Claims
- 1. A method for supplying electrical power to a utility device comprising the steps of:
(a) providing a controlled switch circuit which is operative to switchably couple an operational voltage to said utility device in association with respectively different modes of operation of said utility device; and (b) selectively adjusting current handling capability of said controlled switch circuit in accordance with said respectively different modes of operation of said utility device.
- 2. The method according to claim 1, wherein said controlled switch circuit comprises a transistor switch circuit, and wherein step (b) comprises coupling respectively different drive currents to said transistor switch circuit in accordance with said respectively different modes of operation of said utility device.
- 3. The method according to claim 1, wherein said utility device comprises a subscriber line interface circuit (SLIC), and wherein said controlled switch circuit is operative to switchably couple a high battery supply voltage to said SLIC in association with respectively different on-hook and off-hook modes of operation of said SLIC.
- 4. The method according to claim 3, wherein said SLIC includes
a tip/ring amplifier unit to which currents representative of voice signal signals are coupled, and having tip and ring outputs adapted to be coupled to tip and ring conductors of a subscriber loop pair, said tip/ring amplifier unit having respectively different gain characteristics for said respectively different modes of operation of said SLIC, and a battery bias unit coupled with said tip/ring amplifier unit and said controlled switch circuit, and being operative to bias said tip/ring amplifier unit in accordance with a voltage applied thereto by said controlled switch circuit.
- 5. The method according to claim 4, wherein said battery bias unit is operative to bias said tip/ring amplifier in accordance with said high battery supply voltage for a first, relatively high gain characteristic of said tip/ring amplifier associated with on-hook signaling and ringing mode of operation of said SLIC, and wherein step (b) comprises setting said current handling capability of said controlled switch circuit at a relatively large value for said on-hook signaling and ringing mode of operation of said SLIC.
- 6. The method according to claim 5, wherein said battery bias unit is operative to bias said tip/ring amplifier in accordance with said high battery supply voltage for a second, reduced gain characteristic of said tip/ring amplifier associated with off-hook voice signaling mode of operation of said SLIC, and wherein step (b) comprises setting said current handling capability of said controlled switch circuit at a relatively small value for said off-hook voice signaling mode of operation of said SLIC.
- 7. The method according to claim 3, wherein said controlled switch unit comprises a transistor switch unit, and wherein step (b) comprises coupling respectively different drive currents to said transistor switch circuit in accordance with said respectively different modes of operation of said SLIC.
- 8. An apparatus for supplying electrical power to a utility device comprising:
a controlled switch circuit which is operative to switchably couple an operational voltage to said utility device in association with respectively different modes of operation of said utility device; and a selectively controlled drive circuit, which is operative to selectively adjust current handling capability of said controlled switch circuit in accordance with said respectively different modes of operation of said utility device.
- 9. The apparatus according to claim 8, wherein said controlled switch circuit comprises a transistor switch circuit, and wherein said selectively controlled drive circuit is operative to couple respectively different drive currents to said transistor switch circuit in accordance with said respectively different modes of operation of said utility device.
- 10. The apparatus according to claim 8, wherein said utility device comprises a subscriber line interface circuit (SLIC), and wherein said controlled switch circuit is operative to switchably couple a high battery supply voltage to said SLIC in association with respectively different on-hook and off-hook modes of operation of said SLIC.
- 11. The apparatus according to claim 10, wherein said SLIC includes
a tip/ring amplifier unit to which currents representative of voice signal signals are coupled, and having tip and ring outputs adapted to be coupled to tip and ring conductors of a subscriber loop pair, said tip/ring amplifier unit having respectively different gain characteristics for said respectively different modes of operation of said SLIC, and a battery bias unit coupled with said tip/ring amplifier unit and said controlled switch circuit, and being operative to bias said tip/ring amplifier unit in accordance with a voltage applied thereto by said controlled switch circuit.
- 12. The apparatus according to claim 11, wherein said battery bias unit is operative to bias said tip/ring amplifier in accordance with said high battery supply voltage for a first, relatively high gain characteristic of said tip/ring amplifier associated with on-hook signaling and ringing mode of operation of said SLIC, and wherein said selectively controlled drive circuit is operative to set said current handling capability of said controlled switch circuit at a relatively large value for said on-hook signaling and ringing mode of operation of said SLIC.
- 13. The apparatus according to claim 12, wherein said battery bias unit is operative to bias said tip/ring amplifier in accordance with said high battery supply voltage for a second, reduced gain characteristic of said tip/ring amplifier associated with off-hook voice signaling mode of operation of said SLIC, and wherein said selectively controlled drive circuit is operative to set said current handling capability of said controlled switch circuit at a relatively small value for said off-hook voice signaling mode of operation of said SLIC.
- 14. The apparatus according to claim 10, wherein said controlled switch unit comprises a transistor switch unit, and wherein said selectively controlled drive circuit is operative to couple respectively different drive currents to said transistor switch circuit in accordance with said respectively different modes of operation of said SLIC.
- 15. A battery voltage supply circuit for a subscriber line interface circuit (SLIC) having a multi-mode tip/ring amplifier unit, tip and ring outputs of which are adapted to be coupled to tip and ring conductors of a subscriber loop pair, and inputs of which are coupled to receive voice, signaling and ringing signals in accordance with the mode of operation of said SLIC, and a biasing unit, to which a battery voltage is coupled, and which is operative to controllably couple prescribed bias voltages to said tip/ring amplifier unit in accordance with said mode of operation of said subscriber line interface circuit, said battery voltage supply circuit comprising:
a battery voltage switch circuit which is operative to switchably couple said battery voltage to said biasing unit; and a selectively controlled drive circuit, which is operative to adjust current handling capability of said battery voltage switch circuit based upon the mode of operation of said SLIC.
- 16. The battery voltage supply circuit according to claim 15, wherein said battery voltage switch circuit comprises a transistor switch circuit, and wherein said selectively controlled drive circuit is operative to couple respectively different drive currents to said transistor switch circuit in accordance with respectively different modes of operation of said SLIC.
- 17. The battery voltage supply circuit according to claim 16, wherein said transistor switch circuit is operative to switchably couple a high battery supply voltage to said biasing unit in association with respectively different on-hook and off-hook modes of operation of said SLIC.
- 18. The battery voltage supply circuit according to claim 15, wherein said biasing unit is operative to bias said tip/ring amplifier in accordance with a high battery supply voltage for a first, relatively high gain characteristic of said tip/ring amplifier associated with on-hook signaling and ringing mode of operation of said SLIC, and wherein said selectively controlled drive circuit is operative to set said current handling capability of said battery voltage switch circuit at a relatively large value for on-hook signaling and ringing mode of operation of said SLIC.
- 19. The battery voltage supply circuit according to claim 18, wherein said biasing unit is operative to bias said tip/ring amplifier in accordance with said high battery supply voltage for a second, reduced gain characteristic of said tip/ring amplifier associated with off-hook voice signaling mode of operation of said SLIC, and wherein said selectively controlled drive circuit is operative to set said current handling capability of said battery voltage switch circuit at a relatively small value for said off-hook voice signaling mode of operation of said SLIC.
- 20. The battery voltage supply circuit according to claim 18, wherein said battery voltage switch circuit comprises a transistor switch circuit, and wherein said selectively controlled drive circuit is operative to couple respectively different drive currents to said transistor switch circuit in accordance with respectively different modes of operation of said SLIC.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application is a continuation-in-part of co-pending U.S. patent application Ser. No. 10/091,976, filed Mar. 6, 2002, by L. Enriquez et al, entitled: “Programmable Subscriber Line Circuit Partitioned Into High Voltage Interface and Digital Control Subsections” (hereinafter referred to as the '976 application), assigned to the assignee of the present application and the disclosure of which is incorporated herein.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10091976 |
Mar 2002 |
US |
Child |
10177706 |
Jun 2002 |
US |