The present invention relates to the carriage and movement of a film lamina with relation to one or more stations in a direction parallel with a row of images on the film (hereinafter referred to as the `X` direction) and in a direction from row to row (hereinafter referred to as the `Y` direction).
In a microfiche camera where an uninterrupted flow of recordings on a film has to be made, it is necessary to move each microfiche film at high speeds. Conventional microfiche cameras tend to impose significant delays in moving the film along the direction of a row of images (X direction) and from row to row (Y direction).
It is therefore an object of the invention to provide mechanism which improves the speed at which films can be handled in a microfiche camera.
The present invention consists in a film carriage mechanism including a film carrier mounted for movement in an `X` direction and a `Y` direction in relation to one or more stations, the carrier including means for causing the `X` and `Y` direction movement, first platen means for holding a film lamina, second platen means for holding a film lamina, a main frame in which the first and second platen means are mounted for the X direction movement, the frame being mounted for the Y direction movement, wherein each platen means is provided with means for picking up, holding and releasing a film lamina.
Advantageously the means for picking up, holding and releasing a film lamina is a suction device.
Each platen means may be moved in the X direction by a helically grooved drum.
The film carrier is preferably mounted in a microfiche camera in which said stations include a film pick-up station, a plurality of filming stations, a titling station and a film release station.
The invention will now be described with reference to the accompanying drawings of embodiments of the invention in which:
FIG. 1 shows a plan view of a film carrier of part of the film carriage mechanism according to a first embodiment of the invention.
FIG. 2 is a diagram of a second embodiment of the invention showing a two X direction helix arrangement.
FIG. 3 is a diagram of relative film movement used in the first embodiment shown in FIG. 1.
FIG. 4 is a diagram of relative film movement used in a further embodiment of the invention.
In FIG. 1 there may be seen generally the film carrier which is formed from a main frame 1 mounted on guides 2 for `Y` direction movement and an inner frame 3 mounted on guides 4 for `X` direction movement. The main frame 1 and inner frame 3 are driven by positioning mechanisms referred to hereafter as `X` and `Y` activators. These activators may have helically grooved rollers or drums to ensure accurate location of the frames. The activators may also have other arrangements for location of the frames in a programmed location.
The inner frame 3 in turn carries a first platen 5 for holding a film lamina 5' and a second platen 6 for holding a second film lamina 6'. Each platen is also known as a split platen. Each platen can be locked to or released from the inner frame for independant `X` direction movment. Each platen is provided with a vacuum suction arrangement for picking up, holding and dropping the laminae.
The platens are arranged to move between three stations represented by the lines 8, 9 and 10, 8 and 9 representing the pick-up, filming and titling stations. The titling station 10 is also the release station. The double broken circle 11 represents the camera lens mount.
Platen 5 is shown in a position for the last image 12 of the top row to be taken whilst platen 6 has just engaged with a follow-up or new film lamina. At this stage both vacuum platens are locked to the inner frame 3.
At the pick-up station 8 there is provided a removable cassette (not shown) for holding new film laminae. After the last image 12 on lamina 5' has been taken, the main frame shifts in a Y+ direction which detaches new film lamina 6' from its cassette which lamina is then retained solely on platen 6. Inner frame 3 then moves in a X+ direction bringing the new lamina 6' into the filming station 9. The same movement of the inner frame 3 brings lamina 5' to titling station 10 where microfiche titling takes place. After titling the lamina 5' is released for developing.
During filming the images it is arranged the X and Y movement of the frames is at a minimum so that time lost in travel from one image position to another is at a minimum. In the case of lamina 5' the first image to be filmed is 13. The platen is then moved image by image to 14 then to 15 to 16, 17 (nearly obscured) then to an image obscured by frame past 18, 19, 20, 21 and finally 12, a total of 60 images being filmed in this standard.
The X and Y movement of the film relative to the filming station in the first embodiment is shown in more detail in FIG. 3. The first image is filmed at 13' and subsequent images are filmed towards 14', up to 15', back to 16' and so on upwards and to and fro until the film carrier has completed the movements required to record all the images on the first film lamina.
The second film lamina is then moved into the filming station and the carrier has located the first frame of the second lamina ready to record the first image in position 13" which due to the movement of the first lamina is in fact back in the filming station of the camera lens 11'.
It will be understood that the bottom right location 13' of the first image is equivalent to a top left frame on the developed film. It will also be realised that the minimum carriage movement is required in the described filming motion (i.e. no long returns to the next line have to be made) and this increases filming speeds. Also the follow-up laminae are arranged to be in the correct position for recording their first images, only a single movement being required from the previous to the follow-up lamina.
In order to control the various movements of the platens these can be locked and unlocked to the inner or main frame. In this way movement of the inner frame in an X direction may not cause movement to a platen unlocked from the inner frame but locked to the main frame. Thus the platens can be made to move independantly or in unison.
In a second embodiment shown diagrammatically in FIG. 2 the control of the two platens in the X direction is even further independantly controlled. Thus an inner frame is not used but two X direction activators are used instead of one. These activators are helically grooved drums 20 and 21 which control X direction movement of platens 22 and 23 respectively.
It will be seen in FIG. 2 that at A a first lamina is picked up at pick-up station 24 by platen 22 whilst platen 23 has no lamina.
At B the first lamina is moved on platen 22 in an X+ direction to filming station 25 and platen 23 is moved with no vacuum on the meet platen 22.
At this stage logic circuit of the mechanism ask if a next lamina is to be required and pretitling arrangements are made.
At C platen 25 has vacuum seal and holds the first lamina whilst platen 22 has no vacuum and releases the first lamina. Filming can continue or the first lamina can be moved to the titling station 26.
At D platen 23 can be seen finishing filming whilst platen 22 has just picked up a new (second) lamina.
At E platen 23 has moved the first lamina to the titling station 26 whilst the second lamina has been moved to the filming station 25.
The suction platens not shown in detail are arranged so that the platen suction surface has a number of holes arranged in groups or rows aligned in the Y direction. These rows are connected to several chambers so that when a lamina is to be picked up a centre row is first given suction. Thereafter successive outward rows are connected from the centre of the platen outwards in a X+ and Y- direction. In this way the lamina is sucked out of its cassette from its centre until finally the cassette releases its outer edges.
In certain cameras it is desirable to arrange that the laminae are presented to the camera in an alignment 90.degree. to the alignment shown in FIG. 1. In these cameras it is convenient to arrange for the film movement to be as shown in FIG. 4. In this arrangment the first image of the first is recorded in position 113 (the lens being shown diagrammatically by broken double circle 111). Subsequent images are then taken in a Y axis direction and so on so that the first image of the follow-up lamina is taken at position 113' which due to carriage movement is effectively back at filming station 111.