摘要:
A thermoelectric conditioning arrangement (100; 200; 300) may comprise a first antenna/splitter (102; 202; 302) configured to transmit a power & control signal, a second antenna/splitter (104; 204; 304) configured to receive the power & control signal, a waveguide (110; 210; 310) coupled between the first antenna/splitter (102; 202; 302) and the second antenna/splitter (104; 204; 304), wherein the power & control signal is guided from the first antenna/splitter (102; 202; 302) to the second antenna/splitter (104; 204; 304) via the waveguide (110; 210; 310), a power converter (121; 221; 321) configured to receive the power & control signal from the second antenna/splitter (104; 204; 304) and generate a direct current (DC) signal, and a thermoelectric cooler (TEC) (130; 230; 330) configured to receive the DC signal from the power converter (121; 221; 321).
摘要:
A controller for a thermo-electric cooler is disclosed. The controller comprises a current source for providing current for driving the thermo-electric cooler and a plurality of voltage supply connections for providing a plurality of different voltages for driving current controlled by the current source through the thermo-electric cooler. Voltage selection circuitry is provided for selecting a voltage from the plurality of different voltages, when connected, and for applying the voltage selected to the thermo-electric cooler. When selecting the voltage from the plurality of different voltages, the voltage selection circuitry is configured to select the voltage that, when compared to the other voltages of the plurality of voltages, minimises a potential difference across the current source.
摘要:
The present work depicts a thermal device for solid and liquid products consisting of a container with an external surface with one or more thermoelectric plates (20) or micro heat exchangers interconnected with a micro-compressor heat sink (30); this container (10) is placed on an eccentric axle (40) connected to a rotary electric motor or moving device (50) which increases the heat transfer coefficient by internal convection of the container (10) where the element to be cooled or heated is stored.
摘要:
The present invention relates to a thermoelectric temperature-control unit (5), having a first contact plate (15), having a second contact plate (16), and having at least one plate-shaped thermoelectric transducer (17) which has a first transducer side (20) and a second transducer side (21), facing away therefrom, wherein the respective thermoelectric transducer (17) is arranged between the first contact plate (15) and the second contact plate (16), is coupled in a heat-transmitting fashion by its first transducer side (20) to the first contact plate (15), and is coupled in a heat-transmitting fashion by its second transducer side (21) to the second contact plate (16). Improved efficiency results, in the region of the respective thermoelectric transducer (17), if at least one such contact plate (15, 16) has, on an inner side (23, 24) facing the respective other contact plate (15, 16), a coupling zone (22) which is surrounded along its circumference by a groove (25) formed in the inner side (23, 24), if a heat-conducting material (26) is arranged in the groove (25) and along the coupling zone (22), and if the heat-conducting material (26) is directly in contact with the inner side (23, 24) of the respective contact plate (15, 16), on the one hand, and with the respective transducer side (20, 21), on the other.
摘要:
The present invention is equipped with a semiconductor integrated circuit, a radiation detection device, and a cooling device. Here, the radiation detection device detects the amount of radiation and is provided to the vicinity of the semiconductor integrated circuit. The cooling device cools the semiconductor integrated circuit in accordance with the detected amount of radiation. By cooling the semiconductor integrated circuit to a greater extent in environments with a greater amount of radiation, it is possible to suppress the occurrence of mal-functioning.
摘要:
A refrigerator (10) that has a fresh food compartment (14), a freezer compartment (16), and a door (18) that provides access to the fresh food compartment is disclosed. An icemaker (102) is mounted remotely from the freezer compartment. The icemaker includes an ice mold (106). A thermoelectric device is provided and includes a warm side and an opposite cold side. A flow pathway is connected in communication between the cold side of the thermoelectric device and the icemaker. A fan is operatively positioned to move air from the fresh food compartment across the warm side of the thermoelectric device. A pump (66) moves fluid from the cold side of the thermoelectric device to the icemaker. Cold air, such as from the refrigerator compartment, is used to dissipate heat from the warm side of the thermoelectric device for providing cold fluid to and for cooling the ice mold of the icemaker.
摘要:
An apparatus for preventing deformation of a communication card includes a card holder configured to install a communication card; a temperature control component that is located on one side of the card holder and connected to a power supply configured to perform cooling or heating; a temperature sensor configured to collect temperature of the card holder; and the power supply configured to generate a supply current according to temperature of the temperature sensor to supply power to the temperature control component, so that the temperature control component performs cooling or heating to maintain the temperature of the card holder within a preset temperature range, and the communication card is not deformed when the communication card is in the card holder and within the preset temperature range.
摘要:
An electronic temperature control apparatus a cooler using the same, a heater using the same, and a control method thereof are provided. The electronic temperature control apparatus includes: a thermoelectric module including a first metal member having one end in contact with an object and a second metal member having one end joined with the other end of the first metal member, a voltage applied to one end of the first metal member and the other end of the second metal member; a voltage supply unit supplying a first voltage or a variable voltage having a range from a second voltage to a third voltage to the thermoelectric module; and a controller controlling a voltage supplied to the thermoelectric module by the voltage supply unit according to a difference between a temperature of the object or the first metal member and a target temperature.