The present invention broadly pertains to a method and apparatus for preventing initiation and termination of current flow through an electrical circuit during proscribed times. More particularly, the invention pertains to preventing actions by a person using an electrical appliance (e.g., a refrigerator or freezer) during predetermined time periods (such as religious holidays) from changing the state of current flow through that appliance.
The preferred embodiment of the invention as described and disclosed herein is intended for use by observant Jews who are not permitted, for example, to directly or indirectly cause changes in electric current flow during the Sabbath and specified holidays. It will be understood, however, that the principles of the invention apply to any situation in which it is required that activity by a person or persons must be prevented from directly or indirectly causing current flow change.
In U.S. Pat. No. 9,024,545 (Bloch et al) there is disclosed a system for automatically preventing the manual actuation of an electrical switch in an electrical circuit from causing a change in current flow through that circuit during Sabbath and holiday times. The disclosure in the Bloch et al patent is incorporated herein by reference in its entirety. The present invention incorporates some of the principles and features of the inventions described in the Bloch et al patent. Specifically, Bloch et al disclose apparatus and methods that function to utilize date, time and geographic location data combined with electronic and/or mechanical devices to enable a control system to operate apparatus in accordance with Orthodox Jewish law, in particular by utilizing religious reference times that are calculated from the positional relationship of the sun and moon to the apparatus's specific geographic location. For example, although Boston, Mass. and Grand Rapids, Mich. are in the same eastern U.S. time zone, because of the east-west distance between them they experience sundown at different times. The stored data is thus specific to the location of the system so that sundown (and other such times of religious observance significance) is accurately established for that location. A timer system accesses data from a Jewish calendar to determine Gregorian calendar dates and times of specified Jewish events (e.g., Sabbath, holidays, prayer times, etc.), which data may be stored in the timer system or retrieved as needed from a remote location. The timer system similarly accesses data representing the time of year, time of day and the geographic location of the electrical circuit, which data may be internally stored or remotely retrieved. From this data the system establishes a normal operating mode in which an on/off switch is permitted to effect current changes in the circuit, and a holiday (including Sabbath) operating mode in which the state of circuit current flow existing at the time of holiday mode initiation is maintained for the entire holiday/Sabbath, irrespective of manual actuation of the on/off switch. The data for determining the various event dates and times may be stored in the timer system along with data representing the geographic location of the user's system. Geographic location data may be entered by the system user or determined by access to a Global Positioning System (GPS). From the location data the requisite times of day (e.g., sunrise, sunset) for effecting mode operations may be accessed from a lookup table stored in the timer system or may be computed pursuant to established algorithms.
When the electrical appliance to be controlled is a refrigerator, freezer, or other appliance in which current changes must occur in order to maintain the appliance functional, the prevention of manually initiated current change during proscribed times presents a somewhat different issue. Specifically, proper refrigerator operation requires the compressor motor to be turned on and off at different times to maintain the temperature of the contents of the refrigerator within the prescribed temperature ranges necessary to prevent the contained food from spoiling. This on/off operation is typically controlled as a function of the temperature sensed inside the food storage compartment. When a refrigerator door is opened, the inrush of warm air from the ambient environment changes the temperature inside the unit and thereby affects the timing of the on/off operation of the compressor motor and its use of electric current. For observant Jews the change of current flow resulting from the door opening, even if the actual current flow change is delayed until the sensed interior temperature rises sufficiently to a threshold temperature after the door is closed, would be a violation of Jewish law. It is an object of the invention to provide a method and apparatus that prevents such violation.
The present invention provides a system whereby Orthodox and other observant Jews can conveniently use a refrigerator or similar appliance on the Sabbath and other holidays without violating Jewish law. In accordance with the invention, the Holiday/Sabbath Mode and Normal Mode are established in the same manner as described in the aforementioned Bloch et al patent. However, for the present invention, in the Holiday/Sabbath Mode, instead of prohibiting all current change, the system establishes a repetitive on-off cycle based on optimizing the effectiveness of refrigerator operation. More specifically, the controller of the invention is inserted in the a.c. power line for a refrigerator to selectively interrupt voltage application/current flow to the refrigerator in a Sabbath/Holiday Mode. In that mode the system controls refrigerator operation with repetitive time cycles having alternating “on” and “off” portions that are displayed to the user by, for example, different color indicator lights, only one of which may be actuated at any time. The cycle portions determine when the refrigerator door may properly be opened and when it should be closed without causing current flow change. These cycles, and their duty cycles, exist irrespective of any action by the user. It is up to the user to follow the dictates of the indicator lights; if he/she does not do so properly, a religious law violation might be committed, but it has no effect on system operation.
Other aspects and advantages of the present invention will become apparent to those skilled in the art on reviewing the drawings referenced below and reading the following detailed description.
The above mentioned and other features of this invention, and the manner of attaining them, will become more apparent and the invention itself will be better understood by reference to the following description of embodiments of the invention taken in conjunction with the accompanying drawings, wherein like components are designated by like reference numerals.
Referring initially to
In accordance with the present invention, a Holiday/Sabbath Mode and a Normal Mode are established in the controller in the same manner as described in the aforementioned Bloch et al patent. However, for purposes of the present invention, in the Holiday/Sabbath Mode, instead of preventing any current change in a circuit, controller 10 establishes a repetitive on-off cycle based on optimizing the effectiveness of refrigerator operation. Specifically, during the “on” cycle portion the refrigerator operates in its conventional manner whereby its compressor operation times are under thermostatic control and dependent on the temperature inside the refrigerator, just as the refrigerator would operate in the Normal Mode. During the “off” portion of the cycle all current flow to the refrigerator and its components is inhibited, irrespective of any condition such as opening the door, temperature change inside the refrigerator, etc. In the disclosed embodiment, the cycle period (i.e., the total time for completing one “on” cycle portion plus one “off” cycle portion) and duty cycle (i.e., the percentage of “on” time within a cycle period) remain constant. As an example, consider a fifteen minute cycle period or duration in which the “on” portion of the cycle (when current is flowing) may be 8.5 minutes and the “off” portion (when current flow is inhibited) may be 6.5 minutes (i.e., a duty cycle of 6.5/15, or 56.7%). During the “off” portion of the cycle the user may safely open the refrigerator door without violating Jewish law since any resulting change of temperature will not affect when current is once again supplied to the compressor motor and other components. In other words, the connection permitting current flow will be restored at the start of the “on” portion of the cycle irrespective of whether or not, and for how long, the door may have been opened during the “off” portion of the cycle. During the “on” cycle portion the user is instructed by indicators 15 to not open the refrigerator door. During the “off” portion of the cycle the user is warned at a predetermined time (e.g., thirty seconds, sixty seconds, etc.) prior to the start of the “on” cycle portion that the door, if open, needs to be closed because of the impending “on” cycle portion. Indicators 15, typically red and green LED lamps, are provided to inform the user when the “off” and “on” portions, respectively, of the cycle are in effect and, therefore, when the door may and may not be opened. The green lamp when lit indicates it is safe to open the door (i.e., during the “off” cycle portion); the red lamp when lit indicates the door should not be opened (i.e., during the “on” cycle portion). In the disclosed embodiment, the green and/or red lamps are caused to flash at the ends of their cycle portions to warn the user of impending cycle portion changes. Alternatively, impending changes from one cycle portion to another may be indicated by actuating a third lamp, for example an amber lamp. In either case, the user is warned that an open door should be closed within a specific time (e.g., thirty or sixty seconds) because of an impending cycle portion change.
The cycle period and duty cycle may be determined in advance by the manufacturer of the control unit based on observation of existing operating standards of different model refrigerators. The period and duty cycle may also be adjustable by the user based on user experience, whereby the initial pre-setting may be changed to accommodate experiential data with a view toward optimizing food safety and preservation. Two, three or more different alternatively selective cycles (i.e., cycles with different periods and duty cycles) may be made available to the user, with either or both of the cycle period and duty cycle being manually adjustable. The user may also change these parameters based on personal preferences and situations, such as desired food temperatures, amount of food in the refrigerator, etc. Such changes would of course be made by the user during the Normal Mode (i.e., non-Holiday/Sabbath times).
In general, the cycle periods and duty cycles are chosen with conservative food-safe considerations in mind. Further, although the description above contemplates repetitively constant cycle periods and duty cycles, it is within the scope of the invention to permit automatic or scheduled variations of those parameters as a function of time of day, volume of contents sensed inside the refrigerator, and other parameters as appropriate, as long as the variation is not effected as a result of opening the refrigerator door or other manually initiated action during the holiday/Sabbath mode.
As described, the invention protects against the possibility of user action activating or de-activating electric current during the Sabbath and holidays by completely disconnecting the refrigerator from the electricity at regular intervals throughout those days. The on/off cycles maintain the food inside the refrigerator at proper temperatures while also allowing the user refrigerator access time.
Example: Assume the aforementioned holiday mode cycle with a period of fifteen minutes and a duty cycle of 56.7% (i.e., 8.5 minutes “on” portion, 6.5 minutes “off” portion). The refrigerator will run as normal for 8.5 minutes of each cycle to keep the food cool under thermostat control, and will then shut down entirely for 6.5 minutes, giving the user time to access the refrigerator contents. The cycle repeats continuously every fifteen minutes throughout the holiday/Sabbath time period. For the convenience of the user, the “off” portion may begin, and the user will have access, at known specific times, such as the start of each quarter hour.
To summarize, during the holiday/Sabbath mode, during the “off” portion of each cycle when power to the refrigerator is turned off, the green lamp on the display is steadily illuminated, indicating that the refrigerator may be used without affecting any electrical circuits inside. When power to the refrigerator is restored, the red lamp is steadily illuminated, indicating that the restricted access time is in effect. As noted above, the lamps are illuminated in a periodically flashing manner prior to a cycle portion change to warn the user that the cycle portion will change within the next thirty or sixty seconds.
Example: When the green light is steadily illuminated, indicating that the refrigerator is powered off, the red lamp may begin flashing sixty seconds before the refrigerator turns on, warning the user that only a short amount of access time is left for the current cycle. Thirty seconds before the “on” cycle portion is to begin the lamp may start flashing at a faster rate, and at ten seconds even faster, indicating an urgency in the need to quickly close the refrigerator door.
The operation described above is effected by the software graphically illustrated in the flow chart in
The Relay Circuit of
In controller operation as represented in the flow chart in
As noted above, in order to maintain food safety, appropriate cycle period lengths and duty cycle percentages are selected. This ensures convenient access by the user to the refrigerator during the Sabbath or holiday, while also assuring that the temperature in the food storage areas remain below 40° F. per USDA and FDA recommendations.
In order to determine which selectable cycle period and duty cycle are best for a particular model of refrigerator, the user may test the refrigerator with different cycle times, preferably for a minimum of 24 hours, at times well before the Sabbath or holiday.
In the preferred embodiment the system will not operate in the Sabbath/Holiday Mode unless and until the time, date, location, and cycle times have been entered. In such case the refrigerator remains powered as normal without the indicator actuations.
The controller 10 of the present invention may be provided as original equipment with a refrigerator or installed as an aftermarket unit. When used as an aftermarket unit, the controller is installed as described above in connection with
When the controller starts up for the first time, the indicator lights and text on its LCD display will all flash on and off. This flashing warns the user that the device needs to be setup. From top to bottom, the time, date, location, and cycle preset number are displayed on a screen. The flashing text indicates which information needs to be set.
If the system loses power for an extended period such as a several hours or days, a battery backup will automatically reset the correct information when the power comes back on. If the power is off for more than, for example, 72 hours, the time and date may need to be entered again, but all other information will be saved.
To set the time and geographic zone at which the controller is located, the user is instructed to follow the following sequence of steps in setting up the controller 10:
Press the SET button once to power up the screen and once more to enter the main menu.
Press SET again to enter the Time menu.
The hour will be highlighted; press the up/down buttons to select the hour and press the SET button to confirm the setting and highlight the minutes.
Use the arrows to scroll to the correct minute; and press SET.
The screen will now display the time zones.
Use the arrows to scroll to your applicable time zone and press SET.
After the time is set press the up arrow to bring up the Date menu.
Press SET again to set the date.
Press the up/down arrows to select the year and press the SET button to confirm the selection and move on to the next item.
Repeat the process for the month and day.
After the date is set press the up arrow to show the Location menu.
Use the up/down arrows to select State and press SET to confirm the selection.
Use the up/down arrows to select City and press SET to confirm the selection
In order to select cycle times, the user chooses from the modes in Table I mode that works best with his/her refrigerator. Typically, each preset mode would be tried during a week for a minimum of 24 hours to see which works best.
In order to accommodate persons starting the Sabbath/holiday early, the system may be set to automatically start the Sabbath/Holiday Mode 1½ hours (or some other time) before sundown or other start of the Sabbath/holiday.
The invention as described herein provides a system whereby observant Jews can conveniently use a refrigerator or similar appliance without violating Jewish law. In a Sabbath/Holiday Mode the system controls refrigerator operation with repetitive time cycles having alternating “on” and “off” portions that are displayed to the user, preferably by means of different color indicator lights. The cycles exist irrespective of anything done by the user and determine when the refrigerator door may properly be opened and when it should be closed. If the user does not follow the dictates of the indicator lights a violation of religious law might be committed, but it has no effect on system operation.
The cycle duration and duty cycle are determined in advance, and two, three or more different alternative sets of times may be provided as options and can be manually selected or adjusted to individually customize the schedule.
Although the preferred embodiment as disclosed above does not provide for adjusting the cycle period (i.e., length) and duty cycle percentages based on sensed temperature changes, or volume of food in the refrigerator, it is within the scope of the invention to provide for this capability.
It will be appreciated that the controller has use for applications other than controlling a refrigerator or freezer, for example with HVAC systems used to control the temperature in a closed environment. If a door to that environment is opened, outside air enters the environment and affects the temperature sensed therein which, in turn, changes the operating state of the HVAC system and the current flow therethrough. Establishing the operation control cycles as described herein will permit indicators to inform residents when it is safe to open the door to the house or other environment without violating religious laws regarding change of electrical circuit operation.
The foregoing descriptions of specific embodiments of the smart timer of the present invention have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the invention and method of use to the precise forms disclosed. Obviously many modifications and variations are possible in light of the above teachings. The embodiments were chosen and described in order to best explain the principles of the invention and its practical application, and to thereby enable others skilled in the art to best utilize the invention and various embodiments with various modifications as are suited to the particular use contemplated. It is understood that various omissions or substitutions of equivalents are contemplated as circumstances may suggest or render expedient, but is intended to cover the application or implementation without departing from the spirit or scope of the claims of the present invention. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.
The present application is a non-provisional application based on and claiming priority from U.S. Provisional Application No. 62/235,663, entitled “Smart Timer For Refrigerators and Similar Appliances” filed Oct. 1, 2015, the disclosure of which is hereby incorporated herein by reference in its entirety.
Number | Name | Date | Kind |
---|---|---|---|
3980980 | Zioni et al. | Sep 1976 | A |
4031435 | Zioni et al. | Jun 1977 | A |
4375583 | Halperin et al. | Mar 1983 | A |
4506120 | Fleischman | Mar 1985 | A |
5086385 | Launey et al. | Feb 1992 | A |
5808278 | Moon | Sep 1998 | A |
5902352 | Chou et al. | May 1999 | A |
6011755 | Mulhall et al. | Jan 2000 | A |
6066837 | McCormick et al. | May 2000 | A |
6473661 | Wollner | Oct 2002 | B1 |
6703591 | Daum et al. | Mar 2004 | B2 |
6965801 | Hall | Nov 2005 | B2 |
7310559 | Walko, Jr. | Dec 2007 | B2 |
7386424 | DeBoer et al. | Jun 2008 | B2 |
7872576 | Kalatizadeh | Jan 2011 | B2 |
7970264 | Grossbach et al. | Jun 2011 | B2 |
8067706 | Tukachinsky | Nov 2011 | B2 |
8390204 | Zagha | Mar 2013 | B1 |
9024545 | Bloch et al. | May 2015 | B2 |
20050133353 | Whitman | Jun 2005 | A1 |
20060074497 | Pollin | Apr 2006 | A1 |
20070261561 | Grossbach et al. | Nov 2007 | A1 |
20070277799 | Claesson et al. | Dec 2007 | A1 |
20090167098 | Kalatizadeh | Jul 2009 | A1 |
20090218957 | Kraft et al. | Sep 2009 | A1 |
20090254831 | Dolny et al. | Oct 2009 | A1 |
20100084996 | Van De Sluis et al. | Apr 2010 | A1 |
20110014932 | Estevez | Jan 2011 | A1 |
20110170379 | Eylon-Azoulay | Jul 2011 | A1 |
20120181266 | Frommer | Jul 2012 | A1 |
20120223661 | Bloch | Sep 2012 | A1 |
20140166447 | Thea et al. | Jun 2014 | A1 |
20140327501 | Cohen | Nov 2014 | A1 |
Number | Date | Country |
---|---|---|
201589491 | Sep 2010 | CN |
103411383 | Nov 2013 | CN |
203893570 | Oct 2014 | CN |
2011072515 | Jun 2011 | WO |
WO2017036555 | Mar 2017 | WO |
Entry |
---|
International Search Report and the Written Opinion, PCT/US2016/054610, dated Jan. 24, 2017, 9 pages. |
Number | Date | Country | |
---|---|---|---|
20170097187 A1 | Apr 2017 | US |
Number | Date | Country | |
---|---|---|---|
62235663 | Oct 2015 | US |