Power Management Systems PowerNet Introduction
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- Elfrieda Kennedy
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1 New Information utler-hammer Technical Data Effective: May 1999 Page 1 Power Management ystems PowerNet Introduction utler-hammer PowerNet Applications Energy Management Power Quality Reliability and Uptime Management Information ystems Integration Metered/Monitored Devices IQ Meters Protective Relays Trip Units Motor tarters Overload Relays Transfer witches Network Protectors I/O Modules upport for Multiple Vendor Integration ommunications Ethernet-Based Dedicated Twisted Pair Dial Up Radio Frequency oftware Modules Monitor and ontrol Graphical Display Energy Billing WaveForm Display PowerNet General The utler-hammer PowerNet system is designed to manage the power distribution system. This integrated power management system is the ideal tool to help manage energy costs, troubleshoot power quality problems, and ensure the reliability and integrity of the electrical distribution system. It is well suited for application in a manufacturing facility, a process-oriented plant, a commercial office building, a utility generating plant and a multi-building campus. The utler-hammer PowerNet system consists of PowerNet software networked with utler-hammer products of unparalleled breadth, accuracy and reliability: meters, relays, trip units, motor protectors, starters and transfer switch controllers, thus forming the most comprehensive power management system solution in the industry. In addition, the extensive library of third-party interfaces makes utler-hammer PowerNet uniquely qualified to be the single solution for an existing or new application. Energy Management A utler-hammer Power- Net system is the keystone of a successful energy management program. It can provide data to verify the energy bill for the site, allocate the cost to individual users, identify potential energy saving opportunities through submetering and load profiling, and provide the information necessary to construct and implement an energy strategy in the deregulated environment. utler-hammer PowerNet data can be delivered to desktop Ps throughout the facility, enabling energy users to be active participants in managing energy costs. With utler-hammer PowerNet, facilities have lowered energy costs by reducing consumption, identifying and modifying usage patterns, negotiating more attractive utility rate structures, and allocating costs to departments or processes. Power Quality A utler-hammer PowerNet system helps to ensure optimal electrical power quality, an increasingly important consideration with the continued growth of nonlinear loads and increasingly sensitive production and office equipment. Poor power quality can result in expensive downtime and costly equipment failures. The utler- Hammer PowerNet system provides real-time data and alarms as well as historical profiles to isolate the source, magnitude, time and direction of power quality problems, including voltage disturbances, harmonics and power factor. Reliability and Uptime A utler-hammer Power- Net system provides crucial electrical distribution system information to ensure power system uptime. It provides alarms warning of protective trips, potential equipment maintenance requirements, detailed trip diagnostic data, and other troubleshooting data essential to reliable operation. Use of this data can eliminate unnecessary trips and isolate a fault to ensure minimum downtime, thus minimizing lost revenue and profits. The remote configuration and data-gathering feature of utler-hammer PowerNet reduces labor costs, recording errors and potential miscoordination. Information and ystems Integration A utler-hammer PowerNet system ensures that the right information is available to anyone on- or offsite to make an informed decision. It combines the above mentioned
2 Technical Data Page 2 Effective: May 1999 PowerNet Introduction utler-hammer utler-hammer PowerNet oftware energy management, power quality and system uptime information with the software tools to turn that data into information that can help you manage your business more effectively. The information can be made available at the plant site, at headquarters or at a key consultant or service provider anywhere it is needed and the expertise to use it is available. The system brings the problem to the expert, instead of requiring the expert to go to the problem significantly improving productivity. All this using standard, open, Windows-based software, utilizing open Ethernet TP/IP architecture, substantially reducing the cost of implementing the utler-hammer PowerNet system. utler-hammer PowerNet and DeviceNet The utler-hammer PowerNet system can also be seamlessly integrated with the utler-hammer DeviceNet system into a single, common, site automation system. This combination of the facility (utler-hammer PowerNet) and the factory floor (DeviceNet) provides real-time and historical information to help manage your business. Information such as energy usage correlated with parts produced providing cost per piece or quality of power correlated with part rejects producing potential quality linkages provides the facility, production and front office staff more information to make better decisions. Architecture Flexibility is a key feature of the utler-hammer PowerNet open design network. Multiple users and vendors may use the same utler- Hammer PowerNet network, eliminating the need for a proprietary network dedicated to a single vendor. Your existing plant Ethernet network can be used as the backbone for your utler-hammer PowerNet monitoring system, avoiding the cost of installing dedicated network wiring or hardware. In addition, power management data can be shared across the facility or across the world. The high-speed Ether-net architecture of utler-hammer PowerNet is the same architecture that moves gigabits of data to millions of Internet and users. IMPA ompatibility utler-hammer PowerNet is backward compatible with existing IMPA systems on a dedicated network or twisted pair network. Engineering ervices upplementing the hardware and software, utler-hammer Engineering ervices can provide local startup and integration services to customize the utler-hammer PowerNet system to your specific business needs. Basic field start-up, integration of utler-hammer PowerNet into other plant systems, and remote monitoring of the plant with industry experts in energy and power quality are all services provided by our local field representatives. These services will ensure that you get maximum return on all of your system investments. utler-hammer PowerNet systems do not consist of exclusively utler-hammer products. Hundreds of drivers exist to communicate with many vendor s meters, protective relays and PLs.
3 utler-hammer PowerNet Introduction Technical Data Effective: May 1999 Page 3 Flexible Network Architecture A utler-hammer PowerNet network can be built in a variety of configurations. ystems can be built using existing Ethernet networks as the backbone as well as on a dedicated twisted shielded pair running throughout a facility. Telephone, radio and fiber modems can be used to create networks where it is cost prohibitive to run dedicated cables. The most flexible, highest performance network architecture includes a dedicated twisted shield pair network within the switchboard or equipment room connecting into a high speed Ethernet backbone. For a layout of a typical facility network, please refer to the utler-hammer PowerNet network overview on pages utler-hammer PowerNet ystem Ethernet Backbone TP/IP Ethernet networks have become the worldwide standard for moving information. Industry has recognized Ethernet as a high speed, flexible, low-cost network that is not vendor dependent. Multiple vendors and users can share Ethernet backbone networks. The utler-hammers PowerNet network utilizes a standard TP/IP Ethernet as the high speed backbone for carrying information to clients across the plant or across the world. The two products designed for interfacing directly to a TP/IP Ethernet network are the Ethernet PONI, designed for a single device, and a NetLink, designed to connect multiple devices to an Ethernet backbone. Ethernet networks can utilize a combination of cable, including unshielded twisted pair, coax and fiber. Dedicated Twisted hielded Pair ustomers who desire to run a dedicated network for the power monitoring network have a choice between a dedicated Ethernet network or running a twisted shielded pair. A network of 1000 devices running up to 10,000 feet can be networked through one twisted shielded pair of wire. For networks involving more than 1000 devices, a second twisted shielded pair can be added allowing 2000 devices to be monitored by a single computer. Existing Network Media When creating a network in an existing facility, it may not be economical to run a dedicated twisted shielded pair and Ethernet may not be available. In this case, line drivers are used to route communications across existing networks other than Ethernet. Line drivers allow the use of telephone lines, fiber and radio transmitters for wireless communications. Personal omputer with utler-hammer PowerNet oftware Load Interrupter witchgear Transformer Medium Voltage Unit ubstation Medium Voltage tarter Power Quality Metering Data Energy Information witch/breaker tarter tatus/ontrol Time tamped Events Breaker Operations Motor Runtime Motor Winding/Bearing Temperature Trip urve Monitoring/onfiguration Transformer Data Load Interrupter witchgear Transformer Low Voltage econdary Unit ubstation Power Quality Metering Data Energy Information tarter/breaker tatus/ontrol Time tamped Events Breaker Operations Trip urve Monitoring/onfiguration Low Voltage witchboard Lighting ontrol Panelboard Motor ontrol enter Adjustable Frequency ontrol Power Quality Metering Data Energy Information tarter/breaker tatus/ontrol Time tamped Events Breaker Operations Motor Operations Runtime Trip urve Monitoring/onfiguration Drive tatus Drive Metering Data Drive peed Adjustment/ontrol
4 Technical Data Page 4 Effective: May 1999 PowerNet Network Overview utler-hammer utler-hammer PowerNet Network ystem Overview AOUNTING Energy ost Allocation Energy User: AB hemical Test Rd. Anytown, UA Payment To: Billing To: Due Date: Billing Period From: 1/20/98 12:01:00 AM To: 2/19/98 12:00:00 AM Billing apacity harge Rate Period Off Peak On Peak Billing Energy harge Rate Period Other harges Fuel omponent Peak At kw Rate $ harge $ 2/11/98 4:45:00 AM , /11/98 3:35:00 PM , kw Rate $ harge $ Method Unit $ harge $ Per kwh , Total harge: 39, PLANT TP/IP MATERIAL PROEING BUILDING N0. 3 UTILITY WITHGEAR BUILDING NO V witchboard 38kV witchgear Arc Resistant witchgear Generator No V M LV witchgear LV Transfer witch DeviceNet utler-hammer PowerNet/DeviceNet Interface Network Protectors ETHERNET Example: Operator/supervisor station on plant floor. Industrial P with Netolver ORPORATE WIDE D740 Open Automation omputer ombination tarter DeviceNet DGate-IM PowerNet Low Voltage witchboard International Facilities Proximity ensor Limit witch Limit witch OPTIM IQ Energy entinel orporate Energy Accounting olutions PanelMate 1500 Operator Interface Dial-In Remote Access Photoelectric ensors Proximity ensor ombination tarter DeviceNet Network Example: Top down view of conveyor/packaging line with intelligent devices. Photoelectric ensor 480V M
5 utler-hammer PowerNet Network Overview Technical Data Effective: May 1999 Page 5 OPERATION ENGINEERING AND MAINTENANE Facility Monitoring IQ Analyzer and Ethernet PONI One-Line Monitoring Event Recording Alarming Trending Power Quality Analysis oordination ETHERNET NETWORK OFFIE WITHGEAR EQUIPMENT ROOM NO. 1 Power Manager Power Manager Power Manager Lighting ontrol Panelboard Lighting ontrol Panelboard 480V M witchboard utler-hammer PowerNet Local Display tation TP/IP AREA NETWORK B I M LV witchboard Pow-R-Line or i 1050 Manufacturing Plant orporate Engineering and Planning Billing Trending Power Quality Analysis oordination & P M U R Advantage LV Motor ontrol enter Field Twisted Pair
6 Technical Data Page 6 Effective: May 1999 PowerNet Device election hart utler-hammer PowerNet Device election hart ommunicating Device Function election hart Metering Devices LV Breaker Trip Units Protective Relays Miscellaneous Devices IQ Analyzer IQ DP-4000/IQ DP-4130 IQ 200 Power entinel Energy entinel Digitrip 1150 Digitrip RM910 Digitrip RM810 Digitrip OPTIM 1050 Digitrip OPTIM Voltage (phase-phase) Voltage (phase-neutral) urrent Phases urrent Ground Power kw kwh kva kvah Vars Varh PF Demand kw Demand kva Demand Ampere Demand kvar Demand Power Quality THD urrent THD Voltage THD BEMA/rest Factor Frequency urrent Waveform Voltage Waveform Other Features Downloadable etpoints Operations ount High Load Trip Target Data Remote Open/lose tart Profile Auxiliaries Input/Output Digital Input ➀ Digital Output 4(3) Analog Input ➀ Analog Output ommunication Modules IPONI 1.06 BPONI 1.05 INOM ommunications td. EPONI Ethernet PONI DeviceNet Gateway Network Protector Relays Digitrip 3000 MP 3000 IQ-1000II IQ 500 RTD Module Advantage AF Drives IQ Transfer witch Addressable Relay II AIM Pow-R-ommand Power Manager ➀ AIM can accept 32 inputs which can be used as digital or analog.
7 utler-hammer PowerNet oftware uite Technical Data Effective: May 1999 Page 7 utler-hammer PowerNet oftware uite The utler-hammer PowerNet oftware uite includes multiple client and server programs. utler- Hammer PowerNet software is sold in packages or can be purchased as individual components. Regardless of the components a user chooses to purchase, the customer will receive a compact disk including all client and server applications. These client applications can be loaded on any personal computer. A customer actually purchases the licenses to run the software. These licenses are controlled at the server and grant users anywhere on the network with the correct security privileges the right to run the software. lient licenses will run on a Windows 95, 98 and NT4.0 workstation or server. A Deviceerver communicating to a ONI card must run on Windows NT. NetPower Monitor The NetPower Monitor client is a simple-to-use, spreadsheet-like interface for real-time monitoring of the electrical distribution system. NetPower Monitor allows the user to customize the output in an interactive table format. Other features of NetPower Monitor are: Drag and drop configuration Active Monitor and ontrol screens for all configured utler- Hammer PowerNet devices ustomizable device groups. Device alarm monitoring NetPower Graphics NetPower Graphics is the powerful graphical user interface for integrating multiple vendors equipment within one software package for display of custom one-lines, elevation views and site plans. NetPower Graphics can provide the user with color-coded one-line symbols which indicate the device status, including open, close alarm and trip. It also has the ability to indicate the bus energization state and can be customized to locate alarms within user one-lines where an event has occurred. NetPower Graphics was developed based on the Wonderware InTouch software packaged with the utler- Hammer Net DDE erver and Active components for use as an integral component in the utler-hammer PowerNet system, fully compliant with the utler-hammer PowerNet security and communication network. NetPower DDE Pager The DDE Pager automatically alerts essential personnel that a parameter monitored through PowerNet has NetPower aptured Waveforms aptured Waveform urrents Voltages registered outside the predefined limits. The conditions warranting an alarm page are set by the PowerNet administrator and can be based on any monitored parameter. The administrator may require that an alarm page be sent immediately after a condition is registered, such as a circuit breaker timing out to trip, or may require that the alarm condition be present for a predefined period of time before creating an alarm page. onditions such as an undervoltage present for less than five seconds may not be considered an alarming event, but if the condition persists, a page may be sent. Additionally, a follow-up alarm page may be sent in response to any alarm condition not corrected. The alarms are picked up through a DDE server, allowing the integration of multiple vendors equipment as well as existing eries III systems. Both numeric and alphanumeric pagers are supported. NetPower Waveform The utler-hammer PowerNet suite also features the Waveform software which provides a snapshot of metering and power quality data at the time of wave captures. The user can view and upload captured waveforms from the following utler-hammer devices shown in the table below. NetPower Waveform can then be used to upload the waveform from the device for analyzing. utler-hammer Device IQ Analyzer Digitrip 910s Digitrip 1150 Digitrip OPTIM 1050 MPV Relay Phase A Phase B Phase Neutral Ground Line-Line Line-Neutral Ground-Neutral Transformer
8 Technical Data Page 8 Effective: May 1999 PowerNet oftware uite utler-hammer Waveform data can be displayed in multiple views based on the device capturing the waveform. Up to eight cycles of actual waveform Zoomed-in view of high speed waveform samples pectrum chart showing frequency content and magnitude (Fourier analysis). NetPower Bill ustomer: Franks porting Goods Level One #107 Demand harge Based on Peak Rate Period Peak At kw harge $ On-Peak 8:00:00 AM Part-On-Peak 9:30:00 AM ubtotal: kwh harge Rate Period kwh harge $ On-Peak , Part-On-Peak , ubtotal: Your ommon hared osts ommon Usage Method hares On-Peak HVA I Weight Points 30.6% Lighting ommon hare 35.5% Part-On-Peak HVA I Weight Points 30.6% Lighting ommon hare 35.5% Various Utility Related osts Method hares Unit $ harge $ ustomer harge Equal hare 50.0% Peak-Period Rate Limiter Adj. % of Total kwh 46.2% Average Rate Limiter Adj. % of Total kwh 46.2% 5.54 Economic timulus redit % of Total kwh 46.2% (762.60) Power Factor Adj. % of Total kwh 46.2% tate urcharge Weight Points 57.7% onnection harge Weight Points 64.5% (214.19) pecial harge Per kw: On-Peak kw hange Meter Labor Per kwh: Maximum kwh ubtotal: Total harge: 3, Typical Tenant Bill Payment To: The entury Mall entury Boulevard Pittsburgh, PA Billing Period From: 1/1/98 00:00 AM Billing Date: 2/1/98 To: 1/31/98 23:59 AM Due Date: 2/10/98 Energy User: Assembly Line 1 Product Name: Mid-ize edan Part #: BR549 Billing Period From: 1/1/98 00:00 AM Billing Date: 2/1/98 To: 1/1/98 23:59 AM Due Date: 2/10/98 Demand harge Based on Peak Rate Period Peak At kw harge $ On-Peak 1/22/ ubtotal: kwh harge Rate Period kwh harge $ On-Peak , , ubtotal: Various Utility Related osts Method Unit $ harge $ ustomer harge Equal hare Peak-Period Rate Limiter Adj. % of Total kwh Average Rate Limiter Adj. % of Total kwh 4.24 Economic timulus redit % of Total kwh (583.94) Power Factor Adj. % of Total kwh tate urcharge Weight Points onnection harge Weight Points (29.45) Equipment Renting ubtotal: Provides Accurate Per Unit ost Allocation Total ost ($) Produced Unit ost $ Units Typical Industrial User Report Product Total ost: 2, NetPower Bill is a billing software package that allocates energy consumption costs to individual tenants, departments, processes or products. This software produces reports, or Energy Bills, of individual energy usage which can be printed, saved to file or distributed via . Energy is allocated based on kwh and peak kw demand coincident to the utility peak demand. kvah on kva demand billing will also be available early ➀ Only one onfigurator is required per system. NetPower Bill also serves as a mechanism to evaluate alternate utility rate structures. Based on monthly billing data and various user-defined utility rate structures, NetPower Bill will provide reports which can be compared for cost effectiveness. NetPower Bill must be used in conjunction with the NetPower ore. NetPower Track, an add-on option to NetPower Bill, when used by industrial users as part of an MRP system, provides manufactured cost-perpiece information. NetPower DDE Energy Logging is an optional component that allows NetPower Bill to work with any non-utler-hammer meters with a standard DDE erver or a DDE erver from the meter manufacturer. NetPower Trend Energy Trending of Multiple Meters NetPower Trend displays historical load-profiles for the entire power distribution system. When used in conjunction with the NetPower Bill software, NetPower Trend presents load-profiles for individual meters or energy users. NetPower Trend can be configured to automatically plot curves at defined intervals daily, weekly or monthly. The flexibility of NetPower Trend allows a user to view an entire category of load or user data without manually selecting each member of that group; for example, a user may choose to view all chiller data, all department meters, all utility meters or all energy users. NetPower Trend also displays the time and value of a particular trend point when the user merely places the cursor near a trend point, thus eliminating the need for the user to approximate where the curve would intersect the axis. NetPower DDE erver The DDE erver provides real-time, power monitoring data in Microsoft tandard DDE format. HMI Programs, such as utler-hammer s NetPower Graphics, Wonderware InTouch, and others offer DDE interfaces into their software. The NetPower DDE server eliminates the use of NetDDE for transporting information across a network. User security and access control commands are controlled through PowerNet ecurity. DDE values provide validity bits ensuring data is valid and the network connection is intact. One DDE erver is required for each machine running a DDE client. NetPower Modbus Tools Modbus Tools allow a device server to be configured to output Modbus RTU information to an R-232 port at speeds up to 19.2K baud. Register mapping places information from IMPA meters and protective relays into Modbus RTU registers. The bridge also supports control features to allow a Modbus master to send control commands to the IMPA devices. NetPower ore NetPower ore consists of NetPower onfigurator, Deviceerver, NetPower License Manager, NetPower ecurity Manager and NetPower Tools, all of which are described below. NetPower onfigurator➀ The NetPower onfigurator is the utler-hammer PowerNet client package that allows configuration of PowerNet devices through a Device- erver. ystems can be configured while communicating or off-line for downloading at a later time.
9 utler-hammer PowerNet oftware uite Technical Data Effective: May 1999 Page 9 The onfigurator allows the user to define the device parameters to be polled and the polling rates for each parameter producing optimal, customized results. Three polling rates can be set to a one-second resolution. Device status can be polled at a higher polling rate than analog data to ensure quick notification of critical status changes such as trips. NetPower etpoints & Trip urve The NetPower etpoints & Trip urve client provides access to meter and protective relay settings, and if these devices allow remote configuration, the software enables these devices to be configured online. For devices not equipped for remote configuration, the device settings are displayed, but editing is disallowed. Meter and protective relay settings can be saved and downloaded to other devices with similar settings. The trip curve display feature allows for the display of an unlimited number of protective relay coordination curves to verify the system is properly coordinated. Other features of Trip urve Display include: A log-log coordination curve plotted on screen for trip units and motor protective relays with the click of a button. Online modification of trip curve pickups and time delays; instant verification of coordination with an updated trip curve. Automatic scale adjustment based on device pickup level. Addition or Removal of trip curves directly from the display screen. olor-coded curves tied to the device description for added clarity. Deviceerver The Deviceerver is a software or firmware program that can communicate to a maximum of 2000 devices per Deviceerver. The Deviceerver enables communications on a TP/IP network, providing utler-hammer PowerNet clients with real-time power data, device event information, device waveforms, energy logging, and historical profile data. The Deviceerver takes advantage of the message cueing capabilities of the ONI 3 card, buffering incoming and outgoing messages, thus reducing operating system delays by servicing multiple data messages per system request. A Deviceerver may be purchased to support Modbus RTU through a serial port in place of or in conjunction with its Ethernet network. Device Licensing Device licenses are available in packages of 20, 100, 200 or A device license must be applied to an individual Deviceerver running on a personal computer running Microsoft Windows NT or 95/98. NetLinks are included with an imbedded Deviceerver capable of communicating to 200 devices. NetPower License Manager NetPower License Manager is the server component of the utler- Hammer PowerNet suite that manages the number of client licenses that have been purchased by the customer. Each license is a floating license which, upon being relinquished by one client, may be issued to another client by the server. For example, suppose a customer purchased three Waveform client licenses. At any given time, three individuals may check out a license and run the software. When one of the individuals is finished running the software, the license may be returned to the server, allowing another individual to check out the unused license and begin running the Waveform client. Returning a license is as simple as clicking on Exit rather than Exit and Keep License. NetPower ecurity Manager The user with administrator privileges can create users on the utler-hammer PowerNet system, each with specific privileges. utler- Hammer PowerNet ecurity system then monitors users requests to access functions and either grants or denies access based on those predefined privileges. Devices also can be grouped into different classes and a user can be granted or denied control of a specific device class. NetPower Tools The NetPower Tools component of utler-hammer PowerNet manages the process of collecting power distribution data from Device erver and merging it to central ODB databases. No user intervention is required. At predefined time intervals hourly, daily or weekly data is merged into the central database. The ODB database then provides the composite information to client applications such as NetPower Trend to display load profiles and NetPower Bill to calculate energy bills. The advantage of distributing data storage is that the backbone network need not be available for data collection, and no data is lost when the network is temporarily shut down. NetPower Tools can also be used to archive and restore historical data.
10 Technical Data Page 10 Effective: May 1999 PowerNet oftware uite utler-hammer utler-hammer PowerNet Ordering Information lient/erver Packages 100 Device ore, Monitor, Trend, Waveform, DDE and DevGraphics 100 Device ore, Monitor, Trend, Waveform, DDE 20 Device ore, Monitor lient Packages Monitor, Trend, Waveform, DDE & Graphics Viewer Monitor, Trend, Waveform atalog Number PNEG100➀ PNED100➀ PNED20➀ PNEG PNED NetPower ore = onfigurator, License Manager, ecurity Manager, Tools, and Deviceerver NetPower ore 2 Device apability NetPower ore 20 Device apability NetPower ore 100 Device apability NetPower ore 200 Device apability NetPower ore 1000 Device apability NetPower Modbus Tools NetPower Monitor NetPower DDE erver NetPower Trend NetPower Waveform NetPower DDE Pager NetPower etpoints & Trip urve Display atalog Number NPORE2 NPORE20 NPORE100 NPORE200 NPORE1000 NPOREMOD NPMONITOR NPDDE NPETREND NPWAVEFORM DDEPAGER NPETPOINT atalog Number Development Environment Runtime Environment DDE and Existing Graphics Required Includes NetPower DDE Erver NetPower Graphics Development NetPower Graphics Runtime NetPower Graphics Viewer NetPower Graphics Development 256 Tag NetPower Graphics Update NetPower Graphics Runtime Update NetPower Graphics D NPID60K NPIR60K NPIV60K NPID256 NPID60KUP NPIR60KUP NP60D NetPower Billing Device ount Upgrades atalog Number atalog Number NetPower Bill 20 Tenant NetPower Bill 200 Tenant NetPower Bill 1000 Tenant NetPower Track Product ost Allocation NetPower DDE Energy Logging Upgrades from Existing IMPA eries III ystems eries III 20, Includes NetPower ore and Monitor eries III 200, Includes NetPower ore and Monitor eries III 1000, Includes NetPower ore and Monitor Waveform E-Trend Upgrade from Existing E-Bill ystems 20 Tenant E-Bill 200 Tenant E-Bill 1000 Tenant E-Bill Product osting Add-On to E-Bill NPBILL20 NPBILL200 NPBILL1000 NPBILLTRAK NPBILLDDE atalog Number NP20UP NP200UP NP1000UP NPWAVEUP NPETRENDUP atalog Number NPBILL20UPG NPBILL200UPG NPBILL1000UPG NPETRAKUPG Add 20 Devices to a Device erver Add 100 Devices to a Device erver Add 200 Devices to a Device erver Add 1000 Devices to a Device erver Add ontrol to Device erver Remove ontrol from Device erver Updates for urrent PowerNet Users NetPower ore Update for 2 Devices NetPower ore Update for 20 Devices NetPower ore Update for 100 Devices NetPower ore Update for 200 Devices NetPower ore Update for 1000 Devices NetPower Monitor Update to Latest Version NetPower DDE erver Update to Latest Version NetPower Bill Trend Update to Latest Version NetPower Waveform Update to Latest Version NPADD20 NPADD100 NPADD200 NPADD1000 NP NPN atalog Number NPORE2UP NPORE20UP NPORE100UP NPORE200UP NPORE1000UP NPMONITORUP NPDDEUP NPBILLTRENDUP NPWAVEFORMUP Miscellaneous PowerNet D Rom (Online Help) PowerNet Printed Users Manual atalog Number PND PNUM ➀ Add an N for no control option. ➁ Windows NT required with ONI ard. ➂ Add a D to catalog number for a Hardware Key. ➃ Hardware key upgrades required with an existing hardware key. ➄ Requires NetPower ore. ➅ Requires NetPower Bill and ore.
11 utler-hammer PowerNet Technical Data Effective: May 1999 Page 11 Notes
12 Technical Data Page 12 Effective: May 1999 PowerNet utler-hammer opyright utler-hammer Inc., All Rights Reserved. TD1715TE utler-hammer Printed in U..A. / ZTD99016
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