IP Library › Granted Patent US 10,311,245
Granted Patent B2
US 10,311,245 · App. 15/453,885 · Granted Jun 4, 2019

Cyber security system and method for transferring data between servers without a continuous connection

Inventors: Kalpesh S. Patel (Schaumburg, IL); Shilpi D. Bhargava (Schaumburg, IL)
G06F21/6218G06F3/067G06F3/0622G06F3/0659H04L63/0884H04L67/2842G06F2221/2143
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Quick Facts
Patent No.
US 10,311,245
App. No.
15/453,885
Granted
Jun 4, 2019
Kind
B2
Abstract

A cybersecurity system includes a controller that functions as a gateway between an end user device and an offline data storage device. When the end user device wants to access a file on the offline data storage device the controller severs a connection between a temporary storage memory and the end user device, establishes a connection with the offline data storage device, pulls the data from the offline data storage device to a temporary storage memory, then severs the connection with the offline data storage device, then establishes the connection with the end user device and communicates the data from the temporary storage memory to the end user device before overwriting the data in the temporary storage memory.

Claims (45)

1. A cybersecurity system comprising:

an end user device;

a data storage device storing a plurality of data files;

an authentication device in communication with the end user device;

a controller in communication with the authentication device and the data storage device; and

a temporary storage memory device in communication with the controller and further including a first communication pathway to the data storage device and a second communication pathway to the end user device;

wherein, in response to a request from the end user device to access one of the plurality of data files stored on the data storage device, the controller:

first receives user verification from the authentication device;

then receives a request for the one of the plurality of data files stored on the data storage device;

then disables the first communication pathway between the end user device and the temporary storage memory device;

then activates the second communication pathway between the data storage device and the temporary storage memory device;

then requests the one of the plurality of data files stored on the data storage device from the data storage device to be written to the temporary storage memory device;

then disables the second communication pathway between the data storage device and the temporary storage memory device;

then activates the first communication pathway between the end user device and the temporary storage memory device;

then allows the end user device to access the one of the plurality of data files stored on the data storage device from the temporary storage memory device;

then disables the first communication pathway between the end user device and the temporary storage memory device; and

then erases the one of the plurality of data files stored on the data storage device from the temporary storage memory device.

2. The cybersecurity system of claim 1 , wherein the end user device is a desktop computer.

3. The cybersecurity system of claim 1 , wherein the end user device is a mobile computing device.

4. The cybersecurity system of claim 1 , wherein the authentication device is an enterprise server.

5. The cybersecurity system of claim 1 , wherein the temporary storage memory device is a server.

6. The cybersecurity system of claim 1 , wherein the data storage device is an enterprise server.

7. The cybersecurity system of claim 1 , wherein the authentication device, temporary storage memory device, and data storage device are contained within a single piece of physical hardware.

8. The cybersecurity system of claim 1 , wherein the authentication device communicates with the controller via an optical communication controller.

9. The cybersecurity system of claim 1 , wherein the data storage device communicates with the controller via optical communication controllers.

10. The cybersecurity system of claim 9 , wherein the optical communication controller utilizes at least one light emitting diode for optical communication.

11. A cybersecurity method comprising the steps of:

in response to receiving an authenticated request from an end user device to access one of a plurality of data files stored on a data storage device, a controller:

first disables the first communication pathway between the end user device and the temporary storage memory device;

then activates the second communication pathway between the data storage device and the temporary storage memory device;

then requests the one of the plurality of data files stored on the data storage device from the data storage device to be written to the temporary storage memory device;

then disables the second communication pathway between the data storage device and the temporary storage memory device;

then activates the first communication pathway between the end user device and the temporary storage memory device;

then allows the end user device to access the one of the plurality of data files stored on the data storage device from the temporary storage memory device;

then disables the first communication pathway between the end user device and the temporary storage memory device; and

then erases the one of the plurality of data files stored on the data storage device from the temporary storage memory device.

12. The cybersecurity method of claim 11 , wherein the end user device is a desktop computer.

13. The cybersecurity method of claim 11 , wherein the end user device is a mobile computing device.

14. The cybersecurity method of claim 11 , wherein the authentication device is an enterprise server.

15. The cybersecurity method of claim 11 , wherein the temporary storage memory device is a server.

16. The cybersecurity method of claim 11 , wherein the data storage device is an enterprise server.

17. The cybersecurity method of claim 11 , wherein the authentication device, temporary storage memory device, and data storage device are contained within a single piece of physical hardware.

18. The cybersecurity method of claim 11 , wherein the authentication device communicates with the controller via an optical communication controller.

19. The cybersecurity method of claim 11 , wherein the authentication device and data storage device communicate with the controller via optical communication controllers.

20. The cybersecurity method of claim 19 , wherein the optical communication controllers utilize at least one light emitting diode for optical communication.

Continuity (3)
Provisional Application 62457615 · Feb 10, 2017
Provisional Application 62305116 · Mar 8, 2016
Related Publication 20170262650A1 · Sep 14, 2017