Cryogenic Cylinder
20190167332 ยท 2019-06-06
Inventors
- Lewis Levine (Weston, MA, US)
- Kevin Schomacker (Maynard, MA, US)
- Walid Kayali (Allston, MA, US)
- Perry TOMASETTI (Pepperell, MA, US)
Cpc classification
F17C2270/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/0332
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/058
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2223/0161
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/0314
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/054
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/0326
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/057
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C13/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A cryogenic cylinder including authenticating features and an apparatus recognizing the features and facilitation the cylinder use. The authenticating features prevent use of an unauthorized cryogenic cylinders. The cylinder also includes a number of mechanical features preventing repeat filling of the cylinder by cryogenic fluid or reuse of the cylinder once empty.
Claims
1. An apparatus for aesthetic skin treatment configured to receive at least one cryogenic liquid storing cylinder for storing and dispensing a cryogenic liquid including: At least one cylinder authentication module providing information on at least one of the authenticity of the cryogenic liquid cylinder and cryogenic liquid filling the cylinder; and at least one controller configured to communicate with at least one identification feature of the cryogenic liquid cylinder and content of the cylinder.
2. The apparatus according to claim 1 wherein the at least one controller is further configured to keep record of at least one of amount of cryogenic liquid remaining in the cylinder and amount of cryogenic liquid dispensed from the cylinder.
3. The apparatus according to claim 1 wherein the cylinder authentication module is at least one of a group of modules consisting of a mechanical module, electronic module, readable information module and a combination of the above.
4. The apparatus according to claim 1 wherein the cylinder authentication module includes a mechanical cylinder authentication module having specially keyed mating pins made in the cryogenic cylinder and in an apparatus receiving the cylinder.
5. The apparatus according to claim 1 wherein the cylinder authentication module includes an electronic cylinder authentication module that is at least one of a group of modules consisting of RFID tags, customized integrated circuits, physical and chemical analyses of the cryogenic liquid and a combination of the above.
6. The apparatus according to claim 1 wherein the cylinder authentication module is at least one of a group of modules configured to read at least one of a group of information tags consisting of a UPC code, QR code, color code, encrypted code and a combination of the above.
7. The apparatus according to claim 1 wherein the controller configured is configured to communicate with the cylinder authentication module and facilitate cylinder use.
8. The apparatus according to claim 1 wherein the controller is also configured to provide information indicating at least one of authenticity and suitability of the cylinder and cryogenic liquid filling the cylinder.
9. The apparatus according to claim 1 wherein the controller is also configured to provide information indicating amount of at least one of authenticity and suitability of the cylinder and cryogenic liquid filling the cylinder.
10. The apparatus according to claim 1 further comprising a cryogenic liquid cylinder cradle configured to receive and hold the cylinder in course of apparatus operation and further configured to destroy a fitting valve supporting filling of the cylinder by the cryogenic liquid.
11. The apparatus according to claim 1 wherein the cylinder authentication module conveys the information to a skin treatment apparatus in encrypted form and wherein the skin treatment apparatus decodes the information so that validity of the information conveyed to the skin treatment apparatus could be determined.
12. The apparatus according to claim 1 wherein the controller is configured to disable at least one of the cryogenic cylinder authentication modules when cryogenic cylinder is depleted.
13. The apparatus according to claim 1 wherein the apparatus further includes a communication mechanism between the apparatus and a remote control computer or control center.
14. The apparatus according to claim 13 wherein the communication mechanism communicates at least with the remote control computer to convey a message that a non-authenticated cylinder inserted in the apparatus has been detected.
Description
LIST OF FIGURES AND THEIR BRIEF DESCRIPTION
[0012]
[0013]
[0014]
[0015]
[0016]
DESCRIPTION
[0017]
[0018] The cryogenic liquid in the container is under pressure. In the present disclosure, the pressure relief valve 116 maintains a safe container or cylinder operating pressure within the container 100.
[0019] A fitting 120 configured to facilitate connection of cryogenic liquid cylinder 100 to a skin treatment apparatus 400 (
[0020] Cylinder 100 and fitting valve 124 could include one or more authentication features. The authenticating features could be mechanical features such as pins 128 (
[0021] In use cylinder 100 is inserted into a cradle 200 (
[0022] The electronic cylinder authentication module could include RFID tags, RF transponder and/or receiver tags, customized integrated circuits, MEMs configured to perform physical and chemical analyses of the cryogenic liquid that is under pressure, and a mix of the above. The electronic cylinder authentication modules of cradle 200 could communicate with corresponding authentication modules installed in the skin treatment apparatus (not shown). The electronic cylinder authentication modules of cradle 200 could communicate with more than one authenticating feature.
[0023]
[0024] In the present disclosure, the pressure relief valve 116 maintains a safe cryogenic liquid operating pressure within the container 300.
[0025] Fitting 320 includes a single use self-locking fitting valve 324 that upon filling of the cylinder cavity 328 by the cryogenic liquid is locked and does not support additional cylinder refill. In case of removal of partially or completely depleted cryogenic cylinder from the skin treatment apparatus, fitting valve 324 is a single use valve and does not support second or additional mounting of the cylinder on the skin treatment apparatus.
[0026] In a further example, upon depletion of the cryogenic liquid in cylinder 300 and/or in course of the container from the skin treatment apparatus removal, single use fitting valve 324 is either destroyed or changes its orientation to a position that would prevent cylinder 300 refill by a non-certified cylinder or cryogenic liquid supplier. In one example, fitting valve 324 is pushed into the internal cavity of container 300. As it will be explained below, a certified single use fitting valve 324 could include different authenticating items. The skin treatment apparatus could become not operational when a not certified one-way valve is detected.
[0027] Cylinder 300 and single use fitting valve 324 could include one or more authentication features. The authenticating features could be mechanical features such as pins 128 (
[0028] Valve 324 could include one or more authentication features. The authenticating features could be mechanical features, electronic circuits communicating with the skin treatment apparatus, information read by a scanner, and a combination of the above. For example, the authenticating features could be such information tags consisting of a UPC code, QR code, color code, encrypted code and a combination of the above.
[0029] Single use fitting valve 324 of cryogenic cylinder or liquid storing container 300 could be configured to facilitate a pass of the cryogenic liquid into the liquid containing cavity 328 of cylinder 300 and delivery of the cryogenic liquid being under pressure from the cylinder. Fitting valve 324 could be also configured to support a least one angular orientation different from a previous angular orientation and a number of different heights with respect to mounting plate 204 or edge 308 of cryogenic cylinder 300.
[0030] Cylinder 300 and Valve 324 could include one or more authentication features. The authenticating features could be mechanical features, electronic circuits communicating with the skin treatment apparatus, information read by a scanner, and a combination of the above. For example, the authenticating features could be such information tags consisting of a UPC code, QR code, color code, encrypted code and a combination of the above.
[0031]
[0032] The information provided by the authentication module could be encrypted and the controller 412 could include processes and algorithms supporting decoding of the encrypted information. Processor circuit 416 of skin treatment apparatus 400 decodes the information so that validity of the information conveyed to the skin treatment apparatus could be determined.
[0033] Controller 412 can also include algorithms for disabling the authentication modules once the cylinder 300 (100) is depleted of the skin cooling material. Disabling mechanisms can include writing encrypted information onto electronic circuits that notifies controller 412 that the cylinder 300 (100) is no longer authentic or simply erasing the authenticating information such that the cylinder 300 (100) is no longer authenticated. Disabling algorithms can be initiated when the algorithm that determine the remaining volume of skin cooling material falls below a threshold volume, when the pressure in the cylinder 300 (100) falls below a threshold pressure, or when the cylinder 300 (100) is removed from the cradle 200. An example could include release of a detent held in position via the mechanical pins 128 that signals controller 412 to start the disabling algorithm.
[0034] Apparatus 400 also includes a communication mechanism 428 between apparatus 400, cryogenic cylinder or container 300 (100) and a remote control computer or control center. If and when insertion of non-authenticated cylinder is detected, communication mechanism 428 could convey this to the remote control computer.
[0035] The cryogenic cylinder or container authentication module 208 (212-216) of skin treatment apparatus 400 could be any one of a group of modules consisting of a mechanical authentication module, electronic authentication module, readable information authentication module and a combination of the above. The mechanical cylinder authentication module could include specially keyed mating shapes made in the cradle of the cryogenic cylinder. The shapes could be such as oval shapes, triangular shape, shapes including special cutouts and other shapes.
[0036] The electronic cylinder authentication module could include RFID tags, RF transponder and/or receiver tags, customized integrated circuits, MEMs configured to perform physical and chemical analyses of the cryogenic liquid and a mix of the above. Corresponding authentication modules communicating with the authentication modules of the cryogenic cylinder could be installed in apparatus 400.
[0037] The cylinder authentication module installed in cradle 200 could include a unit or device configured to read such information tags as UPC code, QR code, color code, encrypted code and a combination of the above.
[0038] Apparatus 400 supports on-demand dispensing of the cryogenic liquid contained under pressure in cylinder or container 100 or 300. Generally, each on-demand delivery of the cryogenic liquid could be caused by a push of a button located on the applicator (not shown) or pushing a foot pedal (not shown). The capacity of cryogenic cylinder is known and each on-demand delivery of the cryogenic liquid delivers a known amount of the cryogen liquid. Controller 412 could be also configured to keep record of amount of cryogenic liquid remaining in the cylinder. Controller 412 could also be configured to keep record of the amount of cryogenic liquid dispensed from the cylinder 100 (300).
[0039] Cradle 200 of apparatus 400 (
[0040] In another example, the single use fitting valve 324 (128) can be rotated by an angle such as 90 degrees when the empty cylinder 300 (100) is removed from apparatus 400. In this position, the single use fitting valve 324 (128) is held in place only by the pressure within cylinder 300 (100). Thereby once cylinder 300 (100) is empty, there is insufficient pressure in cylinder 300 (100) to hold fitting valve 324 (128) in place causing it to fall into cylinder 300 (100). As a result fitting valve 324 (128) is no longer effective and canister 300 (100) cannot be refilled. In this example, a partially empty cylinder 300 provided there is sufficient pressure is still enabled when removed from cradle 200.
[0041] In another example, the single use fitting valve 324 (128) can be rotated by an angle such as 90 degrees when the empty cylinder 300 (100) is removed from apparatus 400. In this position, the single use fitting valve 324 (128) is held in place only by the pressure within cylinder 300 (100). Thereby once cylinder 300 (100) is empty, there is insufficient pressure in cylinder 300 (100) to hold fitting valve 324 (128) in place when connecting to the cryogen fill station filling hose causing it to fall into cylinder 300 (100). As a result fitting valve 324 (128) is no longer effective and canister 300 (100) cannot be refilled.
[0042]
[0043] Processor circuit 416 could also be configured to record in a non-volatile memory circuit 424 of apparatus for aesthetic skin treatment 400 (
[0044] The operations and algorithms described herein can be implemented as executable code within the micro-controller or controller 412 having processor circuit 416 as described, or stored on a standalone computer or machine readable non-transitory tangible storage medium that are completed based on execution of the code by a processor circuit implemented using one or more integrated circuits. Example implementations of the disclosed circuits include hardware logic that is implemented in a logic array such as a programmable logic array (PLA), a field programmable gate array (FPGA), or by mask programming of integrated circuits such as an application-specific integrated circuit (ASIC). Any of these circuits also can be implemented using a software-based executable resource that is executed by a corresponding internal processor circuit such as a micro-processor circuit (not shown) and implemented using one or more integrated circuits, where execution of executable code stored in an internal memory circuit causes the integrated circuit(s) implementing the processor circuit to store application state variables in processor memory, creating an executable application resource (e.g., an application instance) that performs the operations of the circuit as described herein. Hence, use of the term circuit in this specification refers to both a hardware-based circuit implemented using one or more integrated circuits and that includes logic for performing the described operations, or a software-based circuit that includes a processor circuit (implemented using one or more integrated circuits), the processor circuit including a reserved portion of processor memory for storage of application state data and application variables that are modified by execution of the executable code by a processor circuit. The memory circuit 424 can be implemented, for example, using a non-volatile memory such as a programmable read only memory (PROM) or an EPROM, and/or a volatile memory such as a DRAM, etc.
[0045] Use of specially formulated or certified for skin treatment materials and in particular cryogenic liquids could avoid any or all of the following: patient irritation, allergy, combustion of impurities during the skin treatment procedure, and ineffective skin cooling due to restricted skin cooling material flow from impurities clogging the skin cooling material delivery system which may include any or all of the fluid lines, material release valve, and spray jet.