IP Library Granted Patent US 12687807
Granted Patent B2
US 12687807 · App. 18/778,827 · Granted Jul 21, 2026

Image heating device and image forming apparatus

Inventor: Nozomu Nakajima (Kanagawa, JP)
Assignee: Canon Kabushiki Kaisha
G03G15/2057G03G15/2039G03G15/2064G03G15/80
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Quick Facts
Patent No.
US 12687807
App. No.
18/778,827
Granted
Jul 21, 2026
Kind
B2
Abstract

An image heating device includes a fixing member, a heater configured to heat the fixing member, and a heater control circuit configured to control the heater. The image heating device is configured to heat a toner image formed on a sheet. The heater includes a base substrate and a heat generating unit, the heat generating unit being provided on the base substrate and configured to generate heat when powered. The heater control circuit includes a first power supply channel through which a first power is supplied to the heat generating unit, a second power supply channel through which a second power lower than the first power is supplied to the heat generating unit, and a switch unit. The switch unit includes a semiconductor switch including a plurality of semiconductors, and is configured to selectively switch between the first and second power supply channels with the operation of the semiconductor switch.

Claims (78)

1 . An image heating device comprising:

a fixing member;

a heater configured to heat the fixing member; and

a heater control circuit configured to control the heater, the image heating device being configured to heat a toner image formed on a sheet,

wherein the heater includes a base substrate and a heat generating unit, the heat generating unit being provided on the base substrate and configured to generate heat when powered,

wherein the heat generating unit includes a first heat generating element and a second heat generating element each extending in a long-side direction and being configured to generate heat when powered, the long-side direction being orthogonal to a short-side direction that is parallel to a sheet conveying direction,

wherein the first heat generating element includes a first heat generating part and a second heat generating part, the first heat generating part being provided at one end part of the base substrate in the short-side direction, the second heat generating part being provided at an other end part of the base substrate in the short-side direction,

wherein the second heat generating element is provided between the first heat generating part and the second heat generating part in the short-side direction, and

wherein the heater control circuit includes

a first power supply channel through which a first power is supplied to the heat generating unit;

a second power supply channel through which a second power that is lower than the first power is supplied to the heat generating unit; and

a semiconductor switch configured to include a plurality of semiconductors and to be connected in parallel with the second heat generating element, the semiconductor switch selectively switching between the first power supply channel and the second power supply channel,

wherein the first heat generating element is connected in parallel to the second heat generating element and the semiconductor switch, and

wherein the semiconductor switch selects the first power supply channel by switching the semiconductor switch to be conductive, and selects the second power supply channel by switching the semiconductor switch to be nonconductive.

2 . The image heating device according to claim 1 ,

wherein the semiconductor switch has at least a period in which, if the heater has a temperature lower than a predetermined temperature, the first power supply channel is selected, the semiconductor switch selecting the second power supply channel if the heater has a temperature higher than the predetermined temperature.

3 . The image heating device according to claim 1 ,

wherein the second heat generating element includes a third heat generating part and a fourth heat generating part that each extend in the long-side direction and are arranged side by side in the short-side direction.

4 . The image heating device according to claim 1 ,

wherein the semiconductor switch includes a first semiconductor switch and a second semiconductor switch each including a plurality of semiconductors,

wherein the first heat generating element is connected in series to the first semiconductor switch,

wherein the second heat generating element is connected in series to the second semiconductor switch,

wherein the first heat generating element and the first semiconductor switch are connected in parallel to the second heat generating element and the second semiconductor switch, and

wherein the semiconductor switch selects the first power supply channel by switching the first semiconductor switch to be conductive and switching the second semiconductor switch to be nonconductive, and selects the second power supply channel by switching the first semiconductor switch to be nonconductive and switching the second semiconductor switch to be conductive.

5 . The image heating device according to claim 4 ,

wherein the first power supply channel allows the first power to be supplied to the first heat generating element and disallows any power to be supplied to the second heat generating element, and

wherein the second power supply channel allows the second power to be supplied to the second heat generating element and disallows any power to be supplied to the first heat generating element.

6 . The image heating device according to claim 4 ,

wherein the first heat generating element has a smaller resistance value than the second heat generating element.

7 . The image heating device according to claim 1 ,

wherein the first power supply channel allows the first power to be supplied to the first heat generating element and the second heat generating element, and

wherein the second power supply channel allows the second power to be supplied to the first heat generating element and disallows any power to be supplied to the second heat generating element.

8 . The image heating device according to claim 1 ,

wherein the first heat generating element has a greater resistance value than the second heat generating element.

9 . The image heating device according to claim 1 ,

wherein the first heat generating element is longer than the second heat generating element in the long-side direction.

10 . The image heating device according to claim 1 ,

wherein the base substrate is a ceramic substrate including a ceramic base.

11 . The image heating device according to claim 1 ,

wherein the fixing member is a cylindrical film.

12 . An image forming apparatus comprising:

an image forming unit configured to form a toner image on a sheet;

the image heating device according to claim 1 ; and

a pressing member configured to fix the toner image on the sheet by applying heat and pressure to the sheet in cooperation with the image heating device.

13 . An image heating device comprising:

a fixing member;

a heater configured to heat the fixing member; and

a heater control circuit configured to control the heater,

the image heating device being configured to heat a toner image formed on a sheet,

wherein the heater includes a base substrate and a heat generating unit, the heat generating unit being provided on the base substrate and configured to generate heat when powered,

wherein the heat generating unit includes a first heat generating element and a second heat generating element each extending in a long-side direction and being configured to generate heat when powered, the long-side direction being orthogonal to a short-side direction that is parallel to a sheet conveying direction,

wherein the first heat generating element includes a first heat generating part and a second heat generating part, the first heat generating part being provided at one end part of the base substrate in the short-side direction, the second heat generating part being provided at an other end part of the base substrate in the short-side direction,

wherein the second heat generating element is provided between the first heat generating part and the second heat generating part in the short-side direction, and

wherein the heater control circuit includes

a first power supply channel through which a first power is supplied to the heat generating unit;

a second power supply channel through which a second power that is lower than the first power is supplied to the heat generating unit; and

a semiconductor switch configured to include a plurality of semiconductors and to be connected in parallel with the second heat generating element, the semiconductor switch selectively switching between the first power supply channel and the second power supply channel,

wherein the first heat generating element is connected in series to the semiconductor switch and the second heat generating element that are connected in parallel, and

wherein the semiconductor switch selects the first power supply channel by switching the semiconductor switch to be conductive, and selects the second power supply channel by switching the semiconductor switch to be nonconductive.

14 . The image heating device according to claim 13 ,

wherein the first power supply channel allows the first power to be supplied to the first heat generating element and disallows any power to be supplied to the second heat generating element, and

wherein the second power supply channel allows the second power to be supplied to the first heat generating element and the second heat generating element.

15 . The image heating device according to claim 14 ,

wherein the first heat generating element and the second heat generating element have an equal length in the long-side direction.

16 . The image heating device according to claim 13 ,

wherein the first heat generating element has a smaller resistance value than the second heat generating element.

17 . The image heating device according to claim 13 ,

wherein if the heater has a temperature lower than a predetermined temperature, the semiconductor switch firstly selects the second power supply channel and subsequently switches the power supply channel to the first power supply channel; and if the heater has a temperature higher than the predetermined temperature, the semiconductor switch selects the second power supply channel.

18 . The image heating device according to claim 13 ,

wherein the first heat generating element is longer than the second heat generating element in the long-side direction.

19 . The image heating device according to claim 13 ,

wherein the base substrate is a ceramic substrate including a ceramic base.

20 . The image heating device according to claim 13 ,

wherein the fixing member is a cylindrical film.

21 . An image forming apparatus comprising:

an image forming unit configured to form a toner image on a sheet;

the image heating device according to claim 13 ; and

a pressing member configured to fix the toner image on the sheet by applying heat and pressure to the sheet in cooperation with the image heating device.