Network Technologies RACKMUX-V17-8UNV Command Protocol, Wiring Schematic of Matrix-Y-1 cable

Models: RACKMUX-V17-4UNV RACKMUX-V17-8UNV RACKMUX-V15-8UNV RACKMUX-V15-4UNV

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NTI RACKMUX KVM Drawer with NODEMUX Switch

Wiring Schematic of Matrix-Y-1 cable

9D Male

9D Female

9D Male

 

(Unit #1)

(Source)

(Unit #2)

2

 

3

 

3

3

 

Not connected to

5

5

5

source connector

 

22

7

8 Jumper

1

4Jumpers

Figure 17- Matrix-Y-1 wiring schematic

Unit Address

In order for a terminal to communicate with one or more NODEMUX switches, each switch must have a unique address. The NODEMUX will only respond to commands from a terminal if its address is embedded in the command. Up to 15 NODEMUX switches can be connected in a "daisy chain" to a terminal, each with its own unique address.

To set the address of the NODEMUX, from the Switch Configuration mode menu (Fig. 15 on page 17), press <Tab> until the cursor bar moves to highlight "RS232 UNIT ADDRESS". press <Up Arrow> or <Down Arrow> until the desired address (1-15) is selected.

Exit Switch Configuration Mode

Once changes are made to the Switch Configuration menu, press <Enter> and <Y> to save them.

To exit without saving, press <Esc>, then <N>, then <Esc> again. The menu will return to the Administration Mode without saving the changes made. .

Changes made will take effect the next time the NODEMUX is power cycled.

Command Protocol

Terminal control commands supported by the NODEMUX are defined below.

Notes:

All commands should be terminated with an <Enter> (ASCII 13) denoted by <CR>. When a command is sent, the entire string is echoed back to the terminal along with a response from the addressed unit as shown in the command definitions. Unit response will be sent within 500 msec after <CR>.

All characters should be upper case, and all numbers below 10 should have a leading 0 (ex: 1 = 01).

For units with one USER port (i.e. this NODEMUX switch), use 01 for the USER select.

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Network Technologies RACKMUX-V17-8UNV operation manual Command Protocol, Wiring Schematic of Matrix-Y-1 cable, Unit Address

RACKMUX-V17-4UNV, RACKMUX-V17-8UNV, RACKMUX-V15-8UNV, RACKMUX-V15-4UNV specifications

Network technologies have seen significant advancements to meet the increasing demand for efficient data management and distribution. Among the prominent solutions in this arena are the RACKMUX-V15-4UNV, RACKMUX-V15-8UNV, RACKMUX-V17-8UNV, and RACKMUX-V17-4UNV. These devices play a critical role in modern networking by providing robust matrix switching capabilities that can accommodate various needs across different environments.

The RACKMUX-V15-4UNV is designed for compact networking setups. This unit features four universal inputs, allowing for seamless integration with multiple devices. Its compact 1U design makes it particularly suitable for environments where space is at a premium, such as data centers and server rooms. The technology supports high-bandwidth data throughput, ensuring fast and efficient data transfers. Moreover, it offers easy monitoring and control through an intuitive user interface, simplifying management for network operators.

Moving to the RACKMUX-V15-8UNV, this model expands upon its predecessor by supporting up to eight universal inputs. It's ideal for larger networking scenarios, providing greater flexibility and scalability. The device comes equipped with advanced signal processing capabilities, enabling it to handle diverse formats without compromising on performance. It also features hot-swappable architecture, ensuring that operators can replace or upgrade components without affecting system uptime.

The RACKMUX-V17-4UNV introduces enhanced functionality with its four universal inputs, incorporating cutting-edge technology for an even more efficient switching process. The key distinguishing feature of the V17 line is its improved power management system, allowing for reduced energy consumption without sacrificing performance. This model is aimed at eco-conscious organizations seeking to lower their carbon footprint while still maintaining high-quality network performance.

Lastly, the RACKMUX-V17-8UNV raises the bar further by providing eight universal inputs alongside advanced features that optimize operational capabilities. This model utilizes the latest in networking protocols, ensuring compatibility with various emerging technologies. Its robust build quality also ensures reliability, reducing maintenance needs and increasing longevity.

Each of these devices reflects the growing need for adaptable and efficient network technologies. Their main features, including universal input support, enhanced signal processing, compact designs, and energy management, make the RACKMUX ranges an excellent choice for organizations looking to optimize their network infrastructure. With ongoing advancements, these models will continue to adapt to the evolving landscape of network technology, offering robust, reliable solutions for years to come.