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Explains serial communication in 8051 and RS232 standards, SBUF, SCON registers, Programming 8051 to receive and transmit serial data,MAX 233 chip
Serial Communication
Serial Communication
UshaRani289
8085 Memory & I/O interfacing
Memory & I/O interfacing
Memory & I/O interfacing
deval patel
UART iot
Uart
Uart
Aditee Apurvaa
8086 pin details
8086 pin details
8086 pin details
AJAL A J
A MCMP presentation on Interfacing with peripherals: analog to digital converters and digital to analog converters in 8086
Interfacing with peripherals: analog to digital converters and digital to ana...
Interfacing with peripherals: analog to digital converters and digital to ana...
NimeshSingh27
8257 DMA Controller
8257 DMA Controller
8257 DMA Controller
ShivamSood22
This presentation discusses the Serial Communication features in 8051, the support for UART. It also discusses serial vs parallel communication, simplex, duplex and full-duplex modes, MAX232, RS232 standards
Serial Communication in 8051
Serial Communication in 8051
Sudhanshu Janwadkar
Serial Peripheral Interface
Serial Peripheral Interface(SPI)
Serial Peripheral Interface(SPI)
Dhaval Kaneria
Recommandé
Explains serial communication in 8051 and RS232 standards, SBUF, SCON registers, Programming 8051 to receive and transmit serial data,MAX 233 chip
Serial Communication
Serial Communication
UshaRani289
8085 Memory & I/O interfacing
Memory & I/O interfacing
Memory & I/O interfacing
deval patel
UART iot
Uart
Uart
Aditee Apurvaa
8086 pin details
8086 pin details
8086 pin details
AJAL A J
A MCMP presentation on Interfacing with peripherals: analog to digital converters and digital to analog converters in 8086
Interfacing with peripherals: analog to digital converters and digital to ana...
Interfacing with peripherals: analog to digital converters and digital to ana...
NimeshSingh27
8257 DMA Controller
8257 DMA Controller
8257 DMA Controller
ShivamSood22
This presentation discusses the Serial Communication features in 8051, the support for UART. It also discusses serial vs parallel communication, simplex, duplex and full-duplex modes, MAX232, RS232 standards
Serial Communication in 8051
Serial Communication in 8051
Sudhanshu Janwadkar
Serial Peripheral Interface
Serial Peripheral Interface(SPI)
Serial Peripheral Interface(SPI)
Dhaval Kaneria
8255- Programmable Peripheral Interface
8255 PPI
8255 PPI
deval patel
Pin Diagram & Features of 8085
Pin diagram 8085
Pin diagram 8085
Siddhesh Palkar
This presentation discusses the details of the I2C protocol and interfacing of EEPROM with 8051 based on I2C protocol. It also discusses the other applications of I2C protocol
I2C Protocol
I2C Protocol
Sudhanshu Janwadkar
Before using this presentation , one have to familiar with Embedded system , Various serial port for communication channel,basic knowledge of Matlab , Arduino .. This a great opportunity for the searcher to get information of this topic .80% of the information provided in this slide was taken from the sparkfun , a very well known website for hardware project and tutorials . One can get more helpful information through this website . Now, if you are looking for straight forward guideline for Serial Communication , well you are in the right place to have .So , get this if you want to , it's completely open source ( editable ) . Farewell.
Serial Communication & Embedded System Interface
Serial Communication & Embedded System Interface
KUET
Universal Asynchronous receiver transmitter is a device used for serial communication in various devices.
UART
UART
Naveen Kumar
Detailed view of PIC 16F877A...
PIC 16F877A by PARTHIBAN. S.
PIC 16F877A by PARTHIBAN. S.
parthi_arjun
UART – Stands for Universal Asynchronous Receiver Transmitter It is a piece of hardware that acts as a bridge between the processor and the serial communication protocol or port (RS-232). It performs parallel – to – serial data conversion at the transmitter side and serial – to – parallel data conversion at the receiver side.Asynchronous serial communication. A serial communication can be done using fewer wires as compared to its parallel counterpart. It is a cheapest communication device with a single wire for transmitting the data and another wire for receiving. When the high-speed data transfer is not required UART is used. In a simple serial communication, 3 pins are used: TxD, RxD and GND. At Transmission side (i.e. From Microcontoller), one can write data into UART Data Register (e.g. UART0_DR) by using software code. These 8 bits of data from Data Register is passed to Tx FIFO Buffer. After that, the data is sent out(one at a time) from Tx Shift Register. TxFIFO flag = 1 (Buffer full) TxFIFO flag = 0 (not full - Software can write to Data Register) At Receiver end, there is Rx FIFO Buffer. RxFIFO Empty flag = 1 (Buffer is empty) RxFIFO Empty flag = 0 (Buffer has data to be read) A frame is the unit of transmission in serial communications Start bit: To declare the start of transmission. Data bits: 4,5,6,7, or 8 bits of useful data bits. Parity bit : To check for transmission errors. Stop bit: To declare end of frame Parity bit is used to check the integrity of a frame and signal if an error occurred during transmission. It is an extra bit added to the end of a frame. Even parity :The number of ‘1’ symbols inside a frame must always be even. Odd parity : The number of ‘1’ symbols inside a frame must always be odd The configuration settings at both ends of Txd and Rxd: Full or half-duplex operation Data length Start/Stop bits Transmission speed. EX:-198 = 11000110 Transmission speed Common speed = 9600 bits/sec 1/9600 = 104 us. After detecting start it will count 104us and complets start bit. Then begins sampling the input bits after 52us with equal count of 104us between each bit untill the next stop bit with high pulse. Advantages Requires minimum wires No need for clock or any other timing signal. Parity bit ensures basic error checking. Disadvantages Size of the data in the frame is limited. Can connect only two devices at a time Speed for data transfer is less compared to parallel. Transmitter and receiver must agree to the rules of transmission and appropriate baud rate must be selected. if we are looking for a device to device serial communication then UART proves itself the best as it is easy to deal with and also widely used in many peripheral devices.
UART(universal asynchronous receiver transmitter ) PPT
UART(universal asynchronous receiver transmitter ) PPT
Sai_praneeth
RS 232
RS 232
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Interfacing 8255
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ARM 7 based LPC 2148 UART communication
UART
UART
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DMA and DMA controller
DMA and DMA controller
nishant upadhyay
8051 timer counter Introduction TMOD Register TCON Register Modes of Operation Counters The microcontroller 8051 has two 16 bit Timer/ Counter registers namely Timer 0 (T0) and Timer 1 (T1) . When used as a “Timer” the microcontroller is programmed to count the internal clock pulse. When used as a “Counter” the microcontroller is programmed to count external pulses. Maximum count rate is 1/24 of the oscillator frequency.
8051 timer counter
8051 timer counter
vishalgohel12195
Describes principles of asynchronous serial communication. Explains and compares the principles and features of RS-232, RS-422 and RS-485 standards. Also outlines various registers and programming of PC16550 Universal Asynchronous Receiver/Transmitter provided by many microcontrollers,
Asynchronous Serial Communication and standards
Asynchronous Serial Communication and standards
Mathivanan Natarajan
Describes about minimum mode and maximum mode operation in 8086
Minimum mode and Maximum mode Configuration in 8086
Minimum mode and Maximum mode Configuration in 8086
Jismy .K.Jose
Embedded Systems 8051 Microcontroller Based
8051 Microcontroller I/O ports
8051 Microcontroller I/O ports
anishgoel
8051 microcontroller architecture and its adressing modes
8051 MICROCONTROLLER ARCHITECTURE.pptx
8051 MICROCONTROLLER ARCHITECTURE.pptx
MemonaMemon1
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Adc and dac
Adc and dac
nitugatkal
This ppt gives a basic idea about the 8251 USART.
8251 USART
8251 USART
coolsdhanesh
This book deals with 8085 in very detailed manner you can read this its really very interesting.
8085 microprocessor ramesh gaonkar
8085 microprocessor ramesh gaonkar
SAQUIB AHMAD
This topic describes about hardwired and microprogrammed control unit design methodology. Also it focuses on microinstruction types, RISC and CISC.
Control Unit Design
Control Unit Design
Vinit Raut
Serial communications used in Embedded Systems
Serial Communication Interfaces
Serial Communication Interfaces
anishgoel
8086 MICROPROCESSOR
8086 MICROPROCESSOR
Alxus Shuvo
Contenu connexe
Tendances
8255- Programmable Peripheral Interface
8255 PPI
8255 PPI
deval patel
Pin Diagram & Features of 8085
Pin diagram 8085
Pin diagram 8085
Siddhesh Palkar
This presentation discusses the details of the I2C protocol and interfacing of EEPROM with 8051 based on I2C protocol. It also discusses the other applications of I2C protocol
I2C Protocol
I2C Protocol
Sudhanshu Janwadkar
Before using this presentation , one have to familiar with Embedded system , Various serial port for communication channel,basic knowledge of Matlab , Arduino .. This a great opportunity for the searcher to get information of this topic .80% of the information provided in this slide was taken from the sparkfun , a very well known website for hardware project and tutorials . One can get more helpful information through this website . Now, if you are looking for straight forward guideline for Serial Communication , well you are in the right place to have .So , get this if you want to , it's completely open source ( editable ) . Farewell.
Serial Communication & Embedded System Interface
Serial Communication & Embedded System Interface
KUET
Universal Asynchronous receiver transmitter is a device used for serial communication in various devices.
UART
UART
Naveen Kumar
Detailed view of PIC 16F877A...
PIC 16F877A by PARTHIBAN. S.
PIC 16F877A by PARTHIBAN. S.
parthi_arjun
UART – Stands for Universal Asynchronous Receiver Transmitter It is a piece of hardware that acts as a bridge between the processor and the serial communication protocol or port (RS-232). It performs parallel – to – serial data conversion at the transmitter side and serial – to – parallel data conversion at the receiver side.Asynchronous serial communication. A serial communication can be done using fewer wires as compared to its parallel counterpart. It is a cheapest communication device with a single wire for transmitting the data and another wire for receiving. When the high-speed data transfer is not required UART is used. In a simple serial communication, 3 pins are used: TxD, RxD and GND. At Transmission side (i.e. From Microcontoller), one can write data into UART Data Register (e.g. UART0_DR) by using software code. These 8 bits of data from Data Register is passed to Tx FIFO Buffer. After that, the data is sent out(one at a time) from Tx Shift Register. TxFIFO flag = 1 (Buffer full) TxFIFO flag = 0 (not full - Software can write to Data Register) At Receiver end, there is Rx FIFO Buffer. RxFIFO Empty flag = 1 (Buffer is empty) RxFIFO Empty flag = 0 (Buffer has data to be read) A frame is the unit of transmission in serial communications Start bit: To declare the start of transmission. Data bits: 4,5,6,7, or 8 bits of useful data bits. Parity bit : To check for transmission errors. Stop bit: To declare end of frame Parity bit is used to check the integrity of a frame and signal if an error occurred during transmission. It is an extra bit added to the end of a frame. Even parity :The number of ‘1’ symbols inside a frame must always be even. Odd parity : The number of ‘1’ symbols inside a frame must always be odd The configuration settings at both ends of Txd and Rxd: Full or half-duplex operation Data length Start/Stop bits Transmission speed. EX:-198 = 11000110 Transmission speed Common speed = 9600 bits/sec 1/9600 = 104 us. After detecting start it will count 104us and complets start bit. Then begins sampling the input bits after 52us with equal count of 104us between each bit untill the next stop bit with high pulse. Advantages Requires minimum wires No need for clock or any other timing signal. Parity bit ensures basic error checking. Disadvantages Size of the data in the frame is limited. Can connect only two devices at a time Speed for data transfer is less compared to parallel. Transmitter and receiver must agree to the rules of transmission and appropriate baud rate must be selected. if we are looking for a device to device serial communication then UART proves itself the best as it is easy to deal with and also widely used in many peripheral devices.
UART(universal asynchronous receiver transmitter ) PPT
UART(universal asynchronous receiver transmitter ) PPT
Sai_praneeth
RS 232
RS 232
Sandeep Kamath
Interfacing 8255
Interfacing 8255
Anuja Bhakuni
ARM 7 based LPC 2148 UART communication
UART
UART
Monica Gunjal
DMA and DMA controller
DMA and DMA controller
nishant upadhyay
8051 timer counter Introduction TMOD Register TCON Register Modes of Operation Counters The microcontroller 8051 has two 16 bit Timer/ Counter registers namely Timer 0 (T0) and Timer 1 (T1) . When used as a “Timer” the microcontroller is programmed to count the internal clock pulse. When used as a “Counter” the microcontroller is programmed to count external pulses. Maximum count rate is 1/24 of the oscillator frequency.
8051 timer counter
8051 timer counter
vishalgohel12195
Describes principles of asynchronous serial communication. Explains and compares the principles and features of RS-232, RS-422 and RS-485 standards. Also outlines various registers and programming of PC16550 Universal Asynchronous Receiver/Transmitter provided by many microcontrollers,
Asynchronous Serial Communication and standards
Asynchronous Serial Communication and standards
Mathivanan Natarajan
Describes about minimum mode and maximum mode operation in 8086
Minimum mode and Maximum mode Configuration in 8086
Minimum mode and Maximum mode Configuration in 8086
Jismy .K.Jose
Embedded Systems 8051 Microcontroller Based
8051 Microcontroller I/O ports
8051 Microcontroller I/O ports
anishgoel
8051 microcontroller architecture and its adressing modes
8051 MICROCONTROLLER ARCHITECTURE.pptx
8051 MICROCONTROLLER ARCHITECTURE.pptx
MemonaMemon1
ADC and DAC interfacing with 8051
Adc and dac
Adc and dac
nitugatkal
This ppt gives a basic idea about the 8251 USART.
8251 USART
8251 USART
coolsdhanesh
This book deals with 8085 in very detailed manner you can read this its really very interesting.
8085 microprocessor ramesh gaonkar
8085 microprocessor ramesh gaonkar
SAQUIB AHMAD
This topic describes about hardwired and microprogrammed control unit design methodology. Also it focuses on microinstruction types, RISC and CISC.
Control Unit Design
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Tendances
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8255 PPI
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Pin diagram 8085
I2C Protocol
I2C Protocol
Serial Communication & Embedded System Interface
Serial Communication & Embedded System Interface
UART
UART
PIC 16F877A by PARTHIBAN. S.
PIC 16F877A by PARTHIBAN. S.
UART(universal asynchronous receiver transmitter ) PPT
UART(universal asynchronous receiver transmitter ) PPT
RS 232
RS 232
Interfacing 8255
Interfacing 8255
UART
UART
DMA and DMA controller
DMA and DMA controller
8051 timer counter
8051 timer counter
Asynchronous Serial Communication and standards
Asynchronous Serial Communication and standards
Minimum mode and Maximum mode Configuration in 8086
Minimum mode and Maximum mode Configuration in 8086
8051 Microcontroller I/O ports
8051 Microcontroller I/O ports
8051 MICROCONTROLLER ARCHITECTURE.pptx
8051 MICROCONTROLLER ARCHITECTURE.pptx
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Adc and dac
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8251 USART
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8085 microprocessor ramesh gaonkar
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Control Unit Design
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8086 MICROPROCESSOR
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