H04M2201/20

UTILIZING ON-DEVICE SENSORS TO DETECT A SCAN

The present disclosure is directed towards systems and method for determining whether a scannable code displayed on a client device has been scanned. In particular, the systems and methods described herein involve activating one or more on-board sensors of the client device to capture output signals. Based on the output signals, the systems and methods include identifying discrete signals that indicate whether the scannable code has been scanned by a scanning device. Further, based on an analysis of the identified discrete signals, the systems and methods include determining whether the scannable code has been scanned by the scanning device.

Mobile terminal
11870924 · 2024-01-09 · ·

Provided is a mobile terminal including a front case, a display disposed at a front surface of the front case, a rear case disposed to oppose a rear surface of the front case, and a finger scan sensor part coupled to the rear surface of the front case. The finger scan sensor part may be configured to sense at least a portion of light incident after passing through the display and the front case among light reflected by an external object. Other embodiments are implementable.

Method for data migration and terminal

A method for data migration is provided. The method includes the following. A first terminal obtains attribute information of a second terminal by scanning a two-dimensional code of the second terminal. The first terminal determines a first application compatible with the second terminal according to the attribute information of the second terminal. The first terminal obtains a first data set by performing data backup on the first application and transmits the first data set to the second terminal. A terminal is further provided.

Systems and methods for deriving contact names
10462286 · 2019-10-29 · ·

Systems and methods for deriving contact information for a calling party analyze all or a portion of the audio of the telephone call to derive such contact. Likewise, all or a portion of a voice message left by a calling party could be analyzed to obtain contact information for the calling party.

Method for Data Migration and Terminal
20190191296 · 2019-06-20 ·

A method for data migration is provided. The method includes the following. A first terminal obtains attribute information of a second terminal by scanning a two-dimensional code of the second terminal. The first terminal determines a first application compatible with the second terminal according to the attribute information of the second terminal. The first terminal obtains a first data set by performing data backup on the first application and transmits the first data set to the second terminal. A terminal is further provided.

DETECTING A SCAN USING ON-DEVICE SENSORS

The present disclosure is directed towards systems and method for determining whether a scannable code displayed on a client device has been scanned. In particular, the systems and methods described herein involve activating one or more on-board sensors of the client device to capture output signals. Based on the output signals, the systems and methods include identifying discrete signals that indicate whether the scannable code has been scanned by a scanning device. Further, based on an analysis of the identified discrete signals, the systems and methods include determining whether the scannable code has been scanned by the scanning device.

SYSTEMS AND METHODS FOR DERIVING CONTACT NAMES
20180063321 · 2018-03-01 ·

Systems and methods for deriving contact information for a calling party analyze all or a portion of the audio of the telephone call to derive such contact. Likewise, all or a portion of a voice message left by a calling party could be analyzed to obtain contact information for the calling party.

MANAGING FINGERPRINT-ON-DISPLAY (FOD) LOCATION ON AN ELECTRONIC DEVICE HAVING MULTIPLE FOD SENSORS WHILE THE DEVICE IS IN AN UPSIDE-DOWN POSITION
20250028802 · 2025-01-23 ·

An electronic device, method, and computer program product automatically support fingerprint authentication using a fingerprint scanner on an opposite side even when the electronic device is detected as being grasped upside down. The electronic device includes front and back fingerprint scanners respectively exposed on front and back sides of a device housing. In response to determining that a requirement exists for scanning a fingerprint of a user while the electronic device is upside down, a controller of the electronic device triggers at least one of the front and the back fingerprint scanners to initiate scanning. The controller receives a fingerprint image from a corresponding one of the front and back fingerprint scanner. The controller authenticates the user in response to identifying that an upside-down version of the received fingerprint image corresponds to a fingerprint of an authorized user, based on authentication data stored in memory of the electronic device.

Method, apparatus, and computer readable medium for transferring a collaboration session

A method for transferring a collaboration session from a handheld device to a multimedia endpoint by encoding session data for the collaboration session and/or instructions into an optically machine-readable representation of data, displaying the data on a display of the handheld device, and optically providing the data to a multimedia endpoint the collaboration session is to be transferred to. The multimedia endpoint may send a message to a server upon detecting the data, causing the server to transfer the collaboration session, based on the session data in the message. Alternatively, the multimedia endpoint establishes a session with another multimedia endpoint based on the instructions and/or session data.

System for and method of transmitting communication information

A system for and method of communication information transmission are provided. A method of communication information transmission performed by a first device includes: receiving a communication request from a second device; obtaining surrounding situation information of the first device, the surrounding situation information including information related to surroundings of the first device; and determining at least one third device to process the communication request based on the surrounding situation information.