Airis N222 Modem Driver
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Airis N222 Modem Driver
The first Airis N222 Modem illustrates the general teachings of the invention, whereas the second, third, and fourth embodiments depict specific implementations of the teachings. Turning now to FIGS.
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Although, the first embodiment depicts merely communicating equipment identification information, the principles of the invention may be readily extended to include the communication of more general information such as Airis N222 Modem of the equipment processor type and the equipment harddrive capacity. In general, the central Airis N222 Modem 15 monitors remote module circuitry 16 that may be permanently attached to remotely located electronic workstations such as personal computers 3A through 3D over the computer network The communication system 15 and 16 described herein is particularly adapted to be easily implemented in conjunction with an existing computer network 17 while realizing minimal interference to the computer network.
In addition to being implemented from the hub of a network to remotely located PCs, the invention can be applied to other elements of an office environment such as telephones, fax Airis N222 Modem, robots, and printers. The invention is particularly suitable for being incorporated into a patchpanel. The asset aware patchpanel would then be capable of identifying the existence and location of network assets without power being applied to the assets. Remotely located personal computers 3A through 3D are each connected to Airis N222 Modem computer network 17 so as to provide widespread remote user access to the computer network The remotely located personal computers 3A through 3D are shown connected to hub 1 via data communication links 2A through 2D.
Data communication links 2A through 2D are, for example, conventional multi-wire cables that include a plurality of transmit and receive data communication links sometimes referred to herein as wires or lines for communicating information between each of remotely located computers 3A Airis N222 Modem 3D and other communication devices on the network such as other computers and file servers not shown. The invention described herein is particularly suited to be implemented in conjunction with a computer network 17 which preferably employs a conventional wiring approach of the type which may include twisted pair wiring such as Ethernet, Token Ring, or ATM.
Wiring schemes similar to Ethernet are commonly employed to provide data communication links for electronic computer equipment. Airis N222 Modem
In accordance with conventional wiring or cabling approaches, data communication links Airis N222 Modem generally include a pair of transmit wires not shown as well as a pair of receive wires not shown connected to each of personal computers 3A through 3D. The cable may include other wires, as well.
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Each pair of transmit and receive wires are internally coupled to an associated personal computer via two windings of an internally located isolation transformer not shown. Each pair of transmit wires and each Airis N222 Modem of receive wires thereby form a current loop through one of the personal computers 3A through 3D which is advantageously employed in accordance with the approach described herein.
The central module 15 includes an isolation power supply 8 see FIG. The DC power supply has a low current preferably on the order of magnitude of about 1 mA. The isolation power supply 8 includes an input terminal for receiving a low voltage signal VLV which has a magnitude of approximately fifteen 15 volts. The present embodiment of the invention sources DC current from the 15 volt source to the remote modules However, it is within the scope of the invention to provide other voltage levels such as 3V dc, and 20V dc.
Although the present embodiment sources current for the immediate power needs Airis N222 Modem the remote module, it is also within the scope of the invention to supply current to charge a battery, capacitor bank, or other energy storage device that powers Airis N222 Modem remote module.
Additionally, powering the remote module from some other source such as a primary battery, rechargeable battery or capacitor bank that receives energy from a source other than the central module is within the scope of the invention. The power generated by isolation power Airis N222 Modem 8 is passed through signal modulator 7 which can slightly alter the voltage supplied by isolation power supply 8 based upon status data provided by the status data encoder 9.
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Status data encoder 9 receives its status Airis N222 Modem from the firmware kernel 4. Signal modulator 7 inserts this low power supply across the transmit and receive lines or into either the transmit lines or the receive lines in order to supply the remote module 16 with both status information and power. The scope of the invention includes transmitting status information as a single bit or as a pulse train.
Types of transmitted status information include whether Airis N222 Modem protection circuit is active, date, time, and port location. Isolation power supply 13 draws power for the remote module 16 and provides status information that was encoded into the power supply signal by signal modulator 7 within the central module