IP Library Granted Patent US 10,815,914
Granted Patent B2
US 10,815,914 · App. 16/609,301 · Granted Oct 27, 2020

Internal combustion engine control device and internal combustion engine control method

Inventor: Tomoaki Sekita (Numazu, JP)
Assignee: MAHLE ELECTRIC DRIVES JAPAN CORPORATION
F02D29/06F02D41/20F02D45/00F02N3/02F02N3/04F02N11/08
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Quick Facts
Patent No.
US 10,815,914
App. No.
16/609,301
Granted
Oct 27, 2020
Kind
B2
Abstract

The control device includes a microcomputer which controls operation of the internal combustion engine, a power regulator which outputs a direct current regulated voltage regulated from electric power of the AC generator, a 5V regulator which receives an output from the power regulator and supplies it to the microcomputer; a first capacitor with a small capacity connected to an output of the power regulator, plural second capacitors connected in parallel with the first capacitor; and plural opening and closing means connected in series to the plural second capacitors, respectively. The opening and closing means are controlled to be opened and closed by the microcomputer so that the second capacitors are charged when the output of the power regulator has reached an ON voltage below the regulated voltage.

Claims (19)

1. An internal combustion engine control device that controls a battery-less internal combustion engine with electric power generated by an AC generator mounted on an end portion of a crankshaft of the internal combustion engine directly or via a power transmission device, comprising:

a microcomputer which controls operation of the internal combustion engine;

a power regulator which outputs a direct current regulated voltage regulated from electric power of the AC generator;

a 5V regulator which receives an output from the power regulator and supplies it to the microcomputer;

a first capacitor with a small capacity connected to an output of the power regulator;

a plurality of second capacitors connected in parallel with the first capacitor; and

a plurality of opening and closing means connected in series to the plurality of second capacitors, respectively,

wherein the opening and closing means are controlled to be opened and closed by the microcomputer so that the second capacitors are charged when the output of the power regulator has reached an ON voltage below the regulated voltage.

2. The internal combustion engine control device according to claim 1 , wherein, when voltage of one capacitor of the second capacitors being charged currently has reached a switching voltage below the regulated voltage, the microcomputer controls the opening and closing means to be closed to start charging of a next capacitor of the second capacitors.

3. The internal combustion engine control device according to claim 2 , wherein, when voltage of one capacitor of the second capacitors being charged currently has reached the switching voltage, the microcomputer controls opening and closing means connected to this capacitor to be maintained in a closed state.

4. The internal combustion engine control device according to claim 2 , wherein the microcomputer controls the opening and closing means to be closed when the output of the power regulator becomes equal to an ON voltage below the switching voltage and controls the opening and closing means to be opened when the output of the power regulator becomes equal to an OFF voltage below the ON voltage.

5. The internal combustion engine control device according to claim 1 , wherein the opening and closing means are MOSFETs and controlled to be opened and closed by the microcomputer.

6. An internal combustion engine control method in which an internal combustion engine control device controls a battery-less internal combustion engine with electric power generated by an AC generator mounted on the internal combustion engine,

wherein the internal combustion engine control device includes a microcomputer which controls operation of the internal combustion engine; a power regulator which outputs a direct current regulated voltage regulated from electric power of the AC generator; a 5V regulator which receives an output from the power regulator and supplies it to the microcomputer; a first capacitor with a small capacity connected to an output of the power regulator; a plurality of second capacitors connected in parallel with the first capacitor; and a plurality of opening and closing means connected in series to the plurality of second capacitors, respectively,

wherein the internal combustion engine control device controls the opening and closing means to be opened and closed by the microcomputer so that the second capacitors are charged when the output of the power regulator has reached an ON voltage below the regulated voltage.

7. The internal combustion engine control method according to claim 6 , wherein, when voltage of one capacitor of the second capacitors being charged currently has reached a switching voltage below the regulated voltage, the microcomputer controls opening and closing means connected to this capacitor to be maintained in a closed state.

8. The internal combustion engine control method according to claim 7 , wherein, when voltage of one capacitor of the second capacitors being charged currently has reached the switching voltage, the microcomputer controls opening and closing means connected to this capacitor to be maintained in a closed state.

9. The internal combustion engine control device according to claim 7 , wherein the microcomputer controls the opening and closing means to be closed when the output of the power regulator becomes equal to an ON voltage below the switching voltage and controls the opening and closing means to be opened when the output of the power regulator becomes equal to an OFF voltage below the ON voltage.

10. The internal combustion engine control device according to claim 6 , wherein the opening and closing means are MOSFETs and controlled to be opened and closed by the microcomputer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2022
From: MAHLE ELECTRIC DRIVES JAPAN CORPORATION
To: MAHLE INTERNATIONAL GMBH
Reel/Frame 061540/0019 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2019
From: SEKITA, TOMOAKI
To: MAHLE ELECTRIC DRIVES JAPAN CORPORATION
Reel/Frame 050851/0798 →
Continuity (1)
Related Publication 20200056554A1 · Feb 20, 2020