IP Library › Granted Patent US 11,050,330
Granted Patent B2
US 11,050,330 · App. 16/296,962 · Granted Jun 29, 2021

Field winding type rotary machine

Inventor: Masahiro Seguchi (Kariya, JP)
Assignee: DENSO CORPORATION
H02K19/12H02K1/16H02K1/26H02K3/12H02K3/48H02K11/028H02K11/042H02K19/26H02K19/36H02M7/217H02P25/03
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 11,050,330
App. No.
16/296,962
Granted
Jun 29, 2021
Kind
B2
Abstract

A field winding type rotary machine includes a stator having a stator core and a stator coil wound on the stator core, a rotor having a rotor core and a rotor field coil wound on the rotor core, and a rectifier element connected between both ends of the rotor field coil. The field winding type rotary machine includes a capacitor having a first terminal connected to an anode terminal of the rectifier element and a second terminal connected to any point of the rotor field coil.

Claims (46)

1. A field winding type rotary machine, comprising:

a stator having a stator core and a stator coil wound on the stator core;

a rotor having a rotor core and a rotor field coil wound on the rotor core;

a rectifier element connected between both ends of the rotor field coil; and

a capacitor having one end connected to one end of the rectifier element and another end connected to any point of the rotor field coil, wherein

a connection position between the other end of the capacitor and the rotor field coil is a boundary position that divides the rotor field coil into a portion more affected by a leakage magnetic flux and a harmonic magnetic flux of a magnetic flux flowing through the field pole and a portion less affected by them.

2. The field winding type rotary machine according to claim 1 , wherein

a current flowing through the stator coil is a current obtained by superimposing a fundamental current for generating a rotating torque and a harmonic current having a shorter cycle than the fundamental current.

3. The field winding type rotary machine according to claim 1 , wherein

the rotor field coil has a first field coil part connected to the capacitor in parallel and a second field coil part connected between the other end of the rectifier element and the other end of the capacitor, and

the first field coil part is disposed on a side closer to a main magnetic pole of the rotor core than to the second field coil part.

4. The field winding type rotary machine according to claim 1 , wherein

the rotor field coil has a first field coil part connected to the capacitor in parallel and a second field coil part connected between the other end of the rectifier element and the other end of the capacitor, and

the first field coil part is disposed on a side farther from the stator core than from the second field coil part.

5. The field winding type rotary machine according to claim 1 , wherein

the rotor core

has a plurality of main magnetic poles and an auxiliary pole arranged between the main magnetic poles, and

includes a magnet provided in the auxiliary pole and magnetized in a direction of canceling a leakage magnetic flux generated between the main magnetic poles in a radial direction.

6. A field winding type rotary machine, comprising:

a stator having a stator core and a stator coil wound on the stator core;

a rotor having a rotor core and a rotor field coil wound on the rotor core;

a rectifier element connected between both ends of the rotor field coil; and

a capacitor having one end connected to one end of the rectifier element and another end connected to any point of the rotor field coil, wherein

the rotor field coil has a first field coil part connected to the capacitor in parallel and a second field coil part connected between the other end of the rectifier element and the other end of the capacitor, and

the first field coil part is disposed on a side closer to a main magnetic pole of the rotor core than to the second field coil part.

7. A field winding type rotary machine, comprising:

a stator having a stator core and a stator coil wound on the stator core;

a rotor having a rotor core and a rotor field coil wound on the rotor core;

a rectifier element connected between both ends of the rotor field coil; and

a capacitor having one end connected to one end of the rectifier element and another end connected to any point of the rotor field coil, wherein

the rotor field coil has a first field coil part connected to the capacitor in parallel and a second field coil part connected between the other end of the rectifier element and the other end of the capacitor, and

the first field coil part is disposed on a side farther from the stator core than from the second field coil part.

8. A field winding type rotary machine, comprising:

a stator having a stator core and a stator coil wound on the stator core;

a rotor having a rotor core and a rotor field coil wound on the rotor core;

a rectifier element connected between both ends of the rotor field coil; and

a capacitor having one end connected to one end of the rectifier element and another end connected to any point of the rotor field coil, wherein

the rotor field coil has a first field coil part connected to the capacitor in parallel and a second field coil part connected between the other end of the rectifier element and the other end of the capacitor, and

the first field coil part is disposed on a side farther from a main magnetic pole of the rotor core than from the second field coil part.

9. A field winding type rotary machine, comprising:

a stator having a stator core and a stator coil wound on the stator core;

a rotor having a rotor core and a rotor field coil wound on the rotor core;

a rectifier element connected between both ends of the rotor field coil; and

a capacitor having one end connected to one end of the rectifier element and another end connected to any point of the rotor field coil, wherein

the rotor field coil has a first field coil part connected to the capacitor in parallel and a second field coil part connected between the other end of the rectifier element and the other end of the capacitor, and

the first field coil part is disposed on a side closer to the stator core than to the second field coil part.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2019
From: SEGUCHI, MASAHIRO
To: DENSO CORPORATION
Reel/Frame 048548/0784 →
Priority Claims (1)
JP JP2016-175786 · Sep 8, 2016 · national
Continuity (2)
Continuation PCTJP2017031791 · Sep 4, 2017
Related Publication 20190207491A1 · Jul 4, 2019