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Parallel versus serial communication. In and, serial communication is the process of sending one at a time, sequentially, over a. This is in contrast to, where several bits are sent as a whole, on a link with several parallel channels. Serial communication is used for all long-haul communication and most, where the cost of and difficulties make parallel communication impractical. Serial computer buses are becoming more common even at shorter distances, as improved and transmission speeds in newer serial technologies have begun to outweigh the parallel bus's advantage of simplicity (no need for serializer and deserializer, or ) and to outstrip its disadvantages (, interconnect density). The migration from to is an example. Main article: Many serial communication systems were originally designed to transfer data over relatively large distances through some sort of.

The term 'serial' most often refers to the RS232 port on the back of the original, often called 'the', and 'the' designed to plug into it, and the many devices designed to be compatible with it. Practically all long-distance communication transmits data one bit at a time, rather than in parallel, because it reduces the cost of the cable. The cables that carry this data (other than 'the' serial cable) and the they plug into are usually referred to with a more specific name, to reduce confusion.

Keyboard and mouse cables and ports are almost invariably serial—such as and and. The cables that carry digital video are almost invariably serial—such as plugged into a port, a plugged into a USB port or, connecting an to a port,, etc. Other such cables and ports, transmitting data one bit at a time, include,, Ethernet cable plugged into, the using previously reserved pins of the or the or the port.

Serial buses [ ] Many communication systems were generally designed to connect two integrated circuits on the same, connected by on that board (rather than external cables). Are more expensive when they have more pins. To reduce the number of pins in a package, many ICs use a serial bus to transfer data when speed is not important. Some examples of such low-cost serial buses include,,,, and. Serial versus parallel [ ] The communication links, across which computers (or parts of computers) talk to one another, may be either serial or parallel. A parallel link transmits several streams of data simultaneously along multiple channels (e.g., wires, printed circuit tracks, or optical fibres); whereas, a serial link transmits only a single stream of data.

Although a serial link may seem inferior to a parallel one, since it can transmit less data per clock cycle, it is often the case that serial links can be clocked considerably faster than parallel links in order to achieve a higher data rate. Several factors allow serial to be clocked at a higher rate: • between different channels is not an issue (for unclocked links). • A serial connection requires fewer interconnecting cables (e.g., wires/fibres) and hence occupies less space.

The extra space allows for better isolation of the channel from its surroundings. • is less of an issue, because there are fewer conductors in proximity. In many cases, serial is cheaper to implement than parallel. Many have serial interfaces, as opposed to parallel ones, so that they have fewer pins and are therefore less expensive. Examples of architectures [ ].

PcAnywhere supports communication through a variety of connection types, including direct connections between computers. Serial connection can be made from any operating system, as long as there is a free communications (COM) port. For assistance with configuring a parallel connection please see the document Serial Connections Serial connections connect a COM port on one computer to a COM port on a second computer using an RS-232 null-modem cable. This is a specialized serial cable, wired to simulate a modem connection.

Null modem cables come with two 25-pin connectors, two 9-pin connectors, or a combination of one 9-pin and one 25-pin connector. Some cables are available that have both types of connectors at each end. PcAnywhere supports connections with ports COM1 - COM4. Virtual COM ports are not supported. How to make Serial Connections STEP 1 Set up serial (COM) port connections 1 Connect a null-modem cable to the correct serial ports of the host and the remote computers. 2 Launch pcAnywhere, and then click Hosts or Remotes (whichever is appropriate).

3 Right-click the Direct icon, and then click Properties. 4 Click the correct COM port: This sets pcAnywhere for No Modem. 5 Click Details. 6 Complete the entries as shown in Table 1 below. Table 1: Host and remote settings Note If the Remote computer is running pcAnywhere 11.0, the Hosts 'Started By' and 'Ended By' settings must be set to 'Always Connected'. Setting Host Remote Speed 19200* 19200* Parity None None Flow Control RTS/CTS RTS/CTS Started By Receive 2 s Always connected Ended By Always connected Always connected This is an initial setup speed.

Once you successfully establish a connection, you can increase the speed (optimal speed is 115200). Conversely, if you encounter connection problems, set the initial setup speed to 9600 or lower. STEP 2 Determine the correct COM port I use Windows 9x/ME 1 Click Start >Settings >Control Panel. 2 Double-click the System icon. Avatar Legends Of The Arena Database Fix Download more. 3 Click the Device Manager tab.

4 Click the plus sign ( +) next to ports. 5 Note the COM ports that are listed. I use Windows NT 6 Click Start >Settings >Control Panel.

7 Double-click the Ports icon. 8 Note the COM ports that are listed. I use Windows 2000/XP 9 Click Start >Settings >Control Panel. 10 Double-click the System icon. 11 Click the Hardware tab.

12 Click the Device Manager tab. Os Tres Mosqueteiros Pdf on this page. 13 Click the plus sign ( +) next to ports. 14 Note the COM ports that are listed. 15 Once you determined the available ports on both the host and remote system, try configuring pcAnywhere to try all possible combinations.

• On the host, depending upon the type of connection, you can designate up to two ports. • On the remote, you can designate only one. Start by setting the host to use two COM ports, then try connecting to it with the remote, changing the COM port if it does not work. This scenario limits the number of possible combinations to 8. STEP 3 Select the COM port being used by the host or remote 1 Right-click the host or remote connection item you want to modify, then click Properties. 2 On the Connection Info tab, select a port, then click OK. STEP 4 Make a connection 1 Double-click the Direct icon on the host computer.

The host waits on the specified COM port. 2 Double-click the Direct icon on the remote computer.

3 Wait for the pcAnywhere Terminal screen to appear. Press Enter twice. You should now be able to see what is on the screen of the host computer. 4 If the connection is successful, you may return to the setup for the host and the remote. Double the data rate, keeping the same rate on both the host and the remote. How to troubleshoot connection problems If a COM port connection does not work, the cause is most likely a problem with the cable or the selected port. Note This test will not work with pcAnywhere 11.0.

Test the COM port connections 1 On the host computer, cancel the 'Host waiting.' 2 Reconfigure the host computer as a remote. 3 Launch both computers as remotes.

You should now see terminal screens on both computers. 4 Type at one computer and see if the letters appear on the other computer. • If you can see the letters on the other computer, there is probably a setup problem with pcAnywhere. • If you cannot see the words on the other computer, there is a problem with the cable or one of the ports you selected.

5 Verify the source of the trouble, connect the cable to a different port. 6 If you still cannot see the words on the other computer, the cable may be defective or wired incorrectly. Use a different cable.