Integrated system

By designing an integrated system, combining the processing unit of the fire alarm receiver system and the emergency broadcast system, and operating with a touch screen display, the problem of excessive installation space between devices is solved, achieving space saving and convenient operation.

JP2025071713APending Publication Date: 2025-05-08PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO LTD
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Patent Information

Application Number
JP2023182120
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-10-23
Publication Date
2025-05-08

AI Technical Summary

Technical Problem

When installing fire alarm receivers and emergency broadcast equipment, the installation space between the equipment is too large, which makes installation difficult.

Method used

An integrated system is designed that includes a processing unit of a fire alarm receiver system, a processing unit of an emergency broadcast system and a touch screen display. Touch screen displays are used to accept operations on fire alarm receiver systems and emergency broadcast systems.

Benefits of technology

By reducing the number and space of mechanical switches, the integrated system effectively reduces the need for installation space while improving operational ease and visibility.

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Abstract

To provide an integrated system capable of reducing installation space.SOLUTION: An integrated system 1 includes: a first processing unit 32, a second processing unit 42, and a touch panel display 23. The first processing unit 32 is placed within a facility 100, which is a processing unit of a receiver system (receiver unit 3) that acquires the detection result from a sensor 11 for detecting an abnormality. The second processing unit 42 is a processing unit of an emergency broadcast system (emergency broadcast unit 4) that makes an emergency announcement in the facility 100. The touch panel display 23 receives a first operation as an operation for the receiver system and a second operation as an operation for the emergency broadcast system.SELECTED DRAWING: Figure 1
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Description

[Technical field]

[0001] The present disclosure relates generally to an integrated system, and more particularly to an integrated system that uses sensing results from a sensor. [Background technology]

[0002] Disaster prevention equipment is disclosed in Patent Document 1. In the disaster prevention equipment described in Patent Document 1, a fire receiver of a fire alarm equipment and an emergency broadcast device of an emergency broadcast equipment are connected by a report transfer line. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] JP 2015-230654 A Summary of the Invention [Problem to be solved by the invention]

[0004] However, when a fire receiver (receiver) and an emergency broadcast device are installed together, there is a problem that the installation space for the receiver and the emergency broadcast device becomes large.

[0005] The present disclosure has been made in consideration of the above-mentioned circumstances, and has an object to provide an integrated system that can reduce installation space. [Means for solving the problem]

[0006] An integrated system according to an embodiment of the present disclosure includes a first processing unit, a second processing unit, and a touch panel display. The first processing unit is a processing unit of a receiver system that acquires detection results from a sensor that is installed in a facility and detects abnormalities. The second processing unit is a processing unit of an emergency broadcast system that broadcasts emergency broadcasts within the facility. The touch panel display accepts a first operation that is an operation for the receiver system and a second operation that is an operation for the emergency broadcast system. Effect of the Invention

[0007] According to the integrated system according to the above aspect of the present disclosure, it is possible to reduce the installation space. [Brief description of the drawings]

[0008] [Figure 1] FIG. 1 is a schematic diagram showing a configuration of an integrated system according to an embodiment. [Diagram 2] FIG. 2 is a schematic diagram showing an integration device included in the above-mentioned integrated system. [Diagram 3] FIG. 3 is a schematic diagram showing a main part of the integrated device. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0009] Preferred embodiments of the present disclosure will be described in detail below with reference to the drawings. In addition, common elements in the embodiments described below are given the same reference numerals, and duplicated descriptions of common elements may be omitted. In addition, the following embodiments and modifications are only a part of various embodiments of the present disclosure. In addition, the following embodiments and modifications can be modified in various ways depending on the design, etc., as long as the object of the present disclosure can be achieved. In addition, the configurations of the modifications can be appropriately combined.

[0010] Each drawing described in this disclosure is a schematic drawing, and the ratio of the size and thickness of each component in each drawing does not necessarily reflect the actual dimensional ratio.

[0011] (1) Overview An overview of an integrated system 1 according to this embodiment will be described with reference to FIG.

[0012] As shown in Fig. 1, an integrated system 1 of this embodiment is configured as an automatic fire alarm system to be introduced into a facility 100 such as an office building. For example, when the automatic fire alarm system detects the occurrence of a fire, it notifies users of the facility 100 of the occurrence of the fire. Note that the facility 100 may be, in addition to an office building, a theater, a movie theater, an auditorium, an amusement park, a complex, a restaurant, a department store, a school, a hotel, an inn, a hospital, a nursing home, a kindergarten, a library, a museum, an art gallery, an underground shopping mall, a station, an airport, or an apartment building.

[0013] The integrated system 1 of the present embodiment includes a first processing unit 32, a second processing unit 42, and a touch panel display 23.

[0014] The first processing unit 32 is a processing unit of the receiver unit 3 (receiver system) that is installed in the facility 100 and acquires detection results from the detectors 11 that detect abnormalities.

[0015] The second processing unit 42 is a processing unit of an emergency broadcast unit 4 (emergency broadcast system) that broadcasts emergency broadcasts within the facility 100.

[0016] The touch panel display 23 accepts a first operation which is an operation for the receiver system, and a second operation which is an operation for the emergency broadcast system.

[0017] According to the integrated system 1 of the present embodiment, the number of mechanical switches and the like can be reduced, and the installation space can be reduced.

[0018] (2)Details Hereinafter, a detailed configuration of the integrated system 1 according to this embodiment will be described with reference to FIGS.

[0019] (2.1) Integrated System Configuration As shown in Fig. 1, the integrated system 1 includes an integrated device 2, a plurality of sensors 11, a plurality of speakers 12, and a plurality of telephone handsets 13. The integrated system 1 also includes one or more repeaters 10 that relay communication between the integrated device 2 and the plurality of sensors 11. Although not shown in Fig. 1, one or more amplifiers may be provided between the integrated device 2 and the plurality of speakers 12, and one or more repeaters that relay communication may be provided between the integrated device 2 and the telephone handsets 13.

[0020] (2.2) Sensor configuration A plurality of sensors 11 are installed within the facility 100 and detect abnormalities within the facility 100. The plurality of sensors 11 are installed, for example, on the ceiling of the facility 100. The sensors 11 in this embodiment are fire sensors.

[0021] The detector 11 has a sensor that detects a specific physical quantity related to a fire. The sensor is, for example, a heat sensor, a smoke sensor, an infrared sensor, an ultraviolet sensor, etc., and the specific physical quantity detected by the sensor is heat (temperature), smoke (particle) concentration, ultraviolet intensity, infrared intensity, etc. That is, the detector 11 may be a so-called heat detector that has a heat sensor and detects heat (temperature rise) caused by a fire. The detector 11 may also be a so-called smoke detector that has a smoke sensor and detects smoke or minute combustion products caused by a fire. The detector 11 may also be a so-called flame detector that has an infrared sensor or an ultraviolet sensor and detects flames caused by a fire. The detector 11 may also be a so-called composite detector that has two or more types of sensors that detect physical quantities, such as a heat sensor and a smoke sensor. The detector 11 may further have a sensor for detecting abnormalities in the facility other than a fire, such as a gas leak, an earthquake, or flooding. The detector 11 of this embodiment has a smoke sensor and a heat sensor. The smoke sensor of this embodiment is, for example, a photoelectric sensor, and the heat sensor of this embodiment is, for example, a thermistor.

[0022] Further, the sensor 11 has an interface capable of communicating with the repeater 10 or other sensors 11. In this disclosure, "capable of communication" means that information can be exchanged directly or indirectly via a network or a repeater, etc., by an appropriate communication method such as wired communication or wireless communication. The sensor 11 of this embodiment communicates with the first communication unit 31 of the integrating device 2 via the repeater 10. However, the sensor 11 may communicate directly with the first communication unit 31 of the integrating device 2 without via the repeater 10. The sensor 11 of this embodiment periodically transmits a detection result including temperature information of the temperature detected by the heat sensor and smoke density information of the smoke density detected by the smoke sensor to the integrating device 2.

[0023] Furthermore, the detector 11 determines whether or not a fire has occurred based on the temperature information detected by the heat sensor and the smoke density information detected by the smoke sensor. If the detector 11 determines that a fire has occurred, it transmits a detection result indicating that a fire has been detected to the integrating device 2.

[0024] (2.3) Speaker configuration Each of the multiple speakers 12 is installed, for example, on a wall of the facility 100. The speaker 12 has an interface capable of communicating with the integrated device 2. The speaker 12 of this embodiment communicates with a second communication unit 41 of the integrated device 2.

[0025] The speaker 12 receives an electrical signal from the integrating device 2, converts the electrical signal into sound (or sound waves), and outputs the sound. The speaker 12 of this embodiment performs emergency broadcasts, emergency broadcasts, or general broadcasts based on the electrical signal received from the integrating device 2.

[0026] (2.4) Telephone handset configuration The telephone handset 13 has an interface capable of communicating with the integrating device 2. The telephone handset 13 of this embodiment communicates with a third communication unit 51 of the integrating device 2. The telephone handset 13 is configured to be capable of communicating with the emergency telephone unit 5 functioning as an emergency telephone master unit.

[0027] (2.5) Configuration of the integrated device The integrated device 2 is installed, for example, in a control room of the facility 100 .

[0028] As shown in FIG. 1, the integrated device 2 includes a housing 20 (see FIG. 2), a receiver unit 3 (receiver system), an emergency broadcast unit 4 (emergency broadcast system), an emergency telephone unit 5 (emergency telephone system), a common display unit 21, a common operation unit 22, and a touch panel display 23.

[0029] In the integrated device 2 of this embodiment, the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 are individually attached to the housing 20. The receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 are configured to be able to communicate with each other when attached to the housing 20. In this embodiment, when the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 are attached to the housing 20, the first processing unit 32 of the receiver unit 3, the second processing unit 42 of the emergency broadcast unit 4, and the third processing unit 52 of the emergency telephone unit 5 are able to communicate with each other. The receiver unit 3 is an example of a receiver system, the emergency broadcast unit 4 is an example of an emergency broadcast system, and the emergency telephone unit 5 is an example of an emergency telephone system.

[0030] The housing 20 is formed, for example, in a long box shape. The housing 20 houses the receiver unit 3, the emergency broadcast unit 4, the emergency telephone unit 5, the common display unit 21, the common operation unit 22, and the touch panel display 23. Note that "housed" in this disclosure includes a state in which a part of the housed configuration is exposed to the outside of the housing 20.

[0031] (2.6) Configuration of the common display section The common display unit 21 commonly performs a first display which is a notification for the receiver unit 3, a second display which is a notification for the emergency broadcast unit 4, and a third display which is a notification for the emergency telephone unit 5. That is, the common display unit 21 of this embodiment commonly performs a plurality of notifications for a plurality of units (or systems).

[0032] In the present disclosure, "multiple notifications as multiple units are made in common" means that multiple notifications, including a notification as a certain unit and a notification as a unit other than the certain unit, are made together as a single notification by one notification unit. The "notification" may be a notification by display or a notification by sound. In addition, the "notification unit" may be a display unit or a sound output unit.

[0033] As a result, compared to conventional receivers (or receiver systems) and emergency broadcast devices (or emergency broadcast systems) that notified the same content through separate displays, it is possible to reduce the number and space required for mechanical display units such as indicator lights, thereby reducing installation space. Furthermore, by reducing the number of mechanical display units such as indicator lights, it is possible to improve visibility and reduce costs. Another advantage is that managers and others no longer need to check notifications of the same content separately. In this disclosure, "notifications of the same content" includes not only notifications of the exact same content, but also notifications of the same type (or genre).

[0034] Furthermore, the common display unit 21 of this embodiment commonly displays the first display, the second display, and the third display which is a notification for the emergency telephone unit 5. This makes it possible to reduce the number and space of the display units, and thus the installation space, compared to conventional receivers, emergency broadcast devices, and emergency telephone devices which display the same notifications separately. Note that the common display unit 21 may commonly display two of the first display, second display, and third display (for example, only the first display and the third display).

[0035] As shown in Fig. 3, the common display unit 21 of this embodiment has a plurality of (16 in the example of Fig. 3) indicator lights 211. Each of the plurality of indicator lights 211 has, for example, an LED (Light Emitting Diode). That is, the common display unit 21 performs the first display, the second display, and the third display by emitting light from the light-emitting unit. This allows notification to be performed in a display mode with good visibility.

[0036] Each of the multiple indicator lights 211 is controlled to be turned on, off, blinking, etc. by the first processing unit 32. That is, the indicator light 221 is turned on, off, blinking, etc. in response to the operation of the first processing unit 32. The multiple indicator lights 211 in this embodiment include a fire light, an inspection light, an external power light, a trouble light, etc.

[0037] The fire light performs the first, second, and third indications commonly used to notify the occurrence of a fire (or a confirmed fire) in the facility 100. The fire light notifies the occurrence of a fire by turning on or blinking at least in one of the cases where the sensor 11 detects the occurrence of a fire and where the first processing unit 32 determines that a fire has occurred based on the detection result by the sensor 11. The fire light of this embodiment notifies the occurrence of a fire by blinking in red when the sensor 11 detects the occurrence of a fire. According to the integrated system 1 of this embodiment, the fire representative light of a conventional receiver and the fire light of a conventional emergency broadcast device are combined into one, thereby making it possible to reduce the space required for the display unit.

[0038] The inspection light provides a first indication that the operation mode of the receiver unit 3 is the inspection mode, a second indication that the operation mode of the emergency broadcast unit 4 is the inspection mode, and a third indication that the operation mode of the emergency telephone unit 5 is the inspection mode. When the operation mode of at least one of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 is the inspection mode, the inspection light provides notification of the inspection mode by lighting or blinking. When the operation mode of at least one of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 is the inspection mode, the inspection light of this embodiment blinks in red. According to the integrated system 1 of this embodiment, the switch warning light of the conventional receiver and the inspection mode indicator light of the conventional emergency broadcast device are combined into one, thereby reducing the space of the display unit.

[0039] Here, the "inspection mode" includes equipment inspection of the first power storage unit 37 or the second power storage unit 48, equipment inspection of the detector 11, sensitivity test of the detector 11, etc. The inspection mode is an operation mode for performing inspection (or test) required by law (for example, the Fire Service Act in Japan) etc.

[0040] The external power lamp performs a first display for notifying the state of power supply to the receiver unit 3, a second display for notifying the state of power supply to the emergency broadcast unit 4, and a third display for notifying the state of power supply to the emergency telephone unit 5. The external power lamp is turned on when power is normally supplied to the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 from an external power source such as a commercial power source. The external power lamp of this embodiment is turned on in green when power is normally supplied to the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 from the commercial power source (for example, when a voltage of AC 100 V is supplied). In addition, the external power lamp of this embodiment is turned off when power is not normally supplied to at least one of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 from the commercial power source (for example, when a voltage of AC 100 V is not supplied). According to the integrated system 1 of this embodiment, the AC power lamp of the conventional receiver and the main power indicator lamp of the conventional emergency broadcast device are integrated into one, thereby reducing the space of the display unit.

[0041] The trouble light provides a first indication to notify that an abnormality has occurred in the receiver unit 3, a second indication to notify that an abnormality has occurred in the emergency broadcast unit 4, and a third indication to notify that an abnormality has occurred in the emergency telephone unit 5. The trouble light turns on or flashes when an abnormality has occurred in at least one of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5. According to the integrated system 1 of this embodiment, it is possible to reduce the space required for the display unit.

[0042] The trouble lights include a first trouble light and a second trouble light.

[0043] The first trouble light performs a first indication to notify that an abnormality has occurred in the first power supply unit 36 ​​of the receiver unit 3, a second indication to notify that an abnormality has occurred in the second power supply unit 47 of the emergency broadcast unit 4, and a third indication to notify that an abnormality has occurred in the third power supply unit 55 of the emergency telephone unit 5. The first trouble light flashes in red when at least one of the DC voltages supplied by the first power supply unit 36, the DC voltages supplied by the second power supply unit 47, and the DC voltages supplied by the third power supply unit 55 is abnormal. According to the integrated system 1 of this embodiment, the trouble indicator light of the conventional receiver and the main circuit indicator light of the conventional emergency broadcast device are combined into one, thereby reducing the space required for the display unit.

[0044] The second trouble light performs a first indication to notify that an abnormality has occurred in the first power storage unit 37 of the receiver unit 3, a second indication to notify that an abnormality has occurred in the second power storage unit 48 of the emergency broadcast unit 4, and a third indication to notify that an abnormality has occurred in the third power storage unit 56 of the emergency telephone unit 5. The second trouble light flashes in red when at least one of the first power storage unit 37, the second power storage unit 48, and the third power storage unit 56 cannot be charged normally. According to the integrated system 1 of this embodiment, the trouble indicator light of the conventional receiver and the charging indicator light of the conventional emergency broadcast device are combined into one, thereby making it possible to reduce the space required for the display unit.

[0045] (2.7) Configuration of common operation section The common operation unit 22 commonly accepts a first operation which is an operation for the receiver unit 3, a second operation which is an operation for the emergency broadcast unit 4, and a third operation which is an operation for the emergency telephone unit 5. That is, the common operation unit 22 of this embodiment commonly accepts operations for a plurality of units (or systems).

[0046] In this disclosure, "accepting operations for multiple units in common" means accepting multiple operations, including an operation for one unit and an operation for a unit other than the one unit, together through a single operation on a single operating section.

[0047] This allows for a reduction in the space required for the operation unit, and therefore a reduction in installation space, compared to conventional receivers and emergency broadcast devices that received operations on separate operation units to make the receiver and emergency broadcast device perform the same process (or operation). Another advantage is that managers and others no longer need to perform separate operations to make the receiver and emergency broadcast device perform the same process. In this disclosure, "processing of the same content" includes not only processing of the same content in the strict sense, but also processing of the same system (or type).

[0048] As shown in Fig. 3, the common operation unit 22 of this embodiment has a plurality of switches (four in the example of Fig. 3). The plurality of switches includes a recovery switch. In this embodiment, the plurality of switches included in the common operation unit 22 are mechanical switches.

[0049] The recovery switch is an operation unit for recovering the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 from an emergency state. In the integrated system 1 of this embodiment, when the recovery switch is operated by a manager or the like, the states of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 transition from an emergency state to a monitoring state (or a normal state). Here, the "emergency state" refers to the state of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 (or the integrated device 2) when the detector 11 detects a fire. Also, the "monitoring state" refers to the state of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 (or the integrated device 2) when the detector 11 does not detect a fire.

[0050] According to the integrated system 1 of the present embodiment, the recovery switch of a conventional receiver and the emergency recovery switch of a conventional emergency broadcast device are combined into one switch, thereby making it possible to reduce the space required for the operation unit.

[0051] (2.8) Touch panel display configuration The touch panel display 23 functions as a user interface for displaying various types of information and accepting operations by a person.

[0052] 3, the touch panel display 23 displays an operation screen on which a plurality of objects A1 are arranged. The objects A1 are, for example, buttons. When the touch panel display 23 detects an operation (tap, swipe, drag, etc.) of the object A1 on the operation screen, the touch panel display 23 determines that the object A1 has been operated. Note that the touch panel display 23 may display information such as a monitoring status in the facility 100.

[0053] The touch panel display 23 accepts a first operation which is an operation for the receiver unit 3, and a second operation which is an operation for the emergency broadcast unit 4. According to the integrated system 1 of this embodiment, the touch panel display 23 accepts the first operation and the second operation, so that the number of mechanical switches and the like that accept the first operation or the second operation can be reduced, and the installation space can be reduced. Furthermore, according to the integrated system 1 of this embodiment, it is possible to improve convenience for operators such as managers.

[0054] Furthermore, the touch panel display 23 accepts a third operation which is an operation for the emergency telephone unit 5. This makes it possible to reduce the number of mechanical switches and the like for accepting the third operation, thereby enabling a reduction in the installation space.

[0055] The plurality of objects A1 includes a button for accepting a first operation, a button for accepting a second operation, and a button for accepting a third operation. The plurality of objects A1 may also include a button that commonly accepts two or more types of operations among the first operation, the second operation, and the third operation.

[0056] Furthermore, the touch panel display 23 may commonly display two or more of the first display, the second display, and the third display.

[0057] (2.9) Receiver unit configuration The receiver unit 3 functions as a fire receiver that acquires the detection result of the detector 11. The receiver unit 3 of this embodiment functions as an R-type fire receiver.

[0058] As shown in FIG. 1, the receiver unit 3 has a first communication unit 31, a first processing unit 32, a receiver display unit 33, a receiver operation unit 34, a first sound output unit 35, a first power supply unit 36, and a first power storage unit 37.

[0059] The first power supply unit 36 ​​supplies power to the first communication unit 31, the first processing unit 32, the receiver display unit 33, the receiver operation unit 34, the first sound output unit 35, etc. The first power supply unit 36 ​​converts a primary voltage input from an external power source into a secondary voltage, and outputs the secondary voltage to the first communication unit 31, the first processing unit 32, the receiver display unit 33, the receiver operation unit 34, the first sound output unit 35, etc. The first power supply unit 36 ​​converts, for example, an AC voltage supplied from a commercial power source into a DC voltage.

[0060] Further, the first power supply unit 36 ​​of the present embodiment supplies power to the common display unit 21, the common operation unit 22, and the touch panel display 23.

[0061] The first power storage unit 37 has a secondary battery such as a lithium ion battery or a nickel metal hydride battery. When the power supply from an external power source to the first power supply unit 36 ​​is cut off, for example, during a power outage, the first power storage unit 37 supplies power to the receiver display unit 33, the receiver operation unit 34, the first sound output unit 35, etc., instead of the first power supply unit 36. The first power storage unit 37 may have a power conversion circuit that converts the DC voltage output from the storage battery into a DC voltage of a predetermined voltage value.

[0062] In addition, the first power storage unit 37 in this embodiment supplies power to the common display unit 21, the common operation unit 22, and the touch panel display 23 when the power supply from the external power source to the first power supply unit 36 ​​is cut off.

[0063] The first communication unit 31 has an interface capable of communicating with the repeater 10. Note that the first communication unit 31 may have an interface capable of directly communicating with the sensor 11. The first communication unit 31 receives sensing results from each of the multiple sensors 11.

[0064] The receiver display unit 33 performs only the first display, which is a notification as the receiver unit 3. In other words, the receiver display unit 33 performs the first notification regarding the operation (or function) of the receiver unit 3 by displaying, regardless of the operation (or function) of the emergency broadcast unit 4 and the operation of the emergency telephone unit 5.

[0065] 3, the receiver display unit 33 has a plurality of (16 in the example of FIG. 3) indicator lights 331. The plurality of indicator lights 331 include a site confirmation light, a caution indicator light, a district indicator light, and the like.

[0066] Each of the plurality of indicator lights 331 includes, for example, an LED. The turning on, turning off, blinking, etc. of each of the plurality of indicator lights 331 is controlled by the first processing unit 32. That is, the indicator lights 331 turn on, turning off, blinking, etc. in response to the operation of the first processing unit 32.

[0067] The first sound output unit 35 is a speaker. The first sound output unit 35 outputs a first sound that is a notification as the receiver unit 3. Note that "sound" in this disclosure includes voice.

[0068] More specifically, the first sound output unit 35 outputs receiver sounds such as artificial voices or beeps recorded in memory, based on the control of the first processing unit 32. For example, the first sound output unit 35 issues a notification regarding a detector 11 in which an abnormality has occurred, based on the control of the first processing unit 32. For example, the first sound output unit 35 outputs a sound notifying the location in the facility 100 where the detector 11 in which an abnormality has occurred is installed, and the identification information of the detector 11 in which an abnormality has occurred.

[0069] The receiver operation section 34 accepts a first operation which is an operation for the receiver unit 3. The receiver operation section 34 of the present embodiment includes an operation section which accepts only the first operation.

[0070] As shown in Fig. 3, the receiver operation unit 34 has a plurality of switches 341 (four in the example of Fig. 3). The plurality of switches 341 include a receiver sound stop switch, a district sound (bell) pause switch, an inspection switch, a fire determination switch, etc. The switches 341 are operated by an operator such as a caretaker.

[0071] The first processing unit 32 is mainly composed of a computer system having one or more processors and one or more memories. The one or more processors execute a program recorded in the memory, thereby realizing the function of the first processing unit 32. The program may be pre-recorded in the memory, may be provided via a telecommunication line such as the Internet, or may be provided by recording it on a non-transitory recording medium such as a memory card.

[0072] The first processing unit 32 controls the operation of the receiver unit 3. That is, the first processing unit 32 controls the operation of the first communication unit 31, the receiver display unit 33, and the first sound output unit 35. In addition, the first processing unit 32 in this embodiment controls the operation of the common display unit 21 and the touch panel display 23.

[0073] The first processing unit 32 acquires detection results from each of the multiple sensors 11 via the first communication unit 31. The first processing unit 32 controls the operations of the receiver display unit 33, the first sound output unit 35, the common display unit 21, and the touch panel display 23 based on the acquired detection results. For example, when the first processing unit 32 acquires a detection result indicating that a fire has been detected from the sensor 11, it outputs the detection result indicating that a fire has been detected to the second processing unit 42.

[0074] In addition, the first processing unit 32 controls the operation of the receiver display unit 33, the first sound output unit 35, the common display unit 21, and the touch panel display 23 based on the content of operations accepted by the common operation unit 22, the receiver operation unit 34, and the touch panel display 23.

[0075] In addition, the first processing unit 32 controls the operation of the common display unit 21 and the touch panel display 23 based on signals input from the second processing unit 42 of the emergency broadcast unit 4 and the third processing unit 52 of the emergency telephone unit 5.

[0076] When the first processing unit 32 acquires a detection result from the detector 11 indicating that a fire has been detected, the first processing unit 32 causes the fire light on the common display unit 21 to flash in red.

[0077] In addition, the first processing unit 32 causes the inspection light on the common display unit 21 to flash in red when the operating mode of at least one of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 is in the inspection mode.

[0078] Furthermore, the first processing unit 32 turns on the external power light on the common display unit 21 in green when power is normally supplied to the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5. Furthermore, the first processing unit 32 turns off the external power light when power is not normally supplied to at least one of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5. The first processing unit 32 of this embodiment communicates with the second processing unit 42 to determine whether or not power is normally supplied to the emergency broadcast unit 4. The first processing unit 32 of this embodiment communicates with the third processing unit 52 to determine whether or not power is normally supplied to the emergency telephone unit 5.

[0079] Furthermore, the first processing unit 32 turns on or flashes the trouble light on the common display unit 21 when an abnormality occurs in at least one of the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5. The first processing unit 32 of this embodiment determines whether or not an abnormality occurs in the emergency broadcast unit 4 by communicating with the second processing unit 42. The first processing unit 32 of this embodiment determines whether or not an abnormality occurs in the emergency telephone unit 5 by communicating with the third processing unit 52.

[0080] The first processing unit 32 blinks the first trouble light in red when an abnormality occurs in at least one of the first power supply unit 36, the second power supply unit 47, and the third power supply unit 55. Furthermore, the first processing unit 32 blinks the second trouble light in red when an abnormality occurs in at least one of the first power storage unit 37, the second power storage unit 48, and the third power storage unit 56.

[0081] When the first processing unit 32 obtains a detection result from the detector 11 indicating that a fire has been detected, it controls the receiver display unit 33 to turn on or flash the site confirmation light, caution indicator light, and area indicator light corresponding to the detector 11 that detected the fire.

[0082] The first processing unit 32 controls the first sound output unit 35 to output the first sound. For example, when the first processing unit 32 acquires a detection result from the sensor 11 indicating that a fire has been detected, the first processing unit 32 controls the first sound output unit 35 to output the receiver sound.

[0083] The first processing unit 32 of this embodiment controls the first sound output unit 35 so that the first sound output by the first sound output unit 35 and the second sound output by the second sound output unit 45 of the emergency broadcast unit 4 are output at different timings. For example, the first processing unit 32 prevents the first sound from being output during a period in which the second sound is being output, thereby causing the first sound and the second sound to be output at different timings.

[0084] According to the integrated system 1 of the present embodiment, the first sound and the second sound are output at different timings. This makes it possible to prevent the first sound and the second sound from being output at the same timing, and makes it possible to perform a notification that is easy for a manager or the like to check.

[0085] Furthermore, the first processing unit 32 of the present embodiment controls the first sound output unit 35 so that the first sound, the second sound, and the third sound output by the third sound output unit 53 of the emergency telephone unit 5 are output at different timings. For example, the first processing unit 32 does not output the first sound during a period in which the second sound or the third sound is being output, thereby causing the first sound to be output at different timings from the second sound or the third sound.

[0086] According to the integrated system 1 of the present embodiment, the first sound, the second sound, and the third sound are output at different timings. This makes it possible to prevent two or more of the first sound, the second sound, and the third sound from being output at the same timing, and makes it possible to perform a notification that is easy for a manager or the like to check.

[0087] (2.10) Emergency Broadcast Unit Configuration The emergency broadcast unit 4 functions as an emergency broadcast device that broadcasts emergency information within the facility 100. In this disclosure, "emergency broadcast" includes an alarm broadcast, a fire broadcast, and a non-fire broadcast. An alarm broadcast is a broadcast that notifies the user that a sensor 11 or an emergency telephone unit 5, etc. has been activated. A fire broadcast is a broadcast that notifies the user that a fire has occurred. A non-fire broadcast is a broadcast that notifies the user that there is no fire.

[0088] For example, the emergency broadcast unit 4 issues an emergency broadcast to the facility 100 based on the detection result of the sensor 11. The emergency broadcast unit 4 may also issue an emergency broadcast in response to the occurrence of an abnormality in the facility 100 or in the vicinity of the facility 100, regardless of the detection result of the sensor 11.

[0089] As shown in Figure 1, the emergency broadcast unit 4 has a second communication unit 41, a second processing unit 42, an emergency broadcast display unit 43, an emergency broadcast operation unit 44, a second sound output unit 45, a first microphone 46, a second power supply unit 47, and a second power storage unit 48.

[0090] The second power supply unit 47 supplies power to the second communication unit 41, the second processing unit 42, the emergency broadcast display unit 43, the emergency broadcast operation unit 44, the second sound output unit 45, and the first microphone 46. The second power supply unit 47 converts a primary side voltage input from an external power supply to a secondary side voltage, and outputs the secondary side voltage to the second communication unit 41, the second processing unit 42, the emergency broadcast display unit 43, the emergency broadcast operation unit 44, the second sound output unit 45, and the first microphone 46. The second power supply unit 47 converts, for example, an AC voltage supplied from a commercial power supply to a DC voltage.

[0091] The second power storage unit 48 has a secondary battery such as a lithium ion battery or a nickel metal hydride battery. When the power supply from an external power source to the second power supply unit 47 is cut off, such as during a power outage, the second power storage unit 48 supplies power to the second communication unit 41, the second processing unit 42, the emergency broadcast display unit 43, the emergency broadcast operation unit 44, the second sound output unit 45, and the first microphone 46 in place of the second power supply unit 47. The second power storage unit 48 may have a power conversion circuit that converts the DC voltage output from the storage battery into a DC voltage of a predetermined voltage value.

[0092] The second communication unit 41 has an interface capable of communicating with the speaker 12. The second communication unit 41 transmits to the speaker 12 a signal for causing the speaker 12 to broadcast preset content, or a signal for causing the speaker 12 to broadcast corresponding to an audio input to the first microphone 46.

[0093] The emergency broadcast display unit 43 performs only the second display, which is a notification as the emergency broadcast unit 4. In other words, the emergency broadcast display unit 43 performs the second notification regarding the operation (or function) of the emergency broadcast unit 4 by displaying, which is not related to the operation (or function) of the receiver unit 3 and the operation of the emergency telephone unit 5.

[0094] 3, the emergency broadcast display unit 43 has a plurality of (16 in the example of FIG. 3) indicator lights 431. The plurality of indicator lights 431 include a message playback indicator light, a non-fire broadcast indicator light, a fire broadcast indicator light, and the like.

[0095] Each of the plurality of indicator lights 431 has, for example, an LED. The turning on, turning off, blinking, etc. of each of the plurality of indicator lights 431 is controlled by the second processing unit 42. That is, the indicator lights 431 turn on, turning off, blinking, etc. in response to the operation of the second processing unit 42.

[0096] The second sound output unit 45 is a speaker. The second sound output unit 45 outputs a second sound, which is a notification as the emergency broadcast unit 4. The second sound output unit 45 in this embodiment is a monitor speaker. The second sound output unit 45 outputs a receiver sound, such as an artificial voice or a beep sound, recorded in the memory, based on the control by the second processing unit 42.

[0097] The emergency broadcast operation unit 44 accepts a second operation which is an operation for the emergency broadcast unit 4. The emergency broadcast operation unit 44 of the present embodiment includes an operation unit which accepts only the second operation.

[0098] 3, the emergency broadcast operation unit 44 has a plurality of (six in the example of FIG. 3) switches 441. The plurality of switches 441 include a general broadcast switch, an emergency broadcast switch, and the like.

[0099] The business broadcast switch is an operating unit for the emergency broadcast unit 4 to make a business broadcast. In the integrated system 1 of this embodiment, when the business broadcast switch is operated by a manager or the like, one or more of the multiple speakers 12 make a business broadcast. Here, a "business broadcast" is a broadcast made to employees working within the facility 100, and is a broadcast with a lower level of urgency compared to emergency broadcasts and emergency broadcasts.

[0100] The emergency broadcast switch is an operating unit for the emergency broadcast unit 4 to make an emergency broadcast. In the integrated system 1 of this embodiment, when the emergency broadcast switch is operated by a manager or the like, one or more of the multiple speakers 12 make an emergency broadcast. Here, an "emergency broadcast" is a broadcast made to people present in the facility 100 in an emergency such as a disaster or an incident. Note that the emergency broadcast of this embodiment is a broadcast with a lower level of urgency than an emergency broadcast.

[0101] The first microphone 46 picks up a sound and converts the picked up sound into an electrical signal.

[0102] The second processing unit 42 mainly comprises a computer system having one or more processors and one or more memories. The one or more processors execute a program recorded in the memory, thereby realizing the function of the second processing unit 42. The program may be pre-recorded in the memory, may be provided via a telecommunication line such as the Internet, or may be provided by recording it on a non-transitory recording medium such as a memory card.

[0103] The second processing unit 42 controls the operation of the emergency broadcast unit 4. That is, the second processing unit 42 controls the operations of the second communication unit 41, the emergency broadcast display unit 43, and the second sound output unit 45.

[0104] The second processing unit 42 controls the operations of the second communication unit 41, the emergency broadcast display unit 43, and the second sound output unit 45 based on a signal input from the first processing unit 32 of the receiver unit 3. For example, when the second processing unit 42 acquires a detection result indicating that a fire has been detected from the first processing unit 32, the second processing unit 42 causes one or more of the multiple speakers 12 to make an emergency broadcast, via the second communication unit 41, to notify that a fire has occurred.

[0105] In addition, the second processing unit 42 controls the operation of the second communication unit 41, the emergency broadcast display unit 43, and the second sound output unit 45 based on the contents of the operations accepted by the common operation unit 22 and the emergency broadcast operation unit 44.

[0106] The second processing unit 42 of the present embodiment controls the second sound output unit 45 so that the first sound, the second sound, and the third sound are output at different timings. For example, the second processing unit 42 does not output the second sound during a period in which the first sound or the third sound is output, thereby causing the second sound to be output at different timings from the first sound or the third sound.

[0107] (2.11) Emergency Telephone Unit Configuration The emergency telephone unit 5 functions as an emergency telephone master configured to be able to make emergency calls with a plurality of telephone handsets 13 installed in the facility 100. The emergency telephone unit 5 is used to make calls for the purpose of reporting or confirming the circumstances of the fire when the detector 11 detects the occurrence of a fire.

[0108] As shown in FIG. 1, the emergency telephone unit 5 has a third communication unit 51, a third processing unit 52, a third sound output unit 53, a second microphone 54, a third power supply unit 55, and a third power storage unit 56.

[0109] The third power supply unit 55 supplies power to the third communication unit 51, the third processing unit 52, the third sound output unit 53, and the second microphone 54. The third power supply unit 55 converts a primary voltage input from an external power supply into a secondary voltage, and outputs the secondary voltage to the third communication unit 51, the third processing unit 52, the third sound output unit 53, and the second microphone 54. The third power supply unit 55 converts, for example, an AC voltage supplied from a commercial power supply into a DC voltage.

[0110] The third power storage unit 56 has a secondary battery such as a lithium ion battery or a nickel metal hydride battery. When the power supply from an external power source to the third power supply unit 55 is cut off, for example, during a power outage, the third power storage unit 56 supplies power to the third communication unit 51, the third processing unit 52, the third sound output unit 53, and the second microphone 54 in place of the third power supply unit 55. The third power storage unit 56 may have a power conversion circuit that converts a DC voltage output from the storage battery into a DC voltage of a predetermined voltage value.

[0111] The third communication unit 51 has an interface capable of communicating with the telephone handset 13 .

[0112] The third sound output unit 53 outputs a third sound which is a notification as the emergency telephone unit 5. As shown in Fig. 3, the third sound output unit 53 and the second microphone 54 are part of a handset of the emergency telephone unit 5. The third sound output unit 53 is a speaker of the handset, and the second microphone 54 is a microphone of the handset.

[0113] The third processing unit 52 mainly comprises a computer system having one or more processors and one or more memories. The one or more processors execute a program recorded in the memory, thereby realizing the function of the third processing unit 52. The program may be pre-recorded in the memory, may be provided via a telecommunication line such as the Internet, or may be provided by recording it on a non-transitory recording medium such as a memory card.

[0114] The third processing unit 52 controls the operation of the emergency telephone unit 5. That is, the third processing unit 52 controls the operation of the third communication unit 51.

[0115] The third processing unit 52 of the present embodiment controls the third sound output unit 53 so that the first sound, the second sound, and the third sound are output at different timings. For example, the third processing unit 52 does not output the third sound during a period in which the first sound or the second sound is output, thereby causing the third sound to be output at different timings from the first sound or the second sound.

[0116] (3) Modifications Modifications of the above embodiment are listed below.

[0117] (3.1) Variation 1 The integrated system 1 of the first modification outputs any one of the first sound, the second sound, and the third sound in priority over the other sounds. In other words, any one of the first sound output unit 35, the second sound output unit 45, and the third sound output unit 53 outputs a sound in priority over the other sound output units. The priority order of the output of the first sound, the second sound, and the third sound is set, for example, by a manager or the like. This allows the priority order of the sound output to be set to a priority order determined by law (for example, the Fire Service Act in Japan) or the like, or a priority order set by a manager or the like.

[0118] For example, in the integrated system 1 of the first modification, the first sound output unit 35 may output the first sound in priority to the second sound output unit 45 and the third sound output unit 53. Here, when the first sound output unit 35 outputs the first sound during a period in which the second sound or the third sound is being output, the first sound output unit 35 stops the output of the sound being output among the second sound and the third sound and outputs the first sound. That is, when the first processing unit 32 outputs the first sound during a period in which the second sound or the third sound is being output, the first processing unit 32 communicates with the second processing unit 42 or the third processing unit 52, stops the output of the sound being output among the second sound and the third sound, and outputs the first sound. This allows the notification by the receiver unit 3 to be prioritized over the notification by the emergency broadcast unit 4 and the notification by the emergency telephone unit 5. Also, even when the notification by the emergency broadcast unit 4 or the notification by the emergency telephone unit 5 is being performed, the notification by the receiver unit 3 can be prioritized over the notification by the emergency broadcast unit 4 and the notification by the emergency telephone unit 5.

[0119] In the integrated system 1 of the first modification, the second sound output unit 45 may output the second sound in priority to the first sound output unit 35 and the third sound output unit 53. Here, when the second sound output unit 45 outputs the second sound during the period when the first sound or the third sound is being output, the second sound output unit 45 stops the output of the sound being output among the first sound and the third sound and outputs the second sound. That is, when the second processing unit 42 outputs the second sound during the period when the first sound or the third sound is being output, the second processing unit 42 communicates with the first processing unit 32 or the third processing unit 52, stops the output of the sound being output among the first sound and the third sound and outputs the second sound. This allows the notification by the emergency broadcast unit 4 to be prioritized over the notification by the receiver unit 3 and the notification by the emergency telephone unit 5. Also, even when the notification by the receiver unit 3 or the notification by the emergency telephone unit 5 is being performed, the notification by the emergency broadcast unit 4 can be prioritized over the notification by the receiver unit 3 and the notification by the emergency telephone unit 5.

[0120] In the integrated system 1 of the first modification, the third sound output unit 53 may output the third sound in priority to the first sound output unit 35 and the second sound output unit 45. Here, when the third sound output unit 53 outputs the third sound during the period when the first sound or the second sound is being output, the third sound output unit 53 stops the output of the sound being output among the first sound and the second sound and outputs the third sound. That is, when the third processing unit 52 outputs the third sound during the period when the first sound or the second sound is being output, the third processing unit 52 communicates with the first processing unit 32 or the second processing unit 42, stops the output of the sound being output among the first sound and the second sound, and outputs the third sound. This allows the notification by the emergency telephone unit 5 to be prioritized over the notification by the receiver unit 3 and the notification by the emergency broadcast unit 4. Also, even when the notification by the receiver unit 3 or the notification by the emergency broadcast unit 4 is being performed, the notification by the emergency telephone unit 5 can be prioritized over the notification by the receiver unit 3 and the notification by the emergency broadcast unit 4.

[0121] (3.2) Variation 2 In the integrated system 1 of the modified example 2, two or more of the first sound output unit 35, the second sound output unit 45, and the third sound output unit 53 are configured with the same speaker. This makes it possible to reduce the number of speakers and reduce the installation space.

[0122] For example, in the integrated system 1 of variant example 2, two of the first sound output unit 35, the second sound output unit 45, and the third sound output unit 53 may be configured with the same speaker, and the remaining sound output unit may be configured with a different speaker.

[0123] For example, the first sound output unit 35 and the second sound output unit 45 may be configured with the same speaker, and may be configured with a speaker separate from the third sound output unit 53. Here, the speaker functioning as the first sound output unit 35 and the second sound output unit 45 may be any of the speakers provided in the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5. Also, the speaker functioning as the first sound output unit 35 and the second sound output unit 45 may be a speaker provided in the integrated system 1 separately from the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5.

[0124] Also, for example, the first sound output unit 35 and the third sound output unit 53 may be configured with the same speaker, and may be configured with a speaker separate from the second sound output unit 45. Here, the speaker functioning as the first sound output unit 35 and the third sound output unit 53 may be any of the speakers provided in the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5. Also, the speaker functioning as the first sound output unit 35 and the third sound output unit 53 may be a speaker provided in the integrated system 1 separately from the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5.

[0125] Also, for example, the second sound output unit 45 and the third sound output unit 53 may be configured with the same speaker, and may be configured with a speaker separate from the first sound output unit 35. Here, the speaker functioning as the second sound output unit 45 and the third sound output unit 53 may be any of the speakers provided in the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5. Also, the speaker functioning as the second sound output unit 45 and the third sound output unit 53 may be a speaker provided in the integrated system 1 separately from the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5.

[0126] Furthermore, in the integrated system 1 of the second modification, the first sound output unit 35, the second sound output unit 45, and the third sound output unit 53 may be configured with the same speaker. Here, the speakers functioning as the first sound output unit 35, the second sound output unit 45, and the third sound output unit 53 may be any of the speakers provided in the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5. Also, the speakers functioning as the first sound output unit 35, the second sound output unit 45, and the third sound output unit 53 may be speakers provided in the integrated system 1 separately from the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5. This allows the number of speakers to be further reduced, and the installation space to be further reduced.

[0127] (3.3) Other Modifications The function equivalent to the integrated system 1 (or the integrated device 2) according to the above embodiment may be embodied as an integration method, a (computer) program, or a non-transitory recording medium having a program recorded thereon. The integration method according to one embodiment is executed by one or more processors included in the integrated system 1. The integrated system 1 includes a first processing unit 32, a second processing unit 42, and a common display unit 21. The first processing unit 32 is a processing unit of the receiver unit 3 that acquires a detection result from a detector 11 that is installed in the facility 100 and detects an abnormality. The second processing unit 42 is a processing unit of the emergency broadcast unit 4 that issues an emergency broadcast to the facility 100 based on the detection result. The integration method causes the common display unit 21 to commonly perform a first display, which is a notification as the receiver unit 3, and a second display, which is a notification as the emergency broadcast unit 4. The program according to one embodiment is a program for causing one or more processors to execute the above integration method.

[0128] The executing entity of the integrated system 1 or the integrated method in the present disclosure includes a computer system. The computer system is mainly composed of a processor and a memory as hardware. The function of the executing entity of the integrated system 1 or the integrated method in the present disclosure is realized by the processor executing a program recorded in the memory of the computer system. The program may be pre-recorded in the memory of the computer system, may be provided through an electric communication line, or may be provided by being recorded in a non-transitory recording medium such as a memory card, an optical disk, or a hard disk drive that can be read by the computer system. The processor of the computer system is composed of one or more electronic circuits including a semiconductor integrated circuit (IC) or a large scale integrated circuit (LSI). The integrated circuits such as IC or LSI referred to here are called by different names depending on the degree of integration, and include integrated circuits called system LSI, VLSI (Very Large Scale Integration), or ULSI (Ultra Large Scale Integration). Furthermore, a field-programmable gate array (FPGA) that is programmed after the manufacture of the LSI, or a logic device that can reconfigure the connection relationship inside the LSI or the circuit partition inside the LSI, can also be adopted as a processor. The electronic circuits may be integrated in one chip or distributed among multiple chips. The chips may be integrated in one device or distributed among multiple devices. The computer system referred to here includes a microcontroller having one or more processors and one or more memories. Thus, the microcontroller is also composed of one or more electronic circuits including a semiconductor integrated circuit or a large-scale integrated circuit.

[0129] Furthermore, it is not essential for the integrated system 1 that multiple functions are concentrated in one housing, and the components of the integrated system 1 may be distributed across multiple housings. For example, the receiver unit 3, the emergency broadcast unit 4, and the emergency telephone unit 5 may be distributed across multiple housings. Furthermore, at least some of the functions of the integrated system 1, for example, some of the functions of the integrated device 2, may be realized by the cloud (cloud computing) or the like.

[0130] The common display unit 21 may be included in the receiver unit 3, the emergency broadcast unit 4, or the emergency telephone unit 5. The common operation unit 22 may be included in the receiver unit 3, the emergency broadcast unit 4, or the emergency telephone unit 5. The touch panel display 23 may be included in the receiver unit 3, the emergency broadcast unit 4, or the emergency telephone unit 5.

[0131] In the above embodiment, the case has been exemplified where the third sound output unit 53 outputs the third sound which is a notification for the emergency telephone unit 5. However, the first sound output unit 35 may output the third sound which is a notification for the emergency telephone unit 5. This allows the third sound to be output even if the integrated system 1 does not include a third sound output unit which outputs the third sound, thereby enabling the installation space to be reduced.

[0132] In the above embodiment, the first processing unit 32, the second processing unit 42, and the third processing unit 52 are separate processing units. However, two or more of the first processing unit 32, the second processing unit 42, and the third processing unit 52 may be a common processing unit. For example, a processing unit included in the receiver unit 3 may function as the first processing unit 32, the second processing unit 42, and the third processing unit 52.

[0133] In the above embodiment, the common display unit 21 commonly performs the first display which is a notification for the receiver unit 3, the second display which is a notification for the emergency broadcast unit 4, and the third display which is a notification for the emergency telephone unit 5. However, the common display unit 21 may be configured to commonly perform the first display and the second display without performing the third display.

[0134] In the above embodiment, the case has been exemplified where the common operation unit 22 commonly accepts a first operation which is an operation for the receiver unit 3, a second operation which is an operation for the emergency broadcast unit 4, and a third operation which is an operation for the emergency telephone unit 5. However, the common operation unit 22 may be configured to commonly accept the first operation and the second operation without accepting the third operation.

[0135] (summary) As is clear from the above-described embodiment and modified examples, the integrated system (1) according to the first aspect includes a first processing unit (32), a second processing unit (42), and a touch panel display (23). The first processing unit (32) is a processing unit of a receiver system (receiver unit 3) that acquires a detection result from a detector (11) that is installed in a facility (100) and detects an abnormality. The second processing unit (42) is a processing unit of an emergency broadcast system (emergency broadcast unit 4) that broadcasts an emergency broadcast within the facility (100). The touch panel display (23) accepts a first operation that is an operation for the receiver system and a second operation that is an operation for the emergency broadcast system.

[0136] According to this embodiment, the number of mechanical switches and the like can be reduced, and the installation space can be reduced.

[0137] The integrated system (1) according to the second aspect is the same as the first aspect, and further includes a first sound output unit (35) and a second sound output unit (45). The first sound output unit (35) outputs a first sound which is a notification as the receiver system (receiver unit 3). The second sound output unit (45) outputs a second sound which is a notification as the emergency broadcast system (emergency broadcast unit 4).

[0138] The integrated system (1) according to the third aspect is the same as the integrated system (1) according to the first or second aspect, and further includes a first power supply unit (36) and a second power supply unit (47). The first power supply unit (36) supplies power to the first processing unit (32). The second power supply unit (47) supplies power to the second processing unit (42).

[0139] In the integrated system (1) according to the fourth aspect, in the third aspect, the first power supply unit (36) supplies power to the touch panel display (23).

[0140] According to this embodiment, the integrated system (1) does not need to include a power supply unit for the touch panel display (23).

[0141] The integrated system (1) according to a fifth aspect is in any one of the first to fourth aspects, and further includes a third processing unit (52). The third processing unit (52) is a processing unit of an emergency telephone system (emergency telephone unit 5) configured to be able to make an emergency telephone call.

[0142] According to this aspect, it becomes possible to make an emergency call.

[0143] In the integrated system (1) according to the sixth aspect, in the fifth aspect, the touch panel display (23) accepts a third operation which is an operation for the emergency telephone system (emergency telephone unit 5).

[0144] According to this embodiment, the number of mechanical switches and the like for accepting the third operation can be reduced, and the installation space can be reduced.

[0145] The integrated system (1) according to the seventh aspect is the second aspect, and further includes a third processing unit (52). The third processing unit (52) is a processing unit of an emergency telephone system (emergency telephone unit 5) configured to be able to make an emergency call. The first sound output unit (35) outputs a third sound that is a notification of the emergency telephone system.

[0146] According to this aspect, it is possible to reduce the installation space.

[0147] The integrated system (1) according to an eighth aspect is any one of the first to fourth aspects, and further includes a housing (20). The housing (20) houses a first processing unit (32), a second processing unit (42), and a touch panel display (23).

[0148] The integrated system (1) according to a ninth aspect is any one of the fifth to seventh aspects, and further includes a housing (20). The housing (20) houses the first processing unit (32), the second processing unit (42), the third processing unit (52), and the touch panel display (23).

[0149] The configurations other than those of the first embodiment are not essential to the integrated system (1) and may be omitted as appropriate. [Explanation of symbols]

[0150] 1. Integrated System 11 Sensor 100 Facilities 20. Cabinet 23 Touch panel display 3 Receiver unit (receiver system) 32 First Processing Section 35 First sound output section 36 1st power supply section 4 Emergency broadcast unit (emergency broadcast system) 42 Second Processing Section 45 Second sound output section 47 2nd power supply section 5 Emergency telephone unit (emergency telephone system) 52 Third Processing Section

Claims

1. a first processing unit which is a processing unit of a receiver system that acquires detection results from a detector that is installed in the facility and detects an abnormality; A second processing unit which is a processing unit of an emergency broadcast system that broadcasts an emergency broadcast within the facility; a touch panel display that receives a first operation that is an operation for the receiver system and a second operation that is an operation for the emergency broadcast system; Equipped with Integrated system.

2. a first sound output unit that outputs a first sound that is a notification of the receiver system; A second sound output unit that outputs a second sound which is a notification as the emergency broadcast system; Further comprising: The integrated system of claim 1 .

3. A first power supply unit that supplies power to the first processing unit; A second power supply unit that supplies power to the second processing unit; Further comprising: The integrated system of claim 1 .

4. The first power supply unit supplies power to the touch panel display. The integrated system of claim 3.

5. Further comprising a third processing unit which is a processing unit of an emergency telephone system configured to be able to make an emergency call. The integrated system of claim 1 .

6. the touch panel display accepts a third operation which is an operation for the emergency telephone system; The integrated system of claim 5.

7. A third processing unit that is a processing unit of an emergency telephone system configured to be able to make an emergency call is further provided, The first sound output unit outputs a third sound which is a notification of the emergency telephone system. The integrated system of claim 2.

8. Further comprising a housing, the housing accommodates the first processing unit, the second processing unit, and the touch panel display; The integrated system according to any one of claims 1 to 4.

9. Further comprising a housing, the housing accommodates the first processing unit, the second processing unit, the third processing unit, and the touch panel display; The integrated system according to any one of claims 5 to 7.

Citation Information

Patent Citations

  • Disaster prevention facilities

    JP2015230654A