Abstract:
Certain embodiments of the present invention provide a door for a vertical cable manager. The door includes a panel. Additionally, the door includes a first hinge pin disposed at a first end of the panel. The first hinge pin slides from an extended position to a retracted position. Additionally, the door includes a first hinge pin retention member disposed adjacent the first hinge pin. The first hinge pin retention member is releasably connected to the first hinge pin to secure the first hinge pin in the retracted position.
Abstract:
Certain embodiments of the present invention provide a door for a vertical cable manager. The door includes a panel. Additionally, the door includes a first hinge pin disposed at a first end of the panel. The first hinge pin slides from an extended position to a retracted position. Additionally, the door includes a first hinge pin retention member disposed adjacent the first hinge pin. The first hinge pin retention member is releasably connected to the first hinge pin to secure the first hinge pin in the retracted position.
Abstract:
A marker plate embossing system is provided having an improved loading device, and improved chute and hopper systems. The loading device reduces the likelihood of marker plate misfeed. The chute and hopper systems allow the embossing of varying sized embossing plates, while reducing the likelihood of embossed marker plates being delivered in an incorrect stacked-order. A marker plate removal system is also provided for removing embossed marker plates from the hopper system without the marker plates falling out of the stacked-order.
Abstract:
The present invention is directed to a device that protects a fiber optic adapter from contamination, damage or misuse. The fiber optic adapter includes latches that extend from inner sides of the adapter. The device includes a front, a back and sides. The sides extend from the front to the back. Each side includes a slot molded along the sides of the device. The slots receive the latches of the fiber optic adapter when the device is installed in the fiber optic adapter. Once the latches are installed in the slots, the device is secured to the fiber optic adapter.
Abstract:
Certain embodiments of the present invention provide a vertical exhaust duct for an electronic equipment enclosure. The vertical exhaust duct includes a first duct section, a second duct section slidably connected to the first duct section and extendable to a first height above the first duct section, and a third duct section slidably connected to the second duct section and extendable to a second height above the second duct section.
Abstract:
An improved multimode fiber optic cable is designed to compensate for the wavelength distribution and emission pattern of laser sources used in high-speed communication systems. The improved multimode fiber optic cable compensates for the wavelength dependent VCSEL polar emission pattern to reduce modal dispersion. Techniques for reducing the modal dispersion within the improved multimode fiber optic cable allow for improved Bit Error Rate (BER) system performance and/or to achieve greater reach in high bandwidth optical channel links are disclosed. Considerable efforts have been undertaken in the design and production of an improved multimode fiber optic cable to minimize modal dispersion, ignoring the effects of wavelength dependent polar emission patterns in lasers. Material dispersion effects have a significant impact on modal dispersion and by modifying a standard parabolic refractive index profile to compensate for material dispersion effects, overall modal dispersion can be reduced.
Abstract:
Certain embodiments of the present invention provide a vertical exhaust duct for an electronic equipment enclosure. The vertical exhaust duct includes a first duct section, a second duct section slidably connected to the first duct section and extendable to a first height above the first duct section, and a third duct section slidably connected to the second duct section and extendable to a second height above the second duct section.
Abstract:
A new metric applicable to the characterization and design of multimode fiber (MMF) is described. The metric is derived from a Differential Mode Delay (DMD) measurement and when used in combination with industry-standard metrics such as Effective Modal Bandwidth (EMB) and DMD, yields a more accurate prediction of MMF channel link performance as measured by Bit Error Rate (BER) testing. The metric can also be used in the design of MMF for improved bandwidth performance. When implemented as a test algorithm in production, it can be used to select, sort, or verify fiber performance. This process can yield a multimode fiber design with a greater performance margin for a given length, and/or a greater length for a given performance margin.
Abstract:
An adjustable exhaust duct includes a lower duct section and an upper duct section. The lower duct section may be larger or smaller than the upper duct section, and each duct has four identical locking systems. The locking systems secure the lower duct section and the upper duct section.
Abstract:
An intelligent physical layer management system is provided that includes active electronic hardware, firmware, mechanical assemblies, cables, and software that guide, monitor, and report on the process of connecting and disconnecting patch cords plugs in an interconnect patching environment. RFID tag integrated chips are used to identify which switch port a patch cord is plugged into. The system is capable of monitoring patch cord connections to detect insertions or removals of patch cords or plugs. In addition, the system can map the patch field in interconnect configurations.