Abstract:
An air-conditioning control system for a vehicle includes: an occupant sensing unit determining whether or not there is an occupant inside the vehicle in a state in which a driver exits from the vehicle; a ventilation control unit performing control to allow external air to be introduced into the vehicle, when it is sensed that there is an occupant in the vehicle; and a temperature control unit sensing at least one of an interior temperature of the vehicle or an external temperature at the time of controlling ventilation, and controlling heating or cooling based on the at lease one of the sensed interior temperature or external temperature.
Abstract:
A device for controlling a compressor of vehicles may include a sensor module including a cabin temperature sensor, an outdoor temperature sensor, an evaporator temperature sensor detecting a temperature of cooling medium in an evaporator, a vehicle speed sensor, and a brake sensor, an injector, an air conditioning system including a condenser, an evaporator, the compressor, a temperature control door controlling a temperature of air flowing into a cabin, an intake door selectively distributing an inner air or an outer air into the cabin, and a blower blowing the air to the intake door, and a controller controlling the injector and the air conditioning system, wherein the controller accumulates a cold air energy by increasing an operation of the compressor if a speed-reducing condition occurs, and the air conditioning system uses the accumulated cold air energy by decreasing the operation of the compressor if a release condition occurs.
Abstract:
A thermoelectric dehumidifying apparatus may include a housing provided in a widthwise direction of a vehicle adjacent to a windshield glass of the vehicle and having an inlet and an outlet at an upper end thereof, a thermoelectric module including a thermoelectric element provided between the inlet and the outlet in an interior of the housing and having a surface with which cooling fins make surface-contact and an opposite surface with which heat radiation fins make surface-contact, wherein the thermoelectric element is disposed on a passage of air flowing from the inlet to the outlet such that the air introduced through the inlet passes by the cooling fins and the heat radiation fins at a same time and then is discharged through the outlet, and a fan provided in the interior of the housing, for guiding the air from the inlet to the outlet.
Abstract:
A dehumidifier for a vehicle includes a heat exchanger provided in a flow path of air and configured to have a heat transfer material flowing therein so as to cool or heat the air. A first thermoelectric element is provided at an air inlet side of the heat exchanger and is configured to cool introduced air. A first thermal conductor is configured to connect a heat-generating surface of the first thermoelectric element to the heat exchanger and radiate heat generated from the first thermoelectric element through the heat exchanger.
Abstract:
A heat radiator for a cup holder may include a heat pipe with an one end fixed in a surface contact with a heat radiation side of a thermoelectric element mounted on a body of the cup holder and another end being extended from the one end at least above the one end, heat radiation fins fixed in a surface contact with another end of the heat pipe, and a blower engaged to the another end of the heat pipe so as to enable the heat radiation fins to exchange heat.
Abstract:
A heating, ventilating, air conditioning (HVAC) system of a vehicle includes: a battery circulation line having a battery radiator, a main valve, a high voltage battery core, and a cooling heat exchanger so as to circulate a first coolant therethrough, with the cooling heat exchanger being provided to be heat-exchangeable with an indoor HVAC refrigerant line; a branch line including a water heating heater and selectively connected to the battery circulation line through the main valve; and a controller selectively cooling or heating the high voltage battery core by controlling an operation of the main valve, the water heating heater, and the indoor HVAC refrigerant line.
Abstract:
The present invention relates to a radiant heater for a vehicle, the radiant heater including: a base fabric; a heating member stacked on the base fabric; a fixing member fixing the heating member to the base fabric; and a laminated fabric stacked on an upper side of the fixing member and combined with the base fabric. Thus, the heater can be formed in a woven form and thus manufactured quickly and simply, and a heating temperature of the heater can be easily controlled according to a location by only controlling a resistance pattern, thereby provide a more uniform warmth to a passenger of the vehicle.
Abstract:
A moisture-electrolyzing apparatus for a lamp, may include a first electrode, connected to an electrode of a power source and exposed to an internal space of a lamp housing; a second electrode, connected to another electrode of the power source and exposed to the internal space of the lamp housing, with a gap formed between the first electrode and the second electrode; a dielectric, applied to a surface of either the first electrode or the second electrode, the surface facing a remaining one of the first electrode or the second electrode; and an electric discharge passage, formed between the first electrode and the second electrode, in which air in the lamp circulates and in which moisture in the air is electrolyzed by electric discharge occurring between the first electrode and the second electrode.
Abstract:
Disclosed is a case for electric devices having a moisture removing apparatus inside. The apparatus includes a first electrode exposed in an inside of a casing having an electronic circuit board therein, connected to one electrode of a power source, and coated with a dielectric material on a surface thereof. The apparatus includes a second electrode exposed in the inside of the casing having the electronic circuit board therein, connected to a remaining electrode of the power source, and spaced apart from the first electrode so as to define a space therebetween. The apparatus includes an electric discharge air path provided between the surface of the first electrode coated with the dielectric material and the second electrode, and in which moisture of air is decomposed by electric discharge occurring between the first and second electrodes while air inside the casing circulates in the electric discharge air path.
Abstract:
A device and a method for a controlling compressor of vehicles improves acceleration performance and fuel efficiency and maintains comfort of a cabin by decreasing an operation of the compressor when accelerating. The device may include a sensor module including a cabin temperature sensor, an outdoor temperature sensor, an evaporator temperature sensor detecting a temperature of a cooling medium in an evaporator, an engine speed sensor detecting rotation speed of an engine, and a throttle position sensor detecting a throttle opening, an air conditioning system including a condenser condensing and liquefying the cooling medium, an evaporator evaporating the liquefied cooling medium, the compressor compressing the cooling medium, a temperature control door controlling a temperature of an air flowed in a cabin, an intake door selectively flowing an inner air or an outer air in the cabin, and a blower blowing the air to the intake door, and a controller controlling an operation of the air conditioning system, wherein the controller decides a acceleration mode and an allowable temperature at each acceleration mode when an acceleration condition occurs, and decreases an operation of the compressor according to a difference between the evaporator temperature and the allowable temperature.