Patent classifications
B65H75/22
Unidirectional locking spool
The spool for storing and distributing linear product has a drum and inner flanges defining the ends of the drum. The drum is configured to receive a linear product wound about the drum. The inner flanges have locking gears on the outside faces of the inner flanges. The spool has an axle supporting the inner flanges and a pair of outer flanges. The outer flanges each have an outer flange gear positioned in their inner face and corresponding to the inner flange gear. The inner and outer flange gears cooperate to allow the drum to rotate in a first direction but not a second direction when the spool is supported by the outer flanges. The outer flanges are slightly taller than the inner flanges such that the spool may be positioned on a flat surface (e.g., truck bed or ground) and unwound without any equipment.
Unidirectional locking spool
The spool for storing and distributing linear product has a drum and inner flanges defining the ends of the drum. The drum is configured to receive a linear product wound about the drum. The inner flanges have locking gears on the outside faces of the inner flanges. The spool has an axle supporting the inner flanges and a pair of outer flanges. The outer flanges each have an outer flange gear positioned in their inner face and corresponding to the inner flange gear. The inner and outer flange gears cooperate to allow the drum to rotate in a first direction but not a second direction when the spool is supported by the outer flanges. The outer flanges are slightly taller than the inner flanges such that the spool may be positioned on a flat surface (e.g., truck bed or ground) and unwound without any equipment.
Corrugated cable dispenser
The present disclosure describes methods of manufacture and implementations of cable storage and dispensing systems combining the advantages of reel-based systems and box-based systems. The present system may be manufactured entirely out of corrugated cardboard or similar materials, reducing expense and weight compared to systems with wood, plastic, or metal reels or flanges, and adding recyclability in a single paper-based waste stream. The system may dispense cable in the same manner as reel-based systems, reducing tangling and aiding installation and deployment compared to box-based systems that do not utilize reels or spools. The system does not require the use of reel stands or other external components, and may be light and portable.
SLIDING LOCK FOR BREAK-DOWN SPOOL
A locking system for a spool comprising a barrel, a flange, and a sliding lock. The sliding lock has at least one rail that slidably engages with at least one barrel detent and at least one flange detent to prevent rotation of the flange on the barrel. The sliding lock comprises at least one arm with at least one catch. The at least one catch can be removably locked into at least one recess on the flange.
SLIDING LOCK FOR BREAK-DOWN SPOOL
A locking system for a spool comprising a barrel, a flange, and a sliding lock. The sliding lock has at least one rail that slidably engages with at least one barrel detent and at least one flange detent to prevent rotation of the flange on the barrel. The sliding lock comprises at least one arm with at least one catch. The at least one catch can be removably locked into at least one recess on the flange.
Fiber optics deploy reel
An adjustable height optical fiber cable reel comprises a first piece having a first base plate and a first tab protruding from the first base plate, the first tab having a first opening and a second opening, a second piece having a second base plate and a second tab protruding from the second base plate, the second tab having a pin. The pin is configured to engage the first opening to lock the adjustable height reel at a first height, and to engage the second opening to lock the adjustable height reel at a second height. The adjustable height reel may also be coupled to a slack storage tray. Optical fiber enclosures may also be configured with adjustable height reels with optional slack storage trays.
SPOOL WITH MOVABLE HUB
A spool has a first flange and a second flange. A barrel extends between the first flange and the second flange. A movable hub is located radially inward of the barrel. The barrel is axially wider than the movable hub and the movable hub is axially movable between a first operational position adjacent the first flange and a second operational position adjacent the second flange. The movable hub includes an axially-extending cantilevered detent arm forming a stop surface that limits axial movement of the movable hub toward one of the first flange and the second flange.
SPOOL WITH MOVABLE HUB
A spool has a first flange and a second flange. A barrel extends between the first flange and the second flange. A movable hub is located radially inward of the barrel. The barrel is axially wider than the movable hub and the movable hub is axially movable between a first operational position adjacent the first flange and a second operational position adjacent the second flange. The movable hub includes an axially-extending cantilevered detent arm forming a stop surface that limits axial movement of the movable hub toward one of the first flange and the second flange.
ROLL SUPPORT DEVICE
A roll support device includes: a shaft portion that supports a center hole of a rolled medium in which a medium is wound; a first guide member with which one end surface of the rolled medium in an axial direction of the shaft portion is in contact; a second guide member that is provided on the shaft portion and regulates, in the axial direction, an inner peripheral side of another end surface of the rolled medium in the axial direction; and a third guide member that regulates, in the axial direction, an outer peripheral side of the other end surface of the rolled medium supported by the shaft portion.
ROLL SUPPORT DEVICE
A roll support device includes: a shaft portion that supports a center hole of a rolled medium in which a medium is wound; a first guide member with which one end surface of the rolled medium in an axial direction of the shaft portion is in contact; a second guide member that is provided on the shaft portion and regulates, in the axial direction, an inner peripheral side of another end surface of the rolled medium in the axial direction; and a third guide member that regulates, in the axial direction, an outer peripheral side of the other end surface of the rolled medium supported by the shaft portion.