IP Library Granted Patent US 12689448
Granted Patent B2
US 12689448 · App. 18/272,565 · Granted Jul 21, 2026

Power source circuit and ocean-floor optical cable

Inventor: Narihiro Arai (Tokyo, JP)
Assignee: NEC CORPORATION
H04B10/808H01S3/0912H01S3/0941H02M3/04
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12689448
App. No.
18/272,565
Granted
Jul 21, 2026
Kind
B2
Abstract

A power source circuit includes circuit elements each including: a current control circuit including a DC/DC converter that inputs a predetermined voltage and outputs a voltage adjusted based on a control signal, to a load operated by feeding a predetermined current, a voltage dividing resistor that generates a reference voltage according to a voltage output from the DC/DC converter, a current detecting resistor that generates a current detecting voltage according to a current fed to the load, and a feedback circuit that compares the reference voltage with the current detecting voltage and outputs the control signal, to the DC/DC converter; and one or more Zener diodes connected in parallel to the DC/DC converter at a terminal for inputting the predetermined voltage, wherein the circuit elements are connected in series, and a system current is supplied from an external power source to the circuit elements connected in series.

Claims (39)

1 . A power source circuit comprising a plurality of circuit elements each including:

a current control circuit including

a DC/DC converter configured to input a predetermined voltage and output a voltage being adjusted based on a control signal for feedback control, to a load to be operated by feeding a predetermined current,

a voltage dividing resistor configured to generate a reference voltage according to a voltage being output from the DC/DC converter,

a current detecting resistor configured to generate a current detecting voltage according to a current being fed to the load, and

a feedback circuit configured to compare the reference voltage and the current detecting voltage with each other and output the control signal indicating a comparison result, to the DC/DC converter; and

one or more Zener diodes being connected in parallel to the DC/DC converter at a terminal for inputting the predetermined voltage, wherein

a plurality of the circuit elements are connected to one another in series, and

a system current is supplied from an external power source to a plurality of the circuit elements being connected to one another in series.

2 . The power source circuit according to claim 1 , wherein

the DC/DC converter outputs a voltage acquired by constantly boosting the predetermined voltage while inputting the predetermined voltage.

3 . The power source circuit according to claim 1 , wherein

the feedback circuit is a comparator configured to compare the reference voltage and the current detecting voltage with each other and output, to the DC/DC converter, the control signal indicating a comparison result.

4 . The power source circuit according to claim 1 , wherein

the feedback circuit is an operational amplifier configured to compare the reference voltage and the current detecting voltage with each other and output, to the DC/DC converter, the control signal indicating a comparison result.

5 . The power source circuit according to claim 1 , further comprising

a Schottky diode, a coil, and a capacitor that are used for stabilizing a voltage being output from the DC/DC converter, wherein

the Schottky diode is connected to a positive electrode terminal and a negative electrode terminal of the DC/DC converter for outputting a voltage,

the coil is connected between the positive electrode terminal and a positive-side end of the load, and

the capacitor is connected between the positive-side end and the negative electrode terminal.

6 . An ocean-floor optical cable comprising:

the power source circuit according to claim 1 ;

an optical fiber;

a plurality of optical amplifiers being connected to one another in series, each being configured to amplify an optical signal being propagated through the optical fiber on an input side and output the optical signal to the optical fiber on an output side; and

a laser module being the load included in the optical amplifier.

7 . The power source circuit according to claim 2 , wherein

the feedback circuit is a comparator configured to compare the reference voltage and the current detecting voltage with each other and output, to the DC/DC converter, the control signal indicating a comparison result.

8 . The power source circuit according to claim 2 , wherein

the feedback circuit is an operational amplifier configured to compare the reference voltage and the current detecting voltage with each other and output, to the DC/DC converter, the control signal indicating a comparison result.

9 . The power source circuit according to claim 2 , further comprising

a Schottky diode, a coil, and a capacitor that are used for stabilizing a voltage being output from the DC/DC converter, wherein

the Schottky diode is connected to a positive electrode terminal and a negative electrode terminal of the DC/DC converter for outputting a voltage,

the coil is connected between the positive electrode terminal and a positive-side end of the load, and

the capacitor is connected between the positive-side end and the negative electrode terminal.

10 . An ocean-floor optical cable comprising:

the power source circuit according to claim 2 ;

an optical fiber;

a plurality of optical amplifiers being connected to one another in series, each being configured to amplify an optical signal being propagated through the optical fiber on an input side and output the optical signal to the optical fiber on an output side; and

a laser module being the load included in the optical amplifier.