ENSORA Trademark

Trademark Overview


On Wednesday, December 6, 2023, a trademark application was filed for ENSORA with the United States Patent and Trademark Office. The USPTO has given the ENSORA trademark a serial number of 98301990. The federal status of this trademark filing is NON-FINAL ACTION - MAILED as of Saturday, July 13, 2024. This trademark is owned by Nanoflex Power Corporation. The ENSORA trademark is filed in the Computer & Software Products & Electrical & Scientific Products category with the following description:

Energy harvesting systems, namely, integrated circuit modules containing photovoltaic solar cells, energy storage devices such as electric batteries or supercapacitors, and electronic control circuits for the production of electricity from indoor light and outdoor solar light;, Energy harvesting sensor systems, namely, integrated circuit modules containing photovoltaic solar cells, energy storage devices such as electric batteries or supercapacitors, and electronic control circuits for the production of electricity from indoor light and outdoor solar light, with recorded microcontroller firmware and related computer hardware for the management and operation of energy harvesting sensor systems, along with wireless narrowband radios, wideband radios, and ultra-wideband radios, and printed circuit boards that use energy from energy harvesting modules; energy harvesting sensor systems comprised of environmental sensors in the nature of sensors measuring humidity, carbon dioxide, light leve...
ensora

General Information


Serial Number98301990
Word MarkENSORA
Filing DateWednesday, December 6, 2023
Status641 - NON-FINAL ACTION - MAILED
Status DateSaturday, July 13, 2024
Registration Number0000000
Registration DateNOT AVAILABLE
Mark Drawing4 - Illustration: Drawing with word(s) / letter(s) / number(s) in Block form
Published for Opposition DateNOT AVAILABLE

Trademark Statements


Goods and ServicesEnergy harvesting systems, namely, integrated circuit modules containing photovoltaic solar cells, energy storage devices such as electric batteries or supercapacitors, and electronic control circuits for the production of electricity from indoor light and outdoor solar light;, Energy harvesting sensor systems, namely, integrated circuit modules containing photovoltaic solar cells, energy storage devices such as electric batteries or supercapacitors, and electronic control circuits for the production of electricity from indoor light and outdoor solar light, with recorded microcontroller firmware and related computer hardware for the management and operation of energy harvesting sensor systems, along with wireless narrowband radios, wideband radios, and ultra-wideband radios, and printed circuit boards that use energy from energy harvesting modules; energy harvesting sensor systems comprised of environmental sensors in the nature of sensors measuring humidity, carbon dioxide, light level, vapor pressure deficit, barometric pressure, heat index, water pH, soil moisture, volumetric soil moisture content, soil pH, carbon monoxide, oxygen, rain, snow, wind, lightning, moisture, air pollution, evapotranspiration, stem diameters, soil nutrients, radiation, salinity, smoke, air flow, acoustics, sound, vibrations, noise and vibration frequency, as well as chemical sensors in the nature of sensors measuring carbon monoxide, carbon dioxide, oxygen, methane, hydrocarbon, hydrogen, hydrogen sulfide, nitrogen, nitrogen oxide, ozone, smoke, alcohol, ethanol, ammonia, and chemical levels in aqueous solutions not for medical use, in addition to optical sensors measuring light, photosynthetically active radiation, radiation, infrared, ultraviolet light, thermal heat, position sensors measuring displacement, velocity, speed, acceleration, flex, stretch, free fall, drop, global position, trilateration, impact, angular displacement, angular velocity, angular acceleration, tilt, radar signals, motion, and seismic ground motion and vibrations, pressure sensors measuring barometric pressure, air pressure, strain, and applied force, force sensors in the nature of sensors measuring strain, torque, stretch, deflection, weight, and mass, thermal sensors for measuring temperature, heat transfer, and flame detection, electrical sensors for measuring and control of current, resistance, voltage, electric field, and magnetic field, and total volatile organic compounds, electrical sensors of solar energy panels and batteries; solar energy harvesting sensor systems, namely, integrated circuit modules containing photovoltaic solar cells, energy storage devices such as electric batteries or supercapacitors, and electronic control circuits in combination that use the production of electricity from indoor light and outdoor solar light to power sensor systems comprised of microcontrollers, electric sensors, wireless narrowband, wideband, and ultra-wideband radios, printed circuit boards, as well as recorded microcontroller firmware and related computer hardware for the management and operation of energy harvesting sensor systems, along with wireless narrowband, wideband, and ultra-wideband radios, and printed circuit boards that use energy from energy harvesting modules; Artificial intelligence software to update or override programmed control algorithms of cloud, downloadable, or pre-installed software for the purpose of controlling energy harvesting sensor systems; Artificial intelligence software to update or override programmed control algorithms of cloud, downloadable, or pre-installed software for controlling equipment using control systems compromised of relay control of power, voltage output signals, signals sent over bus connections and Application Programming Interfaces for the management and operation of environmental conditions, namely temperature, humidity, light level, CO2 level, irrigation systems, and nutrient dosing; artificial intelligence software for predictive modeling of outcomes of how updated settings on controlling equipment affects environmental conditions and outcomes are influenced by environmental conditions, such as the yield, quality, lifetime or spoilage of any product which is influenced by environmental conditions such as a crops, food, alcohol, medicine, pharmaceuticals, electronics, wood, paper, textiles, fabrics, musical instruments, paintings, artwork, leather goods, and cosmetics, which can be achieved or improved upon using the management and operation of environmental conditions, namely temperature, humidity, light level, CO2 level, irrigation systems, and nutrient dosing; artificial intelligence software for predictive modeling of how outcomes are influenced by the presence or location of sensors or environmental conditions, such as the yield, quality, lifetime or spoilage of any product which is influenced by environmental conditions such as a crops, food, alcohol, medicine, pharmaceuticals, electronics, wood, paper, textiles, fabrics, musical instruments, paintings, artwork, leather goods, and cosmetics; control systems comprised of hardware for controlling equipment, namely, heaters, furnaces, air conditioners, fans, vents, lighting, shades, humidifiers, dehumidifiers, CO2 enrichment systems, hydroponic systems, aquaponic systems, irrigation systems, climate controllers, and nutrient dosing, based on sensor readings and user programming, including relay control of power, voltage output signals, signals sent over bus connections and Application Programming Interfaces; recorded microcontroller firmware for the operation of control system hardware for management and operation of energy harvesting sensor systems, management and operation of hardware for control equipment, and sending data from energy harvesting sensors to the cloud and computer applications; microcontrollers with wireless narrowband radios, wideband radios, and ultra-wideband radios for receiving data from energy harvesting sensors and sending the sensor data to the cloud, computers, microcontrollers, and software; recorded microcontroller firmware for the management and operation of microcontrollers for receiving sensor data over wireless narrowband radios, wideband radios, and ultra-wideband radios for receiving data from energy harvesting sensors and sending the data to the cloud and other computers, microcontrollers, and software; downloadable, cloud, and pre-installed software for control and user programming of control algorithms of the control system hardware and monitoring sensor systems and sensor values of energy harvesting sensors

Classification Information


International Class009 - Scientific, nautical, surveying, photographic, cinematographic, optical, weighing, measuring, signalling, checking (supervision), life-saving and teaching apparatus and instruments; apparatus and instruments for conducting, switching, transforming, accumulating, regulating or controlling electricity; apparatus for recording, transmission or reproduction of sound or images; magnetic data carriers, recording discs; automatic vending machines and mechanisms for coin operated apparatus; cash registers, calculating machines, data processing equipment and computers; fire extinguishing apparatus.
US Class Codes021, 023, 026, 036, 038
Class Status Code6 - Active
Class Status DateWednesday, December 6, 2023
Primary Code009
First Use Anywhere DateNOT AVAILABLE
First Use In Commerce DateNOT AVAILABLE

Trademark Owner History


Party NameNanoflex Power Corporation
Party Type10 - Original Applicant
Legal Entity Type03 - Corporation
AddressScottsdale, AZ 85260

Trademark Events


Event DateEvent Description
Wednesday, December 6, 2023NEW APPLICATION ENTERED
Monday, March 4, 2024NEW APPLICATION OFFICE SUPPLIED DATA ENTERED
Saturday, July 6, 2024ASSIGNED TO EXAMINER
Saturday, July 13, 2024NON-FINAL ACTION E-MAILED
Saturday, July 13, 2024NON-FINAL ACTION WRITTEN
Monday, October 14, 2024APPLICATION EXTENSION GRANTED/RECEIPT PROVIDED
Monday, October 14, 2024APPLICATION EXTENSION TO RESPONSE PERIOD - RECEIVED
Saturday, July 13, 2024NOTIFICATION OF NON-FINAL ACTION E-MAILED