IP Library Granted Patent US 6,955,535
Granted Patent B2
US 6,955,535 · App. 10/471,138 · Granted Oct 18, 2005

Array for an automatic firing device for a gas or oil burner

Assignee: Siemens Building Technologies AG
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Quick Facts
Patent No.
US 6,955,535
App. No.
10/471,138
Granted
Oct 18, 2005
Kind
B2
Abstract

Automatic operation of a blower burner ( 5 ) suitable for liquid and/or gaseous fuels for the generation of heat energy in a furnace ( 1 ) is monitored by an automatic regulating device ( 35 ). The automatic regulating device ( 35 ) comprises an automatic firing device array ( 26 ) and an actuating drive ( 27 ) located in a common housing ( 29 ). The automatic regulating device ( 35 ) is connected to a furnace control device ( 1 A), monitoring probes ( 39 ) and a fuel feeding and dosing device ( 12 ) by means of a terminal sleeve ( 36 ) in the housing ( 29 ). Based on the signals from the monitoring probes ( 39 ), the automatic regulating device ( 35 ) regulates the amount of air flowing into the combustion chamber ( 7 ) depending on the amount of fuel required for heat output so that optimal fuel combustion takes place in the combustion chamber ( 7 ) (for instance combined electronic control).

Claims (21)

1. An arrangement of an automatic firing apparatus for monitoring the operation of a fan burner suitable for liquid and/or gaseous fuels comprising a combustion chamber with a regulated supply of an amount of air predetermined to be sufficient for combustion of the fuel, wherein the amount of air flowing in an air duct leading to the combustion chamber is regulatable by a throttle device which alters the duct cross-section and wherein the amount of air is determined by the position of a setting drive arranged externally on the air duct and mechanically altering the duct cross-section, wherein at least circuits performing the functions of the automatic firing apparatus together with the setting drive and a mains unit configured to supply power to the circuits of the automatic firing apparatus and the setting drive are disposed in a housing of an automatic setting device, a setting drive shaft of the setting drive projects out of the housing and the automatic setting device is arranged at the fan burner.

2. An arrangement as set forth in claim 1 wherein the throttle device is a throttle flap rotatable about a shaft and arranged in the air duct and the throttle flap is connected mechanically to the setting drive shaft of the setting drive.

3. An arrangement as set forth in claim 2 wherein, in the housing, the automatic firing apparatus is connected pluggably as a module to the mains unit and the setting drive.

4. An arrangement as set forth in a claim 3 wherein a switch is arranged in the automatic setting device and in one position the switch is adapted to block the functions of the automatic firing apparatus and to directly connect circuits of the setting drive to external connection points of a connecting socket.

5. An arrangement as set forth in claim 2 wherein a logic unit with the circuits of the automatic firing apparatus and the setting drive with the mains unit are arranged on a printed circuit board in the housing.

6. An arrangement as set forth in claim 5 wherein the logic unit is a microprocessor and the microprocessor is adapted at least for performing the functions of the automatic firing apparatus and for actuating and monitoring the setting drive, wherein parameters and program portions for performing the functions of the automatic firing apparatus and for actuating and monitoring the setting drive are stored in a memory connected to the microprocessor.

7. An arrangement as set forth in claim 6 wherein a switch is arranged in the automatic setting device and in one position the switch is adapted to block performance of the functions of the automatic firing apparatus and to directly connect circuits of the setting drive to external connection points of a connecting socket.

8. An arrangement as set forth in claim 7 wherein the automatic setting device includes at least one actuation module connected to an external setting device and that the actuation module is adapted to receive and process signals for controlling and monitoring the external setting drive, in such a way that the automatic setting device and the external setting drive form an electronic composite control means in which a position of the external setting drive, which is predetermined by the actuation module, is a predetermined function of the position of the internal setting drive disposed in the automatic setting device.

9. An arrangement as set forth in claim 5 wherein a switch is arranged in the automatic setting device and in one position the switch is adapted to block the functions of the automatic firing apparatus and to directly connect circuits of the setting drive to external connection points of a connecting socket.

10. An arrangement as set forth in claim 2 wherein a switch is arranged in the automatic setting device and in one position the switch is adapted to block the functions of the automatic firing apparatus and to directly connect circuits of the setting drive to external connection points of a connecting socket.

11. An arrangement as set forth in claim 2 wherein the automatic setting device includes at least one actuation module connected to an external setting device and that the actuation module is adapted to receive and process signals for controlling and monitoring the external setting drive, in such a way that the automatic setting device and the external setting drive form an electronic composite control means in which a position of the external setting drive, which is predetermined by the actuation module, is a predetermined function of the position of the internal setting drive disposed in the automatic setting device.

12. An arrangement as set forth in claim 1 wherein the automatic setting device includes at least one actuation module connected to an external setting device and that the actuation module is adapted to receive and process signals for controlling and monitoring the external setting drive, in such a way that the automatic setting device and the external setting drive form an electronic composite control means in which a position of the external setting drive, which is predetermined by the actuation module, is a predetermined function of the position of the internal setting drive disposed in the automatic setting device.

13. An arrangement as set forth in claim 1 wherein a switch is arranged in the automatic setting device and in one position the switch is adapted to block the functions of the automatic firing apparatus and to directly connect circuits of the setting drive to external connection points of a connecting socket.

14. An arrangement as set forth in claim 1 wherein, in the housing, the automatic firing apparatus is connected pluggably as a module to the mains unit and the setting drive.

15. An arrangement as set forth in claim 14 wherein a switch is arranged in the automatic setting device and in one position the switch is adapted to block the functions of the automatic firing apparatus and to directly connect circuits of the setting drive to external connection points of a connecting socket.

16. An arrangement as set forth in claim 1 wherein a logic unit with the circuits of the automatic firing apparatus and the setting drive with the mains unit are arranged on a printed circuit board in the housing.

17. An arrangement as set forth in claim 16 wherein a switch is arranged in the automatic setting device and in one position the switch is adapted to block the functions of the automatic firing apparatus and to directly connect circuits of the setting drive to external connection points of a connecting socket.

18. An arrangement as set forth in claim 16 wherein the logic unit is a microprocessor and the microprocessor is adapted at least for performing the functions of the automatic firing apparatus and for actuating and monitoring the setting drive, wherein parameters and program portions for performing the functions of the automatic firing apparatus and for actuating and monitoring the setting drive are stored in a memory connected to the microprocessor.

19. An arrangement as set forth in claim 18 wherein a switch is arranged in the automatic setting device and in one position the switch is adapted to block the functions of the automatic firing apparatus and to directly connect circuits of the setting drive to external connection points of a connecting socket.

20. An arrangement as set forth in claim 19 wherein the automatic setting device includes at least one actuation module connected to an external setting device and that the actuation module is adapted to receive and process signals for controlling and monitoring the external setting drive, in such a way that the automatic setting device and the external setting drive form an electronic composite control means in which a position of the external setting drive, which is predetermined by the actuation module, is a predetermined function of the position of the internal setting drive disposed in the automatic setting device.

21. An arrangement as set forth in claim 1 wherein the automatic setting device includes at least one actuation module connected to an external setting device and that the actuation module is adapted to receive and process signals for controlling and monitoring the external setting drive, in such a way that the automatic setting device and the external setting drive form an electronic composite control means in which a position of the external setting drive, which is predetermined by the actuation module, is a predetermined function of the position of the internal setting drive disposed in the automatic setting device.

Assignments (2)
MERGER Recorded Jun 20, 2013
From: SIEMENS BUILDING TECHNOLOGIES AG
To: SIEMENS SCHWEIZ AG
Reel/Frame 030655/0436 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 23, 2004
From: DIEBOLD, ALEXANDER
To: SIEMENS BUILDING TECHNOLOGIES AG
Reel/Frame 015129/0782 →
Priority Claims (1)
DE 101 10 810 · Mar 6, 2001 · national
Continuity (1)
Related Publication 20040121275A1 · Jun 24, 2004