1. Field of the Invention
The present invention relates to a collapsible clothes hanger structure, and more particularly to a clothes hanger structure which enables to collapse or to extend automatically under preset conditions.
2. Description of the Prior Art
A conventional automatic clothes hanger comprises a main body having a platform extending outwardly for a motor and a control circuit to be secured and connected thereon. The platform is provided with a support frame and accessories. The support frame is provided with a micro switch and a sensor at respective ends to detect the weather and control the clothes hanger to extend or to collapse.
Another conventional automatic clothes hanger comprises a basic frame, a swivel frame, an adjusting frame and a fixture, and is incorporated with a sensor to extend or to collapse the clothes hanger. The swivel frame is linked to activate simultaneously to assist the clothes hanger to extend or to collapse.
The above-mentioned clothes hangers comprise a sensor to detect the weather, however, they are not defined with weather conditions, thus they can not work properly.
The present invention provides a collapsible clothes hanger structure to react when the real-time weather has changed, which comprises:
Preferably, said rail comprises contact points at respective ends to control activation of said motor when in touch with said hanging unit, said contact points being electrically connected to said control unit.
Preferably, said control unit further comprises a manual control key to control said motor.
Preferably, said timer is electrically connected with a time display panel.
Preferably, said control unit comprises a remote controller.
Preferably, said motor and said control unit are electrically connected to a battery.
Preferably, said battery is electrically connected to a solar energy board.
Preferably, said solar energy board comprises a receiving unit to collect signals from said light sensor, said water drop sensor, and said timer, said signals then being transmitted to said control unit to activate said motor accordingly.
Preferably, said hanging unit comprises an active hanger and a number of driven hangers, said active hanger being secured to said transmission belt, said driven hangers having holes for said transmission belt to insert and to extend there through, said active hanger and said driven hangers having slots for pulling straps to insert and to extend there through, a block being provided at a center portion of each said slot, each of said pulling straps having a securing end and a terminal end, said securing end and said terminal end being larger in size than each said slot.
Preferably, said hanging unit comprises an active hanger and a number of driven hangers, each of said active hanger and said driven hangers comprising a shaft, said shaft having a center portion meshing with a connecting section and two exposed ends, a pair of rollers being provided on said two exposed ends of said shaft, said rollers having recesses meshing with a pair of rail straps in said rail, said active hanger and said driven hangers having slots for pulling straps to insert and to extend there through.
Preferably, a locating rope is provided between said supporting legs and said tent.
It is the primary object of the present invention to provide a collapsible clothes hanger structure, which may be adjusted to control the clothes hanger automatically or manually.
It is another object of the present invention to provide a collapsible clothes hanger structure, which is activated when the light has changed.
It is still another object of the present invention to provide collapsible clothes hanger structure, which is activated when rain drop is detected.
It is still another object of the present invention to provide a collapsible clothes hanger structure, which is activated by the timer.
It is a further object of the present invention to provide a collapsible clothes hanger structure, which is activated manually.
It is a still further object of the present invention to provide a collapsible clothes hanger structure, which can be controlled remotely.
It is a still further object of the present invention to provide a collapsible clothes hanger structure, which provides a solar energy board that enables to transfer light into energy to save electric power, corresponding to the concept of environmental protection.
It is a still further object of the present invention to provide a collapsible clothes hanger structure, which provides a hanging unit that does not require any fastener, which is easy to install and to work precisely.
It is a still further object of the present invention to provide a collapsible clothes hanger structure, which provides a tent to protect the clothes from getting wet by rain or humid.
It is a still further object of the present invention to provide a collapsible clothes hanger structure, which provides a locating rope between the supporting legs and the tent so as to secure clothes on the hangers.
As shown in
The frame 1 comprises a pair of supporting legs 11 and a rail 12. The rail 12 is secured between the supporting legs 11. A tent 13 is provided on the frame 1 and covers a portion of the rail 12 to protect clothes from being wet by rain or dew. A locating rope 14 is provided between the supporting legs 11 and the tent 13, which protects the clothes from dangling around.
The transmission unit 2 comprises a transmission gear 21 meshing with a transmission belt 22. Both the transmission gear 21 and the transmission belt 22 are disposed in the rail 12 of the frame 1. By changing the direction of the transmission gear 21, the transmission belt 22 changes its moving direction.
The hanging unit 3, as shown in
The motor 4 is connected to the transmission gear 21 of the transmission unit 2 and outputs a power to link the hanging unit 3 to slide along with the transmission belt 22 through the transmission gear 21, as shown in
The control unit 5, as shown in
The control unit 5 further comprises a malfunction light A, a charging light B, and a battery weak signal light C, as shown in
The motor 4 and the control unit 5 are electrically connected to the battery 6, and the battery 6 is electrically connected to the solar energy board 7 which transforms the light into electric power to be saved in the battery 6.
The rail 12 is provided with a pair of contact points 121 at respective ends thereof. The contact points 121 are electrically connected to the control unit 5. The contact points 121 are designed for the hanging unit 3 to contact so as to control the motor 4.
When the light sensor 54 detects the light is weak, it will transmit a signal to the control unit 5. When the water drop sensor 55 detects water drops, it will transmit a signal to the control unit 5.
As shown in
The active hanger 3A and the driven hangers 3B do not need any fasteners to be mounted with the rollers 34 to slide along the rail 12. The recesses 35 of the rollers 34 are disposed on the rail straps 122 of the rail 12, allowing the rollers 34 to roll along without detaching from the shafts 32.
To expand the hanging unit 3 of the present invention, as shown in
To collapse the hanging unit 3 of the present invention, as shown in
The present invention is designed to operate either in automatic or in manual methods, as shown in
The present invention further comprises the battery 6 and the solar energy board 7, as shown in
To operate the present invention, as shown in
The direction of the solar energy board 7 may be changed to direct the sun shine, as shown in
The operation of the present invention can be categorized as follows:
1. timer mode: the time can be preset to extend or to collapse the hangers;
2. manual mode: the manual control key is pressed to extend or to collapse the hangers;
3. automatic mode: the automatic control key is pressed to activate the light sensor, the water drop sensor and the timer to control the hangers.
The present invention may further comprise a remote controller which can activate the control unit (5) remotely.
The control unit 5, the motor 4, the light sensor 54, the water drop sensor 55 and the timer 56 are operated by either wire (cable, network) or wireless (wireless network, Bluetooth, frequency modulation) transmission.