Patent classifications
B65D81/2076
METHOD FOR CHARGING GAS INTO CASSETTE POD
A method for transporting a cassette pod for containing semiconductor wafers is provided. The method includes transporting a cassette pod configured to receive a semiconductor wafer with a transporting apparatus. The method further includes supplying a gas from a cylinder into a housing of the cassette pod. The cylinder is externally positioned on the housing. The method also includes detecting a gas pressure in the cylinder with a detection element. In addition, the method includes issuing a signal to the transporting apparatus when the gas pressure in the cylinder is lower than a predetermined limit.
HERMETICALLY SEALED PACKAGING FOR FRESH FOODSTUFFS
An atmosphere controlled foodstuff container includes a base tray and a cover. The cover and base tray are constructed of a substantially gas impermeable material. The cover and base tray are connectable and are hermetically sealed with a sealant or sealing material. The container includes at least one atmosphere control member, such as a membrane or micro-perforations, which controls the flow of gases into and out of the otherwise sealed interior of the container. The base tray may be opaque for use as a serving tray and the cover transparent to permit viewing of the product.
Substrate Storage Container
A substrate storage container comprises a container body capable of containing a plurality of substrates, and an air supply member capable of supplying gas from outside of the container body to an internal space, wherein for the substrate storage container the container body is formed in a front open box and the air supply member is attached to the bottom surface, and wherein a functional unit that changes the environment of the internal space to different states are connected with the air supply member so as to be able to be exchanged.
Lids for modified atmosphere packaging cartons
A modified atmosphere packaging (MAP) lid (100) is provided. The lid includes a base (102); a sachet receiving surface (106) having a plurality of holes (110); and a raised perimeter wall (108) enclosing and defining the sachet receiving surface, wherein the sachet receiving surface lies level with or above the base. Also provided is a MAP container (150) including a MAP lid described herein, a dry chemical sachet (170) for placement on the sachet receiving surface; an adhesive patch (180) for sealing onto the raised perimeter wall to retain the dry chemical sachet on the sachet receiving surface; and a MAP carton.
MOLD INHIBITING FOOD STORAGE CONTAINERS
Food storage containers including an enclosure, a door, an inert gas chamber, an inert gas, and an inert gas valve. The enclosure contains a food storage environment fluid. The enclosure defines a food storage chamber for a food item with an access opening. The enclosure and the door are complementarily configured to seal the food storage chamber from an external environment when the door is in the closed position. The inert gas chamber is in fluid communication with the food storage chamber. The inert gas valve is configured to selectively allow fluid communication between the inert gas chamber and the food storage chamber. The inert gas valve is disposed between the inert gas chamber and the food storage chamber. The food storage environment fluid is infused with the inert gas from the inert gas chamber at a selected composition when the door is in the closed position.
Metal child resistant container
A child resistant container can include a container body, a closed base, an open top, an exterior and a cap assembly configured to couple to the container body for closing the container. A cap assembly can include an inner cap configured to couple to a container body and an outer cap coupled to the inner cap. A first coupler can be coupled to the inner cap and a second coupler can be coupled to the outer cap and configured to optionally engage the first coupler. An outer cap can be configured to rotate relative to an inner cap when the outer cap is in one or more positions and to engage the inner cap when the outer cap is in one or more other positions. A child resistant container can be made from recyclable metal.
Metal Child Resistant Container
A metal child resistant container with a screw lid that comprises a main body, an inner cap that screws on to the main body forming an air tight seal, and an outer cap that is located over the inner cap. The outer cap prevents the user from directly interacting with the inner cap and requires the user to apply pressure to the outer cap. The inner cap has indentions that match with similar indentions stamped in or attached to the outer cap. When pressure is applied to the outer cap the inner cap and outer cap mover as one allowing the container to the open and closed. The container is further sealed by a foil seal and a desiccant material.
PACKAGING FOR ABRASIVE ARTICLES AND METHODS OF USING THE SAME
A packaging system for abrasive articles that includes a container portion sized to receive the abrasive articles. The system also includes a lid portion that removably couples to the container portion. The system also includes a rechargeable moisture control feature, housed within the packaging system. The rechargeable moisture control feature removes moisture from an atmosphere within the packaging system. The system also includes a moisture indicator that indicates whether moisture is present within the container portion.
ALLULOSE WITH IMPROVED STABILITY
The present invention relates to an allulose storage package for increasing storage stability of allulose syrup and a method for increasing the storage stability of allulose.
Courier Delivery Box
Present embodiments relate to a courier delivery box for transporting food, configured to be removably attached to a motorized and/or human-powered vehicle or bicycle, the courier delivery box comprising a housing, an interior for storing the food, and a door for providing access to the interior of the courier delivery box, wherein the courier delivery box further comprises one or more removably inserted shelfs, at least two shelf positioning structures for providing optional positions for the shelfs in the interior of the courier delivery box, such that the interior of the courier delivery box can be variably subdivided into two or more compartments by selectively inserting each of the one or more shelfs into the shelf positioning structures, heating means for heating at least one of the compartments, and one or more functional units arranged at a side of the courier delivery box, wherein the one or more functional units comprise an electronics unit 6 including power supply means.