Abstract:
A disclosed apparatus may be a circuit board that includes (1) a first unique sublaminate that includes a plurality of ground layers and a plurality of signal layers, (2) a second unique sublaminate that includes a plurality of power layers and another plurality of signal layers, and (3) a symmetry axis that bisects the circuit board between the first unique sublaminate and the second unique sublaminate, wherein the first unique sublaminate and the second unique sublaminate are distinct from one another. Various other apparatuses, systems, and methods are also disclosed.
Abstract:
An apparatus may include a printed circuit board, an integrated circuit mounted on a first surface of the printed circuit board, and one or more vias that extend through the printed circuit board from the first surface to a second surface of the printed circuit board to provide electrical connectivity for the integrated circuit. The second surface of the printed circuit board may be opposite the first surface of the printed circuit board. The apparatus may include a pin header that mechanically supports one or more pins that provide electrical connectivity for the integrated circuit. The pin header may be mounted to the second surface of the printed circuit board to mate the one or more pins with the one or more vias to provide electrical connectivity for the integrated circuit.
Abstract:
In some embodiments, an equipment unit has a set of visual indicators, a power switch, and a set of compute components. The power switch receives a signal representing a status such that when the status is in a first mode, the power switch provides power to the set of visual indicators and when the status is in a second mode the power switch does not provide power to the set of visual indicators. The compute components are configured to receive power when the power switch does not provide power to the set of visual indicators.
Abstract:
A line card of a set of line cards is configured to be coupled to a set of switch-fabric cards to collectively define at least a portion of an orthogonal cross fabric without a midplane board. The line card has an edge portion, a first side and a second side, opposite the first side. The line card includes a set of first set of connectors and a second set of connectors. The first set of connectors is disposed along the edge portion on the first side of the line card and the second set of connectors is disposed along the edge portion on the second side of the line card.
Abstract:
A line card of a set of line cards is configured to be coupled to a set of switch-fabric cards to collectively define at least a portion of an orthogonal cross fabric without a midplane board. The line card has an edge portion, a first side and a second side, opposite the first side. The line card includes a set of first set of connectors and a second set of connectors. The first set of connectors is disposed along the edge portion on the first side of the line card and the second set of connectors is disposed along the edge portion on the second side of the line card.
Abstract:
In some embodiments, an apparatus includes a set of power supply units where each power supply units from the set of power supply unit is associated with a power zone from a set of power zones. The apparatus can also includes a redundant power supply unit and a set of electronic devices where each electronic device from the set of electronic devices is associated with a power zone from the set of power zones. Additionally, each electronic device from the set of electronic devices is operatively coupled to a power supply unit from the set of power supply units for that power zone and is also operatively coupled to the redundant power supply unit.
Abstract:
A printed circuit board (PCB) defines a first outer surface and a second outer surface that is opposite the first outer surface. The first outer surface of the PCB defines a recess. The PCB includes a signal layer between the first outer surface and the second surface with a first portion exposed within the recess and a second portion exposed within the recess. A component is disposed within the recess and connected to the first portion and the second portion of the signal layer such that an entirety of the component is within the recess and below the first surface.
Abstract:
In some embodiments, an equipment unit has a set of visual indicators, a power switch, and a set of compute components. The power switch receives a signal representing a status such that when the status is in a first mode, the power switch provides power to the set of visual indicators and when the status is in a second mode the power switch does not provide power to the set of visual indicators. The compute components are configured to receive power when the power switch does not provide power to the set of visual indicators.
Abstract:
A disclosed apparatus may be a circuit board that includes (1) a first unique sublaminate that includes a plurality of ground layers and a plurality of signal layers, (2) a second unique sublaminate that includes a plurality of power layers and another plurality of signal layers, and (3) a symmetry axis that bisects the circuit board between the first unique sublaminate and the second unique sublaminate, wherein the first unique sublaminate and the second unique sublaminate are distinct from one another. Various other apparatuses, systems, and methods are also disclosed.
Abstract:
A line card of a set of line cards is configured to be coupled to a set of switch-fabric cards to collectively define at least a portion of an orthogonal cross fabric without a midplane board. The line card has an edge portion, a first side and a second side, opposite the first side. The line card includes a set of first set of connectors and a second set of connectors. The first set of connectors is disposed along the edge portion on the first side of the line card and the second set of connectors is disposed along the edge portion on the second side of the line card.