MUMBAI, India, Aug. 17 -- Intellectual Property India has published a patent application (202511004851 A) filed by Havells India Ltd. on January 21, 2025, for A System For Controlling An Operation Of An Electrical Appliance.

Inventors include Garg, Gagandeep; Bisen, Sarvesh Singh; and Kholia, Diwan Singh.

The application for the patent was published on August 14, 2026, under issue no. 33/2026.

Abstract: 1. A system for controlling an operation of an electrical appliance (100, 200), the system comprising: a base assembly (102, 202) comprising a motor (104, 204) and an adaptor (106, 206) rotatably coupled to the motor (104, 204); a jar assembly (110, 210) removably coupled with the base assembly (102, 202), the jar assembly (110, 210) comprising: a body (108, 208) having an internal volume and a rotational member placed at a bottom of the body (108, 208) and adapted to rotate upon actuation by the adaptor (106, 206); a handle (112, 212) coupled to the body (108, 208) and provided with a control switch (114, 216) to transition the motor (104, 204) between an activated state and a non-activated state, wherein the control switch (114, 216) is configured to generate a triggering input indicative of the activated state and the non-activated state; an actuator (114, 216) in communication with the control switch (114, 216) and configured to receive the triggering input from the control switch (114, 216) and transmit the triggering input, a sensing unit 118 disposed in the base assembly (102, 202), the sensing unit (118) adapted to: receive the triggering input indicative of actuation of the motor (104, 204) and operate the motor (104, 204) to the actuated state; and receive the triggering input indicative of non-actuation of the motor (104, 204) and operate the motor (104, 204) to the non-activated state. 2. The system (100) as claimed in claim 1, wherein the actuator (114) is embodied as a passive Radio Frequency Identification (RFID) transmitter (114) adapted to transmit the triggering input wirelessly to the sensing unit (118). 3. The system (100) as claimed in claim 1, wherein the sensing unit (118) is embodied as a RFID signal generator and configured to generate and transmit unique RFID signal wirelessly. 4. The system (100) as claimed in claim 3, wherein the actuator (114) is adapted to receive the unique wireless signal from the sensing unit (118). 5. The system (100) as claimed in claim 1, wherein the actuator (216) is embodied as an active RFID transmitter (228) adapted to transmit the triggering input wirelessly to a RF receiver (226). 6. The system (100) as claimed in claim 5, wherein the base assembly (202) is adapted to receive an A/C supply from a power source (222) and adapted to power a transmitting induction coil (220) induce the current to a receiving induction coil in the jar assembly (210). 7. The system (100) as claimed in claim 6, wherein the Radio Frequency transmitter (228) in the jar assembly (210) is adapted to wirelessly powered by the receiving induction coil (220). 8. The system (100) as claimed in claim 1, wherein the sensing unit (118) is in communication with a control unit (120, 224) and configured to control the operations of the motor (104, 204) based on the triggering input received from the actuator (114, 216). 9. A jar assembly (110, 210) comprising, a body (108, 208) having an internal volume and a rotational member placed at a bottom of the body (108, 208) and adapted to rotate upon actuation by the adaptor (106, 206); a handle (112, 212) coupled to the body (108, 208) and provided with a control switch (114, 216) to transition a motor (104, 204) between an activated state and a non-activated state, wherein the control switch (114, 216) is configured to generate a triggering input indicative of the activated state and the non-activated state; an actuator (114, 216) in communication with the control switch (114, 216) and configured to receive the triggering input from the control switch (114, 216) and wirelessly transmit the triggering input to one of operate the motor (104, 204) to the actuated state and the non-activated state. 10. The jar assembly (110, 210) as claimed in claim 9, wherein the actuator (114, 216) is embodied as one of a passive Radio Frequency Identification (RFID) transmitter and an active RF transmitter.

Disclaimer: Curated by HT Syndication.