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Generating circuit of Golay complementary code

A technology for generating circuits and complementary codes, applied in electrical components, code conversion, pulse train generators, etc., can solve the problems of complex circuit structure, clock offset, low efficiency, etc., and achieve the effect of good stability and simple circuit

Inactive Publication Date: 2009-09-09
宁波汉迪传感技术有限公司
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AI Technical Summary

Problems solved by technology

[0012] The above-mentioned traditional implementation method of Gray's complementary code, when realizing longer code length (such as 64 bits), has low efficiency, complex circuit structure, sequential cascading of clocks, there is clock offset, and the stability is not good enough. Single-stage encoders with many connections need to consume more FPGA resources

Method used

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  • Generating circuit of Golay complementary code
  • Generating circuit of Golay complementary code
  • Generating circuit of Golay complementary code

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Embodiment Construction

[0025] The present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments.

[0026] The generation circuit of Gray's complementary code provided by the present invention comprises a counter 1, a memory 2, and a shift register 3, wherein the number of data bits in the memory 2 is M, and a code length of 2 is stored in advance in the memory 2. i Two groups of Gray code sequences that are Gray complementary codes, the size of the memory 2 is at least The number of bits in counter 1 is The number of data bits of the shift register 3 is also M;

[0027] The Clock pins of memory 2, counter 1, and shift register 3 all input the clock signal clk whose period is the symbol width, the data output end of counter 1 is connected with the address pin of memory 2, and the data output end of memory 2 is connected with the shift pin. The data input terminal of register 3 is connected, and the data output terminal of shift register ...

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Abstract

The invention relates to a generating circuit of a Golay complementary code, which is used for generating a Golay complementary code with length of 2, of which i is a natural number. The invention is characterized in that: the invention comprises a memory with a data bit of M, a counter with bit of log2(2<i+1> / M) and a shift register with a data bit of M; the memory is beforehand stored with two groups of Golay code sequences with code length of 2 which are mutually Golay complementary codes; wherein, clock pins of the memory, the counter and the shift register all input clock signals with cycle as code element width, the data output end of the counter is connected with the address pin of the memory, the data output end of the memory is connected with the data input end of the shift register, the data output end of the shift register is the Golay complementary code with length of 2. The generating circuit of the Golay complementary code has the advantages that clock skew is absent, stability is good and FPGA resource is not consumed largely.

Description

technical field [0001] The invention relates to a generation circuit of Gray's complementary code, which is used to generate a code length of 2 i Gray's complementary code. Background technique [0002] Optical Time Domain Transmitter (OTDR) can determine the loss at the fiber, the location of the fiber fault point and breakpoint, and locate the measurement point, so it can also be called fiber laser radar. The distributed optical fiber Raman temperature sensor based on the principle of OTDR utilizes the temperature effect of the Raman spectrum of the optical fiber. The temperature field of each point in the space where the optical fiber is located modulates the Raman light scattering wave transmitted in the optical fiber. After demodulation, the temperature field of the space The information is displayed in real time. However, with the introduction of optical devices, the continuous increase of optical fiber transmission distance and the loss of optical fiber make the bac...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H03M7/00H03K19/003H03K3/64H03K5/00
Inventor 金如江
Owner 宁波汉迪传感技术有限公司
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