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Building Technologies 

 

CC1N7106en 

HVAC Products 

 

20.02.2008 

Standards and certificates 

 

Conformity to EEC directives 
- Electromagnetic compatibility EMC (immunity) 
- Directive for gas-fired appliances 

 
2004/108/EC 
90/396/EEC 

 

 

 

   

   

 

ISO 9001: 2000 
Cert. 00739 

ISO 14001: 2004 
Cert. 38233 

 

 

Identification code to EN 298 

LME39.100… 

F T C L B N 

 

LME39.400… 

A B C L B N 

 

Disposal notes 

The unit contains electrical and electronic components and must not be disposed of to-
gether with domestic waste. 
Local and currently valid legislation must be observed. 

Mechanical design 

 

The housing is made of impact-proof, heat-resistant and flame-retarding plastic. It is of 
plug-in design and engages audibly in the base 

 

Burner controls LME39… and plug-in base AGK11.6 are silver-grey (RAL7001) 

 

The housing accommodates the 
- microcontroller for the control sequence and the control relays for load control 
- electronic flame signal amplifier (ionization) 
- lockout reset button with its integrated 3-color signal lamp (LED) for operational  
  status and fault status messages and the socket for connecting the OCI400 inter- 
  face adapter 

 

The AZL2… display and operating unit is for direct connection to the burner control. All 
safety-related digital inputs and outputs of the system are monitored by the contact 
feedback network. Operation and parameterization of the LME39… is accomplished 
with the AZL2… or via the OCI410… / ACS410 

 

Unlimited burner capacity (thermal output on startup 

120 kW) 

 

3 repetitions in the event of loss of flame during operation (can be parameterized) 

 

 

Multicolor indication of operational status and fault status messages 

 

Forwarding of operational status messages, fault status messages and full service 
information via additional OCI400 / OCI410… interface adapter and Windows ACS410 
PC software 

 
RJ11 jack for connection of the AZL2… display and operating unit or the OCI410… inter-
face adapter for communication and parameterization via Windows ACS410 PC tool. 
 
The most important time parameters for the program: 

 

Prepurge time (t1) 

 

Preignition time (t3) 

 

Postignition time (t3n) 

 

Interval (t4) 

 

Postpurge time 1 (t8-1) 

 

Opening time for actuators (t11) 

 

Closing time for actuators (t12) 

 
Both the prepurge time and the safety times are safety-related and can be changed by the 
OEM with the help of the display and operating unit. 

LME39... 

Indication and  
diagnostics 

Display and 
communication 

Time parameters 

Содержание LME39 Series

Страница 1: ......

Страница 2: ... any tools or pointed objects Fall or shock can adversely affect the safety functions Such units must not be put into operation even if they do not exhibit any damage Each time work has been carried out mounting installation service work etc check to ensure that wiring is in an orderly state and make the safety checks as described in Commissioning notes The data line for the AZL2 display and opera...

Страница 3: ...s is always responsible for the parameters their set tings and compliance of the respective application with the relevant national and inter national standards and safety regulations such as EN 676 EN 267 EN 1643 etc Siemens its suppliers and other Group Companies of Siemens Ltd do not assume responsibility for special or indirect damage consequential damage other damage or damage resulting from w...

Страница 4: ... 11 refer to Connection diagram Connecting cable from LME39 to AZL2 or from LME39 to OCI400 OCI410 Since the BCI interface has no safe separation from mains voltage the connecting ca ble between LME39 and AZL2 or LME39 and OCI400 OCI410 must con form to certain specifications Siemens has specified the cable for use under the burner hood cable supplied by Hütter refer to Technical data When using c...

Страница 5: ...to the flame detector Lockout at the end of TSA Max 3 repetitions b Burner operation with simulated loss of flame For that purpose cut off the gas supply Establishment of flame at the end of TSA Max 3 repetitions can be parameterized Factory setting Lockout No establishment of flame at the end of TSA Lockout c Burner operation with simulated air pressure failure not with atmospheric burners Immedi...

Страница 6: ... face adapter The AZL2 display and operating unit is for direct connection to the burner control All safety related digital inputs and outputs of the system are monitored by the contact feedback network Operation and parameterization of the LME39 is accomplished with the AZL2 or via the OCI410 ACS410 Unlimited burner capacity thermal output on startup 120 kW 3 repetitions in the event of loss of f...

Страница 7: ...37 5 4 2 75 1237 8 4 Increment s 0 147 0 294 0 147 0 147 0 294 5 0 147 1 Note on parameterization Use the AZL2 or ACS410 to always set the exact value of the required time multiples of increments of 0 147 seconds or 0 294 seconds When parameterizing minimum or maximum times the possibility of a 7 tolerance must be taken into con sideration For minimum values The value to be parameterized must be a...

Страница 8: ... Max 3 m at 100 pF m Possible input current terminals 6 and 11 0 5 mA Current rating At cosϕ 0 6 At cosϕ 1 Terminal 3 Max 2 7 A 15 A for max 0 5 s only LME2 Max 3 A Terminals 4 5 7 and 9 Max 1 7 A Max 2 A Terminal 10 Max 1 A Max 1 A Signal cable Color white Unshielded Conductor 4 x 0 141 mm Supplier Reference Hütter http www huetter co at telefonkabel htm Order number on request Location Under the...

Страница 9: ...etween ionization probe and ground AC voltmeter Ri 10 MΩ AC 50 120 V AC 115 230 V Switching threshold limit values Switching on flame on DC ammeter Ri 5 kΩ Switching off flame off DC ammeter Ri 5 kΩ DC 1 5 µA DC 0 5 µA DC 1 5 µA DC 0 5 µA Detector current required for reliable operation DC 3 µA DC 3 µA Switching threshold in the event of poor flame during operation LED flashes green Approx DC 5 µA...

Страница 10: ...uence DC 280 V DC 280 V DC current detector signals with UV detector QRA Min required Max possible Measurement at the UV detector QRA 200 µA 500 µA With LME39 A2 burner controls use of the AGQ3 A27 UV ancillary unit is mandatory A The correct functioning of aged UV cells can be checked with a UV test by ap plying a higher voltage to the UV cell after controlled shutdown until terminal 3 carries vo...

Страница 11: ...otor and the ignition equip ment are immediately deactivated 1 second Cause Response Mains failure Restart Voltage below undervoltage threshold Safety shutdown Voltage above undervoltage threshold Restart Extraneous light during t1 Lockout Extraneous light during tw Prevention of startup lockout after 30 sec onds at the latest No flame at the end of TSA Factory setting Lockout at the end of TSA Ca...

Страница 12: ... controlled startup can be performed via R or else lockout will be initiated Counting of repetitions is restarted each time a controlled startup via R takes place Duty of PC tool software The PC tool is a component of the LME39 system and serves primarily as an operator module for the following basic tasks Visualization of system status with the following data Parameters Process data Configuration...

Страница 13: ...ce adapter and the ACS410 PC software or flue gas analyzers of different makes 3 On the display of the AZL2 Visual diagnostics In normal operation the different operating states are indicated in the form of color codes according to the color code table given below During startup status indication takes place according to the following table Color code table for multicolor signal lamp LED Status Co...

Страница 14: ...ror code table Red blink code of signal lamp LED AL at term 10 Possible cause 2 blinks On No establishment of flame at the end of TSA Faulty or soiled fuel valves Faulty or soiled flame detector Poor adjustment of burner no fuel Faulty ignition equipment 3 x blinks On LP faulty Loss of air pressure signal after t10 LP welded in normal position 4 blinks On Extraneous light when burner startup 5 bli...

Страница 15: ...f LME39 400 NT RESET EK FSV ION L N M BV1 BV2 Z AL P 12 GP STB 7106a07e 1206 EK K1 K2 1 K2 2 K3 K4 K5 BCI H Si T R W 2 3 10 7 4 5 9 6 11 8 1 CPI DBR2 ZV1 μC control R W AL ZV1 BV1 BV2 Z FS tw t1 t3n TSA t4 7106d03 0706 11 10 3 7 4 5 1 t3 M 9 CPI 6 t22 SB GP 12 A B B C D EK2 8 A Times can be parameterized within the min max limits TSA t3n 0 7 s Other application examples The connection diagrams sho...

Страница 16: ...ng time for actuator SA t12 Programmed closing time for actuator SA t22 2nd safety time TSA Ignition safety time tw Waiting time AGK25 PTC resistor AL Error message alarm BV Fuel valve CPI Closed Position Indicator DBR2 Wire link EK Remote lockout reset button FS Flame signal GP Gas pressure switch HS Auxiliary contactor relay ION Ionization probe KL Low fire LK Air damper LKP Air damper position ...

Страница 17: ......

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