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UM232R Просмотр технического описания (PDF) - Future Technology

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UM232R
FTDI
Future Technology FTDI
UM232R Datasheet PDF : 19 Pages
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Page 8
3.3 Jumper Configuration Options
Table 2 - Jumper J1 Pin Description
Pin No. Name Type Description
1
3V3
Output 3.3V output from integrated L.D.O. regulator. This pin is decoupled to ground on the module pcb with a 10nF
capacitor. The prime purpose of this pin is to provide the internal 3.3V supply to the USB transceiver cell and
the internal 1.5kΩ pull up resistor on USBDP. Up to 50mA can be drawn from this pin to power external logic if
required. This pin can also be used to supply the FT232RL’s VCCIO pin by connecting this pin to pin 4 (VIO),
or by connecting together pins 1 and 2 on jumper J1.
2
VIO
PWR +1.8V to +5.25V supply to the UART Interface and CBUS I/O pins (1...3, 5, 6, 9...14, 22, 23). In USB bus
powered designs connect to 3V3 to drive out at 3.3V levels (connect jumper J1 pins 1 and 2 together), or
connect to VCC to drive out at 5V CMOS level (connect jumper J1 pins 2 and 3 together). This pin can also be
supplied with an external 1.8V - 2.8V supply in order to drive out at lower levels. It should be noted that in this
case this supply should originate from the same source as the supply to Vcc. This means that in bus powered
designs a regulator which is supplied by the 5V on the USB bus should be used.
3
VCC
PWR VCC Output. This will be 5V from the USB bus if pins 1 and 2 on jumper J2 are connected. Alternativly, if the
module is in a self powered configuration, the supply to the VCC module pins (15 and 21) will be brought out
to this jumper pin.
Connect this jumper J1 pin 2 in order to supply the device IO pins from the supply to VCCIO.
Table 3 - Jumper J2 Pin Description
Pin No. Name Type Description
1
USB
PWR 5V Power output USB port. For a low power USB bus powered design, up to 100mA can be sourced from the
5V supply on the USB bus. A maximum of 500mA can be sourced from the USB bus in a high power USB bus
powered design.
2
VCC
PWR Board supply input. Connect to jumper J2 pin 1 in order to supply the board from the USB bus.
or
This pin is internally connected to the VCC DIP pins. Remove the jumper connector in a self powered design.
Output
3.4 CBUS Signal Options
The following options can be configured on the CBUS I/O pins. These options are all configured in the internal
EEPROM using the utility software MPROG, which can be downloaded from the FTDI website. The default
configuration is described in Section 8.
Table 4 - CBUS Signal Options
CBUS Signal Option Available On CBUS Pin...
TXDEN
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
PWREN#
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
TXLED#
RXLED#
TX&RXLED#
SLEEP#
CLK48
CLK24
CLK12
CLK6
CBitBangI/O
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
CBUS0, CBUS1, CBUS2, CBUS3, CBUS4
CBUS0, CBUS1, CBUS2, CBUS3
BitBangWRn
BitBangRDn
CBUS0, CBUS1, CBUS2, CBUS3
CBUS0, CBUS1, CBUS2, CBUS3
Description
Enable transmit data for RS485
Goes low after the device is configured by USB, then high during
USB suspend. Can be used to control power to external logic P-
Channel logic level MOSFET switch. Enable the interface pull-down
option when using the PWREN# pin in this way.
Transmit data LED drive - pulses low when transmitting data via
USB. See FT232R datasheet for more details.
Receive data LED drive - pulses low when receiving data via USB.
See FT232R datasheet for more details.
LED drive - pulses low when transmitting or receiving data via
USB. See FT232R datasheet for more details.
Goes low during USB suspend mode. Typically used to power down
an external TTL to RS232 level converter I.C. in USB to RS232
converter designs.
48MHz Clock output.
24MHz Clock output.
12MHz Clock output.
6MHz Clock output.
CBUS bit bang mode option. Allows up to 4 of the CBUS pins to be
used as general purpose I/O. Configured individually for CBUS0,
CBUS1, CBUS2 and CBUS3 in the internal EEPROM. A separate
application note will describe in more detail how to use CBUS bit
bang mode.
Synchronous and asynchronous bit bang mode WR# strobe Output
Synchronous and asynchronous bit bang mode RD# strobe Output
UM232R USB-Serial UART Development Module Datasheet Version 1.02
© Future Technology Devices International Ltd. 2005

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