Heat sealer with platen surface temperature sensor and load sensor
First Claim
1. A heat sealer comprising:
- a press having a reciprocating, heated platen;
a shuttle having a base that reciprocates between a position aligned with said platen, whereby said press advances said heated platen to said base, and a position removed from alignment with said platen;
a die mounted on said base; and
a load sensor mounted on said shuttle whereby said sensor detects a force exerted by said heated platen on said base when said base is aligned with said heated platen, wherein said load sensor is permanently aligned with said heated platen such that when said base is aligned with said heated platen, said heated platen, said base and said load sensor are aligned.
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Accused Products
Abstract
A heat sealer having a heated platen, a cylinder for reciprocating the platen, a die positioned to be engaged by the platen and a shuttle supporting the die to move the die from a platen-engaging position to a non-engaging position, and a control for controlling the temperature of the platen and the force applied to the platen against the die by the cylinder. The invention also includes a temperature sensor for sensing the surface temperature of the platen and a load sensor for sensing the force applied by the platen to the die. In one embodiment, the temperature sensor is an infrared temperature sensor that reads the surface temperature of the platen and the load sensor is a load cell positioned beneath the die and supporting the die so that the load sensors can measure the direct force applied by the platen against the die. Also, in one embodiment, the infrared sensor is positioned beneath the die so that it can read the platen temperature when the die is displaced to the non-engaging position.
35 Citations
8 Claims
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1. A heat sealer comprising:
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a press having a reciprocating, heated platen; a shuttle having a base that reciprocates between a position aligned with said platen, whereby said press advances said heated platen to said base, and a position removed from alignment with said platen; a die mounted on said base; and a load sensor mounted on said shuttle whereby said sensor detects a force exerted by said heated platen on said base when said base is aligned with said heated platen, wherein said load sensor is permanently aligned with said heated platen such that when said base is aligned with said heated platen, said heated platen, said base and said load sensor are aligned. - View Dependent Claims (2, 3, 4, 5, 6)
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7. A heat sealer comprising:
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a press having a reciprocating, heated platen; a shuttle having a first base and a second base mounted on said shuttle, wherein said first and second bases alternatively reciprocate between a position aligned with said platen and a position removed from alignment with said platen; a die mounted on each of said bases; a load sensor, having at least one pair of load cells, mounted on said shuttle such that said bases are positioned between said heated platen and said sensor when said bases are aligned with said heated platen, whereby said sensor detects a force exerted by said heated platen on said bases when said bases are aligned with said heated platen; and a control connected to receive a signal from said load sensor corresponding to a force exerted by said heated platen on said bases and adjust said force to a predetermined value in response thereto.
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8. A heat sealer comprising:
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a press having a reciprocating, heated platen; a shuttle having a first base and a second base mounted on said shuttle, wherein said first and second bases alternatively reciprocate between a position aligned with said platen and a position removed from alignment with said platen; a die mounted on each of said bases; an infrared temperature sensor mounted on said shuttle such that said bases are positioned between said heated platen and said sensor when said bases are aligned with said heated platen, wherein said sensor detects a temperature of an exposed surface of said heated platen; a load sensor, having at least one pair of load cells, mounted on said shuttle such that said bases are positioned between said heated platen and said sensor when said bases are aligned with said heated platen, whereby said sensor detects a force exerted by said heated platen on said bases when said based are aligned with said heated platen; and a control connected to receive a signal from said infrared temperature sensor and said load sensor, said signal corresponding to a temperature of said exposed surface of said heated platen and to a force exerted by said heated platen on said bases, wherein said control adjusts said temperature and said force to predetermined values in response to said signal.
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Specification