CN201993906U - Remote encoding intelligent decoding system - Google Patents
Remote encoding intelligent decoding system Download PDFInfo
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- CN201993906U CN201993906U CN2010206783515U CN201020678351U CN201993906U CN 201993906 U CN201993906 U CN 201993906U CN 2010206783515 U CN2010206783515 U CN 2010206783515U CN 201020678351 U CN201020678351 U CN 201020678351U CN 201993906 U CN201993906 U CN 201993906U
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Abstract
The utility model relates to a remote encoding intelligent decoding system, which comprises a data processing unit, at least one storage unit, a code type receiving unit and a display unit, wherein the data processing unit is connected with the storage units, the code type receiving unit and the display unit respectively, each storage unit stores at least one setting code type, a tested code type received by the code type receiving unit and the setting code type are compared by the data processing unit so as to determine whether the tested code type belongs to the setting code type or not, and information of the tested code type is displayed on the display unit if the tested code type belongs to the setting code type. Defects in the prior art can be effectively overcome by the aid of the remote encoding intelligent decoding system, and efficiency and accuracy of tests can be greatly improved.
Description
Technical field
The utility model is particularly related to a kind of remote control coding intelligence decode system of technical field of integrated circuits, and it can be used for the various telepilots that comprise Infrared remote controller are detected.
Background technology
At present in a lot of producers that produce the telepilot classes on the market when product function is detected because testing tool is simple and easy, situation such as not comprehensive or the like relevant issues cause the efficient of product function detection low, and accuracy is low.As the producer of making electric wind fans telepilot, it is when detecting remote-controller function, and part producer can directly be that testing tool is tested with the conventional fan; Some producer can use some simple testing tools to detect, but because telepilot is of a great variety, must carry out matching and debugging to testing tool during each the test, lack dexterity etc., and these situations can badly influence the quality and the work efficiency of product.
The utility model content
The purpose of this utility model is to propose a kind of remote control coding intelligence decode system, and it can effectively overcome the defective that exists in the prior art, and significantly improves testing efficiency and accuracy.
For realizing above-mentioned utility model purpose, the utility model has adopted following technical scheme:
A kind of remote control coding intelligence decode system, it is characterized in that, described decode system comprises data processing unit, at least one storage unit, sign indicating number type receiving element and display unit, data processing unit is connected with display unit with storage unit, sign indicating number type connection device respectively, at least one setting sign indicating number of storage type in the described storage unit, described data processing unit will be compared with setting sign indicating number type by the test patterns type that sign indicating number type receiving equipment receives, determine whether the test patterns type belongs to the sign indicating number type of setting, if then the information with the test patterns type shows on display unit.
Say that further described decode system also comprises indicating member, described indicating member is connected with data processing unit, and it sends indicator signal according to sign indicating number type that receives and the comparative result of setting the sign indicating number type.
In one embodiment, a described test patterns type and a setting sign indicating number type all adopt infrared coding.
Described sign indicating number type receiving element adopts infrared remote receiver.
Shown in indicating member be pilot lamp and/or hummer.
One frame sign indicating number code structure of described infrared coding is by preamble code, user code, numeric data code, fixed code, space code, any one in parity code and the end code or plural constituting.
Basic ideas of the present utility model are: store into required sign indicating number type in the data storage device in advance; And set the code structure of corresponding sign indicating number type, sign indicating number type figure place, bit width, bit width error or the like; Test patterns type of reception being come by data processing unit and the sign indicating number type of having stored compare one by one according to corresponding rule, determine that whether the test patterns type is at the row of depositing yard type; After determining,, then show a received frame sign indicating number sign indicating number type information this time by display unit if the test patterns type is present in the row of depositing yard type, as, sign indicating number type title and corresponding user code, numeric data code etc.Further, above-mentioned test patterns type also can be by the indicating equipment visual indication with the comparative result of setting the sign indicating number type.
Characteristics of the present utility model are: as long as institute's signaling type belongs to the row of memory code type, just can analyze and demonstrate its yard type model, the data value of pairing user code and numeric data code etc. immediately after a frame sign indicating number is received; During the detection chip function, can by display device demonstrate very intuitively institute's signaling type concrete numerical value and with instructions relatively, if function is wrong, then can find out difference place wherein very intuitively; Can storage receive data (relevant) in a large number, can realize data extract, functions such as check with the amount of capacity of data storage device.
Description of drawings
Fig. 1 be the utility model one preferred embodiment structural representation '
Fig. 2 is the oscillogram of infrared coding;
Fig. 3 is the workflow diagram of the utility model one preferred embodiment;
Fig. 4 is the structural representation of 6122 yard one frame sign indicating number.
Embodiment
Below in conjunction with an accompanying drawing and a preferred embodiment the technical solution of the utility model is further described.
As Fig. 1; this infrared remote coding smart decoder comprises MCU, is arranged at some registers, infrared remote receiver, display, pilot lamp and hummer among the MCU; the some known code types of described register-stored; described MCU will be compared with setting sign indicating number type by the test patterns type that infrared remote receiver receives; determine whether the test patterns type belongs to the sign indicating number type of setting; if; then the information with the test patterns type shows on display; the different sound of buzzing is to show the comparative result correctness, and the functional indicator light indication is normal or unusual.
Because a frame sign indicating number code structure of infrared coding comprises preamble code, user code, numeric data code, fixed code, space code, parity code, end code etc. partly constitute, and for example, typical case 6122 sign indicating number type is as shown in Figure 4.Because the sign indicating number type is of different types, the sign indicating number type that has is to be made of preamble code, user code and numeric data code, and the sign indicating number type that has only is made of user code and numeric data code etc.
Difference according to code structure, the utility model is set some special-purpose registers in single-chip microcomputer, the preamble code of different sign indicating number types, user code, numeric data codes etc. store respectively according to a definite sequence, and set corresponding bit width and tolerance widths etc. and corresponding addressing mode;
The waveform that infrared remote receiver receives mainly is made up of a series of high-low level.In order to reach high precision, used two timers 0 and 1 during the test level width, and be aided with interruption.As shown in Figure 2, when first rising edge arrives, start timer 0 when first negative edge arrives, enter external interrupt program 0, timer 0 cuts out, and deposit timing value in corresponding registers.Start timer 1 record low level width simultaneously.Come then at second rising edge, enter external interrupt program 1, timer 1 cuts out, and deposit timing value in corresponding registers.Start timer 0 simultaneously, so go round and begin again, know all high-low levels of a frame sign indicating number are all noted.When receiving a frame sign indicating number type, can preserve it by program setting, then and the sign indicating number type of having stored before according to correlation method, screen comparison one by one.Further say, at first primary height (low) level of a frame sign indicating number that receives is carried out bit width relatively, according to program setting, it is similar to filter out its first with those yards type first, then to the 3rd of its second .. .... last position compares one by one, and then by comparing the figure place of one frame sign indicating number, code structure etc. are final confirms whether it is present in the row of having deposited yard type and specifically belongs to which kind of yard type.If through corresponding comparison, find that it is to have deposited a kind of in yard type, then by program setting the sign indicating number type classification of a frame sign indicating number of this reception, user code, numeric data code etc. (sexadecimal or scale-of-two) as requested show at display module respectively.If through comparison, find that it is not to have deposited a kind of in yard type, does not do any operation.
The course of work of this infrared remote coding smart decoder as shown in Figure 3, that is: system powers on when using earlier to program initialization, detect then whether a yard type is arranged, if do not have, then later detect again, if have, the sign indicating number type data storage that then will receive is in the register of appointment, then by figure place to the receiving code type, whether preamble code is arranged, bit widths etc. are judged whether its code structure exists and have been stored in the register, whether if do not have, then removing to detect receiver has new sign indicating number type to send here, if, then a frame sign indicating number is stored in respectively in the relevant register according to fixed code structure, then the data presentation in the corresponding memory is come out.
Above preferred embodiment is only for the usefulness that the utility model is described, but not to restriction of the present utility model, person skilled in the relevant technique is under the situation that does not break away from spirit and scope of the present utility model, various conversion or the modification made all belongs to category of the present utility model.
Claims (4)
1. remote control coding intelligence decode system, it is characterized in that, described decode system comprises data processing unit, at least one storage unit, sign indicating number type receiving element and display unit that stores at least one setting sign indicating number type, and data processing unit is connected with display unit with storage unit, a sign indicating number type connection device respectively.
2. remote control coding intelligence decode system according to claim 1 is characterized in that described decode system also comprises indicating member, and described indicating member is connected with data processing unit.
3. remote control coding intelligence decode system according to claim 1 is characterized in that, described sign indicating number type receiving element adopts infrared remote receiver.
4. remote control coding according to claim 2 intelligence decode system is characterized in that, shown in indicating member be pilot lamp and/or hummer.
Priority Applications (1)
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CN2010206783515U CN201993906U (en) | 2010-12-24 | 2010-12-24 | Remote encoding intelligent decoding system |
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CN2010206783515U CN201993906U (en) | 2010-12-24 | 2010-12-24 | Remote encoding intelligent decoding system |
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CN201993906U true CN201993906U (en) | 2011-09-28 |
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CN2010206783515U Expired - Lifetime CN201993906U (en) | 2010-12-24 | 2010-12-24 | Remote encoding intelligent decoding system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105355032A (en) * | 2014-08-22 | 2016-02-24 | 无锡华润矽科微电子有限公司 | Learning remote circuit structure with built-in multi-time programmable memory and learning method |
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2010
- 2010-12-24 CN CN2010206783515U patent/CN201993906U/en not_active Expired - Lifetime
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105355032A (en) * | 2014-08-22 | 2016-02-24 | 无锡华润矽科微电子有限公司 | Learning remote circuit structure with built-in multi-time programmable memory and learning method |
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Granted publication date: 20110928 |