CN103921561B - A kind of imaging device - Google Patents

A kind of imaging device Download PDF

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Publication number
CN103921561B
CN103921561B CN201410164260.2A CN201410164260A CN103921561B CN 103921561 B CN103921561 B CN 103921561B CN 201410164260 A CN201410164260 A CN 201410164260A CN 103921561 B CN103921561 B CN 103921561B
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Prior art keywords
imaging
chip
equipment body
imaging equipment
cartridge
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CN201410164260.2A
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CN103921561A (en
Inventor
刘卫臣
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Jihai Microelectronics Co ltd
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Apex Microelectronics Co Ltd
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Publication of CN103921561A publication Critical patent/CN103921561A/en
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Abstract

The invention provides a kind of imaging device, comprise: imaging equipment body 101, imaging cartridge 102 and chip 103, described imaging cartridge 102 is removably mounted in described imaging equipment body 101, it is characterized in that, described chip 103 is arranged on inside described imaging equipment body 101, described chip 103 stores the data message of the imaging cartridge 102 that the probe 104 that abuts with it detects, in imaging device provided by the present invention, the chip 103 storing imaging cartridge 102 data message is not be arranged on imaging cartridge 102, and be mounted in inside imaging equipment body 101, with the probes touch inside imaging equipment body 101, chip 103 is separated with imaging cartridge 102, make chip 103 can not cause with the probes touch on imaging equipment body 101 bad because of the vibration of imaging cartridge 102, ensure that chip 103 keeps good contact with the probe on imaging equipment body 101.

Description

A kind of imaging device
Technical field
The present invention relates to printing technical field of imaging, particularly relate to a kind of imaging device.
Background technology
Imaging device conventional at present, as printer, duplicator and facsimile machine etc., comprise imaging equipment body and imaging cartridge, described imaging cartridge is dismountable to be arranged in imaging equipment body.Each imaging cartridge is provided with a chip, particularly, described imaging cartridge has a draw-in groove, described chip is releasably attached in above-mentioned draw-in groove, realizes being fixed.Described chip for storing each data message of place imaging cartridge, as: imaging cartridge the color of printing raw material of being stored, print the surplus of raw material or consumption etc.When being arranged in imaging equipment body by imaging cartridge, the contact of the chip on each imaging cartridge abuts with the probe in imaging equipment body, realizes the data interaction between chip and imaging equipment body control circuit.Each chip has a contact at least, and the number of the probe in imaging equipment body is identical with the number of chip contacts.
Because chip is arranged on imaging cartridge, probe is arranged in imaging equipment body, and when the manufacture craft of imaging cartridge has error, or imaging cartridge mounting means was not at that time, and what contact and the probe of chip cannot be good abuts.In the laser printer installing cartridge, chip is arranged on cartridge, the rotation of cartridge when working of laser printer due to gear is constantly vibrated, and chip is easy to be infected with carbon dust dust, continuous vibration and the dust of cartridge are all easy to cause that chip and probe cannot be good abuts.The problems referred to above all easily cause chip and probes touch bad, cause cannot communicating between chip and the control circuit in imaging equipment body.
Summary of the invention
The technical problem that the present invention solves is to provide a kind of imaging device, inside the main body 101 chip 103 being arranged on imaging device, thus can prevent because the chip 103 that imaging cartridge 102 is installed or the problem such as chip 103 covered with dust causes is bad with probes touch.
For this reason, the technical scheme of technical solution problem of the present invention is:
A kind of imaging device, comprise: imaging equipment body (101), imaging cartridge (102) and chip (103), described imaging cartridge (102) is removably mounted in described imaging equipment body (101), described chip (103) is arranged on described imaging equipment body (101) inner side, and described chip (103) stores the data message of the imaging cartridge (102) that the probe (104) that abuts with it detects.
Optional:
Described chip (103) is identical with the number of described imaging cartridge (102), and each described chip (103) stores the data message of the imaging cartridge (102) that one group of probe (104) abutting with it is detected.
Optional:
Described chip (103) only has one, and described chip (103) abuts with the probe of all detection imaging cartridges (102), stores the data message of all imaging cartridges (102).
Optional:
Described chip (103) has at least two, and the number of described chip (103) is less than the number of described imaging cartridge (102), each described chip (103) abuts with at least one group of probe detecting imaging cartridge (102), stores the data message of at least one imaging cartridge (102) that the probe (104) that abuts with it detects respectively.
Optional:
Described chip (103) is arranged on the inner side of the closing lid (105) of described imaging equipment body (101), and by opening, described closing lid (105) is dismountable to be arranged in described imaging equipment body (101) described imaging cartridge (102).
Optional:
Described imaging device also comprises installing rack (106), described installing rack (106) is arranged on the inner side of the closing lid (105) of described imaging equipment body (101), and described chip (103) is arranged on the inner side of the closing lid (105) of described imaging equipment body (101) by described installing rack (106).
Optional:
Described installing rack (106) comprises groove (902) and base (901), described groove (902) is for fixing described chip (103), and described base (901) is for being fixed on the inner side of the closing lid (105) of described imaging equipment body (101) by described groove (902).
Optional:
Described installing rack (106) comprises groove (902), and described groove (902) is for being fixed on the inner side of the closing lid (105) of described imaging equipment body (101) by described chip (103).
Optional:
Described installing rack (106) is fixed by the locating dowel on the inner side of the closing lid (105) of locating hole and imaging equipment body (101), it is fixing to paste, projection on the inner side of the closing lid (105) of recess and imaging equipment body (101) is fixed, nut is fixed and any one removably in being fixed is fixed on the inner side of the closing lid (105) of described imaging equipment body (101).
Optional:
Described installing rack (106) is fixed on the inner side of the closing lid (105) of described imaging equipment body (101) by the non-dismountable mode of welding.
Optional:
Described imaging device also comprises installing rack (106), described installing rack (106) is arranged on the inner side of described imaging equipment body (101), and described chip (103) is arranged on the inner side of described imaging equipment body (101) by described installing rack (106).
Optional:
Described chip (103) is fixed with the locating dowel on the inner side of locating hole and imaging equipment body (101), it is fixing to paste, projection on the inner side of recess and imaging equipment body (101) is fixed, nut is fixed and any one removably in being fixed is fixed on the inner side of described imaging equipment body (101).
Optional:
Described chip (103) is fixed on the inner side of described imaging equipment body (101) by the non-removable fixed form of welding.
Known by technique scheme, the invention provides a kind of imaging device, imaging equipment body 101, imaging cartridge 102 and chip 103, described imaging cartridge 102 is removably mounted in described imaging equipment body 101, it is characterized in that, described chip 103 is arranged on inside described imaging equipment body 101, described chip 103 stores the data message of the imaging cartridge 102 that the probe 104 that abuts with it detects, in imaging device provided by the present invention, the chip 103 storing imaging cartridge 102 data message is not be arranged on imaging cartridge 102, and be mounted in inside imaging equipment body 101, with the probes touch inside imaging equipment body 101, chip 103 is separated with imaging cartridge 102, make chip 103 can not cause with the probes touch on imaging equipment body 101 bad because of the vibration of imaging cartridge 102, ensure that chip 103 keeps good contact with the probe on imaging equipment body 101.
Accompanying drawing explanation
In order to be illustrated more clearly in the embodiment of the present invention or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment or description of the prior art below, apparently, accompanying drawing in the following describes is only some embodiments of the present invention, for those of ordinary skill in the art, under the prerequisite not paying creative work, other accompanying drawing can also be obtained according to these accompanying drawings.
Fig. 1 is a kind of imaging device structure schematic diagram of the present invention;
Fig. 2 is chip 103 of the present invention mounting structure schematic diagram identical with the number of imaging cartridge 102;
Fig. 3 (1) is all imaging cartridge 102 data message mounting structure schematic diagrames for chip 103 of the present invention stores;
Fig. 3 (2) is all imaging cartridge 102 data message mounting structure side views for chip 103 of the present invention stores;
Fig. 4 is that chip 103 of the present invention is arranged on closing lid 105 inside structure schematic diagram;
Fig. 5 is the closing lid 105 partial structurtes schematic diagram of imaging equipment body 101 of the present invention;
Fig. 6 (1) stores chip 103 structural representation of imaging cartridge 102 data message for the present invention;
Chip 103 structural representation of the data message of Fig. 6 (2) all imaging cartridges 102 for the present invention stores;
Fig. 7 is the side view that chip 103 of the present invention abuts against with the probe inside imaging equipment body 101;
Fig. 8 be chip 103 of the present invention be arranged on imaging equipment body 101 closing lid 105 inside structural representation;
Fig. 9 is that chip 103 of the present invention is arranged on schematic diagram inside the closing lid 105 of imaging equipment body 101 by installing rack 106.
Detailed description of the invention
The invention discloses a kind of imaging device, chip 103 is arranged on inside imaging equipment body 101, with the probes touch inside imaging equipment body 101, chip 103 is separated with imaging cartridge 102, ensures that chip (103) keeps good contact with the probe on imaging equipment body 101.
Below in conjunction with accompanying drawing, the specific embodiment of the invention is described in detail.
In order to simplified characterization process, all be described for laser printer and cartridge in following specific embodiment, following embodiment is equally applicable to imaging device and the imaging cartridge (such as: ink-jet printer and print cartridge etc.) of other types, repeats no longer one by one here.
Here it should be noted that, in following embodiment, when definition imaging device normally uses, laying state face is upward top cover; The face parallel with top cover is bottom; Can to open and the face be arranged in imaging equipment body 101 is protecgulum by imaging cartridge 102; The face parallel with protecgulum is bonnet; Two faces vertical with protecgulum are side cover.When imaging device normally uses, the visual face of imaging equipment body 101 is the outside of imaging equipment body 101, and not visible face is the inner side of imaging equipment body 101.
Fig. 1 is a kind of imaging device structure schematic diagram of the present invention, described imaging device comprises: imaging equipment body 101, imaging cartridge 102 and chip 103, described imaging cartridge 102 is removably mounted in described imaging equipment body 101, it is characterized in that, described chip 103 is arranged on inside described imaging equipment body 101, and described chip 103 stores the data message of the imaging cartridge 102 that the probe 104 that abuts with it detects.
Imaging equipment body 101 by a top cover 11, bottom parallel with top cover 11, the hexahedron that a protecgulum 12, bonnet parallel with protecgulum 12 and two side covers vertical with protecgulum 12 form.In the cavity that dismountable six faces being arranged on described imaging equipment body 101 of imaging cartridge 102 form, hold and print raw material.When imaging cartridge 102 is the cartridge of laser printer, for holding the carbon dust printed; When imaging cartridge 102 is the print cartridge of ink-jet printer, for holding the ink printed.Unlike the prior art, chip 103 is not arranged on imaging cartridge 102, and is mounted in inside imaging equipment body 101.
Print components and Print Control circuit is provided with in imaging equipment body 101, generally, the probe 104 be connected with Print Control circuit is arranged on the inner side of imaging equipment body 101, chip 103 realizes carrying out data interaction with Print Control circuit by abutting with probe 104, therefore, chip 103 is also arranged on the inner side of imaged body 101.
Chip 103 is mainly used in the data message storing described imaging cartridge 102, has the structure that two kinds are possible at least:
The first possible structure, described in described imaging device, chip 103 is identical with the number of described imaging cartridge 102, and each chip 103 stores the data message of the imaging cartridge 102 that the probe 104 that abuts with it detects.
Chip 103 is identical with the number of imaging cartridge 102, chip-stored has the data message in an imaging cartridge, probe can only detect the data message in the imaging cartridge corresponding with it, and each chip-stored has the data message in the imaging cartridge corresponding with the probe of its abutting.Print Control circuit in imaging equipment body 101, for controlling printing, identifies and detects the data message in imaging cartridge 102, controls and detects surplus or the consumption of the printing raw material in imaging cartridge 102.Print Control circuit reads the data message in the imaging cartridge 102 stored in the chip 103 abutted with probe 104 by probe 104, and the data messages such as the surplus of the printing raw material in detected imaging cartridge 102 or consumption is stored to the chip 103 of the data message storing this imaging cartridge by probe 104.
Generally, chip 103 can correspondingly with the imaging cartridge 102 be arranged in imaging equipment body 101 be installed, and as shown in Figure 2, chip 31 stores the data message in imaging cartridge 21; Chip 32 stores the data message in imaging cartridge 22; Chip 33 stores the data message in imaging cartridge 23; Chip 34 stores the data message in imaging cartridge 24.When imaging device normally uses placement, be arranged on the chip placement parallel with the imaging cartridge that it stores inside imaging equipment body 101.Such chip, can the identification chip of more aspect stores is data message in which imaging cartridge, so that chip is corresponding with imaging cartridge.Certainly, be not limited only to the mode of above-mentioned chip 103, can also be horizontally in a row by chip 103, or chip 103 is arranged in rectangle or square, chip 103 can also be installed according to a certain given shape, repeat no more here.
Print Control circuit reads the data message of the imaging cartridge 21 that chip 31 stores by the probe abutted with chip 31, and by the data message in detected imaging cartridge 21 by probe storage to chip 31.Print Control circuit reads the data message of the imaging cartridge 22 that chip 32 stores by the probe abutted with chip 32, and by the data message in detected imaging cartridge 22 by probe storage to chip 32.Print Control circuit reads the data message of the imaging cartridge 23 that chip 33 stores by the probe abutted with chip 33, and by the data message in detected imaging cartridge 33 by probe storage to chip 33.Print Control circuit reads the data message of the imaging cartridge 24 that chip 34 stores by the probe abutted with chip 34, and by the data message in detected imaging cartridge 24 by probe storage to chip 34.
The structure that the second is possible, described chip 103 only has one, and described chip 103 abuts with the probe of all detection imaging cartridges 102, stores the data message of all imaging cartridges 102.
In actual applications, a chip 103 can also be realized and abut with all probes, store the data message in all imaging cartridges 102.As shown in Fig. 3 (1) and Fig. 3 (2), chip 103 is very large, abut with all probes arranged in imaging equipment body 101, store the data message of each imaging cartridge 102 that Print Control circuit is transmitted by each probe, Print Control circuit also reads the data message of the imaging cartridge stored in chip 103 by probe.Chip 103 can for each imaging cartridge 102 distributes separately a storage area or provide separately a memory element, to store the data message of imaging cartridge 102 respectively for each imaging cartridge 102 in a memory element.
Certainly, be not limited in above-mentioned two kinds of concrete implementations in specific implementation process, an imaging device can also comprise two chips, and each chip abuts with two groups of probes, stores the data message of two imaging cartridges respectively; Or, an imaging device can also comprise a large chip and a little chip, and a large chip abuts with three groups of probes, stores the data message of three imaging cartridges, the little chip of another one abuts with one group of probe, stores the data message of an imaging cartridge.Above-mentioned example is all be provided with four imaging cartridges for an imaging device to be described, and can also be provided with more or less imaging cartridge.That is, a chip can store the data message of an imaging cartridge, also can store the data message of multiple imaging cartridge, and this is relevant with the number of the probe groups that a chip abuts.
Further, described chip 103 is arranged on the inner side of the closing lid 105 of described imaging equipment body 101, and by opening, described closing lid 105 is dismountable to be arranged in described imaging equipment body 101 described imaging cartridge 102.
Chip 103 is arranged on the inner side of imaging equipment body 101, to be arranged on the place being provided with probe 104 inside imaging equipment body 101.Probe 104 can be arranged on inside imaging equipment body 101 Anywhere, and generally, in order to mount and dismount conveniently, probe is arranged on inside the closing lid 105 of imaging equipment body 101.As shown in Figure 4, closing lid 105 is the protecgulum of imaging equipment body 101, and closing lid 105 can open and close.Imaging cartridge 102 can be mounted in imaging equipment body 101 by opening described closing lid 105.
Fig. 5 is the closing lid 105 partial structurtes schematic diagram of imaging equipment body 101 of the present invention, and be provided with probe 104 inside closing lid 105, probe 104 is connected with the Print Control circuit in imaging equipment body 101.As shown in Figure 5, often organize in probe 104 and have four probes, in actual applications, often organize probe 104 and be not limited only to arrange four probes, often organize probe 104 and at least one probe is set, specifically can arrange according to actual conditions, specifically not limit here.In actual applications, at least one group of probe 104 can be set inside imaging equipment body 101, be not limited in group probe of four shown in Fig. 1 to Fig. 4 104, specifically can arrange according to actual needs, repeat no more here.Often organize probe 104 to abut with chip 103, realize chip 103 and carry out data interaction with the Print Control circuit in imaging equipment body 101.
Fig. 6 (1) and Fig. 6 (2) is chip 103 structural representation of the present invention, when chip 103 is installed to inside imaging equipment body 101, the face relative with inside imaging equipment body 101 is the front of chip 103, and the front of described chip 103 is provided with the contact identical with probe 104 number.When each chip 103 abuts with one group of probe 104, the number of the contact on each chip 103 is identical with the number often organizing probe 104 middle probe, as shown in Fig. 6 (1), a chip 103 only has 4 contacts 601, identical with the number of one group of probe 104 middle probe.When a chip 103 abuts with all probes 104, the contact on chip 103 is identical with the sum of all probe 104 middle probes, as shown in Fig. 6 (2), a chip 103 has 16 contacts 601, identical with the sum of four groups of probe 104 middle probes.
Here it should be noted that, the number of chip 103 upper contact is not limited in the number described in above-mentioned example, specifically can set according to actual conditions.Such as, when a chip 103 abuts with two groups of probes 104, the number of chip 103 upper contact is identical with the sum of two groups of probe 104 middle probes, namely ensures that the number of chip 103 contact is identical with the sum of all probes 104 middle probe that it abuts.
Fig. 7 is the side-looking structural representation that chip 103 of the present invention abuts against with the probe inside imaging equipment body 101, and chip 103 is provided with memory element 701, for storing the data message of imaging cartridge 102.Memory element 701 is by being connected with contact 601 with the circuit on chip 103.When chip 103 is installed to inside imaging equipment body 101, contact 601 abuts with the probe in probe 104, realizes the Print Control circuit in imaging equipment body 101 and the memory element 701 in chip 103 connects, and realizes the mutual of data message.
Fig. 8 be chip 103 of the present invention be mounted to imaging equipment body 101 closing lid 105 inside scheme of installation, on the A direction perpendicular to the closing lid 105 on imaging equipment body 101, chip 103 is installed to inside closing lid 105 along A direction.Wherein, the front of chip 103 is relative with the inner side of closing lid 105, and the contact 601 on chip 103 abuts with the probe in probe 104.The embodiment that two kinds are possible is had inside the closing lid 105 that chip 103 is arranged on imaging equipment body 101:
The first possible embodiment: described chip 103 is fixed with the locating dowel on the inner side of the closing lid 105 of locating hole and imaging equipment body (101), it is fixing to paste, projection on the inner side of the closing lid 105 of recess and imaging equipment body (101) is fixed, nut is fixed and any one removably in being fixed is fixed on the inner side of the closing lid 105 of described imaging equipment body (101);
The embodiment that the second is possible: described chip 103 is fixed on the inner side of the closing lid 105 of described imaging equipment body 101 by non-removable modes such as welding.
Certainly, the inner side that chip 103 is arranged on closing lid 105 is not limited in above-mentioned several implementation, other can also be adopted chip 103 can be arranged on mode in closing lid 105, repeat no longer one by one here.
Fig. 9 is that chip 103 of the present invention is arranged on schematic diagram inside the closing lid 105 of imaging equipment body 101 by installing rack 106.Be provided with installing rack 106 inside closing lid 105, installing rack 106 can be form the part of closing lid 105, is non-removablely fixed in closing lid 105; Installing rack 106 also can dismountablely be arranged on inside closing lid 105.Installing rack 106 comprises base 901 and groove 902.The base 901 of installing rack 106 is fixed on the inner side of closing lid 105 in detachable or non-removable mode, play the effect of fixing and mounting bracket 106; The top of installing rack 106 is provided with groove 902, and for fixed chip 103, probe 104 is positioned at groove 902, and chip 103 is fixed to the inner side of closing lid 105 by groove 902, abuts with the probe 104 in groove 902.
Installing rack 106 described in the embodiment of the present invention can also only include groove 902, does not comprise base 901.Groove 902 can adopt detachable or non-removable mode to be fixed on the inner side of closing lid 105, and chip 103 is fixed on the inner side of closing lid 105 by groove 902, abuts with the probe 104 in groove 902.
Installing rack 106 described in the embodiment of the present invention, is not limited to the embodiment of the present invention and structure shown in the drawings.Installing rack 106 can be a part for the closing lid 105 forming imaging equipment body 101, or, installing rack 106 can also be fixed by the locating dowel on the inner side of the closing lid 105 of locating hole and imaging equipment body 101, it is fixing to paste, projection on the inner side of the closing lid 105 of recess and imaging equipment body 101 is fixed, nut is fixed and any one dismountable mode in being fixed is arranged on inside closing lid 105, then or described installing rack 106 can also be fixed on the inner side of the closing lid 105 of described imaging equipment body 101 by non-dismountable modes such as welding.Installing rack 106 is not limited to the structure of base 901 and groove 902, can also only include groove 902, if can reach chip 103 is fixed to imaging equipment body 101 closing lid 105 inside, ensure chip 103 and probe 104 good contact.
Here you need to add is that, the installing rack 106 described in the embodiment of the present invention, can also be arranged on the inner side in other faces of imaging equipment body 101 except inside closing lid 105.Installing rack 106 can be the part forming imaging equipment body 101; Or installing rack 106 can also be fixed by the locating dowel on the inner side of locating hole and imaging equipment body 101, it is fixing to paste, projection on the inner side of recess and imaging equipment body 101 is fixed, nut is fixed and any one dismountable mode in being fixed is arranged on inside imaging equipment body 101; Again or described installing rack 106 can also be fixed on the inner side of described imaging equipment body 101 by non-dismountable modes such as welding.Installing rack 106 is not limited to the structure of base 901 and groove 902, can also only include groove 902, as long as can reach inner side chip 103 being fixed to imaging equipment body 101, ensures chip 103 and probe 104 good contact.
Chip 103 described in the embodiment of the present invention is not limited to be arranged on inside the closing lid 105 of imaging equipment body 101, can also be arranged on the inner side in other faces of imaging equipment body 101.Imaging cartridge 102 can also be mounted to imaging equipment body 101 by opening the mode such as top cover or side cover, and top cover or side cover etc. are provided with the probe 104 abutted with chip 103, and chip is arranged at the inner side of top cover or side cover imaging equipment body 101.Chip 103 described in the embodiment of the present invention is not limited to the inner side being arranged on imaging equipment body 101, can also be arranged on other positions of imaging equipment body, as long as ensure chip 103 and probe 104 good contact, all can realize the object of the present invention.
Here it should be noted that, chip 103 described in the embodiment of the present invention is arranged on inside imaging equipment body 101, being not limited to chip 103 is fixedly installed to inside imaging equipment body 101 in non-removable modes such as welding, is also not limited to that chip 103 is fixed with the locating dowel on the inner side of locating hole and imaging equipment body 101, the projection of pasting on the inner side of fixing, recess and imaging equipment body 101 is fixed, nut is fixed and any one dismountable mode in being fixed is fixedly installed to inside imaging equipment body 101.Chip 103 as the part forming imaging equipment body 101, all can also can realize the object of the present invention.
Here it should be noted that, chip 103 described in the embodiment of the present invention is arranged on inside the closing lid 105 of imaging equipment body 101, being not limited to chip 103 is fixedly installed to inside the closing lid 105 of imaging equipment body 101 in non-removable modes such as welding, also be not limited to chip 103 fix with the locating dowel on inside the closing lid 105 of locating hole and imaging equipment body 101, paste fixing, projection on the inner side of the closing lid 105 of recess and imaging equipment body 101 is fixed, nut fix and in being fixed any one etc. dismountable mode be fixedly installed to inside the closing lid 105 of imaging equipment body 101.Chip 103 as a part for the closing lid 105 of formation imaging equipment body 101, all can also can realize the object of the present invention.
The above is only the preferred embodiment of the present invention; it should be pointed out that for those skilled in the art, under the premise without departing from the principles of the invention; can also make some improvements and modifications, these improvements and modifications also should be considered as protection scope of the present invention.

Claims (13)

1. an imaging device, comprise: imaging equipment body (101), imaging cartridge (102) and chip (103), described imaging cartridge (102) is removably mounted in described imaging equipment body (101), it is characterized in that, described imaging equipment body is provided with Print Control circuit in (101), the probe (104) be connected with described Print Control circuit is arranged on the inner side of described imaging equipment body (101), described chip (103) is arranged on described imaging equipment body (101) inner side, described chip (103) has one at least, described chip (103) stores the data message of the imaging cartridge (102) that the probe (104) that abuts with it detects.
2. imaging device according to claim 1, is characterized in that:
Described chip (103) is identical with the number of described imaging cartridge (102), and each described chip (103) stores the data message of the imaging cartridge (102) that one group of probe (104) abutting with it is detected.
3. imaging device according to claim 1, is characterized in that:
Described chip (103) only has one, and described chip (103) abuts with the probe of all detection imaging cartridges (102), stores the data message of all imaging cartridges (102).
4. imaging device according to claim 1, is characterized in that:
Described chip (103) has at least two, and the number of described chip (103) is less than the number of described imaging cartridge (102), each described chip (103) abuts with at least one group of probe detecting imaging cartridge (102), stores the data message of at least one imaging cartridge (102) that the probe (104) that abuts with it detects respectively.
5. the imaging device according to claim 1-4 any one, is characterized in that:
Described chip (103) is arranged on the inner side of the closing lid (105) of described imaging equipment body (101), and by opening, described closing lid (105) is dismountable to be arranged in described imaging equipment body (101) described imaging cartridge (102).
6. imaging device according to claim 5, is characterized in that:
Described imaging device also comprises installing rack (106), described installing rack (106) is arranged on the inner side of the closing lid (105) of described imaging equipment body (101), and described chip (103) is arranged on the inner side of the closing lid (105) of described imaging equipment body (101) by described installing rack (106).
7. imaging device according to claim 6, is characterized in that:
Described installing rack (106) comprises groove (902) and base (901), described groove (902) is for fixing described chip (103), and described base (901) is for being fixed on the inner side of the closing lid (105) of described imaging equipment body (101) by described groove (902).
8. imaging device according to claim 6, is characterized in that:
Described installing rack (106) comprises groove (902), and described groove (902) is for being fixed on the inner side of the closing lid (105) of described imaging equipment body (101) by described chip (103).
9. the imaging device according to claim 6-8 any one, is characterized in that:
Described installing rack (106) is fixed by the locating dowel on the inner side of the closing lid (105) of locating hole and imaging equipment body (101), it is fixing to paste, projection on the inner side of the closing lid (105) of recess and imaging equipment body (101) is fixed, nut is fixed and any one removably in being fixed is fixed on the inner side of the closing lid (105) of described imaging equipment body (101).
10. the imaging device according to claim 6-8 any one, is characterized in that:
Described installing rack (106) is fixed on the inner side of the closing lid (105) of described imaging equipment body (101) by the non-dismountable mode of welding.
11. imaging devices according to claim 1, is characterized in that:
Described imaging device also comprises installing rack (106), described installing rack (106) is arranged on the inner side of described imaging equipment body (101), and described chip (103) is arranged on the inner side of described imaging equipment body (101) by described installing rack (106).
12. imaging devices according to claim 1-4 any one, is characterized in that:
Described chip (103) is fixed with the locating dowel on the inner side of locating hole and imaging equipment body (101), it is fixing to paste, projection on the inner side of recess and imaging equipment body (101) is fixed, nut is fixed and any one removably in being fixed is fixed on the inner side of described imaging equipment body (101).
13. imaging devices according to claim 1-4 any one, is characterized in that:
Described chip (103) is fixed on the inner side of described imaging equipment body (101) by the non-removable fixed form of welding.
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CN203780065U (en) * 2014-04-22 2014-08-20 珠海艾派克微电子有限公司 Imaging device

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