2. Soldering the headers Before using your click board, make sure to solder 1x8 male headers to both left and right side of the board. Two 1x8 male headers are included with the board in the package. 1 FTDI click 2 3 4. Essential features 1. Introduction FTDI Click with its FT2232H IC is a dual high speed USB 2.0 to UART/SPI/I2C serial interfaces converter. The entire USB protocol is handled on the chip (USB drivers from FTDI are required). The board can be powered Turn the board upside down so that Turn the board upward again. Make sure by USB cable or directly from mikroBUS bottom side is facing you upwards. Place to align the headers so that they are socket. It is ideal for USB applications (smart shorter parts of the header pins in both perpendicular to the board, then solder the card readers, instrumentation, industrial soldering pad locations. pins carefully. control, MP3 player interface, digital camera interface, bar code readers) and many more. FTDI Click is an accessory board in mikroBUS form factor. Its a compact and 3. Plugging the board in easy solution for adding USB to UART/ 2 click SPI/I C communication to your design. It Once you have soldered the headers your features FT2232H dual high speed USB board is ready to be placed into desired BOARD to multipurpose IC, DA converter as well mikroBUS socket. Make sure to align the www.mikroe.com as EEPROM. FTDI Click communicates cut in the lower-right part of the board with the target board microcontroller via with the markings on the silkscreen at the FTDI click Manual mikroBUS SPI (MOSI, MISO, SCK, CS), mikroBUS socket. If all of the pins are ver. 1.01 2 I C (SDA, SCL), UART (Tx, Rx), RST, PWM, aligned correctly, push the board all AN and INT lines. LED diode (GREEN) the way into the socket. indicates the presence of power supply. 0 100000 0237476. SMD Jumpers 5. FTDI Click Board Schematic The FTDI Click board communicates with the main board microcontroller via 2 VPHY VPLL VCC1V8 I C or UART interface D2 E1 depending on the VCC3V3 VCC3V3 10uF VCC5 U3 PMEG3010ER position of the J1, 1 5 IN OUT 2 R1 J2 and J3 SMD jumpers. These jumpers are GND 287K R2 R3 RST/EN 3 4 EN ADJ soldered in UART position by default. 39K 0R AP7331-ADJ U1 J1 J2 J3 VCC1V8 VCC3V3 VPHY 1 48 BC0 GND BCBUS0 12MHz OSCI 2 47 OSCI GND OSCO 3 46 X1 OSCO BDBUS7 VPHY 4 45 7. Code Examples VPHY BDBUS6 5 44 FP1 GND BDBUS5 6 43 BD4 VCC3V3 VCC5 VCC3V3 REF BDBUS4 C12 C13 USBD N 7 42 R4 12K1 DM VCCIO 22pF 22pF USBD P 8 41 CS Once you have done all the necessary DP BDBUS3 9 40 SDI FT2232H VPLL BDBUS2 R5 R6 R12 10 39 SDO FP2 AGND BDBUS1 10K 10K 10K preparations, its time to get your click 11 38 SCK VCC5 GND BDBUS0 VPLL 12 37 VOUT BC2 VCORE VCORE AN PWM 13 36 BC0 BC1 board up and running. We have provided TEST SUSPEND RST INT RST/EN 14 35 CS TXD RST GND CS TX 15 34 SCK RXD the examples for mikroC, mikroBasic and D1 GND ACBUS7 SCK RX ADB0 16 33 SDO SCL PMEG3010ER ADBUS0 ACBUS6 MISO SCL R13 R9 SDI SDA MOSI SDA mikroPascal compilers on our Libstock 1K 2K2 +3.3V +5V CN6 FP3 GND GND website. Just download them and you are FERRITE MIKROBUS DEVICE CONN. 1 VBUS 2 USBD N D- ready to start. 3 USBD P D+ 4 ID 5 GND C14 10nF USB MINIB C15 VCC3V3 VCC3V3 .com 10uF R16 R10 4K7 2K2 VCC3V3 TX/RX PWR VCC3V3 VCC3V3 C17 8. Support TX/RX R7 R8 R14 VCC3V3 100nF VCC3V3 R15 10K 10K 10K 10K U2 U5 EECS 1 8 1 8 VOUT MikroElektronika oers ff Free Tech Support CS VCC VDD VOUT EESK 2 7 BD4 2 7 SCK NC CS GND EEDATA 3 6 SCK 3 6 DI ORG SCK VREF (www.mikroe.com/esupport) until the 4 5 SDO 4 5 DO GND SDI LDAC R11 2K2 CAT93C46 MCP4921 end of product lifetime, so if something goes wrong, we are ready and willing to help MikroElektronika assumes no responsibility or liability for any errors or inaccuracies that may appear in the present document. Specification and information contained in the present schematic are subject to change at any time without notice. Copyright 2013 MikroElektronika. All rights reserved. C11 2.2uF C8 100nF C9 100nF C10 100nF ADB1 17 64 ADBUS1 VCORE ADB2 18 63 EECS ADBUS2 EECS 19 62 EESK ADBUS3 EECLK 20 61 EEDATA VCCIO EEDATA 21 60 ADBUS4 PWREN 22 59 ADBUS5 BCBUS7 23 58 ADBUS6 BCBUS6 C16 100nF 24 57 ADBUS7 BCBUS5 25 56 GND VCCIO 26 55 ACBUS0 BCBUS4 27 54 ACBUS1 BCBUS3 28 53 BC2 ACBUS2 BCBUS2 TX/RX 29 52 BC1 ACBUS3 BCBUS1 30 51 ACBUS4 GND 31 50 VCCIO VregIN 32 49 ACBUS5 VregOUT RXD ADB1 C1 10uF SDA C2 100nF ADB2 C3 10uF ADB1 C4 100nF TXD ADB0 C5 100nF SCL C6 100nF C7 100nF