Abstract:
A remote mobile medical communication apparatus is suitable for use in communicating with a remote terminal for monitoring and treating a patient. The apparatus comprises a communicating unit, for transmitting a local communication information to the remote terminal, and receiving a remote communication information from the remote terminal. A patient-monitor interface unit receives at least one patient vital-sign signal from the patient, and then transmits to the remote terminal via the communicating unit. A bi-directional audio/video communication unit is for communicating with the remote terminal with an audio/video information via the communicating unit. An instruction from the remote terminal is instructed if the patient needs a treatment. A system and method use the function of the remote mobile medical communication apparatus.
Abstract:
A multi-section hinge mechanism includes a shaft (10), a rotary member (20), and an elastic member (30). The rotary member defines a through hole (26) running through the disk. The shaft is rotatably received in the through hole. The rotary member defines a plurality of concaves (282) in an inner circumferential surface portion thereof. The elastic member includes an elastic arm (32) and a fixing portion. The elastic arm engages in one of the concaves of the rotary member. The shaft non-rotatably connects with the fixing portion of the elastic member.
Abstract:
A multi-frequency antenna module includes first and second radiating elements disposed on a substrate and spaced apart from each other. A serpentine first transmission line conductor of the first radiating element and a second transmission line conductor of the second radiating element contact electrically and respectively first and second electrical contacts on a circuit board in an electronic apparatus when the substrate is mounted in a housing of the electronic apparatus. The first radiating element further includes at least one conducting line that is disposed parallel to second transmission line segments and that interconnects an adjacent pair of parallel first transmission line segments. A grounding line conductor is disposed on the substrate, is coupled electrically to the first radiating element, and contacts electrically a third electrical contact on the circuit board when the substrate is mounted in the housing.
Abstract:
A positioning assembly includes a fastener and a pin. The fastener includes a latching portion and a fixing portion coaxially connected to the latching portion. The pin is movably received and fixed in the fastener. The fixing portion defines a threaded portion in a side surface of the fixing portion and a pinhole in an end surface of the fixing portion. The pin is received in the pinhole.
Abstract:
A slide mechanism includes a main body, a slide body and an elastic member. The slide body is slidably connected to the main body. The elastic member is positioned between the main body and the slide body. The main body includes a base plate and two guide rails fixed on opposite sides of the base plate. The guide rails are elastic. A distance between the guide rails is less than a length of the elastic member in a normal state. Opposite ends of the elastic member are fixed to the guide rails, and a middle portion of the elastic member is fixed to the slide body, so that the elastic member remains bent between the guide rails.
Abstract:
The invention discloses a photoelectric energy transducing apparatus, which includes a photoelectric energy transducing module and a semiconductor switch. The photoelectric energy transducing module includes a photoelectric energy transducing semiconductor structure, a first positive electrode, and a negative electrode. The semiconductor switch includes a second positive electrode and a second negative electrode. The second positive electrode is electrically connected to the first negative electrode. The second negative electrode is electrically connected to the first positive electrode. When light radiates onto the photoelectric energy transducing semiconductor structure, an electromotive force is induced between the first positive electrode and the first negative electrode, and the electromotive force provides a reverse bias on the semiconductor switch so that the semiconductor switch is cut off. Thereby, when several photoelectric energy transducing apparatuses are used in series, the entire in-series circuit is still conductible even if one or some of the photoelectric energy transducing apparatuses are damaged.
Abstract:
The present standard radiation source comprises a black body having a cavity, a shielding plate positioned at an open end of the cavity, at least one first heater positioned in the shielding plate, at least one second heater positioned on the outer wall of the black body, a first insulation device covering the second heater and a temperature-controlling device positioned on the first insulation device.
Abstract:
The present standard radiation source comprises a black body having a cavity, a shielding plate positioned at an open end of the cavity, at least one first heater positioned in the shielding plate, at least one second heater positioned on the outer wall of the black body, a first insulation device covering the second heater and a temperature-controlling device positioned on the first insulation device.
Abstract:
The present invention discloses a portable blackbody furnace comprising a metallic body, a cylindrical cavity with a tapered end in the metallic body, a shielding plate positioned at an open end of the cylindrical cavity, at least a first heaters positioned in the shielding plate, a plurality of second heaters positioned around the metallic body, and a plurality of thermometers positioned in the metallic body. Preferably, the heat capacity of the metallic body is larger than 200 Joules/K, and has radial thickness larger than 5 mm. There are grooves formed on the outer wall of the metallic body, and the second heaters are heating wires embedded inside the grooves. In addition, the flow direction of the current between two adjacent heating wires is opposite to eliminate the magnetic field generated from the current flow.