Claims
- 1. An apparatus having a plurality of energy saving modes, including first and second energy saving modes, and a standby mode, said apparatus comprising:receiving means for receiving a first command for designating one of the plurality of energy saving modes and a second command for instructing a transfer to an energy saving mode; setting means for setting, based on a first command received by said receiving means, one of the plurality of energy saving modes as a designated energy saving mode to which said apparatus is to transfer in response to receiving a second command, wherein when said apparatus is in the first energy saving mode, said apparatus transfers to the second energy saving mode without waiting for reception of a second command, if a first command received by said receiving means designates the second energy saving mode, and when said apparatus is in the standby mode, said apparatus does not transfer to the second energy saving mode in response to said receiving means receiving a first command designating the second energy saving mode until reception of a second command.
- 2. An apparatus according to claim 1, wherein operation states in each part of said apparatus are different for each of the plurality of energy saving modes.
- 3. An apparatus according to claim 2, wherein said apparatus is an image forming apparatus having a fixing device and a cooling fan, and the plurality of energy saving modes includes an energy saving mode in which the fixing device is in an off-state and the cooling fan is in an on-state and an energy saving mode in which the fixing device is in an off-state and the cooling fan is in an off-state.
- 4. An apparatus according to claim 2, wherein the plurality of energy saving modes includes an energy saving mode in which a photosensor, provided in said apparatus, is in an intermittent drive state and an energy saving mode in which the photosensor is in an off-state.
- 5. An apparatus according to claim 2, wherein the first command includes data corresponding to each part of said apparatus, where the data indicates an operation state of a corresponding part of said apparatus in the energy saving mode designated.
- 6. An apparatus according to claim 1, wherein the plurality of energy saving modes includes a third energy saving mode in which a microprocessor unit provided in said apparatus is in an off-state.
- 7. An apparatus according to claim 6, wherein when said apparatus is in the first or second energy saving mode, said apparatus transfers to the third energy saving mode, without waiting for reception of a second command, in response to said receiving means receiving a first command designating the third energy saving mode.
- 8. An apparatus according to claim 6, wherein when said apparatus is in the first or second energy saving mode, said apparatus transfers from the first or second energy saving mode to the standby mode in response to reception of a third command for instructing a transfer to the standby mode through a first transmission line, and when said apparatus is in the third energy saving mode, said apparatus transfers from the third energy saving mode to the standby mode in response to reception of a signal through a second transmission line different from the first transmission line.
- 9. A method of controlling an apparatus having a plurality of energy saving modes, including first and second energy saving modes, and a standby mode, the method comprising:a first receiving step of receiving a first command for designating one of the plurality of energy saving modes; a setting step of setting an energy saving mode designated by the first command; a second receiving step of receiving a second command for instructing a transfer to an energy saving mode; a first control step of controlling the apparatus, when the apparatus is in the first energy saving mode, to transfer to the second energy saving mode without waiting for reception of a second command in said second receiving step, if a first command received in said first receiving step designates the second energy saving mode; and a second control step of controlling the apparatus, when the apparatus is in the standby mode, not to transfer to the second energy saving mode in response to reception of a first command designating the second energy saving mode in said first receiving step until reception of a second command in said second receiving step.
- 10. A method according to claim 9, wherein operation states in each part of the apparatus are different for each of the plurality of energy saving modes.
- 11. A method according to claim 10, wherein the apparatus is an image forming apparatus having a fixing device and a cooling fan, and the plurality of energy saving modes includes an energy saving mode in which the fixing device is in an off-state and the cooling fan is in an on-state and an energy saving mode in which the fixing device is in an off-state and the cooling fan is in an off-state.
- 12. A method according to claim 10, wherein the plurality of energy saving modes includes an energy saving mode in which a photosensor, provided in the apparatus, is in an intermittent drive state and an energy saving mode in which the photosensor is in an off-state.
- 13. A method according to claim 10, wherein the first command includes data corresponding to each part of the apparatus, where the data indicates an operation state of a corresponding part of the apparatus in the energy saving mode designated.
- 14. A method according to claim 9, wherein the plurality of energy saving modes includes a third energy saving mode in which a microprocessor unit provided in the apparatus is in an off-state.
- 15. A method according to claim 14, further comprising a third control step of controlling the apparatus, when the apparatus is in the first or second energy saving mode, to transfer to the third energy saving mode, without waiting for reception of a second command, if a received first command designates the third energy saving mode.
- 16. A method according to claim 14, further comprising:a fourth control step of controlling the apparatus, when the apparatus is in the first or second energy saving modes, to transfer from the first or second energy saving mode to the standby mode in response to reception of a third command for instructing a transfer to the standby mode through a first transmission line; and a fifth control step of controlling the apparatus, when the apparatus is in the third energy saving mode, to transfer from the third energy saving mode to the standby mode in response to reception of a signal through a second transmission line different from the first transmission line.
- 17. A control apparatus for controlling an object apparatus having a plurality of energy saving modes, including first and second energy saving modes, and a standby mode, said control apparatus comprising:first command transmitting means for transmitting to the object apparatus a first command for designating one of the plurality of energy saving modes to be set in the object apparatus; and second command transmitting means for transmitting to the object apparatus a second command for instructing a transfer to an energy saving mode, wherein said control apparatus causes the object apparatus to transfer to the second energy saving mode when the object apparatus is in the first energy saving mode by controlling said first command transmitting means to transmit a first command designating the second energy saving mode without transmitting a second command using said second command transmitting means, and said control apparatus causes the object apparatus to transfer to the second energy saving mode when the object apparatus is in the standby mode and the second energy saving mode is not set in the object apparatus by transmitting a second command using said second command transmitting means after setting the second energy saving mode in the object apparatus.
- 18. A control apparatus according to claim 17, wherein operation states in each part of the object apparatus are different for each of the plurality of energy saving modes.
- 19. A control apparatus according to claim 18, wherein the object apparatus is an image forming apparatus having a fixing device and a cooling fan, and the plurality of energy saving modes includes an energy saving mode in which the fixing device is in an off-state and the cooling fan is in an on-state and an energy saving mode in which the fixing device is in an off-state and the cooling fan is in an off-state.
- 20. A control apparatus according to claim 18, wherein the plurality of energy saving modes include an energy saving mode in which a photosensor, provided in the object apparatus, is in an intermittent drive state and an energy saving mode in which the photosensor is in an off-state.
- 21. A control apparatus according to claim 18, wherein the first command includes data corresponding to each part of the object apparatus, where the data indicates an operation state of a corresponding part of the object apparatus in the energy saving mode designated.
- 22. A control apparatus according to claim 18, wherein the plurality of energy saving modes includes a third energy saving mode in which a microprocessor unit provided in the object apparatus is in an off-state.
- 23. A control apparatus according to claim 22, wherein said control apparatus causes the object apparatus to transfer from the first or second energy saving mode to the third energy saving mode by controlling said first command transmitting means to transmit a first command designating the third energy saving mode without transmitting a second command using said second command transmitting means.
- 24. A control apparatus according to claim 22, wherein said control apparatus causes the object apparatus to transfer from the first or second energy saving mode to the standby mode by transmitting a third command for instructing a transfer to the standby mode to the object apparatus through a first transmission line, and said control apparatus causes the object apparatus to transfer from the third energy saving mode to the standby mode by transmitting a signal to the object apparatus through a second transmission line different from the first transmission line.
Priority Claims (2)
Number |
Date |
Country |
Kind |
6-100766 |
Apr 1994 |
JP |
|
7-109029 |
Apr 1995 |
JP |
|
Parent Case Info
This application is a division of application Ser. No. 09/123,367, filed Jul. 28, 1998, which issued as U.S. Pat. No. 6,407,826 on Jun. 18, 2002, which is a division of application Ser. No. 08/944,417, filed Oct. 6, 1997, which issued as U.S. Pat. No. 5,828,462 on Oct. 27, 1998, which is a division of application Ser. No. 08/420,802, filed Apr. 12, 1995, now abandoned.
US Referenced Citations (13)