WO2017222587A1 - Device regionalization based on geographic location - Google Patents
Device regionalization based on geographic location Download PDFInfo
- Publication number
- WO2017222587A1 WO2017222587A1 PCT/US2016/064678 US2016064678W WO2017222587A1 WO 2017222587 A1 WO2017222587 A1 WO 2017222587A1 US 2016064678 W US2016064678 W US 2016064678W WO 2017222587 A1 WO2017222587 A1 WO 2017222587A1
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- WIPO (PCT)
- Prior art keywords
- printing device
- geographic location
- component
- geographic
- printing
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00838—Preventing unauthorised reproduction
- H04N1/0084—Determining the necessity for prevention
- H04N1/00854—Recognising an unauthorised user or user-associated action
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S19/00—Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
- G01S19/01—Satellite radio beacon positioning systems transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
- G01S19/13—Receivers
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S19/00—Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
- G01S19/01—Satellite radio beacon positioning systems transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
- G01S19/13—Receivers
- G01S19/14—Receivers specially adapted for specific applications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
- H04W4/021—Services related to particular areas, e.g. point of interest [POI] services, venue services or geofences
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K15/00—Arrangements for producing a permanent visual presentation of the output data, e.g. computer output printers
- G06K15/02—Arrangements for producing a permanent visual presentation of the output data, e.g. computer output printers using printers
Definitions
- £0O01J Manufacturers may geographically regionalize printing devices, such as printers, copiers, facsimile machines, multi-function peripheral (MFP) devices. This may enable the manufacturers to maintain control over the prices of device components (e.g., cartridges) that are available for use with the printing devices in relation to the location in which the devices are sold and used. For instance, the manufacturers may lower the cost of the device components in some regions to ensure that customers in those regions can afford such components, and to maintain a higher price for the device components in regions in which the market price for such components is higher,
- device components e.g., cartridges
- Fig. 1 ss a block diagram of an example printing device including components to regionalize the printing device based on geographic location;
- FIG. 2 is a block diagram of the example printing device illustrating additional components
- FIG. 3 is an example scenario illustrating regionaiszation of a printing device when the printing device is relocated from one region to another region;
- FIG. 4 is an example flow chart of a method for device regional ization based on geographic location.
- Fig. 5 illustrates a block diagram of an example printing device with device regionalization functionality based on geographic location. D ETAS LED DESCRIPTION
- the consumer supplies such as cartridges
- the printing device may Sock to a region indicated in the cartridge, for example, upon a number of pages that have been printed by the printing device reaches a predetermined threshold.
- a user relocates the printing device to a different region (e.g., due to business reasons)
- the user may be forced to purchase the supplies from the old region as the printing device may be locked to the old region indicated in the cartridge. This may cause an inconvenience to the user as the user may have to ship the cartridges from the o!d region which may involve additional cost (e.g. , shipping charges), thereby making the printing device not usable when the user shifts from one region to another region.
- Examples described herein describes about a printing device having a location determining unit (e.g., global positioning system (GPS)-based service) to determine a geographic location of the printing device.
- a location determining unit e.g., global positioning system (GPS)-based service
- the printing device may know the region in which the printing device Is physically located at any given point in time using the GPS-based service.
- the printing device may further include a code retrieving unit to read a region code embedded within a device component when the device component is installed in the printing device.
- the printing device may include an authentication unit to compare the region code of the device component with the geographic location of the printing device, and enable the printing device to function with the device component when the region code of the device component matches with the geographic location of the printing device.
- examples described herein may enable seamless use of the printing device when the printing device is relocated to a different geographic region. Further, examples described herein may allow a user to purchase and use the supplies (e.g., cartridges) from the new region when the customer relocates to the new region without contacting customer support, for instance, to unlock the printing device in the new region. Examples described herein may save cost to ship the supplies ⁇ e.g., cartridges) from the old region to the new region as the supplies from the new region can be purchased and used.
- supplies e.g., cartridges
- Fig. 1 is a block diagram of an example printing device 100 including components to regionalize printing device 100 based on geographic location.
- the term "printing device” may refer to any image forming apparatus that accepts the use of a cartridge.
- Example printing device 100 may include a printer, a copier, a facsimile (fax) device, and a multi-function device (MFD),
- Printing device 100 may include a iocation determining unit 102, a code retrieving unit 104 and an authentication unit 106.
- Location determining unit 102, code retrieving unit 104 and authentication unit 108 may be communicatively coupled/interactive with each other to perform the functionalities described herein.
- location determining unit 102 may determine a geographic location of printing device 100.
- iocation determining unit 102 may be a GPS-based device to determine the geographic location of printing device 100.
- location determining unit 102 may determine the geographic iocation of printing device 100 (i.e., a region where printing device 100 is located) using the GPS-based service installed in printing device 100.
- Location determining unit 102 may provide the geographical location of printing device 100 as a set of co-ordinates, i.e., GPS coordinate data specifying latitude, longitude and elevation. Example determination of the geographic iocation of printing device 100 using the GPS-based service is explained in Fig. 2, which depicts additional components.
- printing device 100 may include a database 202 including a mapping table 204.
- Database 202 may include a storage unit to store mapping table 204, Mapping table 204 may incfude a plurality of geographic regions and corresponding coordinate data.
- Example geographic region may include a country (e.g., India) or a group of countries ⁇ e.g., Asia-Pacific countries).
- location determining unit 102 may identify coordinate-based location information for printing device 100 (e.g., GPS coordinate data) using the G PS-based service and map the coordinate-based location information to predefined geographic regions within mapping table 204 to determine the geographic location of printing device 100, in the example of Fig, 2, database 202 is shown as being residing in printing device 100, however, database 202 can also be implemented as a part of location determining unit 102.
- coordinate-based location information for printing device 100 e.g., GPS coordinate data
- code retrieving unit 104 may read a region code embedded within a device component 108 when device component 108 is installed in printing device 100
- Example device component 108 may include a cartridge and an accessory tray for printing device 100.
- the cartridge may include various elements that supply a printing medium (e.g., dry toner or ink) to printing device 100
- Device component 108 can be installed into printing device 100, for instance, by the end user, prior to printing device operation.
- Device component 108 may be a removable (e.g., disposable) component that, for instance, is replaced once the component's usable life has expired,
- device component 108 may include encoded information about a given region to which device component 108 pertains. Accordingly, device component 108 may include a region code that can be provided to printing device 100 once device component 108 is installed. For example, device component 108 may have a microcontroller to store the region code,
- printing device 100 may obtain the region code from device component 108, For example, the process of obtaining the region code from device component 108 may occur each time when printing device 100 is turned on and/or when the cartridge is installed in printing device 100,
- authentication unit 108 may compare the region code of device component 108 with the geographic location of printing device 100, in one exampie, authentication unit 108 may verify whether the geographic iocation of printing device 100 fa!is under a region defined by the region code, in one exampie, device component 108 may include a plurality of region codes defining a plurality of regions, in such case, authentication unit 108 may verify whether the geographic location of printing device 100 matches with one of the regions defined in device component 108,
- authentication unit 106 may enable printing device 100 to function with device component 108 when the region code of device component 108 matches with the geographic iocation of printing device 100.
- authentication unit 108 may disabie printing device 100 to function with device component 108 and generate an error message on printing device 100 when the region code of device component 108 does not match with the geographic iocation of printing device 100,
- authentication unit 106 may remember the oid geographic iocation (e.g., first geographic location) of printing device 100 for a predefined period when printing device 100 is relocated to another geographic Iocation (e.g., second geographic location). Authentication unit 106 may enable printing device 100 to function with device component 108 associated with the first geographic Iocation for the predefined period. This is explained in Fig. 3.
- FIG- 3 is an exampie scenario 300 illustrating regional izatiion of printing device 100 when printing device 100 is relocated from one region (e.g., region X) to another region (e.g., region Y).
- region X region X
- region Y region Y
- authentication unit 108/machine ⁇ readab!e instructions in printing device 100 may remember old region X for a specified duration of time and allow the cartridges from region X during this time period, Sn such cases, the printer may allow usage of cartridges from both regions X and Y during the specified duration of time.
- the components of printing device 100 may be implemented in hardware, machine-readable instructions or a combination thereof.
- each of location determining unit 102, code retrieving unit 104, and authentication unit 106 may be implemented as engines or modules comprising any combination of hardware and programming to implement the functionalities described herein.
- Fig. 1 describes about printing device 100, the functionality of the components of printing device 100 may be implemented in other electronic devices such as personal computers (PCs), server computers, tablet computers, mobile devices and the like.
- [0Q22J Printing device 100 may include computer-readable storage medium comprising ⁇ e.g., encoded with) instructions executable by a processor to implement functionalities described herein in relation to Figs. 1-2.
- the functionalities described herein, in relation to instructions to implement functions of location determining unit 102, code retrieving unit 104, and authentication unit 106 and any additional instructions described herein in relation to the storage medium may be implemented as engines or moduies comprising any combination of hardware and programming to implement the functionalities of the modules or engines described herein.
- the functions of location determining unit 102, code retrieving unit 104, and authentication unit 106 may also be implemented by the processor.
- the processor may include, for example, one processor or multiple processors included in a single device or distributed across multiple devices.
- FIG. 4 is an example flow chart 400 of a method for device fegionalization based on geographic location.
- the device regionalization can be a country-based ⁇ e.g., India), group-based (e.g., Asia-Pacific countries) and the like, it should be understood that the process depicted in Fig. 4 represents generalized illustrations, and thai other processes may be added or existing processes may be removed, modified, or rearranged without departing from the scope and spirit of the present application.
- the processes may represent instructions stored on a computer-readable storage medium that, when executed, may cause a processor to respond, to perform actions, to change states, and/or to make decisions.
- the processes may represent functions and/or actions performed by functionally equivalent circuits !ike analog circuits, digital signal processing circuits, application specific integrated circuits (ASICs), or other hardware components associated with the system.
- ASICs application specific integrated circuits
- the flow charts are not intended to limit the implementation of the present application, but rather the flow charts illustrate functional information to design/fabricate circuits, generate machine-readable instructions, or use a combination of hardware and machine-readable instructions to perform the illustrated processes.
- a geographic location of an electronic device may he
- Example electronic device may include a printer, a copier, a facsimile (fax) device, a MFD, and other computing devices.
- coordinate-based location information may be identified for the electronic device.
- Example coordinate-based location information may include GPS coordinate data.
- the geographic location of the electronic device may be determined by mapping the coordinate-based location information to geographic regions defined in a mapping table stored in the electronic device.
- the geographic location of the printing device may also be determined using internet protocol (IP) address-based service in case of an internet printer protocol (iPP) ⁇ enabled printer, wireless data and cellular tower-based location techniques or a hybrid approach that uses any combination thereof including the GPS-based service.
- IP internet protocol
- iPP internet printer protocol
- a region code may be read/retrieved from a device component Installed in the electronic device,
- the region code may include encoded information about a given region to which the device component pertains .
- the electronic device may include programming to read the region code from the device component.
- Example device component may include a cartridge or an accessory tray,
- the device component may include a cartridge.
- the device component may include a head phone/ear phone,
- the geographic location of the electronic device is compared with the region code of the device component.
- the electronic device is enabled to function (e.g., to be used) with the device component when the geographic location of the electronic device falls under a region defined by the region code.
- an error message for the electronic device is generated when the geographic location of the electronic device does not fall under the region defined by the region code.
- process 400 of Fig. 4 may show example process and it should he understood that other configurations can be employed to practice the techniques of the present application.
- process 400 may communicate with a plurality of computing devices and the like.
- PiQ- 5 illustrates a block diagram of an example printing device 500 having regionalization functionality based on geographic location.
- Printing device 500 may include processor 502 and a machine-readable storage medium 504 communicatively coupled through a system bus.
- Processor 502 may be any type of central processing unit ⁇ CPU ⁇ , microprocessor, or processing logic that interprets and executes machine-readable instructions stored in machine-readabie storage medium 504,
- Machine-readable storage medium 504 may be a random access memory (RAM) or another type of dynamic storage device that may store information and machine-readable instructions that may be executed by processor 502.
- RAM random access memory
- machine-readable storage medium 504 may be synchronous DRAM (SDRAM), double data rate (DDR), rambus DRAM (RDRAM), rambus RAM, etc., or storage memory media such as a floppy disk, a hard disk, a CD-ROM, a DVD, a pen drive, and the like.
- machine-readable storage medium 504 may be a non-transitory machine-readable medium. Irs an example, machine- readable storage medium 504 may be remote but accessible to printing device 500.
- Machine-readable storage medium 504 may store instructions 506-512, in an example, instructions 508-512 may be executed by processor 502 to provide a mechanism for device regional ization based on geographic location. Instructions 506 may be executed by processor 502 to obtain a geographic location of printing device 500 using a GPS-based service in printing device 500. instructions 508 may be executed by processor 502 to retrieve a region code embedded in a device component when the device component is installed in printing device 500. Instructions 510 may be executed by processor 502 to verify whether the geographic iocation of printing device 500 matches with a region defined by the region code of the device component.
- Instructions 512 may be executed by processor 502 to enable the device component to be used with printing device 500 when the geographic Iocation of printing device 500 matches with the region defined by the region code. Further, machine-readable storage medium 504 may store instructions to disable the device component to be used with printing device 500 and generate an error message when the geographic iocation of printing device 500 does not match with the region defined by the region code.
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Abstract
In one example, a method is described, in which a geographic location of an electronic device may be determined. Further, a region code may be read from a device component installed in the electronic device. Furthermore, the geographic location of the electronic device may be compared with the region code of the device component. The electronic device may be enabled to function with the device component when the geographic location of the electronic device falls under a region defined by the region code.
Description
DEVICE REGIONAUZATfON BASED ON GEOGRAPHIC LOCATION
BACKGROUND
£0O01J Manufacturers may geographically regionalize printing devices, such as printers, copiers, facsimile machines, multi-function peripheral (MFP) devices. This may enable the manufacturers to maintain control over the prices of device components (e.g., cartridges) that are available for use with the printing devices in relation to the location in which the devices are sold and used. For instance, the manufacturers may lower the cost of the device components in some regions to ensure that customers in those regions can afford such components, and to maintain a higher price for the device components in regions in which the market price for such components is higher,
BRIEF DESCRIPTION OF THE DRAWINGS
[OG02J Examples are described in the following detailed description and in reference to the drawings, in which:
108031 Fig. 1 ss a block diagram of an example printing device including components to regionalize the printing device based on geographic location;
[0004| Fig. 2 is a block diagram of the example printing device illustrating additional components;
[0005] Fig. 3 is an example scenario illustrating regionaiszation of a printing device when the printing device is relocated from one region to another region;
[0006] Fig. 4 is an example flow chart of a method for device regional ization based on geographic location; and
[0007] Fig. 5 illustrates a block diagram of an example printing device with device regionalization functionality based on geographic location.
D ETAS LED DESCRIPTION
[0008] The consumer supplies, such as cartridges, may be regionalized so thai manufacturers may not lose revenue by import of such supplies from other regions that might be cheaper, in some existing methods, once a cartridge is placed for a first time in a printing device, the printing device may Sock to a region indicated in the cartridge, for example, upon a number of pages that have been printed by the printing device reaches a predetermined threshold. When a user relocates the printing device to a different region (e.g., due to business reasons), the user may be forced to purchase the supplies from the old region as the printing device may be locked to the old region indicated in the cartridge. This may cause an inconvenience to the user as the user may have to ship the cartridges from the o!d region which may involve additional cost (e.g. , shipping charges), thereby making the printing device not usable when the user shifts from one region to another region.
[0009] Examples described herein describes about a printing device having a location determining unit (e.g., global positioning system (GPS)-based service) to determine a geographic location of the printing device. For example, the printing device may know the region in which the printing device Is physically located at any given point in time using the GPS-based service. The printing device may further include a code retrieving unit to read a region code embedded within a device component when the device component is installed in the printing device. Also, the printing device may include an authentication unit to compare the region code of the device component with the geographic location of the printing device, and enable the printing device to function with the device component when the region code of the device component matches with the geographic location of the printing device.
[00i0| As described below, examples described herein may enable seamless use of the printing device when the printing device is relocated to a different geographic region. Further, examples described herein may allow a user to purchase and use the supplies (e.g., cartridges) from the new region when the
customer relocates to the new region without contacting customer support, for instance, to unlock the printing device in the new region. Examples described herein may save cost to ship the supplies {e.g., cartridges) from the old region to the new region as the supplies from the new region can be purchased and used.
[00113 Turning now to the figures, Fig. 1 is a block diagram of an example printing device 100 including components to regionalize printing device 100 based on geographic location. The term "printing device" may refer to any image forming apparatus that accepts the use of a cartridge. Example printing device 100 may include a printer, a copier, a facsimile (fax) device, and a multi-function device (MFD), Printing device 100 may include a iocation determining unit 102, a code retrieving unit 104 and an authentication unit 106. Location determining unit 102, code retrieving unit 104 and authentication unit 108 may be communicatively coupled/interactive with each other to perform the functionalities described herein.
[0012} During operation, location determining unit 102 may determine a geographic location of printing device 100. For example, iocation determining unit 102 may be a GPS-based device to determine the geographic location of printing device 100. In another example, location determining unit 102 may determine the geographic iocation of printing device 100 (i.e., a region where printing device 100 is located) using the GPS-based service installed in printing device 100. Location determining unit 102 may provide the geographical location of printing device 100 as a set of co-ordinates, i.e., GPS coordinate data specifying latitude, longitude and elevation. Example determination of the geographic iocation of printing device 100 using the GPS-based service is explained in Fig. 2, which depicts additional components.
[00133 As shown in Fig. 2, printing device 100 may include a database 202 including a mapping table 204. Database 202 may include a storage unit to store mapping table 204, Mapping table 204 may incfude a plurality of geographic regions and corresponding coordinate data. Example geographic region may include a country (e.g., India) or a group of countries {e.g., Asia-Pacific countries).
!n one example, location determining unit 102 may identify coordinate-based location information for printing device 100 (e.g., GPS coordinate data) using the G PS-based service and map the coordinate-based location information to predefined geographic regions within mapping table 204 to determine the geographic location of printing device 100, in the example of Fig, 2, database 202 is shown as being residing in printing device 100, however, database 202 can also be implemented as a part of location determining unit 102.
100143 Further, code retrieving unit 104 may read a region code embedded within a device component 108 when device component 108 is installed in printing device 100, Example device component 108 may include a cartridge and an accessory tray for printing device 100. The cartridge may include various elements that supply a printing medium (e.g., dry toner or ink) to printing device 100, Device component 108 can be installed into printing device 100, for instance, by the end user, prior to printing device operation. Device component 108 may be a removable (e.g., disposable) component that, for instance, is replaced once the component's usable life has expired,
[0015] in one example, device component 108 may include encoded information about a given region to which device component 108 pertains. Accordingly, device component 108 may include a region code that can be provided to printing device 100 once device component 108 is installed. For example, device component 108 may have a microcontroller to store the region code,
[00163 For example, during the printing device assembly process, user may install device component 108 in printing device 100 and may then activate printing device 100. When device component 108 is a print cartridge, the user can insert the cartridge in the appropriate location within printing device 100, Once printing device 100 is powered on/activated, printing device 100 may obtain the region code from device component 108, For example, the process of obtaining the region code
from device component 108 may occur each time when printing device 100 is turned on and/or when the cartridge is installed in printing device 100,
[001 TJ Furthermore, authentication unit 108 may compare the region code of device component 108 with the geographic location of printing device 100, in one exampie, authentication unit 108 may verify whether the geographic iocation of printing device 100 fa!is under a region defined by the region code, in one exampie, device component 108 may include a plurality of region codes defining a plurality of regions, in such case, authentication unit 108 may verify whether the geographic location of printing device 100 matches with one of the regions defined in device component 108,
[00181 in one exampie, authentication unit 106 may enable printing device 100 to function with device component 108 when the region code of device component 108 matches with the geographic iocation of printing device 100. In another exampie, authentication unit 108 may disabie printing device 100 to function with device component 108 and generate an error message on printing device 100 when the region code of device component 108 does not match with the geographic iocation of printing device 100,
[0019] in one exampie, authentication unit 106 may remember the oid geographic iocation (e.g., first geographic location) of printing device 100 for a predefined period when printing device 100 is relocated to another geographic Iocation (e.g., second geographic location). Authentication unit 106 may enable printing device 100 to function with device component 108 associated with the first geographic Iocation for the predefined period. This is explained in Fig. 3.
[00203 Fig- 3 is an exampie scenario 300 illustrating regional izatiion of printing device 100 when printing device 100 is relocated from one region (e.g., region X) to another region (e.g., region Y). For exampie, when the user purchased a printer and few additional sets of cartridges from region X and then relocates to region Y, authentication unit 108/machine~readab!e instructions in printing device 100 may
remember old region X for a specified duration of time and allow the cartridges from region X during this time period, Sn such cases, the printer may allow usage of cartridges from both regions X and Y during the specified duration of time.
[ΟΟ213 In one example, the components of printing device 100 may be implemented in hardware, machine-readable instructions or a combination thereof. In one example, each of location determining unit 102, code retrieving unit 104, and authentication unit 106 may be implemented as engines or modules comprising any combination of hardware and programming to implement the functionalities described herein. Even though Fig. 1 describes about printing device 100, the functionality of the components of printing device 100 may be implemented in other electronic devices such as personal computers (PCs), server computers, tablet computers, mobile devices and the like.
[0Q22J Printing device 100 may include computer-readable storage medium comprising {e.g., encoded with) instructions executable by a processor to implement functionalities described herein in relation to Figs. 1-2. In some examples, the functionalities described herein, in relation to instructions to implement functions of location determining unit 102, code retrieving unit 104, and authentication unit 106 and any additional instructions described herein in relation to the storage medium, may be implemented as engines or moduies comprising any combination of hardware and programming to implement the functionalities of the modules or engines described herein. The functions of location determining unit 102, code retrieving unit 104, and authentication unit 106 may also be implemented by the processor. In examples described herein, the processor may include, for example, one processor or multiple processors included in a single device or distributed across multiple devices.
[0023J Fig, 4 is an example flow chart 400 of a method for device fegionalization based on geographic location. The device regionalization can be a country-based {e.g., India), group-based (e.g., Asia-Pacific countries) and the like, it should be understood that the process depicted in Fig. 4 represents generalized
illustrations, and thai other processes may be added or existing processes may be removed, modified, or rearranged without departing from the scope and spirit of the present application. In addition, it should be understood that the processes may represent instructions stored on a computer-readable storage medium that, when executed, may cause a processor to respond, to perform actions, to change states, and/or to make decisions. Alternatively, the processes may represent functions and/or actions performed by functionally equivalent circuits !ike analog circuits, digital signal processing circuits, application specific integrated circuits (ASICs), or other hardware components associated with the system. Furthermore, the flow charts are not intended to limit the implementation of the present application, but rather the flow charts illustrate functional information to design/fabricate circuits, generate machine-readable instructions, or use a combination of hardware and machine-readable instructions to perform the illustrated processes.
[00243 At 402, a geographic location of an electronic device may he
determined, for instance, using a GPS-based service. Example electronic device may include a printer, a copier, a facsimile (fax) device, a MFD, and other computing devices. In one example, coordinate-based location information may be identified for the electronic device. Example coordinate-based location information may include GPS coordinate data. Further, the geographic location of the electronic device may be determined by mapping the coordinate-based location information to geographic regions defined in a mapping table stored in the electronic device. In another example, the geographic location of the printing device may also be determined using internet protocol (IP) address-based service in case of an internet printer protocol (iPP)~enabled printer, wireless data and cellular tower-based location techniques or a hybrid approach that uses any combination thereof including the GPS-based service.
[002SJ At 404, a region code may be read/retrieved from a device component Installed in the electronic device, In one example, the region code may include encoded information about a given region to which the device component pertains . Further, the electronic device may include programming to read the region code
from the device component. Example device component may include a cartridge or an accessory tray, In one example, when the electronic device is a printing device, then the device component may include a cartridge. In another example, when the electronic device is a mobile device, then the device component may include a head phone/ear phone,
[0026J At 406, the geographic location of the electronic device is compared with the region code of the device component. At 408, the electronic device is enabled to function (e.g., to be used) with the device component when the geographic location of the electronic device falls under a region defined by the region code. In another example, an error message for the electronic device is generated when the geographic location of the electronic device does not fall under the region defined by the region code.
[00273 The process 400 of Fig. 4 may show example process and it should he understood that other configurations can be employed to practice the techniques of the present application. For example, process 400 may communicate with a plurality of computing devices and the like.
[00283 PiQ- 5 illustrates a block diagram of an example printing device 500 having regionalization functionality based on geographic location. Printing device 500 may include processor 502 and a machine-readable storage medium 504 communicatively coupled through a system bus. Processor 502 may be any type of central processing unit {CPU}, microprocessor, or processing logic that interprets and executes machine-readable instructions stored in machine-readabie storage medium 504, Machine-readable storage medium 504 may be a random access memory (RAM) or another type of dynamic storage device that may store information and machine-readable instructions that may be executed by processor 502. For example, machine-readable storage medium 504 may be synchronous DRAM (SDRAM), double data rate (DDR), rambus DRAM (RDRAM), rambus RAM, etc., or storage memory media such as a floppy disk, a hard disk, a CD-ROM, a DVD, a pen drive, and the like. In an example, machine-readable storage medium
504 may be a non-transitory machine-readable medium. Irs an example, machine- readable storage medium 504 may be remote but accessible to printing device 500.
[0029J Machine-readable storage medium 504 may store instructions 506-512, in an example, instructions 508-512 may be executed by processor 502 to provide a mechanism for device regional ization based on geographic location. Instructions 506 may be executed by processor 502 to obtain a geographic location of printing device 500 using a GPS-based service in printing device 500. instructions 508 may be executed by processor 502 to retrieve a region code embedded in a device component when the device component is installed in printing device 500. Instructions 510 may be executed by processor 502 to verify whether the geographic iocation of printing device 500 matches with a region defined by the region code of the device component.
[0030J Instructions 512 may be executed by processor 502 to enable the device component to be used with printing device 500 when the geographic Iocation of printing device 500 matches with the region defined by the region code. Further, machine-readable storage medium 504 may store instructions to disable the device component to be used with printing device 500 and generate an error message when the geographic iocation of printing device 500 does not match with the region defined by the region code.
[0031] it may be noted that the above-deseo'bed examples of the present solution is for the purpose of illustration on!y. Although the solution has been described in conjunction with a specific example thereof, numerous modifications may be possible without materially departing from the teachings and advantages of the subject matter described herein. Other substitutions, modifications and changes may be made without departing from the spirit of the present solution. Ail of the features disclosed in this specification {including any accompanying claims, abstract and drawings), and/or ail of the steps of any method or process so
disctosed, may be combined in any combination, except combinations where at least some of such features and/or steps are mutually exclusive.
[00323 The terms "include," "have," and variations thereof, as used herein, have the same meaning as the term "comprise" or appropriate variation thereof. Furthermore, the term "based on", as used herein, means "based at least in part on." Thus, a feature that is described as based on some stimulus can be based on the stimulus or a combination of stimuli including the stimulus.
[00333 The present description has been shown and described with reference to the foregoing examples, it is understood, however, that other forms, details, and examples can be made without departing from the spirit and scope of the present subject matter that is defined in the following claims.
Claims
1. A printing device, comprising:
a location determining unit to determine a geographic location of the printing device;
a code retrieving unit to read a region code embedded within a device component when the device component is installed in the printing device; and an authentication unit to;
compare the region code of the device component with the geographic location of the printing device; and
enable the printing device to function with the device component when the region code of the device component matches with the geographic location of the printing device.
2. The printing device of claim 1 , wherein the location determining unit to determine the geographic location of the printing device using a global positioning system (GPS)-based service.
3. The printing device of claim 1 , wherein the location determining unit provides the geographical location of the printing device as a set of co-ordinates.
4. The printing device of claim 1 , wherein the authentication unit to disable the printing device to function with the device component and generate an error message on the printing device when the region code of the device component does not match with the geographic location of the printing device.
5. The printing device of claim 1 , wherein the printing device comprises one of a printer, a copier, a facsimile (fax) device, and a multi-function device (MFD).
8, The printing device of claim 1 , wherein the device component comprises one of a cartridge and an accessory tray.
7. The printing device of claim 1 , wherein the authentication unit to:
remember a first geographic location of the printing device for a predefined period when the printing device is relocated from the first geographic location to a second geographic location; and
enable the printing device to function with the device component associated with the first geographic location for the predefined period.
8, A method comprising:
determining a geographic location of an electronic device;
reading a region code from a device component installed in the electronic device;
comparing the geographic location of the electronic device with the region code of the device component; and
enabling the electronic device to function with the device component when the geographic location of the electronic device falls under a region defined by the region code.
9. The method of claim 8, wherein determining a geographic location of the electronic -device, comprises:
identifying coordinate-based location information for the electronic device, wherein the coordinate-based location information comprises global positioning system (GPS) coordinate data; and
determining the geographic location of the electronic device by mapping the coordinate-based location information to geographic regions defined in a mapping table stored in the electronic device.
10, The method of claim 8, wherein the geographic location of the electronic device is determined using a GPS-based service.
11 , The method of claim 8, further comprising:
generating an error message for the electronic device when the geographic iocation of the electronic device does not fali under the region defined by the region code.
12, The method of ciaim 8, wherein the electronic device comprises one of a printer, a copier, a facsimile (fax) device, and a multi-function device (MFD), and wherein the device component comprises one of a cartridge and an accessory tray,
13, A non-transitory machine-readable storage medium comprising
instructions executable by a processor to:
obtain a geographic location of a printing device using a global positioning system (GPS)-based service in the printing device;
retrieve a region code embedded in a device component when the device component is installed in the printing device:
verify whether the geographic iocation of the printing device matches with a region defined by the region code of the device component; and
enable the device component to be used with the printing device when the geographic iocation of the printing device matches with the region defined by the region code,
14. The non-transitory machine-readable storage medium of claim 13, further comprising instructions to;
disable the device component to be used with the printing device and generate an error message when the geographic location of the printing device does not match with the region defined by the region code.
15. The non-transitory machine-readab!e storage medium of claim 13, further comprising instructions to:
remember a first geographic location of the printing device for a predefined period when the printing device is relocated from the first geographic location to a second geographic Iocation; and
enabSe the printing device to function with the device component associated with the first geographic !ocation for the predefined period.
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US16/085,941 US10594884B2 (en) | 2016-06-25 | 2016-12-02 | Device regionalization based on geographic location |
| CN201680084985.8A CN109076483B (en) | 2016-06-25 | 2016-12-02 | Device regionalization based on geographic location |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| IN201641021861 | 2016-06-25 | ||
| IN201641021861 | 2016-06-25 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2017222587A1 true WO2017222587A1 (en) | 2017-12-28 |
Family
ID=60784071
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US2016/064678 Ceased WO2017222587A1 (en) | 2016-06-25 | 2016-12-02 | Device regionalization based on geographic location |
Country Status (3)
| Country | Link |
|---|---|
| US (1) | US10594884B2 (en) |
| CN (1) | CN109076483B (en) |
| WO (1) | WO2017222587A1 (en) |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN110297669B (en) * | 2019-06-28 | 2021-05-25 | 北京金山安全软件有限公司 | Method and device for online activation of equipment, electronic equipment and storage medium |
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| US20050108445A1 (en) * | 2003-11-03 | 2005-05-19 | Lassner Michael A. | Systems and methods for implementing device regionalization |
| US9160640B1 (en) * | 2010-04-22 | 2015-10-13 | Imdb.Com, Inc. | Collecting client-side performance metrics and latencies |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7286774B1 (en) | 2003-12-19 | 2007-10-23 | Cartridge Corporation Of America, Inc. | Universal printer chip |
| US7551859B2 (en) | 2005-09-27 | 2009-06-23 | Steven Miller | Multiple region printer chip |
| US8599424B2 (en) | 2008-09-04 | 2013-12-03 | Fb Sistemas S.A. | Printer cartridge microchip |
| JP5203978B2 (en) * | 2009-01-06 | 2013-06-05 | キヤノン株式会社 | Printer, client terminal, control method therefor, and program |
| CN102774139A (en) * | 2012-02-13 | 2012-11-14 | 珠海天威技术开发有限公司 | Universal chip and region matching method for same as well as consumable container and imaging equipment |
| JP2014104606A (en) * | 2012-11-26 | 2014-06-09 | Seiko Epson Corp | Printer control method and printer system |
| JP2016138908A (en) * | 2015-01-26 | 2016-08-04 | セイコーエプソン株式会社 | Display system, portable display device, display control device, and display method |
| US9804811B2 (en) * | 2016-03-31 | 2017-10-31 | Kyocera Document Solutions Inc. | System and method for printing location-based, customized data |
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2016
- 2016-12-02 WO PCT/US2016/064678 patent/WO2017222587A1/en not_active Ceased
- 2016-12-02 US US16/085,941 patent/US10594884B2/en active Active
- 2016-12-02 CN CN201680084985.8A patent/CN109076483B/en not_active Expired - Fee Related
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20050108445A1 (en) * | 2003-11-03 | 2005-05-19 | Lassner Michael A. | Systems and methods for implementing device regionalization |
| US9160640B1 (en) * | 2010-04-22 | 2015-10-13 | Imdb.Com, Inc. | Collecting client-side performance metrics and latencies |
Also Published As
| Publication number | Publication date |
|---|---|
| US10594884B2 (en) | 2020-03-17 |
| CN109076483A (en) | 2018-12-21 |
| CN109076483B (en) | 2021-03-26 |
| US20190098158A1 (en) | 2019-03-28 |
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