UMFT234XF Development Module

UMFT234XF Datasheet
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Future Technology
Devices
International Ltd
Datasheet
UMFT234XF Development
Module
UMFT234XF is a USB to UART development module
1
Introduction
The UMFT234XF development module utilizes FTDI’s FT234XD IC to convert USB to a basic UART (RXD,
TXD, RTS#, CTS#).
1.1 Features
The UMFT234XF is a development module that converts USB2.0 Full-Speed to UART. The module includes a
micro-B USB connector to connect to a USB host and the UART IO are available on separate pads. The
module is designed to be soldered directly to another PCB (PCB on PCB technology).
The UART interface operates between +1.8V and +3.3V voltage levels depending on the VIO signal, however
all I/Os are 5V tolerant.
An additional configurable bus (CBUS) pad allows for general IO or indicating that the module is connected to
a dedicated charging port for battery charging.
1.2 Ordering Information
Module
Interface
Features
UMFT234XF
UART
USB 2.0 full speed to basic UART with one control bus line which may be
used for battery charger detection.
The PCB pads are designed to be soldered directly to another PCB for
secure bonding.
Use of FTDI devices in life support and/or safety applications is entirely at the user’s risk, and the user agrees
to defend, indemnify and hold harmless FTDI from any and all damages, claims, suits or expense resulting
from such use.
UMFT234XF Datasheet
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Driver Support
Royalty-Free VIRTUAL COM PORT (VCP):
Royalty-Free D2XX Direct Drivers:

Windows 8 32,64-bit

Windows 8 32,64-bit

Windows 7 32,64-bit

Windows 7 32,64-bit

Windows Vista

Windows Vista

Windows XP 32,64-bit

Windows XP 32,64-bit

Windows XP Embedded

Windows XP Embedded

Windows CE.NET 4.2 , 5.0 and 6.0

Windows CE.NET 4.2, 5.0 and 6.0

MAC OS OS-X

MAC OS OS-X

Linux 3.0 and greater

Linux 3.0 and greater

Android

Android
The drivers listed above as well as Third Party Drivers for other operating systems are available for free
downloads from www.ftdichip.com.
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UMFT234XF Datasheet
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Table of Contents
1
Introduction ................................................................................... 1
1.1
Features ........................................................................................................ 1
1.2
Ordering Information .................................................................................... 1
2
Driver Support ................................................................................ 2
3
UMFT234XF Signals and Configurations.......................................... 4
4
3.1
UMFT234XF CN1 Signal Descriptions ............................................................. 4
3.2
UMFT234XF PAD Signal Descriptions ............................................................. 4
3.3
UMFT234XF J-1 ............................................................................................. 4
CBUS Signal Options ....................................................................... 5
4.1
Configuring the MTP ROM .............................................................................. 6
5
Module Dimensions ........................................................................ 7
6
Module Circuit Schematic ............................................................... 8
6.1
UMFT234XF Schematic .................................................................................. 8
7
Environmental Compliances ........................................................... 9
8
Internal MTP ROM Configuration .................................................. 10
9
Contact Information ..................................................................... 11
Appendix A - List of Figures and Tables ................................................................... 9
Appendix B: Revision History ................................................................................ 10
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UMFT234XF Datasheet
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UMFT234XF Signals and Configurations
3
USB connectivity is via CN1 a micro-B USB connector. The UART and CBUS signals are available on PCB
pads.
3.1 UMFT234XF CN1 Signal Descriptions
Pin No.
Name
Type
Description
1
VBUS
PWR
5V Power input to USB port, for a USB bus low-powered design; up to 100mA may be
sourced from the 5V supply on the USB bus. A maximum of 500mA can be sourced
from the USB bus in a USB bus high-powered design.
2
D-
Signal
Negative USB data signal
3
D+
Signal
Positive USB data signal
4
ID
Signal
Not Connected
5
GND
PWR
Module Ground
Table 1 USB Connector Pin Out Description
3.2 UMFT234XF PAD Signal Descriptions
Pad
Name
Type
P1
RESET#
Signal
P2
3V3
PWR
P3
VIO
PWR
No.
Description
Active low input may be used to reset the FT234XD IC
3V3OUT from FT234XD. May be used for external logic. (50mA max)
Also powers the FT234XD VCCIO (if JP1 fitted (default)
Optional input to supply the FT234XD VCCIO from an external supply. VIO may be
between 1.8V to 3.3V.
JP1 must be disconnected to use this input.
P4
GND
PWR
Module GND
P5
VBUS
PWR
5V output supplied from the USB port.
P6
CB0
Signal
Configurable Bus pin 0. Available settings for the pin are defined in table 3. The
default is PWREN#
P7
TXD
Signal
UART data output signal
P8
RTS#
Signal
UART Ready to Send output signal. Active low.
P9
RXD
Signal
UART data input signal
P10
CTS#
Signal
UART Clear to Send input signal. Active low.
Table 2 USB Connector Pin Out Description
3.3 UMFT234XF J-1
J-1 is used to connect/disconnect the 3V3OUT frm the FT234XD IC to the VCCIO input pin. By default it is
connected.
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CBUS Signal Options
CBUS Signal
Option
Available On
CBUS Pin
Tristate
CBUS0
IO Pad is tri-stated
DRIVE_1
CBUS0
Output a constant 1
DRIVE_0
CBUS0
Output a constant 0
TXDEN
CBUS0
Enable transmit data for RS485
PWREN#
CBUS0
Output is low after the device is configured by USB but high during USB
suspended mode. This output is used to control power to external logic.
TXLED#
CBUS0
Transmit data LED drive – open drain pulses low when transmitting data via
UART.
RXLED#
CBUS0
Receive data LED drive – open drain pulses low when receiving data via
UART.
TX&RXLED#
CBUS0
LED drive – open drain pulses low when transmitting or receiving data via
UART.
SLEEP#
CBUS0
Goes low during USB suspend mode. Typically used to power down external
logic to RS232 level converter IC in USB to RS232 converter designs
CLK24MHz
CBUS0
24 MHz Clock output.**
CLK12MHz
CBUS0
12 MHz Clock output.**
CLK6MHz
CBUS0
6 MHz Clock output.**
GPIO
CBUS0
CBUS bit bang mode option. Allows up to 4 of the CBUS pins to be used as
general purpose I/O. A separate application note, AN232R-01, available
from FTDI website (www.ftdichip.com) describes in more detail how to use
CBUS bit bang mode.
BCD_Charger
CBUS0
Battery Charge Detect indicates when the device is connected to a dedicated
battery charger host. Active high output. NOTE: Requires a 10K pull-down
to remove power up toggling.
BCD_Charger#
CBUS0
Active low BCD Charger, driven by an open drain to ground with no internal
pull-up.
BitBang_WR#
CBUS0
Synchronous and asynchronous bit bang mode WR# strobe output.
BitBang_RD#
CBUS0
Synchronous and asynchronous bit bang mode RD# strobe output.
VBUS_Sense
CBUS0
Input to detect when VBUS is present.
Time_Stamp
CBUS0
Toggle signal which changes state each time a USB SOF is received
Keep_Awake#
CBUS0
Table 3 CBUS Configuration Control
Description
Active Low input, prevents the chip from going into suspend.
* PWREN# must be used with a 10kΩ resistor pull up.
**When in USB suspend mode the outputs clocks are also suspended.
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4.1 Configuring the MTP ROM
The FT234XD IC on the module contains an embedded MTP ROM, this can be used to specify the USB
descriptors, the functions of the CBUS0 pin, the current drive on each signal pin and the current limit for
the device. These features can be programmed using FTDI’s programming utility FT_Prog. For details on
using FT_Prog, please see the FT_PROG User Guide.
When programming the MTP ROM please note:
i) The Max Bus Power setting of the MTP ROM should specify the maximum current to be drawn from
the USB host/hub when enumerated. For high-powered USB devices the current limit when
enumerated is between 100mA and 500mA, for low-powered USB devices the current limit is
100mA.
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Module Dimensions
Measurements given in millimetres
Tolerance of +/- 0.1mm
Figure 1 UMFT234XF-01 Module Dimensions
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Module Circuit Schematic
6.1 UMFT234XF Schematic
Figure 2 UMFT234XF Circuit Schematic
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Environmental Compliances
The UMFT234XF modules exclusively use lead free components, and are fully compliant with European
Union directive 2002/95/EC.
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Internal MTP ROM Configuration
Following a power-on reset or a USB reset the FT234XD will scan its internal MTP ROM and read the USB
configuration descriptors stored there. The default values programmed into the internal MTP ROM in the
FT234XD used on the UMFT234XF are in table 4.
Parameter
Value
Notes
USB Vendor ID (VID)
0403h
FTDI default VID (hex)
USB Product ID (PID)
6015h
FTDI default PID (hex)
Serial Number Enabled?
Yes
Serial Number
See Note
A unique serial number is generated and programmed into
the MTP ROM during final test of the UMFT234XF module.
Pull down I/O Pins in USB
Suspend
Disabled
Enabling this option will make the device pull down on the
UART interface lines when the power is shut off (PWREN#
is high).
Manufacturer Name
FTDI
Product Description
UMFT234XF
Max Bus Power Current
90mA
Power Source
Bus Powered
Device Type
FT234XD
USB Version
0200
Returns USB 2.0 device description to the host. Note: The
device is a USB 2.0 Full Speed device (12Mb/s).
Remote Wake Up
Enabled
Taking RI# low will wake up the USB host controller from
suspend.
High Current I/Os
Disabled
Enables the high drive level on the serial and CBUS I/O
pins.
Load VCP Driver
Enabled
Makes the device load the VCP driver interface for the
device.
CBUS0
PWREN#
Table 4 Default Internal MTP ROM Configuration
The internal MTP ROM in the FT234XD can be programmed over USB using the utility program FT_PROG.
FT_PROG can be downloaded from www.ftdichip.com. Users who do not have their own USB vendor ID
but who would like to use a unique Product ID in their design can apply to FTDI for a free block of unique
PIDs. Contact FTDI Support ([email protected]) for this service.
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Contact Information
Head Office – Glasgow, UK
Branch Office – Oregon, USA
Future Technology Devices International Limited
Unit 1, 2 Seaward Place, Centurion Business Park
Glasgow G41 1HH
United Kingdom
Tel: +44 (0) 141 429 2777
Fax: +44 (0) 141 429 2758
7130 SW Fir Loop
Tigard, OR 97223-8160
USA
Tel: +1 (503) 547 0988
Fax: +1 (503) 547 0987
E-mail (Sales)
E-mail (Support)
E-mail (General Enquiries)
[email protected]
[email protected]
[email protected]
Branch Office – Taipei, Taiwan
2F, No. 516, Sec. 1, NeiHu Road
Taipei 114
Taiwan, R.O.C.
Tel: +886 (0) 2 8791 3570
Fax: +886 (0) 2 8791 3576
E-mail (Sales)
E-mail (Support)
E-mail (General Enquiries)
[email protected]
[email protected]
[email protected]
E-Mail (Sales)
E-Mail (Support)
E-Mail (General Enquiries)
[email protected]
[email protected]
[email protected]
Branch Office – Shanghai, China
Room 1103, No. 666 West Huaihai Road,
Shanghai, 200052
China
Tel: +86 (0)21 6235 1596
Fax: +86 (0)21 6235 1595
E-mail (Sales)
E-mail (Support)
E-mail (General Enquiries)
[email protected]
[email protected]
[email protected]
Web Site
http://ftdichip.com
Distributor and Sales Representatives
Please visit the Sales Network page of the FTDI Web site for the contact details of our distributor(s) and sales
representative(s) in your country.
System and equipment manufacturers and designers are responsible to ensure that their systems, and any Future Technology Devices International Ltd
(FTDI) devices incorporated in their systems, meet all applicable safety, regulatory and system-level performance requirements. All application-related
information in this document (including application descriptions, suggested FTDI devices and other materials) is provided for reference only. While FTDI
has taken care to assure it is accurate, this information is subject to customer confirmation, and FTDI disclaims all liability for system designs and for any
applications assistance provided by FTDI. Use of FTDI devices in life support and/or safety applications is entirely at the user’s risk, and the user agrees to
defend, indemnify and hold harmless FTDI from any and all damages, claims, suits or expense resulting from such use. This document is subject to change
without notice. No freedom to use patents or other intellectual property rights is implied by the publication of this document. 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 or electronic form without the prior
written consent of the copyright holder. Future Technology Devices International Ltd, Unit 1, 2 Seaward Place, Centurion Business Park, Glasgow G41
1HH, United Kingdom. Scotland Registered Company Number: SC136640
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Appendix A - List of Figures and Tables
List of Figures
Figure 1 UMFT234XF-01 Module Dimensions ............................................................................................... 7
Figure 2 UMFT234XF Circuit Schematic........................................................................................................ 8
List of Tables
Table 1 USB Connector Pin Out Description ................................................................................................ 4
Table 2 CBUS Configuration Control ............................................................................................................. 5
Table 3 Default Internal MTP ROM Configuration ...................................................................................... 10
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UMFT234XF Datasheet
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Appendix B: Revision History
Document Title:
UMFT234XF
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