Claims
- 1. A transmitter pre-driver for driving a driver circuit having a pair of driver inputs, said pre-driver and said driver circuit coupled to a pair of rail supply lines, comprising:
(a) a pair of mid-voltage rails; (b) a connector switching circuit coupled between said pair of driver inputs and said mid-voltage rails, operative to switch in response to receiving a digital data signal D and to connect selected ones of said driver inputs to corresponding ones of said mid-voltage rails according to said data signal D and its complement {overscore (D)}; and (c) a regulator circuit coupled between said rail supply lines and said mid-voltage rails, operative to establish mid-voltage rail voltages VMID1 and VMID2, whose values lie between voltages of said rail supply lines, in response to receiving said data signal D and its complement {overscore (D)}. wherein VMID1 and VMID2 are generated through charge sharing of capacitances within said pre-driver circuit and said driver circuit.
- 2. The transmitter pre-driver according to claim 1, wherein said regulator circuit is comprised of a first array of switches coupling a plurality of capacitors to said rail supply lines and said connector switching circuit is comprised of a second array of switches coupling said mid-voltage rails to said driver inputs.
- 3. The transmitter pre-driver according to claim 1, wherein said connector switching circuit includes a switch responsive to said data signal D and a switch responsive to said complement {overscore (D)} coupled to each of said driver inputs and to respective ones of said mid voltage rails.
- 4. The transmitter pre-driver according to claim 1, wherein said regulator circuit is comprised of a first array of four switches coupled to a first set of two matched capacitors and a second array of four switches coupled to a second set of two matched capacitors.
- 5. The transmitter pre-driver according to claim 1, wherein each of said mid-voltage rails is coupled to a capacitor.
- 6. The transmitter pre-driver according to claim 1, wherein said capacitance within said driver circuit is provided by gate capacitances of a plurality of Metal Oxide Semiconductor (MOS) devices.
- 7. The transmitter pre-driver according to claim 6, wherein said plurality of MOS devices includes a pair of NMOS transistors forming a first differential pair and a pair of PMOS transistors forming a second differential pair.
- 8. A method of driving a driver circuit using a transmitter pre-driver, comprising:
(a) receiving a digital data signal D; (b) switching a connector switching circuit coupled between a pair of driver inputs to said driver circuit and a pair of mid-voltage rails in response to said digital data signal D and its complement {overscore (D)} to connect selected ones of said driver inputs to corresponding ones of said mid-voltage rails; and (c) switching a regulator circuit coupled between a pair of rail supply lines and said mid-voltage rails to establish mid-voltage rail voltages VMID1 and VMID2 in response to said digital data signal D and its complement {overscore (D)}. wherein VMID1 and VMID2 are generated through charge sharing of capacitances within said pre-driver circuit and said driver circuit.
- 9. The method according to claim 8, wherein said regulator circuit is comprised of a first array of switches coupling a plurality of capacitors to said rail supply lines and said connector switching circuit is comprised of a second array of switches coupling said mid-voltage rails to said driver inputs.
- 10. The method according to claim 8, wherein said connector switching circuit includes a switch responsive to said data signal D and a switch responsive to said complement {overscore (D)} coupled to each of said driver inputs and to respective ones of said mid voltage rails.
- 11. The method according to claim 8, wherein said regulator circuit is comprised of a first array of four switches coupled to a first set of two matched capacitors and a second array of four switches coupled to a second set of two matched capacitors.
- 12. The method according to claim 8, wherein each of said mid-voltage rails is coupled to a capacitor.
- 13. The method according to claim 8, wherein said capacitance within said driver circuit is provided by gate capacitances of a plurality of Metal Oxide Semiconductor (MOS) devices.
- 14. The method according to claim 13, wherein said plurality of MOS devices includes a pair of NMOS transistors forming a first differential pair and a pair of PMOS transistors forming a second differential pair.
RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 09/621,964, filed Jul. 21, 2000, which is herein incorporated by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09621964 |
Jul 2000 |
US |
Child |
10359231 |
Feb 2003 |
US |