The invention relates to a safety module for a fuel-burning appliance, and to an appliance using such a safety module. In particular, the invention relates to a safety module which provides an alarm response (such as shutting off the fuel supply or sounding an alarm) when predetermined conditions are reached.
Fuel-burning appliances are of many types. Fuels used include gas, kerosene, solid fuel and many others. Fuel-burning appliances are commonly used for e.g. heating in both domestic and commercial applications. A well-known and dangerous by-product of such appliances, however, is carbon monoxide. Carbon monoxide is an odorless, tasteless, poisonous gas, which cannot readily be detected. In conjunction with fuel-burning appliances, therefore, some form of CO detector is frequently supplied, either as a separate detector or as an integral part, of the appliance.
One type of device used to sense the presence of CO is an Oxygen Depletion Sensor (ODS), which responds to a drop in the oxygen concentration of the surrounding air. ODS sensors commonly produce an alarm response when the oxygen level drops to, say, 95% of the normal level. A typical alarm response might be, for example, the cutting off of the fuel supply and/or the sounding of an alarm signal. It is well known, however, that concentrations of CO which are not low enough to trigger an ODS may still be high enough to cause ill effects, particularly over a long period. It has therefore been suggested to use a detector which reacts to the presence of carbon monoxide (as opposed to the absence of oxygen), either instead of or as well as an ODS.
The provision of both a carbon monoxide sensor and an ODS in a fuel-burning appliance has hitherto required the provision of two separate circuits in the appliance, bringing with it increased complexity and costs. The absence of both types of sensor, however, can lead to ill health and possibly fatal effects.
It is an object of the present invention to provide a safety module for a fuel-burning appliance which avoids the above problems. In particular, it is an object of the present invention to provide a safety module for a fuel-burning appliance which is simple, economical, easily maintained & replaced and which provides early detection of high levels of carbon monoxide. It is a further object of the invention to provide a safety module which responds not only to acutely high levels of CO but also to chronically high levels of CO and provides a means to ensure adherence to servicing requirements etc. It is a yet further object of the present invention to provide such a safety module which responds to certain predetermined conditions, the said predetermined conditions being easily programmable and alterable. It is a still further object of the present invention to provide a fuel-burning appliance using such a safety module.
In accordance with the above objects the invention provides a safety module for a fuel-burning appliance, the said safety module being adapted and arranged for connection to a fuel-burning appliance so that an alarm response of the fuel-burning appliance is triggered by an alarm signal of the said safety module, the safety module comprising processing means adapted so as to initiate a said safety module alarm signal when one or more predetermined conditions have been reached.
Preferably the said processing means includes a suitably programmed integrated circuit chip. Advantageously, programming means are provided whereby programming of the said processing means may be effected.
Preferably the said safety module includes a carbon monoxide sensor connected to the said processing means. Particularly preferably, the said safety module is adapted to be connected to the existing alarm circuitry of a fuel-burning appliance. Advantageously, the said existing alarm circuitry includes an oxygen depletion sensor.
Advantageously, the said predetermined conditions include one or more of the following; the detection of a CO level by the said CO sensor over a predetermined first threshold value at any one time; the detection of a CO level by the said CO sensor over a predetermined second threshold value over a predetermined time period; a predetermined time interval having elapsed and/or, where the said safety module is provided with reset means, the safety module having been reset a predetermined number of times. Particularly preferably, the programming means may be used to program the processing means with a value for one or more of the said first threshold value, second threshold value, predetermined time interval and/or predetermined number of times. Preferably, means are provided to provide a permanent alarm signal when any or all of the said predetermined conditions have been met.
According to a preferred realization of the invention the components thereof are provided on a printed circuit board so as to provide an integrated safety module.
According to another aspect, the invention provides a fuel-burning appliance having a safety module as described above.
For a better understanding of the present invention and to show more clearly how it may be carried into effect, reference will now be made, by way of example, to the accompanying drawings which show schematically various embodiments of the present invention. The figures are not to scale.
In
The integral safety module (1) is preferably self-contained. The battery (10) and sensor (3) are replaceable. The module is connected to the alarm line (13) of an existing ODS (12) to fulfill its intended role. The module (1) is designed to be securely and permanently attached to e.g. the base of a fuel-burning appliance such as a gas-fired heater. The CO sensor (3) may be positioned so as to monitor the air in the environment of the gas appliance, or may be positioned so as to monitor air in a particular area of the appliance such as an inlet duct or outlet duct.
The software installed on the IC (4) can be configured to activate an alarm signal at varying (predetermined) levels of CO. These can be a single set point or averaged over time, or set so as to comply with any existing standard such as any statutory British, European, or North American residential carbon monoxide detector standard as appropriate. Alternatively, the safety module could be programmed so as to comply with commercial or industrial boiler applications and their requisite standards using an appropriate relay.
Preferably, the IC (4) is programmed so as to interrupt the operation of the appliance (11) if it has not been serviced (and the module reset) after a certain time, say 13 months. This feature has been designed to assist landlords trying to fulfill their obligations under statutory regulations requiring regular inspections. This obligation is often difficult to meet as tenants are not always keen on allowing authorized staff entry to perform the inspections. The IC can therefore be programmed to trigger an alarm situation (e.g. a fuel cut-off) every 20 minutes or so causing the occupant to have to re-light the appliance every 20 minutes or get it properly serviced. This will encourage regular servicing. During the service the module can then be reset the to provide a further 13 months of operation. Alternatively, or additionally, the IC (4) can be programmed so that a specific number (e.g. five) operations of the reset function will require the installation of a new sensor in line with e.g. warranty requirements. Tamper-evident systems may also be provided.
The invention therefore provides an integrated safety module for connection to a fuelburning appliance. The safety module connects to the existing circuitry of the appliance and triggers an alarm response when certain predetermined conditions are met. The safety module includes a CO sensor and processing means and can respond not only to acutely high CO levels but also to chronically high CO levels and can also respond to pre-set service schedules amongst other conditions. Means are provided whereby the safety module can be programmed/reset.
While various descriptions of the present invention are described above, it should be understood that the various features could be used singly or in any combination thereof. Therefore, this invention is not to be limited to only the specifically preferred embodiments depicted herein.
Further, it should be understood that variations and modifications within the spirit and scope of the invention might occur to those skilled in the art to which the invention pertains. Accordingly, all expedient modifications readily attainable by one versed in the art from the disclosure set forth herein that are within the scope and spirit of the present invention are to be included as further embodiments of the present invention. The scope of the present invention is accordingly defined as set forth in the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
4443791 | Risgin et al. | Apr 1984 | A |
5189392 | Kass et al. | Feb 1993 | A |
5239980 | Hilt et al. | Aug 1993 | A |
5379026 | Whittle | Jan 1995 | A |
5397233 | Eavenson et al. | Mar 1995 | A |
5540273 | Polk et al. | Jul 1996 | A |
5575274 | DePalma | Nov 1996 | A |
5797358 | Brandt et al. | Aug 1998 | A |
6145502 | Lyons et al. | Nov 2000 | A |
Number | Date | Country |
---|---|---|
000498034 | Dec 1992 | EP |
000814444 | Dec 1997 | EP |
57-10023 | Jan 1982 | JP |
61-231343 | Oct 1986 | JP |
62-266320 | Nov 1987 | JP |
06-137555 | Oct 1992 | JP |
2001-14573 | Sep 1994 | JP |
08-86437 | Apr 1996 | JP |
10-38270 | Jul 1996 | JP |
09-112980 | May 1997 | JP |
11-51383 | Feb 1999 | JP |
2001-14573 | Jan 2001 | JP |
2001-193928 | Jul 2001 | JP |
2001-296020 | Oct 2001 | JP |
WO 9742451 | Dec 1997 | WO |
Number | Date | Country | |
---|---|---|---|
20040045543 A1 | Mar 2004 | US |