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Option 1 - Windows Update If your computer is currently connected to the internet, these steps will help you to install the driver automatically using Windows Update. If your computer is not connected to the internet, use the Driver Executable method on the following page instead. Connect the power supply cable to the power inlet socket on the rear panel of the converter, and connect the adapter to a power outlet.
The computer will recognise the converter and display the Found New Hardware wizard. Select the option to allow Windows to connect to Windows Update to search for a driver. Note that you must be connected to the internet to allow this to work. If you are not able to connect to the internet during the install process, use the Driver Executable method. In this case, disconnect the USB cable from the computer and cancel the Found New Hardware wizard before proceeding to step a of the Driver Executable section below.
Windows will download the driver from Windows Update and install it. For some converters in the ES-U-xxxx family, Windows will display the Found New Hardware wizard several more times to install all of the serial ports on the converter. Each time the wizard is displayed, repeat steps c to e above. Once installation is complete, you will see the following message.
Please proceed to step 3 below to verify the installation. You do not need to run the steps shown in the Driver Executable section on the following page. Option2 - Driver Executable If you computer will not be connected to the internet during installation, use the following instructions to install the driver.
If you have already completed steps a to g in the Windows Update section above, jump to step 3 below as the driver is already installed. Download the latest version of the driver setup executable file from the following link. Version 2. Customers wishing to have a Mac OS X 2. Windows CE 1. Note that if you wish to install the converter on a computer which is never connected to the internet, you can download the file using another computer and use a USB flash drive or similar to copy the file over to the computer which will be used with the converter.
Double-click the exe file to run the driver installation. The following window will appear. It will disappear when installation is complete. Connect the power supply cable to the power inlet socket on the rear panel of the converter, and connect the adapter to an AC power outlet. The computer will recognise the converter and will complete the installation of the converter and the associated serial ports. Then proceed to step 3 below to verify the installation.
Check that the drivers were installed correctly by looking under Device Manager of the System Properties screen. This is shown below. Your converter is now ready to use.
If you would like to change the com port numbers assigned to your device, refer to section 4. If you had problems during the installation, please refer to the Troubleshooting information in section 7 on page Figure 12 Device Manager after installing a converter with four ports. Please note that you cannot change to a COM port number which is already in use. To change the virtual COM port properties: 1. Return to the Device Manager Screen.
This section applies to ES-U-2xxx-x and ES-U-3xxx-x converters, which can be configured for different interface types. These converters have DIP switches and internal jumpers to select the required interface. The following pages give details of the settings required for each particular model of converter. Ensure that you refer to the correct section for your model of converter. The relevant model numbers are listed at the top of each section.
Please also read the general notes and warnings on this page before proceeding to configure your device. Safety For ES-U-xxxx-RM models with internal power supplies, the power cable must be disconnected before removing the cover.
Avoid contact with the power supply board inside the converter. To avoid damage, the power supply or power cable in rack-mount units , serial cables and USB cable should be disconnected from your converter before changing DIP switch settings and before opening the case to change jumper settings. Termination For RS or RS, it may be necessary to enable termination of the data transmission lines. This depends on the way in which your network is connected and if termination is already provided by other devices on the network.
Before applying the termination, check your cable specification for proper impedance matching. Termination is normally used in the node at each end of the bus, but nodes in the middle of the bus should not have termination enabled. The ES-U-xxxx-x converters have jumpers or DIP switches to allow internal termination resistors to be enabled if required.
This avoids the need to provide an external resistor at the ES-U-xxxx-x end of the bus. Biasing For RS half-duplex, it may be necessary to enable biasing of the data transmission lines. In some cases, the RS lines may float to undefined levels when no transmitter is active, and this can cause additional unexpected characters to appear at the start or end of a message.
Biasing resistors are used to set a defined logic level on the serial lines when no node is transmitting. These should be disabled if another device on your serial bus already provides biasing as biasing of data lines must only occur at a single point in the cabling. They are not required in RS or RS full- duplex, since the transmitter is always enabled.
Section 5 describes these in more detail. Please refer to Section 5. This section does not apply to ES-U-2xxx-M metal case adapters. Please see sections 5. Inside the adapter, there are is a 10 x 2 20 pin header block for each serial port. Jumpers are used to select the mode of operation. You will need to open up the cover and set the jumpers for RS mode or RS mode as per the requirements of your application.
Please also refer to the comments in the Function column as some jumpers such as termination on RS networks should be set depending on your particular serial network set-up. See the General Notes and Warnings on page 14 before changing settings or opening the cover. This jumper should always be populated for RS mode. As RS is full duplex point to point, the transmitter should always be enabled.
As RS is a full duplex point to point connection, the receiver should always be enabled. Table 2 RS Mode Configuration. This jumper should only be populated if this ES-U-xxxx-x converter is at one end of the cable, to meet RS- termination requirements. Populate both these jumpers for half-duplex RS Enable TxD Driver only when transmitting.
This is required for RS half- 11 - 12 duplex, as multiple devices can transmit over the same twisted pair. When an RS node is not transmitting, its transmitter must be turned off to allow other devices to communicate over the same wire. In this RS mode, characters transmitted by the RS- echo device will also be received by the same device.
These echoed characters are usually stripped out by the application software. In this mode, characters transmitted 15 — 16 by the RS device will NOT be received by the same device.
In this mode there is no need for the application software to strip out the transmitted data no echo from the received data as it is handled by the hardware. CTS Always Enabled. As there is no hardware handshaking in RS, CTS 19 - 20 should be permanently enabled to allow unrestricted flow of data.
Table 3 RS Mode Configuration. ES-U-2x01 has a single 10 x 2 header to select mode and termination. The switches and header block are located inside the plastic enclosure.
Jumper Settings Inside the unit, there is a 7x3 21 pin header block. You will need to open up the cover and set the jumpers as per the requirements of your application. This jumper should be populated for RS half-Duplex mode. This jumper should be 16 — 17 populated to enable pull-down of Rx-. This jumper should be populated 19 — 20 for RS mode.
Tx biasing should not be used as this would provide two sets of biasing resistors on the bus. Table 5 Jumpers to select termination and biasing. The Microsoft. NET Framework runtime and associated files that are required to run most client applications.
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