G01H11/00

DETERMINING A DECAY CHARACTERISTIC OF A METER ASSEMBLY
20210302212 · 2021-09-30 · ·

A meter electronics (20) for determining a decay characteristic of a meter assembly (10) of a flow meter (5) is provided. The meter electronics (20) includes an interface (201) for receiving a vibrational response from a meter assembly (10), the vibrational response comprising a response to an excitation of the meter assembly (10) at a substantially resonant frequency, and a processing system (203) in communication with the interface (201). The processing system (203) is configured to receive the vibrational response from the interface (201), determine a response voltage (V) of the vibrational response, determine a decay characteristic (ζ) of the meter assembly (10) based on the response voltage (V), and compensate the decay characteristic (ζ) by using a previously determined decay characteristic-to-response voltage relationship.

A USER INTERFACE FOR VEHICLES

The present invention relates to a method for providing a user interface for a vehicle. The method includes the steps of detecting vibration signals from a user control action on a surface of the vehicle at a vibration sensor; processing the vibration signals to determine features of the user control action; and triggering a control event based upon the determination of features of the user control action.

A USER INTERFACE FOR VEHICLES

The present invention relates to a method for providing a user interface for a vehicle. The method includes the steps of detecting vibration signals from a user control action on a surface of the vehicle at a vibration sensor; processing the vibration signals to determine features of the user control action; and triggering a control event based upon the determination of features of the user control action.

SMART SAFETY MANAGEMENT SENSOR FOR MEASURING SAFETY-RELATED DATA OF STRUCTURE
20210285847 · 2021-09-16 · ·

Disclosed is a sensor for receiving power from the outside and measuring data on a current state. A smart safety management sensor for measuring safety-related data of a structure includes a detection module installed in a structure and configured to detect a state of the structure at a preset interval, a control module operatively associated with the detection module and configured to calculate a result value based on data received by the detection module, and an output module operatively associated with the control module and configured to receive a result value calculated by the control module and to provide information to a supervisor.

SMART SAFETY MANAGEMENT SENSOR FOR MEASURING SAFETY-RELATED DATA OF STRUCTURE
20210285847 · 2021-09-16 · ·

Disclosed is a sensor for receiving power from the outside and measuring data on a current state. A smart safety management sensor for measuring safety-related data of a structure includes a detection module installed in a structure and configured to detect a state of the structure at a preset interval, a control module operatively associated with the detection module and configured to calculate a result value based on data received by the detection module, and an output module operatively associated with the control module and configured to receive a result value calculated by the control module and to provide information to a supervisor.

Vibrational input elements
11126266 · 2021-09-21 · ·

Systems and methods are provided that relate to vibrational input elements configured to provide inputs to control an application executed by a mobile computing device. The vibrational input elements may produce distinct vibration patterns that are detectable by a sensor of the mobile computing device. The respective vibration patterns may correspond to one or more actions that may be performed in relation to the application.

Vibrational input elements
11126266 · 2021-09-21 · ·

Systems and methods are provided that relate to vibrational input elements configured to provide inputs to control an application executed by a mobile computing device. The vibrational input elements may produce distinct vibration patterns that are detectable by a sensor of the mobile computing device. The respective vibration patterns may correspond to one or more actions that may be performed in relation to the application.

Vibration sensor for a portable device including a damping arrangement to reduce mechanical resonance peak of sensor

A vibration sensor having a moveable mass adapted to move in response to vibrations or accelerations. The sensor includes a damping arrangement that includes a damping fluid or gel. The moveable mass is arranged to interact directly or indirectly with the damping fluid or gel in order to reduce a mechanical resonance peak of the vibration sensor. The damping fluid or gel has a viscosity between 1000 cP and 100000 Cp and damping properties that are substantially stable over time.

Vibration sensor for a portable device including a damping arrangement to reduce mechanical resonance peak of sensor

A vibration sensor having a moveable mass adapted to move in response to vibrations or accelerations. The sensor includes a damping arrangement that includes a damping fluid or gel. The moveable mass is arranged to interact directly or indirectly with the damping fluid or gel in order to reduce a mechanical resonance peak of the vibration sensor. The damping fluid or gel has a viscosity between 1000 cP and 100000 Cp and damping properties that are substantially stable over time.

ACCELEROMETER CONTACT MICROPHONES AND METHODS THEREOF
20210127202 · 2021-04-29 ·

Small form-factor MEMS devices and methods of using the devices are disclosed. An exemplary MEMS device includes an accelerometer contact microphone. Certain devices described herein comprise nanometer scale sensing gaps in the out-of-plane direction to increase vibration sensitivity in a vacuum casing. Certain devices described herein provide a differential sensing mechanism. The disclosure also describes accelerometer contact microphones having an operational bandwidth ranging from 0 Hz and 10,000 Hz. The vibration acceleration sensitivity of certain devices described herein is better 100 μg√Hz.