IP Library Granted Patent US 10,564,985
Granted Patent B2
US 10,564,985 · App. 15/869,337 · Granted Feb 18, 2020

Boot system and boot method for intelligent robot

Inventors: Shih-Ming Yang (Hsinchu County, TW); Po-Chun Yen (Taipei, TW); Shing Lee (Hsinchu, TW)
Assignee: ADATA TECHNOLOGY CO., LTD.
G06F9/4416B25J13/006G08B25/08H04W12/04H04W76/10G08B3/10
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Quick Facts
Patent No.
US 10,564,985
App. No.
15/869,337
Granted
Feb 18, 2020
Kind
B2
Abstract

Disclosed is a boot system and boot method for an intelligent robot. The intelligent robot includes a central processing unit, an activating module, a memory and a wireless communication module. The central processing unit is electrically connected to the activating module, the memory and the wireless communication module. When the username and password stored in the memory is not compliant with the username and password of a wireless network, the intelligent robot enters a hotspot mode as a hotspot. A mobile device connects to the intelligent robot through the hotspot. The wireless communication module receives a login username and a login password from the mobile device. The intelligent robot connects to the wireless network for establishing the wireless network connection by the login username and the login password for entering a login mode.

Claims (22)

1. A boot system for an intelligent robot, the boot system connects to a wireless network, the boot system comprising:

a central processing unit;

an activating module electrically connected to the central processing unit, the activating module configured to receive an activating signal;

a memory electrically connected to the central processing unit, the memory storing a plurality of usernames and passwords, the plurality of usernames and passwords being configured to connect to the wireless network;

a wireless communication module electrically connected to the central processing unit, the wireless communicating module being configured to connect to the wireless network;

wherein when the activating module is enabled, the central processing unit determines whether the wireless communication module establishes a wireless network connection with the wireless network, when the username and password stored in the memory is not compliant with the username and password of the wireless network, the intelligent robot does not establish the wireless network connection, and wherein the intelligent robot enters a hotspot mode as a hotspot, a mobile device connects to the intelligent robot through the hotspot, the wireless communication module receives a login username and a login password form the mobile device, and the intelligent robot connects to the wireless network for establishing the wireless network connection by the login username and the login password for entering a login mode;

wherein the intelligent robot includes a light module electrically connected to the central processing unit, when the mobile device connects to the intelligent robot through the hotspot, the intelligent robot outputs a hotspot signal for emitting a first light through the light module, when the mobile device disconnects from the intelligent robot through the hotspot, the intelligent robot outputs a non-hotspot signal for emitting a second light through the light module.

2. The boot system according to claim 1 , wherein when the wireless communication module determines that the intelligent robot is connected to the wireless network through a router, the intelligent robot receives a plurality of assigning commands from the router and generates an assigning behavior according to the plurality of assigning commands.

3. The boot system according to claim 1 , wherein the intelligent robot includes an audio module connected to the central processing unit, when the mobile device connects to the intelligent robot through the hotspot, the intelligent robot outputs a hotspot signal for outputting a first sound through the audio module, when the mobile device disconnects from the intelligent robot through the hotspot, the intelligent robot outputs a non-hotspot signal for outputting a second sound through the audio module.

4. The boot system according to claim 1 , wherein the intelligent robot includes a reset button electrically connected to the central processing unit, when the intelligent robot disconnects from a router, the intelligent robot generates a reset signal, the reset button being configured to receive an initialization signal for initializing the intelligent robot.

5. A boot method for an intelligent robot, the intelligent robot connecting to a wireless network, the intelligent robot having a central processing unit, an activating module, a memory and a wireless communication module, the central processing unit being electrically connected to the activating module, the memory and the wireless communication module, the boot method comprising:

receiving an activating signal by the activating module;

storing a plurality of usernames and passwords by the memory, the plurality of usernames and the passwords configured to connect to the wireless network; and

connecting to the wireless network by the wireless communication module;

wherein when the activating module is enabled, the central processing unit determines whether the wireless communication module establishes a wireless network connection with the wireless network, when the username and password stored in the memory is not compliant with the username and password of the wireless network, the intelligent robot does not establish the wireless network connection, and wherein the intelligent robot enters a hotspot mode as a hotspot, a mobile device connects to the intelligent robot through the hotspot, the wireless communication module receives a login username and a login password form the mobile device, and the intelligent robot connects to the wireless network for establishing the wireless network connection by the login username and the login password for entering a login mode;

wherein the intelligent robot further including a light module electrically connected to the central processing unit, the boot method further comprising:

when the mobile device connects to the intelligent robot through the hotspot, the intelligent robot outputs a hotspot signal for emitting a first light through the light module, and when the mobile device disconnects from the intelligent robot through the hotspot, the intelligent robot outputs a non-hotspot signal for emitting a second light through the light module.

6. The boot method according to claim 5 , wherein when the wireless communication module determines that the intelligent robot is connected to the wireless network through a router, the intelligent robot receives a plurality of assigning commands and generates an assigning behavior according to the plurality of assigning commands.

7. The boot method according to claim 5 , the intelligent robot further including an audio module connected to the central processing unit, the boot method further comprising:

when the mobile device connects to the intelligent robot through the hotspot, the intelligent robot outputs a hotspot signal for outputting a first sound through the audio module, and when the mobile device disconnects from the intelligent robot through the hotspot, the intelligent robot outputs a non-hotspot signal for outputting a second sound through the audio module.

8. The boot method according to claim 5 , the intelligent robot further including a reset button electrically connected to central processing unit, the boot method further comprising:

when the intelligent robot disconnects from a router, the intelligent robot generates a reset signal, the reset button being configured to receive an initialization signal for initializing the intelligent robot.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2019
From: AROBOT INNOVATION CO., LTD.
To: ADATA TECHNOLOGY CO., LTD.
Reel/Frame 048799/0627 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2018
From: YANG, SHIH-MING; YEN, PO-CHUN; LEE, SHING
To: AROBOT INNOVATION CO., LTD.
Reel/Frame 044606/0656 →
Priority Claims (1)
TW 106138113 A · Nov 3, 2017 · national
Continuity (1)
Related Publication 20190138320A1 · May 9, 2019