IP Library › Granted Patent US 12,107,599
Granted Patent B2
US 12,107,599 · App. 17/955,099 · Granted Oct 1, 2024

Digital-analog converter and digital-analog converter circuit

Inventor: Hiroyuki Kikuta (Yokohama, JP)
Assignee: LAPIS TECHNOLOGY CO., LTD.
H03M1/74H03M1/747
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Quick Facts
Patent No.
US 12,107,599
App. No.
17/955,099
Granted
Oct 1, 2024
Kind
B2
Abstract

A digital-analog converter includes a digital-analog converter circuit connected to a first mirror current circuit that receives an additional current obtained by adding a current from a voltage-current converter circuit for generating a current according to a received voltage signal to a shift current from a shift current source and a second mirror current circuit that receives the shift current. The digital-analog converter circuit includes current switching circuits. Each current switching circuit includes a first mirror current source that provides a mirror current from one of the first and the second mirror current circuit, a second mirror current source that provides a mirror current from the other, and a switch circuit that determines whether the first and the second mirror current source of each current switching circuit contribute to a value of an analog signal at an D/A output in response to a decoded signal value.

Claims (36)

1. A digital-analog converter comprising:

a decoder configured to receive a digital signal having a digital value and provide a plurality of decoded signals;

a voltage-current converter circuit configured to receive a voltage signal and generate a current according to the voltage signal;

a shift current source configured to generate a shift current;

a first mirror current circuit configured to receive an additional current obtained by adding the current from the voltage-current converter circuit to the shift current;

a second mirror current circuit configured to receive the shift current from the shift current source; and

a digital-analog converter circuit connected to the first mirror current circuit and the second mirror current circuit, the digital-analog converter circuit including a D/A output that provides an analog signal corresponding to the digital value,

the digital-analog converter circuit including a plurality of current switching circuits,

each of the plurality of current switching circuits including an output connected to the D/A output, a first mirror current source configured to supply a current to the output of each current switching circuit, and a second mirror current source configured to emit a current from the output of each current switching circuit,

each of the plurality of current switching circuits including a switch circuit configured to determine whether the first mirror current source and the second mirror current source of each current switching circuit contribute to a value of an analog signal at the D/A output in response to one of the plurality of decoded signals,

the plurality of current switching circuits including a first group of current switching circuits and a second group of current switching circuits,

in each current switching circuit in the first group, the first mirror current source being configured to generate a mirror current from the first mirror current circuit and the second mirror current source being configured to generate a mirror current from the second mirror current circuit, and

in each of the current switching circuit in the second group, the first mirror current source being configured to generate a mirror current from the second mirror current circuit and the second mirror current source being configured to generate a mirror current from the first mirror current circuit.

2. The digital-analog converter according to claim 1 , wherein each of the plurality of current switching circuits has the first mirror current source electrically connected between the output of each current switching circuit and a high potential power supply line, and the second mirror current source electrically connected between the output of each current switching circuit and a low potential power supply line.

3. The digital-analog converter according to claim 2 , wherein:

the switch circuit includes a first switching element and a second switching element,

the first switching element is connected in series to the first mirror current source between the output of each current switching circuit and the high potential power supply line, and

the second switching element is connected in series to the second mirror current source between the output of each current switching circuit and the low potential power supply line.

4. The digital-analog converter according to claim 1 , further comprising:

an output circuit connected to the D/A output,

the output circuit including a current-voltage converter circuit, and

the current-voltage converter circuit including an operational amplifier having a negative input connected to the D/A output of the digital-analog converter circuit, a positive input connected to a reference voltage line configured to provide a reference voltage from a reference voltage source, and a resistor configured to connect the negative input of the operational amplifier and an output of the operational amplifier.

5. The digital-analog converter according to claim 4 , wherein the first mirror current source and the second mirror current source in each of the plurality of current switching circuits are connected to the reference voltage line, which is configured to provide a reference voltage from the reference voltage source, when the first mirror current source and the second mirror current source of each current switching circuit do not contribute to a value of an analog signal at the D/A output.

6. The digital-analog converter according to claim 5 , wherein:

the switch circuit further includes a first switching element, a second switching element, a third switching element, a fourth switching element, and a reference input connected to the reference voltage line,

the first switching element is connected in series to the first mirror current source between the output of each current switching circuit and a high potential power supply line,

the second switching element is connected in series to the second mirror current source between the output of each current switching circuit and a low potential power supply line,

the third switching element is connected in series to the first mirror current source between the reference input of each current switching circuit and the high potential power supply line,

the fourth switching element is connected in series to the second mirror current source between the reference input of each current switching circuit and the low potential power supply line,

the first switching element and the fourth switching element are configured to receive a first switching signal,

the second switching element and the third switching element are configured to receive a second switching signal, and

the first switching signal serve as a complementary signal of the second switching signal.

7. A digital-analog converter circuit comprising:

the digital-analog converter according to claim 1 as a first digital-analog converter;

the digital-analog converter according to claim 1 as a second digital-analog converter; and

an output circuit connected to the D/A output of the first digital-analog converter and the D/A output of the second digital-analog converter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2022
From: KIKUTA, HIROYUKI
To: LAPIS TECHNOLOGY CO., LTD.
Reel/Frame 061245/0952 →
Priority Claims (1)
JP 2021-162038 · Sep 30, 2021 · national
Continuity (1)
Related Publication 20230112665A1 · Apr 13, 2023