Intelligent ink cartridge and its manufacturing meethod and special electronic module

A technology of electronic modules, manufacturing methods, applied in the direction of printing, measuring devices, measuring devices, etc.

Inactive Publication Date: 2004-07-14
PRINT RITE UNICORN IMAGE PROD CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0012] Another problem to be solved by the present invention is to design a program for controlling the data access and processing of the remaining amount of ink to manufacture the electronic module of the smart ink box, thereby increasing the ink capacity of the smart ink box used in conjunction with the existing printer, and improving the ink capacity. Utilization and flexibility in cartridge usage

Method used

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  • Intelligent ink cartridge and its manufacturing meethod and special electronic module
  • Intelligent ink cartridge and its manufacturing meethod and special electronic module
  • Intelligent ink cartridge and its manufacturing meethod and special electronic module

Examples

Experimental program
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Embodiment 1

[0046] exist Figure 10 , a block diagram of the scheme is shown. In this embodiment, in order to increase ink capacity x%, the simplest method is:

[0047] Step 100 includes the following steps:

[0048] When the power is turned on or the ink cartridge is installed in the inkjet printing device and moved to the normal position, the ink consumption rate data stored in the EEPROM is sent to a first register of the microcontroller, and its ink consumption rate is temp1;

[0049] After receiving the control signal of the inkjet printing device, the ink consumption rate is transmitted from the first register to the side of the inkjet printing device for storage;

[0050] After finishing the printing job, update the ink consumption rate;

[0051] When the inkjet printing device is powered off or when the ink cartridge storage bin is moved to the installation position, the updated ink consumption rate written into the ink cartridge from the inkjet printing device side is stored i...

Embodiment 2

[0059] In order to overcome the design limitations in Embodiment 1, in Figure 11, the implementation steps are improved as follows:

[0060] Step 201, use the software flag (adj) stored in the EEPROM of the ink cartridge electronic module to identify whether the microcontroller has adjusted the ink consumption rate, and use the initial value '0' to indicate that it has not been adjusted;

[0061] When the printer is powered on, when receiving a power signal from the printer or installing an ink cartridge, the ink consumption rate register reg1 stored in the EEPROM is sent;

[0062] According to the control of the printer, when the printer is powered on, the ink consumption rate is sent from reg1 to the printer immediately;

[0063] The printer executes the printing task;

[0064] When the printer is powered off or the ink cartridge is replaced, the ink consumption rate written from the printer to the ink cartridge electronic module is stored in reg1.

[0065] Step 202, if th...

Embodiment 3

[0080] In order to overcome the limitation of the second embodiment, the present invention adopts another method to distinguish the read cycle performed immediately after the write cycle when the printer is powered off from the read cycle when the printer is powered on.

[0081] Typically, the printer checks the DC power for a read cycle (V cc ) has an interval of tens of milliseconds from the previous write cycle in time. In the read cycle when the printer is powered on, its DC power supply (V cc ) usually turns off within a few seconds or more.

[0082] Thus, an R-C circuit with a time constant of about 1 second connected to the input port (hereinafter referred to as TP1) will provide the information needed to distinguish between a detection read cycle and a normal read cycle. This can be done by at each V cc Cycle start is achieved by reading TP1. For a detection read cycle, sample TP1 is '1' and for a normal read cycle, sample TP1 is '0'. The above circuit as Figure...

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Abstract

The present invention discloses an intelligent ink box and its manufacturing method. Said intelligent ink box comprises the box for storing ink and electronic module with the function of storing ink box identification information and ink residual ammount data, which is characterized by that said electronic module is a microcontrolled MCU is which a nonvolatile memory, and said microcontroller is used for controlling data operation of residual amount of ink being in the ink box and access so as to increase maximum ink volume of ink box matched with ink jet printing device.

Description

technical field [0001] The present invention relates to an ink cartridge design and its manufacturing method and a dedicated electronic module working together with an inkjet printer or an inkjet plotter, in particular to an intelligent ink cartridge design and manufacturing method and a dedicated electronic module that can provide the user with information about ink usage status . Background technique [0002] At present, in printing devices such as printers or inkjet plotters that use smart ink cartridges, there is an electronic module inside the ink cartridge. The electronic module usually uses a passive memory. Considering the manufacturing cost, the passive memory generally uses serial EEPROM. . The serial memory stores fixed data such as the manufacturer's name, production date, ink type, capacity, and ink cartridge model, and also stores rewritable operating data, such as the first installation date, ink remaining in the ink cartridge, and the like. For example, the...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B41J2/175G01D15/16
Inventor 陈安邦
Owner PRINT RITE UNICORN IMAGE PROD CO LTD
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