16-Bit Embedded Microprocessor for Information System Using FPGA

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8C53K

16-Bit Embedded Microprocessor for Information System Using FPGA

Abu Md. Numan-Al-Mobin
Abu Md. Numan-Al-Mobin
Sheikh Md. Rabiul Islam
Sheikh Md. Rabiul Islam
Md. Rezwanul Haque
Md. Rezwanul Haque
Md. Hasanuzzaman
Md. Hasanuzzaman Northern University Bangladesh.
DOI

Abstract

his paper introduces a novel 16-bit information processor in resister level to be used in an information processing system for wireless communication hardware. Different types of instructions like as add, sub, jump, load have to be executed by this processor. For these instruction we have to convert add, sub, jump, load into a binary bits. For the different instructions that’s binary bits help to differentiate the overall operations. The main work is to execute any instruction to create control signal. We have made different type of control signal for different instruction. In the begging (turn on the processor) there is no data in the RAM so we have to write some instruction set in binary bit that would be executed and also have a input pin for this. When the pin is 1 the instructions would be written and set 1, then processor will execute all the instructions one by one. We have used FPGA that helps to show the timing response of the instruction that executed form. We have analysis timing response of all block and final TOP blocks FPGA.

16-Bit Embedded Microprocessor for Information System Using FPGA

his paper introduces a novel 16-bit information processor in resister level to be used in an information processing system for wireless communication hardware. Different types of instructions like as add, sub, jump, load have to be executed by this processor. For these instruction we have to convert add, sub, jump, load into a binary bits. For the different instructions that’s binary bits help to differentiate the overall operations. The main work is to execute any instruction to create control signal. We have made different type of control signal for different instruction. In the begging (turn on the processor) there is no data in the RAM so we have to write some instruction set in binary bit that would be executed and also have a input pin for this. When the pin is 1 the instructions would be written and set 1, then processor will execute all the instructions one by one. We have used FPGA that helps to show the timing response of the instruction that executed form. We have analysis timing response of all block and final TOP blocks FPGA.

Abu Md. Numan-Al-Mobin
Abu Md. Numan-Al-Mobin
Sheikh Md. Rabiul Islam
Sheikh Md. Rabiul Islam
Md. Rezwanul Haque
Md. Rezwanul Haque
Md. Hasanuzzaman
Md. Hasanuzzaman Northern University Bangladesh.

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Abu Md. Numan-Al-Mobin. 1970. “. Global Journal of Research in Engineering – F: Electrical & Electronic GJRE-F Volume 11 (GJRE Volume 11 Issue F7): .

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Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

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16-Bit Embedded Microprocessor for Information System Using FPGA

Abu Md. Numan-Al-Mobin
Abu Md. Numan-Al-Mobin
Sheikh Md. Rabiul Islam
Sheikh Md. Rabiul Islam
Md. Rezwanul Haque
Md. Rezwanul Haque
Md. Hasanuzzaman
Md. Hasanuzzaman Northern University Bangladesh.

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