Emerson CSU 3000 ÕNJïîêPô, LTXLGý/LQHý&KDUJHýOEVïîìíýIWïý, $LUý&RROHGý0RGHOVýýýýýýýýýýìê

Page 19

7DEOHýæ

8QLWý5HIULJHUDQWý&KDUJH

 

 

 

 

 

 

 

 

&KDUJH

 

 

 

 

 

 

 

0RGHO

OEVï

 

õNJô

 

 

 

 

''ìêí$ýõSHUýPRGXOHô

éïí

 

õìïåô

 

 

 

 

 

&6ìêè$

 

åïí

 

õêïçô

 

 

 

 

&'ìåë$ýõSHUýPRGXOHô

çïí

 

õëïæô

 

 

 

 

 

&6ìåì$

 

ìíïí

 

õéïèô

 

 

 

 

&'ëìå$ýõSHUýPRGXOHô

çïí

 

õëïæô

 

 

 

 

&'ëæí$ýõSHUýPRGXOHô

åïí

 

õêïçô

 

 

 

 

&7êëæ$ýõSHUýPRGXOHô

çïí

 

õëïæô

 

 

 

 

&'êçë$ýõSHUýPRGXOHô

ìíïí

 

õéïèô

 

 

 

 

&7èéê$ýõSHUýPRGXOHô

ìíïí

 

õéïèô

 

 

 

 

&7ççê$ýõSHUýPRGXOHô

ìëïí

 

õèïéô

 

 

 

 

 

7DEOHýå

/HH¤7HPSý&RQGHQVHUý5HIULJHUDQWý&KDUJHý

 

õLQFOXGHVý5HFHLYHUô

 

 

 

 

 

 

 

 

 

 

&KDUJH

 

0RGHO

OEVï

 

õNJô

&6&íçè

ëæ

 

õìëïëô

 

 

 

 

&6&íåê/

ëæ

 

õìëïëô

 

 

 

 

&6&íåç

êä

 

õìæïæô

 

 

 

 

&6&íäæ

èé

 

õëéïèô

 

 

 

 

&6&ìíé/

êä

 

ìæïæ

 

 

 

 

&6&ìíæ/

èè

 

ëéïä

 

 

 

 

&6&ìíå

çç

 

õëäïäô

 

 

 

 

&6&ìêí

èê

 

õëéïíô

 

 

 

 

&6&ìçè/

èê

 

ëéïí

 

 

 

 

&6&ìæè

æç

 

õêéïèô

 

 

 

 

&6&ëíè/

æç

 

êéïè

 

 

 

 

&6&ëìç

ìëç

 

õèæïëô

 

 

 

 

&6&ëìæ/

ìíë

 

éçïê

 

 

 

 

&6&ëèì/

æè

 

õêéïíô

 

 

 

 

&6&ëèå

ììê

 

õèìïêô

 

 

 

 

&6&ëäì

ìèí

 

õçåïíô

 

 

 

 

&6&êíå/

ììê

 

õèìïêô

 

 

 

 

&6&êêí/

ìíì

 

õéèïåô

 

 

 

 

&6&êçí

ìéä

 

õçæïçô

 

 

 

 

&6&éìè/

ìéä

 

çæïç

 

 

 

 

&67éåí&

ìëí

 

èéïé

 

 

 

 

 

7DEOHýä

/LTXLGý/LQHý&KDUJHýOEVïîìíýIWïý

 

õNJïîêPô

 

 

 

/LQHý6L]Hý2ï'ïý&Xï

ý&KDUJH

 

ìîë§

íïæêýõíïêêô

 

 

 

 

èîå§

ýìïìæýõíïèëô

 

 

 

 

æîå§

ýëïééýõìïíäô

 

 

 

 

ìðìîåû

ýéïìçýõìïåçô

 

 

 

 

ìðêîåû

ýçïêêýõëïåêô

 

 

 

 

ìðèîåû

ýåïæíýõêïåäô

 

 

 

$LUý&RROHGý0RGHOVýýýýýýýýýýìê

Image 19
Contents Precision Cooling For Business-CriticalContinuity Liebert CSUPage Éïí */&2/ý&22/ý02/6 Ìïí 35/,0,1$5ý&216,5$7,216Ëïí ,167$//$7,21ý2ý,1225ý81,7 Êïí $,5ý&22/ý02/6Ëýýýýýýýýýý Èïí $75ý&22/ý02/6Çïí &2032117ý$-867017 Äïí $331,ý&ý¤ý3$16,21ý7$1Ýýýýýýýýýýê 7DEOHVÉýýýýýýýýýý 7DEOHýì 3528&7ý02/ý,1250$7,21Ëýýýýýýýýýý Ìïí 35/,0,1$5ý&216,5$7,216 Ìïì &RPSXWHUý5RRPý3UHSDUDWLRQÌïë TXLSPHQWý,QVSHFWLRQ Ëïì /RFDWLRQý&RQVLGHUDWLRQVÉýýýýýýýýýý,QVWDOODWLRQýRIý,QGRRUý8QLW Ëïë OHFWULFDOý&RQQHFWLRQVËïëïì /LQHý9ROWDJH 6HH#LJXUH é#IRU#FRQQHFWLRQ#ORFDWLRQV1127 7KLVýRSWLRQýLVýQRWýDYDLODEOHýRQý*O\FRROýXQLWVï Ëïëïë /RZý9ROWDJHRQH#FRQQHFWLRQ#GHYLFH#VXSSOLHV#DOO#PRGXOHV,1 VKXWGRZQ#HTXLSPHQW#LV#FRQQHFWHG#WR#WKH#PRGXOH1LHOGýLULQJý&RQQHFWLRQV Ëïê 3LSLQJý&RQVLGHUDWLRQVLJXUHýé OHFWULFDOý&RQQHFWLRQV LJXUHýè &RQQHFWRUýýHWDLOVýõVHHýLJXUH éôËïéïë &RRODQWý&RQQHFWLRQý2SWLRQV Ëïé &RRODQWý6XSSO\ý3LSLQJËïè LOOLQJýWKHý&RRODQWý&LUFXLW Ëïéïì +DUGý3LSLQJLJXUHýç 3LSLQJý&RQQHFWLRQV 7DEOHýé Ëïç SDQVLRQý7DQNÅýýýýýýýýýý,QVWDOODWLRQýRIý,QGRRUý8QLW Êïë OHFWULFDOý&RQQHFWLRQV Êïì &RQGHQVRUý/RFDWLRQÊïê 5HIULJHUDQWý3LSLQJ Ìíýýýýýýýýýý$LUý&RROHGý0RGHOV 7DEOHýè5HFRPPHQGHGý/LQHý6LHVý¤ý2ïïý&RSSHU RQGHQVHUý6LHVýDQGý3LSLQJý&RQQHFWLRQVÊïéïì 3LSLQJ Êïé /HH¤7HPSîORRGý%DFNý+HDGý3UHVVXUHý&RQWUROÊïéïë HK\GUDWLRQ FRPSUHVVRU#DUH#HQHUJLHG1 Êïéïê &KDUJLQJÊïéïé 5HIULJHUDQWý/HYHO 71 &ORVH#WKH#URWR²ORFN#YDOYH#DQG#GLVFRQQHFW#JDXJHV1LTXLGý/LQHý&KDUJHýOEVïîìíýIWïý ÕNJïîêPô$LUý&RROHGý0RGHOVýýýýýýýýýýìê F1 5RWR0ORFN#RXWOHW#YDOYH1 G1 3UHVVXUH#UHOLHI#YDOYH1 Êïéïè 0DWHULDOVý6XSSOLHGÌéýýýýýýýýýý$LUý&RROHGý0RGHOV $LUý&RROHGý0RGHOVýýýýýýýýýýìè LJXUHýä $LUý&RROHGý*HQHUDOý$UUDQJHPHQWýUDZLQJÉïé *O\FROý3LSLQJ Éïì U\FRROHUý/RFDWLRQVÉïë U\FRROHUý,QVWDOODWLRQ Éïê OHFWULFDOý&RQQHFWLRQVFRUURVLYH#ZLWK#XVH#LI#QRW#SURSHUO\#LQKLELWHG1 Éïè 3UHSDUDWLRQýRIý*O\FROý6ROXWLRQ7DEOHýìí 5RRPýHZý3RLQWý7HPSHUDWXUH 7DEOHýììRrohg 7DEOHýìê 9ROXPHýLQý6WDQGDUGý7\SHý/ý&RSSHUý3LSLQJ9ROXPH Hljkw LJXUHýìí ìñýëñý÷ýêýDQýLUHFWýULYHýU\FRROHUVLphqvlrq 3XPS \FROý3XPSýDWDó\FROý&RROHGý0RGHOVýýýýýýýýýýëì LJXUHýìì *O\FROý*HQHUDOý$UUDQJHPHQWýUDZLQJËëýýýýýýýýýý*O\FROý&RROHGý0RGHOV LJXUHýìë *O\FRROý*HQHUDOý$UUDQJHPHQWýLDJUDPÈïëïì 7Rý/RZHUý+HDGý3UHVVXUHý6HWWLQJ Èïì 3LSLQJÈïë DWHUý5HJXODWLQJý9DOYHV Èïí $75ý&22/ý02/67DEOHýìç 6WDQGDUGýXDOýî$OWHUQDWHýDWHUý6RXUFHý0RGHOV Èïêïì 2SHUDWLRQÈïêïë $6ýêíííý0RWRULHGý9DOYH Èïêïê 0RWRUý2SHUDWLRQý&KHFNÇïí &2032117ý$-867017 Çïì 3UHVVXUHý6ZLWFKHVÇïë &RQWUROý$GMXVWPHQWV Çïê $TXDVWDWý$GMXVWPHQW7DEOHýìä &DSDFLW\ý6HOHFWLRQý6ZLWFKý2SWLRQV Çïé &DSDFLW\ý6HOHFWLRQý6ZLWFKHVÇïè &\OLQGHUý8QORDGHU LJXUHýìè &RQWUROý%RýõZLWKý2SWLRQDOý8QORDGHUý&RPSRQHQWVôÇïçïë $GMXVWPHQW Çïç 7KHUPRVWDWLFýSDQVLRQý9DOYHÇïæ +RWý*DVý%\SDVVý9DOYH Çïçïì 2SHUDWLRQËåýýýýýýýýýý&RPSRQHQWý$GMXVWPHQW Çïæïë $GMXVWPHQW51 6HW#WKH#FDSDFLW\#VHOHFWRU#VZLWFK#LI#LW#LV#SURYLGHG1 LJXUHýìæ +RWý*DVý%\SDVVUhtxluhphqwv Æïí $331,ý$ý¤ý5,ð7+528*+ý6725$*ý7$1.ý$7$Åïì 6äíííý&RQQHFWLRQý.LWVýõIRUý,%0ìý6îäíííëý0DLQIUDPHVô LJXUHýìä 2SWLRQDOý6ý6HULHVý&RQQHFWLRQý.LWV FRQQHFWHG#WR#WKH#UHWXUQ#KHDGHU1Êëýýýýýýýýýý$SSHQGLý%ý¤ý&RRODQWý&RQQHFWLRQý2SWLRQV LJXUHý$ 2SWLRQDOý55ý6HULHVý+RVHý.LWV Dwhu Äïí $331,ý&ý¤ý3$16,21ý7$17DEOHýëí 9DULRXVý6\VWHPý9ROXPHV 0RGHOPage Page Page Ems Dearborn Drive Box Columbus, OHCtivi
Related manuals
Manual 44 pages 60.2 Kb

CSU 3000 specifications

The Emerson CSU 3000 is a cutting-edge control system designed for industrial automation, offering a robust platform for managing intricate processes across various sectors, including oil and gas, power generation, and chemical manufacturing. One of the standout features of the CSU 3000 is its scalable architecture, which allows for seamless integration into facilities of varying sizes and complexities. This flexibility enables operators to expand their systems as needed, responding promptly to changing production demands.

At the heart of the CSU 3000 is its advanced control technology, which employs a model-based predictive control strategy. This allows for enhanced process optimization by anticipating future conditions rather than solely reacting to current processes. By leveraging real-time data, the CSU 3000 can make informed decisions, thereby increasing efficiency and reducing operational costs.

Another notable characteristic of the CSU 3000 is its user-friendly interface. The system is designed with operators in mind, featuring intuitive dashboards and visualization tools that provide clear insights into operational performance. This reduces the training time required for new users and enables operators to quickly adapt to changes in process variables.

In terms of connectivity, the CSU 3000 supports various communication protocols, making it compatible with existing infrastructure and enabling easy integration with IoT devices. This connectivity feature facilitates a centralized data management system, which is critical for effective decision-making and real-time monitoring.

The CSU 3000 also emphasizes cybersecurity, with built-in measures to protect against unauthorized access and data breaches. This is increasingly important in today's digital environment, where industrial facilities are often targeted by cyber threats. Emerson has implemented robust security protocols and best practices to ensure that system integrity and data confidentiality are maintained.

Moreover, the CSU 3000 is designed for high reliability and uptime. Its infrastructure includes redundancy options, ensuring that operations can continue even in the event of hardware failure. This attribute is essential for industries where downtime can lead to significant financial losses.

In summary, the Emerson CSU 3000 control system stands out due to its scalable architecture, advanced predictive control capabilities, user-friendly interface, broad connectivity options, strong cybersecurity measures, and emphasis on reliability. As industries continue to evolve and embrace digital transformation, the CSU 3000 positions itself as a premier solution for optimizing industrial processes and enhancing efficiency.