1. Field of the Invention
The invention concerns a franking machine of the type having a printing device to print on a flat item (for example a mail piece or a franking tape) with a predetermined franking color. Such franking machine is used in connection with peripheral and other mail processing apparatuses in a franking system that is purchased, or rented wholly or in part, by a customer. The invention also concerns a method for servicing such a franking machine.
2. Description of the Prior Art
The color of the imprint produced by a franking machine is predetermined in a nation-specific manner by respective national postal authorities. Franking machines of various types are known in which a modification is made only if a mail piece is to be sent from one country to another country in which a different color of imprint is mandated. For example, when franking machines have been leased in the one country and are replaced by other franking machines in that country, the franking machines that are no longer leased can be retrofitted, shipped to another country and offered for sale there. In the case of currently available franking systems from Francotyp Postalia GmbH and other companies, a retrofitting of the franking color is possible only after opening the security housing. The parts and/or assemblies contaminated with ink can be cleaned or exchanged after opening the security housing.
High retrofitting and servicing costs are especially disadvantageous in a lease transaction. Moreover, there is no simple servicing of the franking machines.
It has been proposed to allow an operator to implement an exchange of an assembly at an apparatus without having to arrange for, and be charged by, a service technician for this task. For this purpose, a locking device for a tray into which a pluggable assembly is inserted is known from German Utility Patent DE 202010015352 U1. The tray is accessible only when the apparatus is unpowered. A power-free contacting of the assembly is then possible. By contrast, an additional access to a low power connector is only accessible when the first cited access is locked. The operator can advantageously implement an exchange of an assembly after the power cable has been pulled out of the low power connector.
A device to lower, position, and raise contact pressure elements of a printer apparatus is known from the German Utility Patent DE 202010015351 U1. A box-shaped module is described therein that is equipped with a feed table that has at its top side an opening for the contact pressure elements of a contact pressure device, and the contact pressure elements are arranged to be removable to facilitate their servicing. In an operating position, the box-shaped module is arranged below the printing device of the franking machine and can be removed from this position for the purpose of servicing. A mechanical connection element and an ink reservoir are arranged at the back side of the box-shaped module. As soon as an internal lock is released, the box-shaped unit slides forward like a drawer on two guide rails and can be completely removed. After concluding the servicing, it can be brought completely back into the operating position by means of the two guide rails and be used further. For example, the box-shaped module can be removed to correct a jam. However, after a jam it has been shown in practice that the servicing of the contact pressure elements of the box-shaped module and a cleaning of light sensors of the photoelectric barriers of the franking machine takes place much more often than a servicing of the ink reservoir. Moreover, the ink reservoir is contaminated by an ink cloud that permeates the franking machine through all openings that are not completely sealed during the operation of the printing device. Naturally, a cleaning of the surface of the lower housing part of the franking machine that is contaminated by an ink cloud is time-consuming. Such a franking machine thus cannot be resold in another country without further measures.
An object of the present invention is to remedy the disadvantages of the known devices. A structural design of the ink-contaminated assemblies and their arrangement in the franking machine should allow access to these assemblies and their exchange without opening the security housing. The servicing of the franking machines should additionally be simplified.
Assuming that a security housing encloses the ink printing device and its control unit, and that an opening of the security housing is necessary exclusively when an access to security-relevant modules should be enabled, a secure region is differentiated from a plurality of non-secure regions: all assemblies that can be contaminated with ink are arranged in the non-secure regions of the franking machine. One of the non-secure regions of the franking machine is that region in which the box-shaped module known from DE 202010015351 U1 is brought into the operating position. The front side of the lower housing shell of the franking machine is set back relative to the front side of the upper housing shell and the front side of the lower housing shell whose bases are designed accordingly, such that all assemblies that can be contaminated with ink are not situated in non-secure regions. The box-shaped module is a first unit that can be removed and exchanged. However, no ink reservoir has now been molded on the back side of the box-shaped module. According to the invention, an ink capture container corresponding to the ink reservoir is modularly arranged within the franking machine at a position situated between the cleaning and sealing station and the base plate of the lower housing part. This position is accessible via a shaft-shaped opening in the base of the lower housing shell of the franking machine. The shaft-shaped opening has at least one guide rail and facilitates the installation of the ink capture container. At least one service module is associated with an inkjet print head. The latter can be an integrated component of an ink cartridge. A cleaning and sealing station is formed by two removable and exchangeable service modules, with an inkjet print head of the print carriage being associated with each of the service modules. The shaft opening is designed so that it can be sealed by a cover. Ink particles of the ink cloud become deposited within the ink capture container of the franking machine. The ink capture container is pressed against the two service modules when the cover of the shaft-shaped opening is closed. An unwanted contamination of one of the visible surfaces of the franking machine is therefore avoided.
Opening of the cover in the base of the lower housing shell thus enables an access to an additional non-secure region and an exchange of assemblies without opening the security housing. Access to exchange an ink receptacle is possible after the ink capture container has been removed first, and then the two service modules of the cleaning and sealing station, with the ink receptacle arranged at the print carriage. For a servicing, for example a retrofitting of the franking color, a removal of the ink cartridge and a closing of the cartridge flap initially take place in the operating mode. The franking machine is subsequently deactivated and the connection to mains power is interrupted by removing the plug connector of the power cable from the low power connection, and access to the latter is sealed by a slider. By turning a tool, for example a screwdriver, preferably a multifunction stylus equipped with a screwdriver bit, rotation of the shaft inside the franking machine can be produced even without an electric actuator, such that the print carriage moves until it arrives at the sealing position for ink cartridges in which a removal of the box-shaped module is enabled. Implementation of servicing of ink-contaminated assemblies that are arranged in the box-shaped module, and those that are arranged in the base of the lower housing shell of the franking machine, subsequently takes place.
When the franking machine is not connected to mains power, manual displacement of the print carriage can move it into a position in which the cartridge flap opens. For this purpose, the franking machine is equipped with a hole in the security housing into which the multifunction stylus is introduced and turned. The ink cartridges can thus be exchanged at arbitrary points in time, even when no removal of the ink cartridges by the customer has previously taken place. The cartridge flap is subsequently closed again.
The print carriage is mounted so as to be mechanically movable within the franking machine on a slide rail to direct the print carriage along a designed path. The print carriage can likewise be moved in the opposite direction by an adjustment by means of the multifunction stylus, such that the print carriage arrives in the sealing position for ink cartridges. This allows the removal of the box-shaped module from the franking machine for the purpose of cleaning the sensors and transport elements of the franking machine as well as for the exchange of the contact pressure elements that are arranged in the box-shaped module so as to be exchangeable. In the event of a more serious contamination, the entire box-shaped module can be exchanged. After removal of the box-shaped module, the franking machine can be rotated so that the base of the lower housing shell faces upwardly. The cover can now be uninstalled from the base of the lower housing shell in order to enable access via the shaft-shaped opening to the additional non-secure region of the franking machine. After removing the ink capture container, the service modules, and an ink receptacle that includes a wiping lip cleaning sponge, all assemblies that are required to retrofit the franking color can be reinstalled in the reverse order. The print carriage has an ink receptacle cavity so that a new, clean ink receptacle can be installed in the ink receptacle cavity. The service modules and the ink capture container are subsequently renewed. The franking machine can be activated again after sealing the shaft-shaped opening with the cover and establishing a power connection. The print carriage can be moved with the electric actuator. This enables the cartridge flap to be opened. The ink cartridges with the new franking color are now to be used in the franking machine, and the retrofitting of the franking machine is ended.
Alternatively, a hex head or another shape can be used.
A perspective view of the franking machine from the upper front right according to
The guide grooves arise from the perspective presentation of the uninstalled ink capture container 15 that is shown in
Using the perspective presentation of the shaft-shaped opening shown in
A perspective view of the two uninstalled service modules is shown in
The perspective view of the ink receptacle 17 is shown in
A perspective view of a print carriage 14 at a side frame wall 44 is shown from the rear upper right in
Although modifications and changes may be suggested by those skilled in the art, it is the intention of the inventor to embody within the patent warranted hereon all changes and modifications as reasonably and properly come within the scope of his contribution to the art.
Number | Date | Country | Kind |
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20 2012 005 904 | Jun 2012 | DE | national |
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