Claims
- 1. A voltage level converter circuit, comprising:
an output node; a first node having a first voltage according to an input voltage; a first transistor connected between said first node and said output node, and turned on when said input voltage attains a first logic level; a second node having a second voltage; a second transistor connected between said second node and said output node, and turned on when said input voltage attains a second logic level; and a third transistor of a first conductivity type, connected between said output node and said second transistor, and having a gate supplied with a first control signal according to a level of said second voltage.
- 2. The voltage level converter circuit according to claim 1, further comprising:
a third node having a third voltage according to said input voltage; and a fourth transistor of a second conductivity type connected between said third node and a gate of said second transistor, and having a gate supplied with an inverted signal of said first control signal.
- 3. The voltage level converter circuit according to claim 2, further comprising control means for receiving said first control signal and said input voltage and supplying a second control signal to a gate of said fourth transistor.
- 4. The voltage level converter circuit according to claim 1, further comprising:
a fourth transistor connected between said first transistor and said output node; a third node having a constant voltage; and comparison means for comparing said constant voltage with a voltage of said output node and supplying the voltage having a greater absolute value to the gate of said fourth transistor.
- 5. The voltage level converter circuit according to claim 4, further comprising transistor control means for supplying said second voltage to a gate of said fourth transistor when a supplied second control signal is active.
- 6. The voltage level converter circuit according to claim 1, further comprising:
a plurality of fourth transistors connected in series between said first transistor and said output node; a third node having a constant voltage; and a plurality of comparison means, each arranged in a one-to-one correspondence with said plurality of fourth transistors for comparing said constant voltage with a voltage of a source of said fourth transistor and supplying the voltage having a greater absolute value to a gate of said fourth transistor.
- 7. The voltage level converter circuit according to claim 1, further comprising:
a fourth transistor of a second conductivity type, connected between a gate of said third transistor and a gate of said second transistor, and having a gate connected to a drain of said second transistor; a fifth transistor of the first conductivity type, connected between said fourth transistor and said second node, and having a gate connected to a drain of said second transistor; and a sixth transistor of the second conductivity type, connected between a gate of said third transistor and a drain of said second transistor, and having a gate connected to a drain of said fifth transistor, wherein said second transistor is of the first conductivity type, and has a gate connected to a drain of said fifth transistor.
- 8. A voltage level converter circuit, comprising:
an output node; a first node having a first voltage; a first transistor of a first conductivity type, connected between said output node and said first node, and turned on when an input voltage having a first logic level is supplied to a gate thereof; a second node having a second voltage; a second transistor of the first conductivity type connected between said output node and said second node, and turned on when said input voltage attains a second logic level; a third transistor of the first conductivity type connected between a gate of said second transistor and said second node; a fourth transistor of the first conductivity type connected between a gate of said third transistor and said second node, and having a gate connected to a gate of said second transistor; a fifth transistor of the first conductivity type connected between a gate of said first transistor and a drain of said fourth transistor, and having a gate supplied with a control signal according to a level of a second voltage; a sixth transistor of a second conductivity type connected between a gate of said fifth transistor and a gate of said third transistor, and having a gate connected to a gate of said second transistor; and a seventh transistor of the second conductivity type connected between a gate of said fifth transistor and a gate of said fourth transistor, and having a gate connected to a gate of said third transistor.
- 9. The voltage level converter circuit according to claim 8, further comprising level determination means for comparing an absolute value of said second voltage with an absolute value of a reference voltage, and providing said control signal of a second logic level when the absolute value of said second voltage is smaller than the absolute value of said reference voltage, and providing said control signal of a first logic level when the absolute value of said second voltage is larger than the absolute value of said reference voltage.
- 10. The voltage level converter circuit according to claim 9, wherein said first voltage is a ground voltage, and said first conductivity type is an N channel MOS type.
- 11. The voltage level converter circuit according to claim 8, wherein said first voltage is a ground voltage, and said first conductivity type is an N channel MOS type.
- 12. A voltage level converter circuit, comprising:
a first node having a first voltage; a first output node; first voltage conversion means connected between said first node and said first output node, responsive to an input first switching signal for supplying a first internal voltage according to said first voltage to said first output node; a second node having a second voltage; a second output node; second voltage conversion means connected between said second node and said second output node, responsive to an input second switching signal for supplying a second internal voltage according to said second voltage to said second output node; a first transistor of a first conductivity type connected between said first node and said second output node, and having a gate connected to said first-output node; and a second transistor of the first conductivity type connected between said second node and said second output node.
- 13. The voltage level converter circuit according to claim 12, further comprising:
an intermediate node located on a connection line between said first transistor and said second transistor; and constant voltage supply means responsive to said second switching signal for supplying a constant voltage to said intermediate node.
- 14. The voltage level converter circuit according to claim 13, further comprising a third transistor of the first conductivity type connected between said first transistor and said second transistor.
- 15. The voltage level converter circuit according to claim 12, further comprising a third transistor-of the first conductivity type connected between said first transistor and said second transistor.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9-251860 |
Sep 1997 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is related to copending application Ser. No. 08/716,846, filed Sep. 10, 1996, commonly assigned with the present application.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09045568 |
Mar 1998 |
US |
Child |
09515594 |
Feb 2000 |
US |