Aspects of the present disclosure relate to tools for customization of a multi-function device.
Computer users frequently access peripheral devices, such as, for example, multi-function devices. A multi-function device can be in the form of various devices, including a printer, scanner, or other type of device that can manipulate one or more documents. It may be desirable to add customized features to a multi-function device that allow a user to create custom features, for example, relating to the functionality of the multi-function device. Typically, the customization of a multi-function device is accomplished with the use of a separate server that is required to host the application used to customize the device. This can be problematic for users that do not have the capability to utilize a separate server, or for users that have multi-function devices that are not connected to a network.
In accordance with one aspect of the present disclosure, apparatus are provided that include a multi-function device that is configured to perform a plurality of functions relating to manipulating a document. The multi-function device can have a display configured to display interface tools for facilitating the customization of a function of the multi-function device. The interface tools allow a user to communicate with the multi-function device to enter information relating to the customized function. The custom application can be configured to be installed on the multi-function device, and the custom application is used to customize the multi-function device.
Embodiments of the disclosure are further described in the detailed description which follows, by reference to the noted drawings, in which like reference numerals represents similar parts throughout the several views of the drawings, and wherein:
Aspects of the disclosure are directed to a communication system for creating, installing, managing, and/or removing one or more custom applications on a multi-function device. The custom application is used to customize various aspects of a multi-function device, including but not limited to the functionality of the multi-function device and the aesthetics of the multi-function device. In one embodiment, the custom application is installed by directly interfacing with the multi-function device, such that no separate server external to the multi-function device is required for the installation.
A multi-function device can have various forms and include various features for manipulating one or more documents. For example, a multi-function device may be a printer, a device including a printer portion, a scanner, a device including a scanner portion, or a combination thereof. If the multi-function device is in the form of a printer, the printer may be a laser printer or an inkjet printer. The multi-function device may also include subsystems such as one or more paper trays, one or more finishing devices, and additional subsystems. The one or more finishing devices may include, for example, a stapler and a collator. The additional subsystems may include, for example, a halftoning mechanism, a two-sided printing mechanism, settings for two-sided printing, and a scaling function for scaling of printed documents. The additional subsystems may further include a manual feeder, and color and mono print output settings for the multi-function device.
Referring now to the drawings in greater detail,
The one or more multi-function devices 20 are provided, and are configured to manipulate documents and install, manage, and/or remove custom applications thereon for customizing various features of the multi-function devices 20. A given multi-function device 20 includes a variety of features for manipulating a document, and also includes various components for installing the custom applications thereon. As illustrated in
The multi-function device 20 can also include one or more databases 24 for storing information relating to, among other things, various custom applications installed thereon. The multi-function device 20 can also include various ports, such as a USB port 26, to allow a user to directly install a custom application from a memory device, such as USB, directly by inserting the memory device into the multi-function device 20 itself. The multi-function device 20 can also include a set of one or more interfaces, such as an Extensible Interface Platform (EIP), that can expose functionality of the multi-function device to allow a user to create customized workflows and their own interfaces for the multi-function device 20. An EIP programmable API 28 of the multi-function device can be configured to allow a user to create custom applications to be installed on the multi-function device 20 using the EIP API 28. The multi-function device can also include a web browser 30 that can communicate with other components of the communication system 10 using the network 18.
The custom applications for installation, management, and/or removal on the multi-function devices 20 can be used to customize various aspects of the multi-function devices 20. In one embodiment, the custom applications can be used to customize functionality of the multi-function device 20. For example, a custom application can be installed on a multi-function device 20 in order to customize the type of printing for certain types of documents. In another embodiment, one or more custom applications can be used to customize the aesthetics of the multi-function device 20. For example, a custom application can be used to change the look of the display 22 of the multi-function device, either for a specific set of users or for all users of the multi-function device 20. In other embodiment, one or more custom applications can be provided to customize any aspect of the multi-function device 20.
A custom application can be installed, managed, and/or removed on a multi-function device in a variety of ways. In one embodiment, a user accesses the display 22 of the multi-function device 20 that is configured to display interface tools for facilitating the customization of the multi-function device 20. As illustrated in
In one embodiment, a custom application can be installed directly onto a multi-function device using a port of the multi-function device. For example, as explained above, the multi-function device 20 can include one or more USB ports 26 to allow a USB drive containing a custom application thereon to be inserted into the USB port 26 of the multi-function device 20. This allows the custom application to be installed directly onto the multi-function device 20 by allowing a user to access the custom application directly from the USB device. The user can access the install custom application tool 42 on the display of the multi-function device and select the USB Files option 44 to install the custom application form a USB device inserted into a port of the multi-function device. This allows the user to navigate to a list of items stored on the USB device, and allows the user to select the custom application stored on the USB device for installation on the multi-function device. It will be appreciated that any type of port on the multi-function device can be used with any compatible memory device to allow a user to access a custom application stored on the memory device for installation on the multi-function device.
In another embodiment, a custom application can be installed by utilizing a web browser of the multi-function device. For example, as explained above, the multi-function device 20 can include a web browser that is configured to communicate with other components of the communication system 10 as the custom application is saved on a component of the system. The web browser of the multi-function device allows the multi-function device to retrieve the custom application from a remote location. A user can access the install custom application tool 42 on the display of the multi-function device and select the web browser option 46 to install the custom application using the web browser of the multi-function device. The web browser allows the user to navigate to a website using the network 18 of the communication system 10 where the custom application is located. The user can utilize the interface tools of the display 22 to select the custom application and install the custom application on the multi-function device 20. In another example, the data communication device 12 can utilized the web browser 16 thereon to communicate with the multi-function device 20 and install one or more custom applications on the multi-function device.
In another embodiment, a custom application can be installed using an EIP programmable API of the multi-function device. For example, as explained above, the multi-function device 20 can include an EIP API 28. The custom application can be installed using the EIP programmable API 28 of the multi-function device as it can be configured to allow a user to create custom applications to be installed on the multi-function device 20 using the EIP API 28. The user can access the install custom application tool 42 on the display of the multi-function device and select the EIP API option 48 to install the custom application using the EIP API 28.
In another embodiment, a custom application can be installed on a multi-function device from an application store accessible by the multi-function device. The user can access the install custom application tool 42 on the display of the multi-function device and select the custom application store option 50 to install the custom application from an application store accessible to the multi-function device. The application store can be accessible to the multi-function device remotely such that the multi-function device can utilize the web browser 30 to access the application store, or the application store can be local to the multi-function device using, for example, an EIP application store on the multi-function device. When the custom application store option 50 is selected by the user using the interface tools of the display 22, the embodiment may be configured such that the user has the ability to select from the custom application available in the application store using the interface tools and install the custom application on the multi-function device.
In another embodiment, a custom application can be installed on a multi-function device by sending a print job to the multi-function device where the “print job” is a command to the multi-function device to install the custom application. In one embodiment, the user can access the install custom application tool 42 on the display of the multi-function device and select the print job option 52 to install the custom application from a print job sent to the multi-function device, for example, from the data communication device 12. In another embodiment, the custom application sent to the multi-function device via a print job can be installed automatically upon receipt by the multi-function device as the multi-function device will receive the print job and recognize that it is a custom application sent for installation thereon. For example, the custom application can be installed using any native job submission method, including Ipr.
There are a variety of methods for creating a custom application for installation of a multi-function device. In one embodiment,
Any given engine or tool referred to herein or any functionality referred to herein may be implemented with one or more processing circuits. For example, a processing circuit, or a processing mechanism, may include both (at least a portion of) computer-readable media carrying functional encoded data and components of an active computer. The active computer is ready to execute (or is already executing) the functional encoded data, and thereby causes certain acts to occur. A processing circuit may also include: a machine or part of a machine that is specially configured to carry out a process, e.g., any process described herein; or a special purpose computer or a part of a special purpose computer. A processing circuit may also be in the form of a general purpose computer running a compiled, interpretable, or compilable program (or part of such a program) that is combined with hardware carrying out a process or a set of processes. A processing circuit may further be implemented in the form of an application specific integrated circuit (ASIC), part of an ASIC, or a group of ASICs. A processing circuit may further include an electronic circuit or part of an electronic circuit. Neither a processing circuit nor a process mechanism exists in the form of code per se, software per se, instructions per se, mental thoughts alone, or processes that are carried out manually by a person without any involvement of a machine.
The claims as originally presented, and as they may be amended, encompass variations, alternatives, modifications, improvements, equivalents, and substantial equivalents of the embodiments and teachings disclosed herein, including those that are presently unforeseen or unappreciated, and that, for example, may arise from applicants/patentees and others.
Number | Name | Date | Kind |
---|---|---|---|
6467087 | Yang | Oct 2002 | B1 |
6546397 | Rempell | Apr 2003 | B1 |
7227656 | Kato | Jun 2007 | B1 |
7246348 | Mixer, Jr. | Jul 2007 | B1 |
7876469 | Hanada | Jan 2011 | B2 |
8243306 | Inoue | Aug 2012 | B2 |
9086692 | Nixon et al. | Jul 2015 | B2 |
20020140966 | Meade et al. | Oct 2002 | A1 |
20040012628 | Kropf | Jan 2004 | A1 |
20040109188 | Akiyoshi et al. | Jun 2004 | A1 |
20050185055 | Miller et al. | Aug 2005 | A1 |
20070263243 | Matsugashita | Nov 2007 | A1 |
20070288903 | Manglik et al. | Dec 2007 | A1 |
20080080007 | Ueno et al. | Apr 2008 | A1 |
20080263230 | Mizuno et al. | Oct 2008 | A1 |
20100107152 | Kwon | Apr 2010 | A1 |
20100107153 | Kwon | Apr 2010 | A1 |
20100325609 | Windley et al. | Dec 2010 | A1 |
20110258595 | Clevenger | Oct 2011 | A1 |
20120084468 | Kitagawa | Apr 2012 | A1 |
20120137314 | Gribel | May 2012 | A1 |
20120140255 | Tanaka | Jun 2012 | A1 |
20120159310 | Chang et al. | Jun 2012 | A1 |
20120192174 | Tsuboi | Jul 2012 | A1 |
20120324057 | Macris | Dec 2012 | A1 |
20130063761 | Uchibori et al. | Mar 2013 | A1 |
20130227532 | Choi | Aug 2013 | A1 |
Entry |
---|
Nakazato et al., “Ubiquitous Printing Services”, [Online] 2007, Oki Technical Review Apr. 2007 Issue 210 vol. 74 No. 2, [Retrieved from the Internet] <http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.89.4787&rep=rep1&type=pdf> pp. 62-65. |
Rhodes et al., “Automatic Discovery and Execution of Personal Applications from Shared IO Devices,” [Online] 2010, Consumer Communications and Networking Conference (CCNC), 7th IEEE Jan. 2010, [Retrieved from the Internet] <http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=5421693&isnumber=5421566> 2 pages. |
Casey C. Rackley and Slade E. Griffin, Multifunction device security awareness, [Online] 2008, In Proceedings of the 5th annual conference on Information security curriculum development (InfoSecCD '08). ACM, New York, NY, USA, [Retrieved from the Internet] <http://doi.acm.org/10.1145/1456625.1456640 > pp. 51-55. |
Number | Date | Country | |
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20130268926 A1 | Oct 2013 | US |