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公开(公告)号:US20210208120A1
公开(公告)日:2021-07-08
申请号:US17036688
申请日:2020-09-29
Applicant: Microjet Technology Co., Ltd.
Inventor: Hao-Jan MOU , Yung-Lung HAN , Chi-Feng HUANG , Tsung-I LIN , Chang-Yen TSAI , Wei-Ming LEE
Abstract: A health monitoring device having gas detection function is disclosed. The health monitoring device includes a main body. The main body has at least one inlet and at least one outlet, and includes a gas detection module. The gas detection module includes a piezoelectric actuator and at least one sensor. Gas is inhaled into the main body through the inlet by the piezoelectric actuator, is discharged out through the outlet, and is transported to the at least one sensor to be detected so as to obtain gas information.
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公开(公告)号:US20220023683A1
公开(公告)日:2022-01-27
申请号:US17375446
申请日:2021-07-14
Applicant: MICROJET TECHNOLOGY CO., LTD.
Inventor: Hao-Jan MOU , Chi-Feng HUANG , Yung-Lung HAN , Chun-Yi KUO , Chin-Wen HSIEH , Tsung-I LIN , Yang KU
Abstract: A nasal-plug filter device including a device body, a filter, a first actuator, a second actuator, and a gas sensor is provided. The device body has a ventilating channel, and the ventilating channel has an inlet end and an outlet end. The filter is disposed at the outlet end. The first actuator is disposed at the inlet end for being driven to transmit gas outside the device body into the device body. The second actuator is stacked on and bonded to the first actuator, and the second actuator is driven to transmit the gas transmitted by the first actuator to the filter to be filtered and purified. The gas sensor is disposed at the outlet end. A connection element may be provided for connecting two nasal-plug filter devices with each other.
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公开(公告)号:US20220065243A1
公开(公告)日:2022-03-03
申请号:US17386461
申请日:2021-07-27
Applicant: MICROJET TECHNOLOGY CO., LTD.
Inventor: Hao-Jan MOU , Chi-Feng HUANG , Yung-Lung HAN , Chang-Yen TSAI , Wei-Ming LEE , Tsung-I LIN , Yang KU
Abstract: A filtration and purification processing method includes following steps: (1) providing a filtration and purification device; (2) performing a gas introduction, filtration, and detection procedure; (3) performing a detection and determination procedure to the purified gas; (4) performing a circulating filtration and detection procedure to the purified gas; and (5) repeating filtration and purification procedures to the purified gas several times and guiding out the purified gas.
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公开(公告)号:US20220397110A1
公开(公告)日:2022-12-15
申请号:US17705833
申请日:2022-03-28
Applicant: Microjet Technology Co., Ltd.
Inventor: Hao-Jan MOU , Yung-Lung HAN , Chi-Feng HUANG , Chun-Yi KUO , Tsung-I LIN
Abstract: A MEMS pump includes a first substrate, a first oxide layer, a second substrate, a second oxide layer, a third substrate and a piezoelectric element sequentially stacked to form a modular structure. The first substrate has an inlet aperture. The first oxide layer has at least one fluid inlet channel and a convergence chamber. One end of the fluid inlet channel is in communication with the convergence chamber and the other end of the fluid inlet channel is in communication with the inlet aperture. The second substrate has a through hole misaligned with the inlet aperture and in communication with the convergence chamber. The second oxide layer has a gas chamber with a concave central portion. The third substrate has a plurality of gas flow channels misaligned with the through hole. The modular structure has a length, a width and a height.
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公开(公告)号:US20220370838A9
公开(公告)日:2022-11-24
申请号:US17375446
申请日:2021-07-14
Applicant: MICROJET TECHNOLOGY CO., LTD.
Inventor: Hao-Jan MOU , Chi-Feng HUANG , Yung-Lung HAN , Chun-Yi KUO , Chin-Wen HSIEH , Tsung-I LIN , Yang KU
Abstract: A nasal-plug filter device including a device body, a filter, a first actuator, a second actuator, and a gas sensor is provided. The device body has a ventilating channel, and the ventilating channel has an inlet end and an outlet end. The filter is disposed at the outlet end. The first actuator is disposed at the inlet end for being driven to transmit gas outside the device body into the device body. The second actuator is stacked on and bonded to the first actuator, and the second actuator is driven to transmit the gas transmitted by the first actuator to the filter to be filtered and purified. The gas sensor is disposed at the outlet end. A connection element may be provided for connecting two nasal-plug filter devices with each other.
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公开(公告)号:US20210378530A1
公开(公告)日:2021-12-09
申请号:US17336725
申请日:2021-06-02
Applicant: Microjet Technology Co., Ltd.
Inventor: Hao-Jan MOU , Ying-Lun CHANG , Ching-Sung LIN , Chi-Feng HUANG , Yung-Lung HAN , Chang-Yen TSAI , Wei-Ming LEE , Chun-Yi KUO , Tsung-I LIN
Abstract: A blood pressure detection device manufactured by a semiconductor process includes a substrate, a microelectromechanical element, a gas-pressure-sensing element, a driving-chip element, an encapsulation layer and a valve layer. The substrate includes inlet apertures. The microelectromechanical element and the gas-pressure-sensing element are stacked and integrally formed on the substrate. The encapsulation layer is encapsulated and positioned on the substrate. A flowing-channel space is formed above the microelectromechanical element and the gas-pressure-sensing element. The encapsulation layer includes an outlet aperture in communication with an airbag. The driving-chip element controls the microelectromechanical element, the gas-pressure-sensing element and valve units to transport gas. The gas is introduced into the flowing-channel space through the inlet apertures and transported into the airbag through the outlet aperture, to inflate the airbag for blood pressure measurement, and a detection datum of blood pressure outputted by the gas-pressure-sensing element is transmitted to the microprocessor to calculate.
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公开(公告)号:US20210220773A1
公开(公告)日:2021-07-22
申请号:US17109370
申请日:2020-12-02
Applicant: Microjet Technology Co., Ltd.
Inventor: Hao-Jan MOU , Yung-Lung HAN , Chi-Feng HUANG , Chang-Yen TSAI , Wei-Ming LEE , Tsung-I LIN
Abstract: A gas detection purification device is disclosed and includes a main body, a purification unit, a gas guider, a gas detection module and a controlling-driving module. The main body includes an inlet, an outlet, an external socket and a gas-flow channel disposed between the inlet and the outlet. The purification unit is disposed in the gas-flow channel for filtering gas introduced through the gas-flow channel. The gas guider is disposed in the gas channel and located at a side of the purification unit. The gas is inhaled through the inlet, flows through the purification unit and is discharged out through the outlet. The gas detection module is plugged into or detached from the external socket. The controlling driving module is disposed within the main body and electrically connected to the gas guider to control the operation of the gas guider in an enabled state and a disabled state.
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