APC ACSC101, ACSC100 manual General Configuration, Cooling unit configuration

Page 17

General Configuration

The cooling group configuration options are set during the commissioning of the cooling units in the cooling group.

Caution: This procedure must be performed by APC authorized personnel only. Changing the settings incorrectly can cause malfunctions to your cooling unit.

Cooling unit configuration

Path: Main > Configure Unit > General

Use the General menu to set the following:

Start-up Delay. The delay begins when the cooling unit is started and initialized. The cooling unit cannot begin operation until this delay expires. Use the start-up delay to restart equipment sequentially in your room after a scheduled downtime.

Idle On Leak. When set to Yes, the cooling unit will enter idle mode if a Water Detection Fault activates. Set to No to disable the cooling unit from entering idle mode if a leak is detected.

Note: The leak sensor (APC part number AP9325) is optional.

Note: There are three alarms that will cause the cooling unit to enter idle mode:

Water Detection Fault (when Idle On Leak is set to Yes)

Condensate Pump Fault

Cooling Failure

InRow SC Operation

11

Image 17
Contents Operation 동봉된 CD 안에 한국어 매뉴얼이 있습니다 Contents Network Management Card Maintenance American Power Conversion Legal Disclaimer Cross-reference symbol used in this manual Symbols used in this manualGeneral Information OverviewSafety Initial inspection checklist Inspection ChecklistsCommissioning Ensure thatMechanical inspection checklist Electrical inspection checklistStart-up inspection checklist User interface inspection checklistFinal inspection checklist While the cooling unit is operating, ensure thatDisplay Interface OperationScrolling status screens Using the Display InterfaceStatus Screen Name Status Information Displayed Main menu screensNavigating the sub-menus Navigating the main menuPassword entry Using the Path statementStop the cooling unit Start the cooling unitCooling unit configuration General ConfigurationEdit the normal state of input and output contacts ContactsView the state of input and output contacts Configure the cooling group Cooling Group ConfigurationIdentify the cooling unit Configure ModbusSupply Air Control the EnvironmentSetpoints Thresholds Run hoursService intervals Date and time Display SettingsPassword & time-out Display units Configure displayConfigure network Network ConfigurationCooling unit status View Status ReadingsModel Cooling group statusAbout the cooling unit Event Log Respond to AlarmsDisplayed Alarm Message Severity Action Required Alarm messages and suggested actionsThreshlds screen Configure Unit Discrete I/O screen. See page 17 for more TCP/IP configuration methods Quick ConfigurationNetwork Management Card OverviewIni file utility APC Device IP Configuration WizardBootp & Dhcp configuration NetworkTCP/IPBoot ModeDHCP onlyAdvancedDHCP Cookie Is Remote access to the control console Local access to the control consoleChoose Network from the Control Console menu Control consoleWeb interface Access a Configured Network Management CardTelnet and SSH Modbus Simple Network Management Protocol SnmpRecover From a Lost Password Monthly Preventive Maintenance MaintenanceCleanliness EnvironmentElectrical MechanicalFunctional tests Quarterly Preventive MaintenanceSemi-Annual Preventive Maintenance Problem Possible Cause Corrective Action TroubleshootingProblem Possible Cause One-Year Factory Warranty WarrantyTerms of warranty Non-transferable warranty ExclusionsWarranty claims Page Page 2009 990-2684A-001

ACSC101, ACSC100 specifications

The APC ACSC100 and ACSC101 are power distribution units designed to manage and protect electronic equipment in data centers and critical infrastructure environments. Known for their reliability and efficiency, these models provide an essential solution for organizations that depend on constant power supply and equipment availability.

One of the main features of the APC ACSC100 and ACSC101 is their modular design. This flexibility allows for tailored configurations based on the user's unique requirements, making them suitable for diverse environments, from small server rooms to large-scale data centers. The units can accommodate a variety of input and output configurations, which helps in optimizing space and enhancing power management strategies.

These models are equipped with advanced technologies that enhance their performance. For instance, the ACSC100 and ACSC101 incorporate intelligent monitoring systems that provide real-time insights into power usage and distribution. This allows system administrators to monitor the performance remotely, ensuring that any potential issues can be addressed promptly before they escalate into more significant problems.

Another prominent characteristic of these power distribution units is their high level of protection. They come with built-in surge suppression and fault protection, safeguarding critical equipment against power surges and electrical faults. This feature is especially vital in environments where sensitive electronic components are in operation.

Moreover, the APC ACSC series incorporates energy-efficient designs. These models comply with various industry standards aimed at reducing energy consumption while maximizing output, contributing to a lower carbon footprint. Their efficiency not only helps in cutting operational costs but also aligns with sustainability goals that many organizations are striving to achieve.

User-friendly interfaces are a highlight of the ACSC100 and ACSC101. They feature intuitive LCD screens that simplify configuration and monitoring processes. This ease of use reduces the likelihood of human error during setup and operation, making them accessible even for those with limited technical expertise.

In summary, the APC ACSC100 and ACSC101 are cutting-edge power distribution solutions built for reliability, efficiency, and protection. Their modular design, advanced monitoring technology, robust safety features, energy efficiency, and user-friendly interface make them ideal choices for businesses seeking dependable power management systems in critical environments. With these models, organizations can ensure that their electronic assets are well-protected and efficiently managed, leading to enhanced operational continuity.