HOLDING DEVICE FOR A CAMERA
20220229350 · 2022-07-21
Assignee
Inventors
- Andreas Lukas (München, DE)
- MATTHIAS Müller (München, DE)
- JAN RIEPERT (München, DE)
- TOJAN BIEBER (München, DE)
Cpc classification
F16M11/2014
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M2200/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M2200/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M2200/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16M11/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A holding and moving device includes a support foot, a bearing arm secured pivotably onto the support foot to form a useful load side section and a weight-side section, a first pivot arm connected to the useful load side section of the bearing arm for attachment of a useful load and/or holding device for a useful load, and a second pivot arm connected to the weight-side section of the bearing arm for attachment of a balance weight. The bearing arm and the first and second pivot arms are connected to one another such that the alignment of the first and second pivot arms are essentially parallel to one another in each position. The second pivot arm and/or the weight-side section are designed such that the weight of the first pivot arm and/or of the useful load side section is balanced in each position of the holding and moving device.
Claims
1.-21. (canceled)
22. A holding and moving device for a useful load, comprising: a support foot; a bearing arm secured pivotably onto the support foot at a first fastening point such as to define a useful load side section and a weight-side section; a first pivot arm connected on a useful load side to the useful load side section of the bearing arm at a first connecting point for attachment of the useful load and/or a holding device for the useful load at a second fastening point; and a second pivot arm connected on a weight side to the weight-side section of the bearing arm at a second connecting point for attachment of a balance weight at an attachment point, wherein the bearing arm, the first pivot arm and the second pivot arm are connected to one another such that an orientation of the first and second pivot arms are essentially parallel to one another in each position, and wherein a centre of gravity of the weight side, the centre of gravity of the useful load side and the first fastening point of the bearing arm on the support foot lie essentially on a straight line.
23. The holding and moving device of claim 22, wherein a ratio of a distance from the first connecting point to the second fastening point to a distance from the first fastening point to the first connecting point is essentially equal to a ratio of a distance of the second connecting point to the centre of gravity and/or the attachment point to a distance of the first fastening point to the second connecting point.
24. The holding and moving device of claim 22, wherein the second pivot arm and/or the weight-side section of the bearing arm are designed such that a weight of the first pivot arm and/or the useful load side section of the bearing arm is balanced in each position of the holding and moving device.
25. The holding and moving device of claim 22, wherein a distance of the first connecting point to the second fastening point and a distance of the first fastening point to the first connecting point is essentially of equal length or a distance of the first connecting point to the second fastening point is greater or smaller than a distance of the first fastening point to the first connecting point.
26. The holding and moving device of claim 22, wherein a distance of the second connecting point to the centre of gravity and/or attachment point of the balance weight on the second pivot arm and a distance of the first fastening point to the second connecting point is essentially of equal length or a distance of the second connecting point to the centre of gravity and/or attachment point of the balance weight on the second pivot arm is greater or smaller than a distance of the first fastening point to the second connecting point.
27. The holding and moving device of claim 22, wherein an overall centre of gravity of the weight side, an overall centre of gravity of the useful load side and the first fastening point are essentially in a straight line, in particular in each position of the holding and movement device.
28. The holding and moving device of claim 22, wherein the centre of gravity or overall centre of gravity of the weight side comprises an inherent weight of the second pivot arm, an inherent weight of the weight-side section of the bearing arm and/or the balance weight, and/or wherein the centre of gravity or overall centre of gravity of the useful load side comprises an inherent weight of the first pivot arm, an inherent weight of the useful load side section of the bearing arm, an inherent weight of the holding device for the useful load and/or an inherent weight of the useful load.
29. The holding and moving device of claim 22, wherein the second pivot arm includes a holding device for the balance weight for the useful load and/or a holding device for the balance weight for the first pivot arm and/or the useful load side section of the bearing arm.
30. The holding and moving device of claim 22, wherein the second pivot arm includes the balance weight which is predetermined as a function of the useful load.
31. The holding and moving device of claim 30, wherein the balance weight is securable in a variable position along the second pivot arm.
32. The holding and moving device of claim 22, wherein the second pivot arm includes the balance weight which is predetermined as a function of an inherent weight of the first pivot arm and/or of the useful load side section of the bearing arm.
33. The holding and moving device of claim 22, wherein the support foot is secured on a first longitudinal side of the bearing arm, with the first and second pivot arms being secured on opposite longitudinal sides of the bearing arm.
34. The holding and moving device of claim 22, wherein the bearing arm includes a plurality, in particular two, elements, with the weight-side section of the bearing arm being formed relative to the support foot on an opposite side as the useful load side section of the bearing arm.
35. The holding and moving device of claim 29, wherein at least one the of the holding device for the useful load and the holding device for the balance weight has an orientation which is controlled to balance a movement of the first and second pivot arms.
36. The holding and moving device of claim 22, wherein a centre of gravity and/or the second fastening point, a centre of gravity and/or the attachment point and the first fastening point lie essentially on a straight line, and/or wherein a centre of gravity of the first pivot arm, a centre of gravity of the second pivot arm and the first fastening point lie essentially on a straight line.
37. The holding and moving device of claim 29, wherein at least one of the holding device for the useful load and the holding device for the balance weight is designed as a lateral, vertical and/or horizontal extension arm.
38. The holding and moving device of claim 22, wherein the first and second pivot arms and/or the bearing arm are connected by a force-transmitting mechanism for movement relative to another, the force-transmitting mechanism including a chain hoist, belt, wire rope, electric motor and/or hydraulic rotary drive.
39. The holding and moving device of claim 22, wherein the useful load is a camera, such as a photo and/or video camera.
40. A holding and moving device for a useful load (36), comprising: a support foot; a bearing arm secured pivotably onto the support foot at a first fastening point such as to define a useful load side section and a weight-side section; a first pivot arm connected on a useful load side to the useful load side section of the bearing arm at a first connecting point for attachment of the useful load and/or a holding device for the useful load at a second fastening point; and a second pivot arm connected on a weight side to the weight-side section of the bearing arm at a second connecting point for attachment of a balance weight at an attachment point, wherein the bearing arm, the first pivot arm and the second pivot arm are connected to one another such that an orientation of the first and second pivot arms are essentially parallel to one another in each position, and wherein a ratio of a distance from the first connecting point to the second fastening point to a distance from the first fastening point to the first connecting point is essentially equal to a ratio of a distance of the second connecting point to the centre of gravity and/or the attachment point to a distance of the first fastening point to the second connecting point.
41. The holding and moving device of claim 40, wherein a centre of gravity of the weight side, the centre of gravity of the useful load side and the first fastening point of the bearing arm on the support foot lie essentially on a straight line.
42. The holding and moving device of claim 40, wherein the second pivot arm and/or the weight-side section of the bearing arm are designed such that a weight of the first pivot arm and/or the useful load side section of the bearing arm is balanced in each position of the holding and moving device.
43. A holding and moving device for a useful load, comprising: a support foot; a bearing arm secured pivotably onto the support foot at a first fastening point such as to define a useful load side section and a weight-side section; a first pivot arm connected on a useful load side to the useful load side section of the bearing arm at a first connecting point for attachment of the useful load and/or a holding device for the useful load at a second fastening point; and a second pivot arm connected on a weight side to the weight-side section of the bearing arm at a second connecting point for attachment of a balance weight at an attachment point, wherein the bearing arm, the first pivot arm and the second pivot arm are connected to one another such that an orientation of the first and second pivot arms are essentially parallel to one another in each position, and wherein the second pivot arm and/or the weight-side section of the bearing arm are designed such that a weight of the first pivot arm and/or the useful load side section of the bearing arm is balanced in each position of the holding and moving device.
44. The holding and moving device of claim 43, wherein a ratio of a distance from the first connecting point to the second fastening point to a distance from the first fastening point to the first connecting point is essentially equal to a ratio of a distance of the second connecting point to the centre of gravity and/or the attachment point to a distance of the first fastening point to the second connecting point.
45. The holding and moving device of claim 43, wherein a centre of gravity of the weight side, the centre of gravity of the useful load side and the first fastening point of the bearing arm on the support foot lie essentially on a straight line.
Description
[0023] In the following, exemplary embodiments of the invention are described in more detail with reference to the figures, which show schematically and by way of example:
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030] All geometric references, orientations, distances, lengths and/or positions can be seen or defined in a two-dimensional view of the holding and moving device. In
[0031]
[0032] The support foot 12 is depicted here as rod-like. Preferably, the support foot 12 is mobile, i.e. it can be raised and/or adjusted so that the position of the holding and moving device 10 can be changed. The support foot 12 can have rollers for this purpose. The standing surface 14 is shown schematically in the figures as a cone or cylinder. Generally however also 3 or more supporting legs can be used. However also a fixed support foot can be used in the present invention, which is screwed for example to the base via a flange. At its upper end the support foot 12 is connected at a connecting point V1 to the bearing arm 20. The connecting point of the bearing arm 20 with the support foot 12 is preferably mounted rotatably, so that the bearing arm 20 can rotate about the support foot 12 in a plane which is perpendicular to the longitudinal axis of the support foot 12, and/or can rotate in a Wane which is parallel to the longitudinal axis of the support foot 12 and/or in which the longitudinal axis of the support foot 12 lies.
[0033] The connecting point V1 of the bearing arm 20 with the support foot 12 divides the bearing arm 20 into two regions: a camera-side region K and a weight-side region a The bearing arm 20 can be designed in one piece (i.e. made as only one piece) and/or can be arranged only on one side of the support foot 12. In the shown embodiment, the bearing arm 20 consists of multiple parts, in particular two parts. In region K and in region G respectively a separate section/element 24, 26 of the bearing arm 20 is provided which are connected to one another by a crossbar 22 (see
[0034] The pivot arms 30, 40 are secured at both ends of the bearing arm 20. The pivot arms 30, 40 are each attached at one of their ends rotatably to the respective end of the bearing arm 20. The first pivot arm 30 on the camera side has at its other end a camera holding device 32 at a suspension point 31 or V2, by means of which a camera 36 is attached to the holding and moving device 10. The camera holding device 32 preferably extends laterally at the end region of the pivot arm 30, as shown in
[0035] The second pivot arm 40 is arranged on the weight side. As shown in
[0036]
[0037] The embodiment shown in
[0038] With the embodiments according to
[0039]
[0040] The calculation of the balance weights and their positioning in the embodiments according to
[0041] The definition of the individual parameters and variables for
a inherent weight of the useful load side/camera-side bearing arm section 24,
b inherent weight of the useful load side/camera-side first pivot arm 30, possibly with useful load holding device/camera holding device 32,
c inherent weight of the camera 36,
d inherent weight of weight-side bearing arm section 26,
e inherent weight of the weight-side second pivot arm 40,
f inherent weight of the balance weight 42 for balancing the useful load/camera 36,
g inherent weight of the balance weight 44 for compensating the inherent loads of the movable arms, in particular the useful load side/camera-side first pivot arm 30 and/or the useful load side/camera-side bearing arm section 24,
h inherent weight of the balance weight 28 for compensating the bearing arm, in particular the useful load side/camera-side bearing arm section 24,
i inherent weight of the balance weight 44 for compensating the inherent loads of the movable arms, in particular of the useful load side/camera-side first pivot arm 30 of the useful load side/camera-side bearing arm section 24, the useful load holding device/camera holding device 32 and/or the useful load/camera 36,
[0042] p distance of the weight-side articulation point to the centre of gravity and/or fastening point/attachment point of the balance weight (g), and/or distance of the fastening point/connecting point of the weight-side second pivot arm 40 on the bearing arm 20 to the centre of gravity and/or fastening point/attachment point of the balance weight (g) for balancing the inherent loads of the movable arms, in particular of the useful load side/camera-side first pivot arm 30 and/or of the useful load side/camera-side bearing arm-section 24,
m distance of the weight-side articulation point to the centre of gravity and/or fastening point/attachment point of the balance weight (i), and/or distance of the fastening point/connecting point of the weight-side second pivot arm 40 on the bearing arm 20 to the centre of gravity and/or fastening point/attachment point of the balance weight (i) for balancing the inherent loads of the movable arms, in particular the useful load side/camera-side first pivot arm 30 of the useful load side/camera bearing arm section 24, the useful load holding device/camera holding device 32 and/or the useful load/camera 36,
o distance of the weight-side articulation point to the centre of gravity, such as the centre of mass, of the weight-side second pivot arm 40, and/or distance of the fastening point/connecting point of the weight-side second pivot arm 40 on the bearing arm 20 to the centre of gravity, such as the centre of mass, of the weight-side second pivot arm 40,
s distance of the connecting point V1, such as fastening point V1 of the bearing arm 20, to the centre of gravity, such as centre of mass, of the weight-side bearing arm section 26,
t distance of the connecting point V1, such as fastening point V1 of the bearing arm 20, to the weight-side articulation point and/or distance of the connecting point V1, such as fastening point V1 of the bearing arm 20, to the fastening point/connecting point of the weight-side second pivot arm 40 on the bearing arm 20,
r distance of the weight-side articulation point to the centre of gravity and/or fastening point/attachment point of the balance weights (f), and/or distance of the fastening point/connecting point of the weight-side second pivot arm 40 on the bearing arm 20 to the centre of gravity and/or fastening point/attachment point of the balance weight (f) for balancing the useful load/camera 36,
u distance of the connecting point V1, such as fastening point V1 of the bearing arm 20, to the useful load side/camera-side articulation point, and/or distance of the connecting point V1, such as fastening point VI of the bearing arm 20, to the fastening point/connecting point of the useful load side first pivot arm 30 on the bearing arm 20,
l distance of the useful load side/camera-side articulation point to the holding point V2, and/or distance of the fastening point/connecting point of the useful load side first pivot arms 30 on the bearing arm 20 to the centre of gravity and/or fastening point of the useful load/camera 36 and/or useful load holding device/camera holding device 32,
v distance of the connecting point V1, such as fastening point V1 of the bearing arm 20, to the centre of gravity, such as centre of mass, of the useful load side/camera-side bearing arm section 24,
w distance of the useful load side/camera-side articulation point to the centre of gravity, such as resulting centre of mass, of the useful load side/camera-side first pivot arm 30 possibly with useful load holding device/camera holding device 32, and/or distance of the fastening point/connecting point of the useful load side/camera-side first pivot arm 30 on the bearing arm 20 to the centre of gravity, such as centre of mass, of the useful load side/camera-side first pivot arm 30 possibly with useful load holding device/camera holding device 32,
x distance of the connecting point V1, such as fastening point V1 of the bearing arm 20, to the centre of gravity and/or fastening point/attachment point of the balance weight (h) and/or distance of the connecting point V1, such as fastening point V1 of the bearing arm 20, to the centre of gravity and/or fastening point/attachment point of the balance weight (h) for balancing the bearing arm 20, in particular the useful load side/camera-side bearing arm section 24.
[0043] The configuration of the individual elements of the different embodiments can then be calculated using the following formulae:
[0044] For the embodiment in
provided that:
[0045] For the embodiment in
provided that:
predetermined for x:
predetermined for h:
[0046] For the embodiment in
[0047] These formulae can be used to calculate and construct the dynamic weight balancing for the holding and moving device 10.
[0048]
[0049]
[0050]
[0051]
[0052]
The counterweight 42 does not necessarily need to be attached displaced in the opposite horizontal direction. The counterweight 42 and/or its centre of gravity can alternatively, for example as in the aforementioned embodiments, be arranged directly on the second pivot arm 40. To compensate for the torque the suspension point V2 caused by the horizontally displaced useful load 36, a parallel mechanism can be provided.
[0053] The parallel mechanism can be arranged on the first pivot arm 30 and/or on the useful load side section 24 of the bearing arm 20. The parallel mechanism can have for example the parallel mechanism described for
[0054] The variants according to
[0055] “Can” refers in particular to optional features of the invention. Accordingly, there are also further embodiments and/or exemplary embodiments of the invention which additionally or alternatively have the respective feature or the respective features.
[0056] From the combinations of features disclosed herein, individual features can also be picked out and used in combination with other features to delimit the subject-matter of the claims, by ending any structural and/or functional connection that may exist between the features.
REFERENCE SIGNS
[0057] 10 holding and moving device
[0058] 12 support foot
[0059] 14 standing surface
[0060] 20 bearing arm
[0061] 22 crossbar
[0062] 23 wheels
[0063] 24 camera-side element/section
[0064] 25 chain hoist/belt
[0065] 26 weight-side element/section
[0066] 27 wheels
[0067] 28 balance weight
[0068] 29 chain hoist/belt
[0069] 30 first pivot arm
[0070] 31 suspension point
[0071] 32 camera holding device
[0072] 36 camera
[0073] 40 second pivot arm
[0074] 42 balance weight (camera)
[0075] 44 balance weight
[0076] 44′ balance weight
[0077] 46 section of the parallelogram mechanism
[0078] 48 part of the parallelogram mechanism
[0079] G weight-side region
[0080] K camera-side region
[0081] S1a weight-side centre of gravity
[0082] S1b weight-side centre of gravity
[0083] S1c weight-side centre of gravity
[0084] S2a camera-side centre of gravity
[0085] S2b camera-side centre of gravity
[0086] S2c camera-side centre of gravity
[0087] V1 connecting point
[0088] V2 holding point
[0089] V3 holding point
[0090] F.sub.S force/inherent weight of the parallelogram rod in inherent centre of gravity
[0091] F.sub.1 force/weight component of the parallelogram rod
[0092] F.sub.2 force/weight component of the parallelogram rod
[0093] A.sub.a off-axiality of the centre of gravity of the useful load side bearing arm section
[0094] A.sub.b off-axiality of the centre of gravity of the first pivot arm
[0095] A.sub.d off-axiality of the centre of gravity of the weight-side bearing arm section
[0096] A.sub.e off-axiality of the centre of gravity of the second pivot arm
[0097] A.sub.g off-axiality of the centre of gravity of the balance weight