B08B1/143

DISINFECTING-WIPES PACKAGE
20240076588 · 2024-03-07 ·

A package has a container formed with a dispensing opening and a supply of nonwoven disinfecting wipes in the container. The wipes are made of fibers containing lignin and impregnated with a disinfectant solution having at least two liquid components. A lignin content of the nonwoven wipes is between 0.02 g/m.sup.2 and 1 g/m.sup.2 and/or the disinfectant solution contains a dye. Thus if at least a part of one of the wipes is overexposed to air, it will change color as oxidized lignin and/or dye collects in it.

BURSTABLE SPORICIDAL CLEANING WIPE SYSTEM FOR C. DIFFICILE SPORES
20240076582 · 2024-03-07 ·

Sanitizing and disinfecting compositions with relatively low levels of free available chlorine, with good effectiveness against microbes, included in a burstable pouch of a system also including a plurality of initially undosed (e.g., dry) wipes in a resealable package thereof. The composition may include less than 0.5% by weight hypochlorite or other free available chlorine level, with a pH less than 12. The composition is long term stable in the pouch, but upon bursting of the pouch and dosing of the wipes, exhibits only short-term stability. Because of the low level of hypochlorite, the dosed wipes exhibit improved surface compatibility and negligible bleach odor, while providing at least a 3-log reduction in C. diff population within 10 minutes.

Sensor mounting apparatus

A sensor (100) mounting apparatus is provided, including a housing (10), a guiding component (20) provided on the housing (10), a first cleaning member (30) slidably arranged on the guiding component (20), and a first driving element (40). The housing (10) has an accommodating cavity (11), the first driving element (40) is configured to drive the first cleaning member (30) to slide along the guiding component (20), and the first cleaning member (30) includes a second driving element (31) and a cleaning element (32) in transmission connection with the second driving element (31). The second driving element (31) is configured to drive the cleaning element (32) to swing back and forth around a direction perpendicular to a light-transmitting surface (12).

Coating device and wiping method

A coating device includes a head, a wiping mechanism, an arm, and a controller. The head includes a nozzle surface for discharging a coating material. The wiping mechanism wipes the nozzle surface. The arm holds the head. The controller controls movement of the head via the arm. The controller relatively moves the head with respect to the wiping mechanism to wipe the nozzle surface.

Helmet cleaning, sanitation, and dispensing system
11911528 · 2024-02-27 ·

A helmet rental system keeping the helmets in individual boxes that have a self-cleaning system built into the system to make the helmets safe for reuse. The full surface of the helmet is to be exposed to heat, possible steam, cleaner, one or more rotating brush(es) and/or UV light to clean the surface fully. The helmet holder allows the heat, steam, cleaner, brushes, and light to easily hit the surface. The cleaning system is based on heat and then cool off the box with AC and/or vent system before allowing the helmet to be rented again after each return. Heat comes from vents under the helmet holding system, holding it in place and/or from all around the helmet. Boxes are modular so one could simply remove a few screws to add or remove rows or boxes to the system to expand or reduce the amount of available helmets and configuration.

System comprising a portable switching device for use with a portable electronic device

A lens and/or a view screen of an electronic device having at least one case can be cleaned by wiping the view screen with a cleaning component wherein the cleaning component is configured to selectively couple to the at least one case or some other substrate using a magnetic attractive force. The cleaning devices may have secondary applications such as securing fly fishing lures, activating or deactivating a device having a magnetic switch, or preventing sunglasses from sinking. They may also be manufactured without a cleaning component for use with the secondary applications.

Disinfecting glove system
11904063 · 2024-02-20 ·

A disinfecting glove includes: a glove body that can be made of nitril rubber; a disinfecting pad that includes a pad body with a disinfecting agent applied and optionally an adhesive layer, a scrubbing portion, a cleaning portion, and dusting portions, such that the disinfecting pad can be detachably or permanently positioned on a palmar side of the glove body, such that the disinfecting glove can be used to clean and disinfect a surface. Also disclosed is a disinfecting glove system including a pair of glove assemblies, each including a glove container and a disinfecting glove; and a disinfecting system including a plurality of pairs of disinfecting gloves; and a plurality of disinfecting shoe covers, each including a shove cover body and a disinfecting pad.

SAMPLE-RECEIVING DEVICE
20240050000 · 2024-02-15 ·

A sample receiving device may have a first part and a second part, the first part may have at least two rod-shaped sample receiving units which are connected to one another via a bendable connection. The second part may have a locking device such that the bendable connection is bent by the shape of the locking device and the ends of the at least two sample receiving units can be guided toward each other so that the sides of the at least two sample receiving devices facing in the direction of a sample are arranged directly next to one another, are locked in this position by the locking device and a single sample can be received in the at least two sample receiving units or with the at least two sample receiving units.

Fan Blade Cleaning Device
20240052855 · 2024-02-15 ·

The present invention relates to a novel fan blade cleaning device. The device is a no mess, no ladder cleaning device that easily and safely cleans ceiling fan blades and traps dust in one motion. The device comprises a blade component that encloses a ceiling fan blade and a finger duster component secured to the opening of the blade component for dusting. The blade component and the finger duster component are then both secured to a telescoping pole component which can be extended to various heights.

Reprocessing a single-use medical device

The present invention provides a method for reprocessing single-use medical devices. The method can include removing a coating from a single-use medical device, validating the removal of the coating, cleaning the single-use medical device, and applying a new coating to the single-use medical device.