1460734247-04ced1fe-3a4f-48ca-a59a-9796694765e8

1. A method for encoding a connection between a base and a mobile handset, comprising the steps of:
a) generating a key agreed to between the base and the mobile handset during a first connection, wherein the key comprises an index assigned to by the base during the first connection; and
b) using the key for a second connection between the base and the mobile handset, wherein the data to be transmitted between the base and the mobile handset are identified and encoded using the index assigned to the key.
2. The method according to claim 1, wherein the key comprises a default cipher key.
3. The method according to claim 1, wherein the generation of the key is implemented after a first registration between the base and the mobile handset, and is permanently stored in a memory.
4. The method according to claim 1, wherein the key is determined as an actual key at an arbitrary point of time during a connection establishment between the base and the mobile handset.
5. The method according to claim 1, wherein during the second connection a new key is agreed to with which a further connection between the base and the mobile handset is re-encoded.
6. A computer program product comprising: a coding means which is adapted to implement the steps of a method according to claim 1 when run on a computer.
7. The method of claim 1, wherein the key comprises a derived cipher key.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. An optical fiber termination apparatus, comprising:
a housing defining an optical fiber receiving chamber and having a connector adaptor receiving opening, wherein the optical fiber receiving chamber is configured to receive and retain a loop of optical fiber at a bend radius exceeding a minimum bend radius of the optical fiber;
a connector adaptor positioned in the connector adaptor receiving opening and having a connector opening therein extending from outside the housing to the optical fiber receiving chamber, the connector opening being configured to mate with a connector of a predetermined connector type; a seal member positioned between an inner wall of the housing and the connector adaptor to seal a gap therebetween; and a removable attachment member that retains the connector adaptor in the connector adaptor receiving opening, wherein the removable attachment member comprises a spring member and wherein the housing and the connector adaptor each have an opening therein for receiving the spring member; and
a removable attachment member that retains the connector adaptor in the connector adaptor receiving opening.
2. The apparatus of claim 1 further comprising at least one of the connector or a removable closure member in the connector opening that closes the connector opening.
3. The apparatus of claim 1 wherein the opening in the connector adaptor comprises a first channel in an outer surface thereof and a second channel in the outer surface thereof on an opposite side of the connector adaptor.
4. The apparatus of claim 1 wherein the optical fiber receiving chamber is configured to receive a length of the optical fiber sufficient to allow removal of the connector adaptor from the housing to allow access to a back fiber connection member of the connector while retaining the loop of optical fiber at a bend radius exceeding the minimum bend radius of the optical fiber.
5. The apparatus of claim 4 wherein the housing includes an optical fiber receiving opening therein extending into the optical fiber receiving chamber.
6. An optical fiber termination apparatus, comprising:
a plurality of housings, each defining an optical fiber receiving chamber and having a connector adaptor receiving opening;
a connector adaptor positioned in the connector adaptor receiving opening of each of the housings and having a connector opening therein extending from outside the housing to the optical fiber receiving chamber, the connector opening of each connector adaptor being configured to mate with a connector of a predetermined connector type;
an optical junction box;
an optical fiber tube extending from the optical fiber receiving opening of each of the housings to the optical junction box;
an optical fiber extending through each of the optical fiber tubes between the optical junction box and the plurality of housings; and
an optical fiber splice member in the optical junction box configured to optically couple the optical fibers to respective source optical fibers extending into the optical junction box.
7. The apparatus of claim 6 wherein the optical fiber receiving chamber is configured to receive and retain a loop of optical fiber at a bend radius exceeding a minimum bend radius of the optical fiber.
8. The apparatus of claim 6 wherein the optical fiber splice member comprises an optical fiber splice tray.
9. The apparatus of claim 6 further comprising an optical fiber termination connector on an end of the optical fiber in each of the plurality of housings, the optical fiber termination connector being configured to releasably couple to the back fiber connection member.
10. The apparatus of claim 9 further comprising a sealant in each of the tubes between the respective housings and the optical junction box.
11. The apparatus of claim 10 further comprising the connector positioned in the connector opening, the connector having a closable front fiber connection member on a face thereof extending from the housing and wherein the optical fiber receiving chamber is environmentally sealed when the front fiber connection member is closed.
12. The apparatus of claim 11 further comprising, for each housing, a seal member positioned between the connector and the connector opening and a seal between the optical fiber tube and the optical fiber receiving opening and wherein the optical fiber receiving chamber is environmentally sealed by the seal member positioned between the connector and the connector opening, the seal between the optical fiber tube and the optical fiber receiving opening and the sealant in the optical fiber tube and wherein opening the front fiber connection member on the connector of one of the housings will not break the environmental seal for other of the housings.
13. The apparatus of claim 12 wherein the seal between the optical fiber tube and the optical fiber receiving opening comprises an adhesive and the seal member positioned between the connector and the connector opening comprises an O-ring.
14. The apparatus of claim 12 wherein each of the housings is configured to receive only a single connector.
15. The apparatus of claim 6 wherein the respective source optical fibers extending into the optical junction box comprise an optical drop cable coupled to an optical distribution source.
16. A method of terminating optical fiber comprising:
routing an optical fiber from a main distribution line to an optical fiber termination apparatus housing;
selecting a desired connector type for terminating the routed optical fiber; installing a connector of the selected connector type in a connector adaptor having a connector opening therein configured to mate with the selected connector type;
coupling the routed optical fiber to a back fiber connection member of the connector; and

installing the connector adaptor in the housing.
17. The method of claim 16 wherein routing an optical fiber comprises:
routing the optical fiber from the main distribution line to an optical junction box; splicing the optical fiber from the main distribution line to a termination optical fiber in the optical junction box; and
routine the termination optical fiber to the optical fiber termination apparatus housing.
18. The method of claim 17 wherein a plurality of optical fibers are routed from the main distribution line to the optical junction box and spliced to respective termination optical fibers and wherein routing the termination optical fiber comprises routing respective ones of the termination optical fibers to different optical fiber termination apparatus housings to provide a multi-drop connection from the main distribution line.
19. The method of claim 18 further comprising providing environmental sealing of the routing of the respective termination optical fibers configured so that breach of the environmental sealing for one of the termination optical fibers will not break the environmental sealing for other of the termination optical fibers.
20. The method of claim 16 wherein routing an optical fiber comprises:
separating a plurality of optical fibers from the main distribution line;
singulating the respective separated optical fibers; and
routing respective ones of the singulated optical fibers to different optical fiber termination apparatus housings to provide a multi-drop connection from the main distribution line.