Adapter panel with lateral sliding adapter arrays
An adapter panel arrangement including a chassis and a panel of adapters. The adapters defining open rearward cable connections and open forward cable connections of the panel arrangement. The adapters being arranged in arrays that slide independently of other adapter arrays to provide access to the open rearward and open forward cable connections.
1 . A fiber optic apparatus, comprising:
a rack-mountable chassis having first and second mounting flanges at opposite sides of the chassis, wherein the chassis is capable of supporting fiber optic connection equipment comprising first and second rows of fiber optic connection locations, each connection location being a front port, each row comprising forty-eight (48) front ports;
a first frame member having a first plurality of front ports from the first row;
a second frame member having a second plurality of front ports from the first row, the second frame member being adjacent to the first frame member and aligned in the same horizontal plane with the first frame member; and
a slidable member supporting the first and second frame members, wherein the slidable member defines a first bottom access opening sized and positioned to facilitate finger access to the first plurality of front ports.
2 . The fiber optic apparatus of claim 1 , wherein the slidable member defines a second bottom access opening sized and positioned to facilitate access to the second plurality of front ports.
3 . The fiber optic apparatus of claim 1 , wherein the first and second frame members are configured such that a first plurality of ports from the second row can be arranged on the first frame member, and a second plurality of ports from the second row can be arranged on the second frame member.
4 . The fiber optic apparatus of claim 1 , wherein the rack-mountable chassis is capable of supporting fiber optic connection equipment in the form of adapters that define the fiber optic connection locations in each of the first and second rows.
5 . The fiber optic apparatus of claim 1 , wherein each of the first and second frame members is slidable relative to the chassis.
6 . The fiber optic apparatus of claim 5 , wherein the first and second frame members slide relative to each other.
7 . The fiber optic apparatus of claim 1 , wherein the slidable member is slidable in a horizontal plane between a forward position and a rearward position relative to the chassis.
8 . The fiber optic apparatus of claim 1 , wherein the front ports within each of the first and second rows are not uniformly spaced.
9 . The fiber optic apparatus of claim 1 , wherein the first and second frame members are configured such that a gap separates the first plurality of front ports on the first frame member and the second plurality of front ports on the second frame member, wherein the gap is larger than the distance between adjacent ports on the first frame member and the distance between adjacent ports on the second frame member.
10 . The fiber optic apparatus of claim 9 , further comprising a forwardly extending member that is to be horizontally aligned with the gap, the forwardly extending member terminating in a vertical portion positioned in a vertical plane that is forward of a plane to be occupied by the first row of fiber optic connection locations, wherein the forwardly extending member can be used for cable routing.
11 . A fiber optic apparatus, comprising:
a rack-mountable chassis having first and second mounting flanges at opposite sides of the chassis;
a guide member disposed within the chassis, the guide member including at least one engaging member along the guide member, the engaging member being one of a projection or a detent; and
a first support member that is slidable relative to the chassis;
wherein the chassis is configured to receive fiber optic connection equipment comprising a row of at least forty-eight (48) fiber optic connection locations, each of the at least forty-eight (48) connection locations comprising a port configured to receive an LC connector; and
wherein the first support member is configured to receive at least a first plurality of ports from the row of connection locations, wherein the first support member engages the guide member during sliding movement of the support member, and wherein the first support member includes a first complementary member that is engageable with the at least one engaging member of the guide member to retain the first support member in a first position, wherein the first support member defines a bottom access opening sized and positioned to facilitate finger access to at least some of the first plurality of ports.
12 . The fiber optic apparatus of claim 11 , wherein the chassis is configured to receive fiber optic connection equipment that comprises a plurality of adapters that define the fiber optic connection locations in the row.
13 . The fiber optic apparatus of claim 11 , further including a second support member adjacent the first support member and aligned in the same horizontal plane with the first support member, wherein the second support member is configured to receive a second plurality of ports from the row, and wherein the second support member is slidable relative to the chassis and slidable relative to the first support member.
14 . The fiber optic apparatus of claim 11 , wherein the at least one engaging member is a projection and the first complementary member is a detent.
15 . The fiber optic apparatus of claim 11 , wherein the first support member includes a second complementary member configured to engage the at least one engaging member of the guide member to retain the first support member in a second position.
16 . The fiber optic apparatus of claim 15 , wherein each of the first and second complementary members is a detent, and wherein the at least one engaging member is a projection.
17 . The fiber optic apparatus of claim 11 , wherein the first support member includes a rail that is received within the guide member, and wherein the first complementary member is formed on the rail.
18 . The fiber optic apparatus of claim 11 , further comprising a forwardly extending member configured to be horizontally aligned with a gap between a first group and a second group of connection locations, the forwardly extending member terminating in a vertical portion to be positioned in a vertical plane that is forward the row of fiber optic connection locations, wherein the forwardly extending member can be used for cable routing.
19 . The fiber optic apparatus of claim 11 , wherein the chassis is configured to receive a first row of forty-eight (48) fiber optic connection locations and a second row of forty-eight (48) fiber optic connection locations between the opposite sides of the chassis, wherein the second row is to be substantially parallel to and positioned below the first row.