Patents Assigned to BEST MEDICAL CANADA LTD.
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Publication number: 20210257715Abstract: A flexible antenna for a wireless X-ray dosimeter chip is described. The flexible antenna includes a dipole antenna associated with an artificial magnetic conductor, wherein the artificial magnetic conductor includes; a top layer configured to partially act as a reflective surface; a bottom conductive ground plane layer configured to prevent propagation of incident electromagnetic waves and to reflect the electromagnetic waves; and a middle layer including a foam material configured to provide an appropriate phase delay between incident electromagnetic waves from the top layer and the reflected waves from the ground plane layer.Type: ApplicationFiled: May 5, 2021Publication date: August 19, 2021Applicant: BEST MEDICAL CANADA LTD.Inventors: Langis Roy, Ololade Sanusi, Farhan Abdul Ghaffar, Atif Shamim
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Patent number: 11043729Abstract: A flexible antenna for a wireless X-ray dosimeter chip is described. The flexible antenna includes a dipole antenna associated with an artificial magnetic conductor, wherein the artificial magnetic conductor includes: a top layer configured to partially act as a reflective surface; a bottom conductive ground plane layer configured to prevent propagation of incident electromagnetic waves and to reflect the electromagnetic waves; and a middle layer including a foam material configured to provide an appropriate phase delay between incident electromagnetic waves from the top layer and the reflected waves from the ground plane layer.Type: GrantFiled: February 5, 2019Date of Patent: June 22, 2021Assignee: BEST MEDICAL CANADA LTD.Inventors: Langis Roy, Ololade Sanusi, Farhan Abdul Ghaffar, Atif Shamim
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Publication number: 20210097363Abstract: Low power non-volatile non-charge-based variable supply RFID tag memory devices and methods for reading and writing predetermined ID values for a RFID tag are described. The RFID tag memory device includes a reference/bias generator that receives and provides voltages and currents for write and read operations, a clocked comparator that provides read and write clock signals, a shift register that receives a non-charge-based memory component read voltage saved in the shift register, a memory cell that includes non-charge-based memory components to store corresponding predetermined ID values, a ring counter that provides ring signals to the shift register to enable sequential writing and reading of the predetermined ID values to and from the memory cell, a write decision component that receives ring signals to enable the write operation, an output select/isolation component and a read/write component that receive the ring signals to enable reading the predetermined ID values.Type: ApplicationFiled: September 2, 2020Publication date: April 1, 2021Applicant: BEST MEDICAL CANADA LTD.Inventors: Behzad YADEGARI, Steven McGARRY, Langis ROY
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Publication number: 20210096268Abstract: Low-power, dual sensitivity thin oxide FG-MOSFET sensors in RF-CMOS technology for a wireless X-ray dosimeter chip, methods for radiation measurement and for charging and discharging the sensors are described. The FG-MOSFET sensor from a 0.13 ?m (RF-CMOS process, includes a thin oxide layer having a device region, a source and a drain associated with the device well region, separated by a channel region, a floating gate extending over the channel region, and a floating gate extension extending over the thin oxide layer adjacent to the device well region. In a matched sensor pair for dual sensitivity radiation measurement, the floating gate and the floating gate extension of a FG-MOSFET higher sensitivity sensor are without a salicide layer or a silicide layer formed thereon and the floating gate and the floating gate extension of a FG-MOSFET lower sensitivity sensor have a salicide layer or a silicide layer formed thereon.Type: ApplicationFiled: August 31, 2020Publication date: April 1, 2021Applicant: BEST MEDICAL CANADA LTD.Inventors: Behzad Yadegari, Steven McGarry, Langis Roy
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Publication number: 20200251806Abstract: A flexible antenna for a wireless X-ray dosimeter chip is described. The flexible antenna includes a dipole antenna associated with an artificial magnetic conductor, wherein the artificial magnetic conductor includes: a top layer configured to partially act as a reflective surface; a bottom conductive ground plane layer configured to prevent propagation of incident electromagnetic waves and to reflect the electromagnetic waves; and a middle layer including a foam material configured to provide an appropriate phase delay between incident electromagnetic waves from the top layer and the reflected waves from the ground plane layer.Type: ApplicationFiled: February 5, 2019Publication date: August 6, 2020Applicant: BEST MEDICAL CANADA LTD.Inventors: LANGIS ROY, OLOLADE SANUSI, FARHAN ABDUL GHAFFAR, ATIF SHAMIM