IP Library Granted Patent US 10,859,047
Granted Patent B2
US 10,859,047 · App. 16/110,551 · Granted Dec 8, 2020

Fuel injection device

Inventors: Ryo Kusakabe (Hitachinaka, JP); Motoyuki Abe (Mito, JP); Yoshihito Yasukawa (Hitachinaka, JP); Noriyuki Maekawa (Kashiwa, JP); Takuya Mayuzumi (Hitachinaka, JP); Tohru Ishikawa (Kitaibaraki, JP)
Assignee: Hitachi Automotive Systems, Ltd.
F02M51/0653F02D41/20F02M45/12F02D2041/2013F02D2041/2055F02D2041/2058F02D2200/0618F02M51/0671F02M51/0685F02M59/366F02M61/1833F02M63/0033
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Quick Facts
Patent No.
US 10,859,047
App. No.
16/110,551
Granted
Dec 8, 2020
Kind
B2
Abstract

A drive unit of a fuel injection device includes a driver circuit. The driver circuit opens and closes a valve element of the fuel injection device by supplying a drive current to the fuel injection device. The driver circuit supplies the drive current to open the valve element and sets the drive current to zero in an intermediate lift area. The intermediate lift area is an area is which a lift amount of the valve element is smaller than a maximum target lift amount.

Claims (26)

1. A drive unit of a fuel injection device, comprising:

a driver circuit which opens and closes a valve element of the fuel injection device by supplying a drive current to the fuel injection device, wherein

the driver circuit supplies the drive current to open the valve element and sets the drive current to zero in an intermediate lift area in which a lift amount of the valve element is smaller than a maximum target lift amount, and

wherein the driver circuit supplies a first drive current before detecting a valve opening of the valve element and a second drive current after detecting the valve opening, and an increase rate of the second drive current is smaller than the increase rate of the first drive current.

2. The drive unit according to claim 1 ,

wherein the driver circuit starts closing the valve element in a range where a hydrodynamic force acting on the valve element is increased according to an increase in a lift amount of the valve element.

3. The drive unit according to claim 1 ,

wherein the driver circuit executes a full lift control that the lift amount of the valve element reaches the maximum target lift amount and a intermediate lift control that the lift amount of the valve element does not reach the maximum target lift amount by setting the drive current to zero in the intermediate lift area.

4. The drive unit according to claim 3 ,

wherein a close delay time is a time from a closing start point at which the valve element starts to be closed until the valve element closes, Td 1 is defined as the close delay time in the intermediate lift control, Td 2 is defined as the close delay time in the full lift control, and Td 1 is shorter than Td 2 .

5. The drive unit according to claim 1 ,

wherein the driver circuit decreases the current value to zero without increasing the current from a closing start point at which a valve closing of the valve element is started.

6. The drive unit according to claim 1 ,

wherein the driver circuit starts closing the valve element at a timing when a time ΔT has elapsed from a timing of detecting a valve opening of the valve element.

7. A drive unit of a fuel injection device, comprising:

a driver circuit which opens and closes a valve element of the fuel injection device by supplying a drive current to the fuel injection device, wherein

the driver circuit supplies the drive current to open the valve element and sets the drive current to zero in an intermediate lift area in which a lift amount of the valve element is smaller than a maximum target lift amount,

the driver circuit executes a full lift control that the lift amount of the valve element reaches the maximum target lift amount and a intermediate lift control that the lift amount of the valve element does not reach the maximum target lift amount by setting the drive current to zero in the intermediate lift area, and

a close delay time is a time from a closing start point at which the valve element starts to be closed until the valve element closes, Td 1 is defined as the close delay time in the intermediate lift control, Td 2 is defined as the close delay time in the full lift control, and Td 1 is shorter than Td 2 .

8. The drive unit according to claim 7 ,

wherein the driver circuit starts closing the valve element in a range where a hydrodynamic force acting on the valve element is increased according to an increase in a lift amount of the valve element.

9. The drive unit according to claim 7 ,

wherein the driver circuit decreases the current value to zero without increasing the current from a closing start point at which a valve closing of the valve element is started.

10. The drive unit according to claim 7 , wherein the driver circuit supplies a first drive current before detecting a valve opening of the valve element and a second drive current after detecting the valve opening, and an increase rate of the second drive current is smaller than the increase rate of the first drive current.

11. The drive unit according to claim 7 ,

wherein the driver circuit starts closing the valve element at a timing when a time ΔT has elapsed from a timing of detecting a valve opening of the valve element.

Assignments (1)
CHANGE OF NAME Recorded Nov 30, 2021
From: HITACHI AUTOMOTIVE SYSTEMS, LTD.
To: HITACHI ASTEMO, LTD.
Reel/Frame 058481/0935 →