1. Field of the Invention
The present invention relates to a cooler examination apparatus and more specifically, to a leakage detection device for detecting a leakage of the coolant circulation loop of an air conditioner.
2. Description of the Related Art
An air conditioner uses a coolant to provide cool air, transferring the produced heat to means that dissipates the heat. In an air conditioner, the coolant is circulating through a circulation loop. In case of a leakage of the coolant circulation loop, the cooling performance of the air conditioner is lowered. In this case, the leakage point on the coolant circulation loop must be quickly detected and sealed, avoiding wasting of the coolant. A coolant leakage detection method is known by means of drawing the coolant away from the coolant circulation loop to keep the coolant circulation loop in a vacuum status and then measuring the negative pressure status of the coolant circulation loop after a predetermined time interval. In case a drop of the negative pressure is measured, a leakage status is determined. This method can simply detect a leakage of the coolant circulation loop without allocating the leakage point. Further, drawing the coolant out of the coolant circulation loop requires much time and labor. There is known another coolant leakage detection method for detecting a leakage on a coolant circulation loop. According to this method, a fluorescent substance is added to the coolant. Under the radiation of a fluorescent lamp, any leakage on the coolant circulation loop can be seen clearly. However, this method requires a fluorescent lamp, increasing the detection cost. Further, the fluorescent lamp must be connected to an external power source, causing inconvenience to the user.
Therefore, it is desirable to provide a leakage detection device that eliminates the aforesaid problems.
The present invention has been accomplished under the circumstances in view. It is one object of the present invention to provide a leakage detection device, which is practical for detecting a leakage of the coolant circulation loop of an air conditioner and its location. It is another object of the present invention to provide a leakage detection device for detecting a leakage of a coolant circulation loop of an air conditioner, which saves much detection time and labor.
To achieve these and other objects of the present invention, the leakage detection device comprises a housing, which comprises a front hole in a front end thereof for guiding in air and an exhaust hole in a rear end thereof for exhaust of air, a sensor, which is mounted inside the housing and adapted for detecting the presence of a coolant in air and providing an output signal subject to the detection result, a fan assembly, which is mounted inside the housing in proximity to the back side of the base of the sensor remote from the front hole of the housing for drawing outside air through the sensor, and a cable electrically connectable to a digital coolant pressure gauge for transmitting the output signal of the sensor to the digital coolant pressure gauge and transmitting power supply from the digital coolant pressure gauge to the fan assembly and the sensor.
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The housing 1 has a front hole 11 formed in one end, namely, the front end, an exhaust hole 12 disposed near the other end, namely, the rear end, and an inside flange 111 backwardly extended from the inside wall around the front hole 11.
The sensor 2 is mounted inside the housing 1, comprising a base 21 stopped at the rear side of the inside flange 111 of the housing 1, and an air inlet 22 disposed in communication with the front hole 11.
The fan assembly 3 is mounted inside the housing 1, comprising a motor 31, a blade 32 coupled to and rotatable by the motor 31, and a cap 33 surrounding the blade 32. The cap 33 has a suction hole 331 formed in the front side and disposed in proximity to the back side of the base 21 of the sensor 2.
The transmission cable 4 is electrically connected with its one end to the sensor 2 and the fan assembly 3, having an electrical connector 41 provided at its opposite end.
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Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.