1. Field of the Invention
The present invention relates to a float switch device, especially relates to a float switch device, which is actuated by a magnetic switch provided with a magnetic tongue.
2. The Prior Arts
A float switch device is usually used in a liquid storage tank to control the volume of the liquid in the tank. Since the specific weight of the entire float switch device is smaller than the specific weight of the liquid, the float switch device can float on the liquid. The interior components of the float switch device have different structure. However, they share the same principle, where a part of the interior components is actuated when the tilted angle of the float switch device is changed due to a change in the liquid level. The actuation of the interior components in the float switch device then turns an apparatus connected therewith “ON” or “OFF”.
Herein, a conventional float switch device is introduced.
The conventional float switch device has a drawback of short lifespan, due to the plastic material used in the rod 43 and the heavy weight of the ball 42. In addition, the degree of freedom of the ball 42 is rather high, so it is hard to control the float witch device to be “ON” or “OFF” precisely. Furthermore, the conventional float switch device can only be used to turn “ON” the switch device when the latter is in a floated condition. In a circumstance, where the apparatus connected needs to be turned “OFF” when the float switch device is in a floated condition, the structure of interior components of the float switch device must be redesigned, hence resulting in undesired expenses for the manufacturers.
The primary purpose of the present invention is to provide a stable float switch device to solve the abovementioned drawbacks of the conventional float switch device. In addition, the present invention utilizes a convenient design with contact points, which allows the float switch device to be applicable in more conditions.
The float switch device provided by the present invention is mainly actuated by the gravity and the magnets. The magnets disposed on a magnet tube attracts and changes the position of the interior contact point inside the magnetic tongue switch device, so the two metal tongues inside the magnetic tongue switch device can be electrically conducted to turn “ON” an external apparatus connected thereto. The position of the magnet tube described above will change according to the tilted angle of the float switch device, which is affected by the liquid level that the float switch device is in the floated state. In addition, the movement of the magnet tube is restricted by a first restriction portion and a second restriction portion, and the distance between the first and second restriction portion can be used to control the float switch to be “ON” or “OFF”. With the above described configuration, the drawbacks of the conventional switch device can be resolved.
The float switch device provided by the present invention includes: a tubular member, a magnet tube and a magnetic switch. The tubular member has a first restriction portion and a second restriction portion formed on the external surface thereof. The magnet tube is sleeved over the tubular member, and is movable between the first and second restriction portions. The magnetic switch includes at least two metal tongues, each having an interior contact point and an exterior contact point. The magnetic switch is placed inside the tubular member in such way that the exterior contact point is attracted by the magnet tube; also, the interior contact point of the metal tongue extends outward or is exposed outside the tubular member. Preferably, the first and second restriction portions are formed from magnetic materials.
The float switch device provided by the present invention is disposed inside a casing, and the exterior contact points thereof are electrically connected to an external apparatus. The types of apparatuses connected can be varied according to different applications of the present invention, which will be described in details later in the section of preferred embodiments.
Preferably, the metal tongues of the float switch device are a first metal tongue, a second metal tongue and a switching metal tongue. Each of the metal tongue has two opposite ends respectively defining the interior contact point and the exterior contact point, where the interior contact point of switching metal tongue is electrically in contact with the interior contact point of first metal tongue. When the magnet tube abuts the first restriction portion, the interior contact point of the switching metal tongue is then attracted to be electrically in contact with the interior contact point of second metal tongue.
The present invention can be used in a space or storage to control the volume of the liquid contained therein. The float switch device can float on the liquid, and as the level of the liquid changes, the structure of inner components of the float switch device can control the apparatus connected with the float switch device to be “ON” or “OFF”, thereby controlling the volume of the liquid.
The present invention will be apparent to those skilled in the art by reading the following detailed description of preferred embodiments thereof, with reference to the attached drawings.
The tubular member 1 is a hollowed tube and is made from stainless steel. An iron ring is sleeved onto the tubular member 1 to form a first restriction portion 11 with a distance from an end of the tubular member 1. After the magnet tube 2 is sleeved over the tubular member 1, an another iron ring is disposed on the tubular member 1 so as to form a second restriction portion 12 with a certain distance from the other end of the tubular member 1, as best shown in
The magnet tube 2 is formed by a hollowed metal cylinder and two tubular magnets 21. The material for the hollowed metal cylinder should have a larger specific weight, so that the cylinder is heavier in weight even though it is small in size. The inner diameter of the cylinder is slightly larger than the outer diameter of the tubular member 1 while the tubular magnets 21 are respectively fixed to two opposite ends of the cylinder, thereby forming step-shaped structures or two shoulders respectively at opposite ends of the cylinder. Herein, the tubular magnets 21 are fixed to the cylinder by means of adhesives or simply with a tight-fit between the outer peripheries of the tubular magnets 21 and the inner peripheries of the opposite ends of the cylinder.
Preferably, the magnetic switch 3 is a commonly seen switch with three contact points. The main body of the magnetic switch is a glass tube which contains non-active gas inside. A first metal tongue 31 and a second metal tongue 32 are disposed at an end of the glass tube while a switching metal tongue 33 is disposed at the other end of the glass tube. The first metal tongue 31 and the second metal tongue 32 are made from magnetic materials and are configured in a way that they are spaced apart from each other with a certain distance. Each of the metal tongues includes an interior contact point 311, 321 and 331, and an exterior contact point 312, 322 and 332. In the present invention, the interior contact point 311 of the first metal tongue 31 is in contact with the interior contact point 331 of the switching metal tongue 33. In addition, the interior contact points 311, 321 and 331 of each metal tongues can be electroplated with expensive metals such as platinum, gold, rhodium (Rd) and ruthenium (Ru) to increase the conductivity thereof
As shown in
As shown in
With different configurations between the external apparatus and the exterior contact points 312, 322 and 332 of the metal tongues, the present invention is applied in different conditions. Herein, two embodiments with two different configurations will be described.
As shown in
As shown in
From the above description, it is clearly seen that the application range of the float switch device of the present invention is broader than the conventional float switch device.
The float switch device according to the first embodiment as shown in
On the other hand, the float switch device according to the second embodiment as shown in
Noteworthy, the first and second restriction portions 11 and 12 are made from magnetic materials, so the tubular magnets 21 on the magnet tube 2 are attracted and thus fixed to the restriction portions 11 and 12 at both “ON” and “OFF” positions. In this way, the positioning of the magnet tube 2 can be more precise, thereby solving the problem of conventional float switch device, in which the conventional float switch device is harder to be turned “ON” or “OFF” precisely due to the high degree of freedom of the ball 42.
The first and second embodiments described above are for illustrative purpose as where the present invention can be utilized. The locations of application are not to be limited by the embodiments, as the present invention can be applied to any occasion where the liquid level varies. In addition, the relation between “ON” and “OFF” of the float switch device and the water level can be determined by the configuration of the cable as shown in
The preferred embodiments described above are disclosed for illustrative purpose but to limit the modifications and variations of the present invention. Thus, any modifications and variations made without departing from the spirit and scope of the invention should still be covered by the scope of this invention as disclosed in the accompanying claims.