F04D27/007

Ceiling fan light and fan control systems and methods

Systems, devices, and methods for ceiling fan remote controls that allows the wall switches, pull chains and remote control transmitters to both separately and independently control the ceiling fan lights and fan. Systems, device and methods for over-riding a ceiling fan remote control so that a single wall switch can activate the ceiling fan light(s) if the remote control transmitter is not available. Systems, devices, and methods for ceiling fan remote controls that allows the wall switches, pull chains, and remote controls to both separately and independently control the ceiling fan lights and the fan. Systems, devices and methods for ceiling fan remote control receivers that can be connected to two separate wall switches that allows a ceiling fan remote control system that allows for both the wall switch and remote transmitter to each control the light.

Fan

A fan includes a fan seat and a fan head, wherein a first surface of the fan head opposed a second surface of the fan seat. The fan further includes a first rotating shaft at edges of the first surface and the second surface configured to rotatably couple the fan seat and the fan head, such that the first surface of the fan head and the second surface of the fan seat form an target angle based on the first rotating shaft.

Inflation pump and operating method and usage of the same

An inflation pump and operating method and usage thereof relate to the technical field of inflation devices. The inflation pump includes a housing, a control mechanism and an inflation mechanism. Both the control mechanism and inflation mechanism are provided within the housing. The control mechanism includes a pressure sensor and a control circuit board. The pressure sensor communicates with the control circuit board via signals. The control circuit board communicates with the inflation mechanism via signals. The pressure sensor is communicated with outside of the housing through a first air pipe. The inflation mechanism is communicated with outside of the housing through an air inlet provided on the housing. It should be noted that the inflation pump automatically controls inflation mechanism via control mechanism, which solves the technical problem in the prior art that inflation pumps need to be manually shut down when the inflation requirements are reached, therefore, the present disclosure has a significant value in publicity and application.

AIR BLOWER

An air blower includes: a panel (3); a frame member (5) arranged to surround the panel (3) and having a blowout port (13a, 13b, 13c, 13d, 13e, 13f, 13g) of air formed therein; and a fan (11a, 11b, 11c, 11d, 11e, 11f, 30) that sends air to the blowout port (13a, 13b, 13c, 13d, 13e, 13f, 13g). The frame member (5) produces airflows that are blown out from at least three directions and collide with each other, thereby producing an air current going forward to the panel (3).

FAN HAVING ROTATION SENSING
20210040954 · 2021-02-11 ·

The present invention is a fan having rotation sensing, comprising a casing, a motor disposed within the casing, a rotation sensing unit, and a control unit, the rotation sensing unit detecting a first rotation of the casing and outputting a first sensing signal, the control unit having a controller electrically coupled to the rotation sensing unit and the motor, the controller receiving the first sensing signal according thereto to control the motor to perform a first operation mode. Through this design, an operation mode of the fan can be adjusted according to the rotation of the fan in the present invention.

INDUSTRIAL CONTROL SYSTEM FOR DISTRIBUTED COMPRESSORS

A method for operating a plurality of geographically distributed compressors, wherein the outputs of the geographically distributed compressors are coupled to a compressed air distribution system within an industrial automation environment, is provided. The method includes receiving performance data from the plurality of compressors, and receiving current environment data from a plurality of sensors within the industrial automation environment, including at least some sensors within the compressed air distribution system. The method also includes assigning a guide vane weight to each compressor based at least in part on a capacity of each compressor, identifying a target system air pressure, and processing the performance data, current environment data, guide vane weights, and target system air pressure to determine control settings for each of the plurality of compressors.

VACUUM PUMP, TEMPERATURE ADJUSTMENT CONTROLLER USED FOR VACUUM PUMP, INSPECTION TOOL, AND METHOD OF DIAGNOSING TEMPERATURE-ADJUSTMENT FUNCTION UNIT
20210018012 · 2021-01-21 ·

A vacuum pump includes a control unit that monitors and controls a motor and a magnetic bearing, each being stored in a pump body. A temperature-adjustment function unit measures a temperature of the pump body by at least one temperature sensor disposed in the pump body and controls at least one heater or solenoid controlled valve based on the temperature. The temperature-adjustment function unit includes a first terminal capable of connecting or disconnecting the temperature sensor and a second terminal capable of connecting or disconnecting one of the heater and the solenoid controlled valve. A self-diagnosis unit capable of conducting a self-diagnosis of whether an input signal to the first terminal has been normally inputted or whether the signal has been normally outputted from the second terminal.

Externally programmable fan
10890192 · 2021-01-12 · ·

A fan comprising: (a) an impeller, (b) a motor connected to the impeller so that during operation the motor drives the impeller to move a fluid; (c) an instrumentation assembly that includes one or more components for controlling one or more operations of the fan; (d) an interface in communication with the instrumentation assembly; wherein the interface is configured so that one or more programs, one or more signals, or both can be input into the fan after a final assembly of the fan so that the fan can be configured to perform a desired function at the time of installation into a final product, reconfigured for a different purpose than originally programmed, or both.

AIR MOVING DEVICE WITH BYPASS INTAKE
20240003559 · 2024-01-04 ·

An air moving device has a housing with a primary flow path and a secondary flow path that extends from a secondary inlet of the housing and empties into an inner outlet adjacent the primary flow path. An impeller assembly rotates a blade to cause air to enter the housing and flow along the primary flow path. The flow of air through the primary flow path creates a low pressure region at the inner outlet of the secondary flow path, causing air to flow through the secondary flow path and mix with the air in the primary flow path. The mixture of air flows through a downstream portion of the primary flow path having an expanded width compared to an upstream portion of the primary flow path and exits the housing. Stator vanes may extend longitudinally within the housing to cause columnar air flow. The device may be used for destratification of thermal gradients of air within an enclosure, such as a home or warehouse.

Fan and control method thereof

A fan includes a motor, a plurality of fan blades coupled to the motor and rotatable by the motor, a light source positioned to be independent from rotation of the plurality of fan blades, and a processor controlling the first light source to turn on/off with a frequency determined at least based on a relation with respect to a rotational speed of the plurality of fan blades. Thereby, a visually static view or a slowly rotating view of the fan blades is displayed while the fan blades are operating.