94e36ec 30 #define STDIO_UART_TX USBTX
emilmont 60:3d0ef94e36ec 31 #define STDIO_UART_RX USBRX
emilmont 60:3d0ef94e36ec 32 #define STDIO_UART UART_0
emilmont 60:3d0ef94e36ec 33
emilmont 60:3d0ef94e36ec 34 typedef enum {
emilmont 60:3d0ef94e36ec 35 I2C_0 = (int)I2C0_BASE,
emilmont 60:3d0ef94e36ec 36 I2C_1 = (int)I2C1_BASE,
emilmont 60:3d0ef94e36ec 37 } I2CName;
emilmont 60:3d0ef94e36ec 38
emilmont 60:3d0ef94e36ec 39 #define TPM_SHIFT 8
emilmont 60:3d0ef94e36ec 40 typedef enum {
emilmont 60:3d0ef94e36ec 41 PWM_1 = (0 << TPM_SHIFT) | (0), // TPM0 CH0
emilmont 60:3d0ef94e36ec 42 PWM_2 = (0 << TPM_SHIFT) | (1), // TPM0 CH1
emilmont 60:3d0ef94e36ec 43 PWM_3 = (0 << TPM_SHIFT) | (2), // TPM0 CH2
emilmont 60:3d0ef94e36ec 44 PWM_4 = (0 << TPM_SHIFT) | (3), // TPM0 CH3
emilmont 60:3d0ef94e36ec 45 PWM_5 = (0 << TPM_SHIFT) | (4), // TPM0 CH4
emilmont 60:3d0ef94e36ec 46 PWM_6 = (0 << TPM_SHIFT) | (5), // TPM0 CH5
emilmont 60:3d0ef94e36ec 47
emilmont 60:3d0ef94e36ec 48 PWM_7 = (1 << TPM_SHIFT) | (0), // TPM1 CH0
emilmont 60:3d0ef94e36ec 49 PWM_8 = (1 << TPM_SHIFT) | (1), // TPM1 CH1
emilmont 60:3d0ef94e36ec 50
emilmont 60:3d0ef94e36ec 51 PWM_9 = (2 << TPM_SHIFT) | (0), // TPM2 CH0
emilmont 60:3d0ef94e36ec 52 PWM_10 = (2 << TPM_SHIFT) | (1) // TPM2 CH1
emilmont 60:3d0ef94e36ec 53 } PWMName;
emilmont 60:3d0ef94e36ec 54
emilmont 60:3d0ef94e36ec 55 typedef enum {
emilmont 60:3d0ef94e36ec 56 ADC0_SE0 = 0,
emilmont 60:3d0ef94e36ec 57 ADC0_SE3 = 3,
emilmont 60:3d0ef94e36ec 58 ADC0_SE4b = 4,
emilmont 60:3d0ef94e36ec 59 ADC0_SE5b = 5,
emilmont 60:3d0ef94e36ec 60 ADC0_SE6b = 6,
emilmont 60:3d0ef94e36ec 61 ADC0_SE7b = 7,
emilmont 60:3d0ef94e36ec 62 ADC0_SE8 = 8,
emilmont 60:3d0ef94e36ec 63 ADC0_SE9 = 9,
emilmont 60:3d0ef94e36ec 64 ADC0_SE11 = 11,
emilmont 60:3d0ef94e36ec 65 ADC0_SE12 = 12,
emilmont 60:3d0ef94e36ec 66 ADC0_SE13 = 13,
emilmont 60:3d0ef94e36ec 67 ADC0_SE14 = 14,
emilmont 60:3d0ef94e36ec 68 ADC0_SE15 = 15,
emilmont 60:3d0ef94e36ec 69 ADC0_SE23 = 23
emilmont 60:3d0ef94e36ec 70 } ADCName;
emilmont 60:3d0ef94e36ec 71
emilmont 60:3d0ef94e36ec 72 typedef enum {
emilmont 60:3d0ef94e36ec 73 DAC_0 = 0
emilmont 60:3d0ef94e36ec 74 } DACName;
emilmont 60:3d0ef94e36ec 75
emilmont 60:3d0ef94e36ec 76
emilmont 60:3d0ef94e36ec 77 typedef enum {
emilmont 60:3d0ef94e36ec 78 SPI_0 = (int)SPI0_BASE,
emilmont 60:3d0ef94e36ec 79 SPI_1 = (int)SPI1_BASE,
emilmont 60:3d0ef94e36ec 80 } SPIName;
emilmont 60:3d0ef94e36ec 81
emilmont 60:3d0ef94e36ec 82 #ifdef __cplusplus
emilmont 60:3d0ef94e36ec 83 }
emilmont 60:3d0ef94e36ec 84 #endif
emilmont 60:3d0ef94e36ec 85
emilmont 60:3d0ef94e36ec 86 #endif