IP Library › Granted Patent US 10,714,243
Granted Patent B2
US 10,714,243 · App. 16/284,678 · Granted Jul 14, 2020

Variable resistance circuit, oscillator circuit, and semiconductor device

Inventors: Takahiro Kikuchi (Kai, JP); Toshikazu Kuwano (Fujimi-machi, JP); Sachiyuki Abe (Hara-mura, JP); Shuji Kawaguchi (Suwa, JP)
Assignee: SEIKO EPSON CORPORATION
H01C10/50G05F1/561H01C1/16H01C10/06H01C10/16H03K3/011H03K3/0231H03K3/03H03K4/501H03L7/02
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Quick Facts
Patent No.
US 10,714,243
App. No.
16/284,678
Granted
Jul 14, 2020
Kind
B2
Abstract

Provided is a variable resistance circuit in which the resistance value of the variable resistance circuit can be accurately adjusted, by reducing the error in the change amount of the resistance value of the variable resistance circuit due to the on-resistances of switch circuits even if the switch circuits that each bypass a resistor included in a ladder resistor circuit are switched between an OFF state and an ON state. This variable resistance circuit includes: a ladder resistor circuit including a plurality of resistors; a first switch circuit connected in series to one end of one resistor of the plurality of resistors; and a second switch circuit connected in parallel to a series circuit of the one resistor and the first switch circuit. When one of the first and second switch circuits is turned on, the other of the first and second switch circuits is turned off.

Claims (29)

1. A variable resistance circuit comprising:

a first resistance sub-circuit having:

a first resistor;

a first switch circuit connected in series to one end of the first resistor; and

a second switch circuit connected in parallel to a series circuit of the first resistor and the first switch circuit; and

a second resistance sub-circuit connected in series with the first resistance sub-circuit, the second resistance sub-circuit having:

a second resistor; and

a third switch circuit connected in parallel to the second resistor,

wherein, when one of the first and second switch circuits is turned on, the other of the first and second switch circuits is turned off, the first and second resistance sub-circuits form a ladder resistor circuit, and a switch circuit connected in series with the second resistor is not provided in the second resistance sub-circuit.

2. The variable resistance circuit according to claim 1 , further comprising:

an additional first resistance sub-circuit in the ladder resistor circuit.

3. The variable resistance circuit according to claim 1 , wherein the first switch circuit, the second switch circuit, and the third switch circuit each include a same number of switch elements.

4. The variable resistance circuit according to claim 1 , wherein the first switch circuit, the second switch circuit, and the third switch circuit each has a same on-resistance.

5. An oscillator circuit comprising:

a charging and discharging type oscillator configured to perform an oscillation operation at an oscillation frequency according to the amount of a control current; and

a control current generation unit that includes the variable resistance circuit according to claim 1 , and is configured to generate the control current based on an output voltage of a temperature sensor using a resistance value of the variable resistance circuit that is set by a control signal.

6. An oscillator circuit comprising:

a charging and discharging type oscillator configured to perform an oscillation operation at an oscillation frequency according to the amount of a control current; and

a control current generation unit that includes the variable resistance circuit according to claim 2 , and is configured to generate the control current based on an output voltage of a temperature sensor using a resistance value of the variable resistance circuit that is set by a control signal.

7. An oscillator circuit comprising:

a charging and discharging type oscillator configured to perform an oscillation operation at an oscillation frequency according to the amount of a control current; and

a control current generation unit that includes the variable resistance circuit according to claim 3 , and is configured to generate the control current based on an output voltage of a temperature sensor using a resistance value of the variable resistance circuit that is set by a control signal.

8. An oscillator circuit comprising:

a charging and discharging type oscillator configured to perform an oscillation operation at an oscillation frequency according to the amount of a control current; and

a control current generation unit that includes the variable resistance circuit according to claim 4 , and is configured to generate the control current based on an output voltage of a temperature sensor using sensor using a resistance value of the variable resistance circuit that is set by a control signal.

9. A semiconductor device comprising the variable resistance circuit according to claim 1 .

10. A semiconductor device comprising the variable resistance circuit according to claim 2 .

11. A semiconductor device comprising the variable resistance circuit according to claim 3 .

12. A semiconductor device comprising the variable resistance circuit according to claim 4 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2019
From: KIKUCHI, TAKAHIRO; KUWANO, TOSHIKAZU; ABE, SACHIYUKI; KAWAGUCHI, SHUJI
To: SEIKO EPSON CORPORATION
Reel/Frame 048428/0243 →
Priority Claims (1)
JP 2018-031636 · Feb 26, 2018 · national
Continuity (1)
Related Publication 20190267972A1 · Aug 29, 2019