The present invention relates to a control mechanism for controlling the slats of cordless blinds up and down.
A conventional blind generally includes a head which is fixed to the wall and a control mechanism is received in the head. A top rail is connected to the head and a plurality of slats are connected between the top rail and the bottom rail. Some of the conventional blinds are equipped with a lift cord which hangs on the head and the user can pulls the lift cord to move the slats upward or downward. However, the hanging lift cord has a potential risk for the children. Some of the conventional blinds do not need the lift cord and includes a control mechanism and a transmission unit which is connected with a plurality of cords and a transmission cable. The control mechanism provides torque to control the operation of the cords and transmission cable to move the slats up and down. The conventional cordless blind cannot tilt the slats.
The present invention intends to provide a control mechanism for cordless blinds and the control mechanism controls the slats upward and downward movement and also controls the tilt angle of the slats.
The present invention relates to a cordless blind which comprises a top rail and a transmission unit, a scrolling unit and a tilt unit are respectively received in the space defined in the head. The transmission unit includes a transmission cable extending therefrom which is connected with a scrolling rod. The scrolling unit includes two scrolling cables which have respective one of two ends thereof wrapped to two ends of the rod, and the other end of each scrolling cables extends through the top rail and the parallel slats and is connected to a bottom rail. A tilt unit includes a tilt member and respective one of two ends of two tilt cables is connected to two ends of the tilt member, the other end of each tilt cable extends through the top rail and is connected to the parallel slats. The tilt unit further includes a tilt wand which is able to rotate the tilt member to move the tilt cables moved upward and downward so as to tilt the slats.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
The control mechanism 10 includes a transmission unit 30, a scrolling unit 40 and a tilt unit 50. The transmission unit 30 is received in the space 21 and has a transmission cable 31 extending therefrom. One end of the transmission cable 31 is wrapped to an end of a scrolling rod 41 to form a first wrapping portion 31a.
The scrolling unit 40 is received in the space 21 and has two scrolling cables 42, 43 which have respective one of two ends thereof wrapped to two ends of the rod 41 to form the second and third wrapping portions 42a and 43a. The other end of each scrolling cables 42/43 extends through the top rail 20 and the parallel slats 11 and is connected to a bottom rail 12. The scrolling unit 40 includes two supports 44, 45 fixedly connected to eh top rail 20 by screws 49 so as to support the scrolling rod 41. Two pulleys 46, 47 are connected to the two supports 44, 45 and the scrolling cables 42, 43 reeve through the two pulleys 46, 47 and then are wrapped to the scrolling rod 41 to form the second and third wrapping portions 42a, 43a.
The tilt unit 50 is received in the space 21 and has a tilt member 51, wherein respective one of two ends of two tilt cables 52, 53 are connected to two ends of the tilt member 51, and the other end of each tilt cable 52/53 extend through the top rail 20 and are connected to the parallel slats 11. The tilt unit 50 further includes the two positioning members 55, 56 received in the space 20 and two spinning members 57, 58 are engaged with the positioning members 55, 56 respectively. Each of the two positioning members 55, 56 has a holes 22/23 through which the scrolling cable 42/43 and the tilt cable 52/53 extend. The rollers 551, 561 are located in the holes 22, 23 so that the scrolling cables 42, 43 pass around the rollers 551, 561 at substantially right angle. Each of the two spinning members 57, 58 has an engaging port 571/581 so that the tilt cables 52, 53 are engaged with the engaging ports 571, 581.
As shown in
As shown in
The second and third wrapping portions 42a, 43a form a torque balance with the first wrapping portion 3 la so as to keep the slats 11 at their position as shown in
As shown in
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
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| Number | Date | Country | |
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| 20080295977 A1 | Dec 2008 | US |