Kromschroeder 88600099 BCU370WI1FEU0D3 burner control unit
Kromschroder 88600099 BCU370WI1FEU0D3 control box is a sophisticated system designed to oversee, ignite, and supervise the performance of industrial forced draught burners. Its capabilities extend to burners with unlimited capacity, allowing for operation in both intermittent and continuous modes. Equipped with advanced safety features and precise control mechanisms, Krom schroder 88600099 BCU370WI1FEU0D3 control unit ensures the optimal functioning of burner systems across various industrial settings. Its seamless integration and adaptable nature make it a reliable choice for managing burner operations efficiently and safely. With a focus on reliability and performance, it stands as a cornerstone in the realm of industrial burner control technology, facilitating enhanced operational control and safety assurance. Kromschroder BCU370WI1FEU0D3 88600099 control box technical data Mains voltage: 230 V AC, 50/60 Hz Flame control with UV sensor or ionisation sensor Flame signal for Ionization control: 1 – 28 μA, UV control: 1 – 35 μA For intermittent or continuous operation Air pressure check during pre-purge and operation by external air pressure switch DL Maximum length of ignition cable with integrated electronic ignition: 1 m Maximum length of ionisation/UV cable: 50 m (164 ft) Max. number of operating cycles: 250,000 Ambient temperature: -20 - +60 °C (-4 – +140 °F) Enclosure: IP 54 pursuant to IEC 529 Housing made of impact-resistant and heat-resistant plastic. Plug-in upper section with operating and display elements. Lower section with connection terminals, earthing strip and pre-wired neutral bus with spacious wiring chamber Electronic ignition, single-pole Fan control: 3 A relay Valve control: three-point step Flame control: ionization control (continuous or intermittent operation) or UV control (intermittent operation with UVS) Digital input function: integrated tightness control With bottom section Minimum burner pause time tBP: 0 s Burner start-up attempts: 1 Switch-on delay time tE: 0 s Pre-ignition time tVZ: 1 s Safety time 1, burner/pilot burner start-up tSA1: 5 s Flame proving period 1, burner/pilot tFS1: 2 s Safety time 2, main burner start-up tSA2: 3 s Flame proving period 2, main burner tFS2: 2 s Controller enable signal delay time tRF: 0 s Minimum burner on time tB: 0 s Safety time during operation tSB: 1 s V2 during burner operation: Off Behavior in the event of flame failure during operation: fault lock-out Burner switch-off threshold: 1 micro A UVS check (1 x in 24 hours): Off Operating time in Manual mode: limited to 5 minutes User-defined password Air monitoring during pre-purge: On Air monitoring during operation: On Gas pressure monitoring: On Digital input function: integrated tightness control TC test period tP: 10 s Fan run-up time tGV: 0 s Valve control: On Pre-purge on each start-up: On Pre-purge time tPV: 30 s Post-purge time tPN: 0 s Weight: 1.8 kg Krom schroder BCU370WI1FEU0D3 88600099 gas burner control unit application It can be used for directly ignited forced draught burners or forced draught burners ignited with pilot burner. Kromschroeder 88600099 BCU370WI1FEU0D3 control box activates the fan and sets the connected butterfly valve to Pre-purge and Ignition position. After pre-purge and burner start, the Enable signal is issued to an external controller, which positions the butterfly valve in accordance with the output demand. Post-purge occurs after the end of burner operation. Kromschroder 88600099 BCU370WI1FEU0D3 control unit monitors the gas and air pressure. An optionally integrated tightness control function checks the valves with an external gas pressure switch. Programmability by means of the optical interface and BCSoft PC software guarantees optimum adaptation to the relevant application. Adjustable start-up attempts and automatic restart, which can be activated, ensure the high flexibility of the burner equipment. The quick-start option allows standard-compliant startup of the forced draught burner without pre-purge after normal shutdown. This avoids unnecessary admission of air into the combustion chamber. The heat output is available as quickly as possible after a temperature demand.