An absolute security system with a password for sending secret data files
Summary :
Table of Contents
- Introduction
- Construction and working
- Circuit description
- Power supply
- Circuit and block diagram
- Components
- Applications
- Advantages and disadvantages
- Soldering techniques
- Precautions
- Bibliography
Abstract
This is a work done on "cryptography". Conventionally, data is protected from unauthorized interception or eavesdropping by analog techniques. In a digital data security system, when you press a button in the DTMF generator set keypad for data send a connection is made that generates a resultant signal of two tones at the same time. These two tones are taken from a row frequency and a column frequency. The resultant frequency signal is called "Dual Tone Multiple Frequency". These tones are identical and unique. The data signal is converted into binary code, binary form using a DTMF decoder. NOT gate converts into wrong binary form original binary code. In the receiver section, using AND gate and inverter IC for converts the wrong binary code into original binary form help of password circuit. The password circuit is built around dual 4-bit static shift registers and Ex-OR gate. The shift registers store the entered password in binary form. This section actives the converter into original binary form. This circuit shows original and wrong binary form.
It allows people to carryover the confidence found in the physical world to the electronic world, allowing people to do business electronically without worries of deceit and deception. This way data is send from the transmitter in a changed sequence and displays wrong at the receivers end but when a selected password is entered to it then it converts in right information there is no possibility of leakage of private data in medium or at receivers end. Here we share a secret quantity in such a way that a subset of the shares can reconstruct the secret. Govt. has taken an even bigger interest in cryptography due to its use in military. It is useful for secure communication during wartime because the enemy may have access to the communication medium, messages must be encrypted
It includes authentication which is a part of cryptography, it is as fundamentally a part of our lives as privacy, we use authentication in our everyday lives- when we sign our name to some document for instance and as we move to a world where our decisions and agreements are communicated electronically we need to have electronic techniques for providing authentication. After signing documents, agreeing to what is written in document someone can change that document and your signature is still attached?
It allows people to carryover the confidence found in the physical world to the electronic world, allowing people to do business electronically without worries of deceit and deception. This way data is send from the transmitter in a changed sequence and displays wrong at the receivers end but when a selected password is entered to it then it converts in right information there is no possibility of leakage of private data in medium or at receivers end. Here we share a secret quantity in such a way that a subset of the shares can reconstruct the secret. Govt. has taken an even bigger interest in cryptography due to its use in military. It is useful for secure communication during wartime because the enemy may have access to the communication medium, messages must be encrypted
It includes authentication which is a part of cryptography, it is as fundamentally a part of our lives as privacy, we use authentication in our everyday lives- when we sign our name to some document for instance and as we move to a world where our decisions and agreements are communicated electronically we need to have electronic techniques for providing authentication. After signing documents, agreeing to what is written in document someone can change that document and your signature is still attached?
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