Integration Library
It may not be visible from space, but all equipment supported by Gapit Nordics is shown here. Equipment that we plan to support will also be listed here. Information regarding configuration, available data parameters, manuals, etc. can be found by clicking the links in the lists below.
HVAC Systems
Devices for Heating, Ventilation and Air condition
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Info about HVAC Systems
First and foremost, HVAC stands for heating, ventilation, and air conditioning. This system provides heating and cooling to residential and commercial buildings. You can find HVAC systems anywhere from single-family homes to submarines where they provide the means for environmental comfort. Becoming more and more popular in new construction, these systems use fresh air from outdoors to provide high indoor air quality. The V in HVAC, or ventilation, is the process of replacing or exchanging air within a space. This provides a better quality of air indoors and involves the removal of moisture, smoke, odors, heat, dust, airborne bacteria, carbon dioxide, and other gases as well as temperature control and oxygen replenishment.
Manufacturer | Name | Gapit code | |
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Vertiv | Liebert cooler unit | gapit-01-01 | |
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Daikin | Daikin | gapit-01-02 | |
Schneider Electric | Unifair LE | gapit-01-03 | |
Excool | Datacoolers | gapit-01-04 | |
RC Group | RC Coolers | gapit-01-05 | |
Vertiv | Vertiv Chillers | gapit-01-06 | |
OJ Electronics | OJ Air 2 master | gapit-01-07 | |
Carel | pCOWeb card | gapit-01-08 | |
Siemens | Ebm-papst series 84 / 112 / 150 / 200 | gapit-01-09 | |
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Clivet | WSH-XSC11D | gapit-01-10 | |
Climaventa | NECS-W 0552 | gapit-01-12 | |
Evco | C-Pro3 | gapit-01-13 | |
Excool | Trend IQ3 | gapit-01-14 | |
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Carel | c.pCO | gapit-01-15 | |
Saia Burgess Controls | PCD3.M9 | gapit-01-16 | |
Carrier | 30XWV Sr11x | gapit-01-17 | |
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HiRef | CDZ | gapit-01-18 | |
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Breakers and ATS/STS
A circuit breaker is an electrical safety device designed to protect an electrical circuit from damage caused by an overcurrent or short circuit. ATS means Automatic transfer switch and STS means static transfer switch.
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Info about Breakers and ATS/STS
A circuit breaker is an electrical safety device designed to protect an electrical circuit from damage caused by an overcurrent or short circuit. Its basic function is to interrupt current flow to protect equipment and to prevent the risk of fire. Unlike a fuse, which operates once and then must be replaced, a circuit breaker can be reset (either manually or automatically) to resume normal operation. The generic function of a circuit breaker, or fuse, as an automatic means of removing power from a faulty system, is often abbreviated as OCPD (Over Current Protection Device). STS is used in two separate switch between AC power supply, the first road after the failure of STS automatically switch to the second road to the load power supply, the second the words of STS path failure automatically switches to the first road to the load power. ATS is mainly used in emergency power supply system, will automatically load circuits from a power supply for access to another (standby) power supply switching equipment to ensure that critical load of a continuous, reliable operation.
Manufacturer | Name | Gapit code | |
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Schneider Electric | NSX | gapit-02-01 | |
Socomec | ATyS p M | gapit-02-02 | |
Schneider Electric | Masterpackt MTZ2 | gapit-02-03 | |
ABB | SACE Emax 2 | gapit-02-04 | |
ABB | Tmax | gapit-02-05 | |
ABB | SACE Tmax T | gapit-02-07 | |
ABB | Ekip LSI | gapit-02-08 | |
Bender | ATICS2 ISO 63 | gapit-02-09 | |
Siemens | 3VA | gapit-02-10 | |
Siemens | 3VL | gapit-02-11 | |
Schneider Electric | Micrologic 5.2x,5.3x,6.2x and 6.3x | gapit-02-12 | |
Siemens | 3WL | gapit-02-13 | |
Siemens | 3VA27 and 3WL10 | gapit-02-14 | |
Chint | NXZ(H)M and NXZ(H)B | gapit-02-15 | |
ABB | Emax | gapit-02-16 | |
Socomec | Statys | gapit-02-17 | |
Schneider Electric | Micrologic X.XP Trip Units | gapit-02-18 | |
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ABB | Tmax XT | gapit-02-19 | |
Siemens | COM800 | gapit-02-21 | |
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Grid analyzers
A network analysis solution that converts measurement data from network stations into key figures and graphs providing you with valuable information and insights to act upon.
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Info about Grid analyzers
A mains analyzer is most often used in main boards / sub-departments etc. where it is to show consumption for the board in question, or at certain outputs in the board. They very often have a display, and are used to measure large currents. For the circuit to be measured, it is connected to transformers which in turn are connected to a mains analyzer Type of measurement: current, voltage, frequency, THD, power factor, energy, active and reactive power, etc. It stores the consumption measurements for current, month, largest, smallest and average. different communication protocols for reading consumption via ethernet.Modbus RTU / TCP is mostly used.
Manufacturer | Name | Gapit code | |
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IME | Nemo 96HD/HD+ | gapit-03-01 | |
IME | Nemo D4-Le MFD4421 | gapit-03-02 | |
Schneider Electric | PM 750/710 | gapit-03-03 | |
Schneider Electric | PM5000 series | gapit-03-04 | |
Schneider Electric | PM ION 7000 series | gapit-03-05 | |
Schneider Electric | PM ION 6200 | gapit-03-06 | |
Circutor | CVM-Mini | gapit-03-07 | |
Circutor | CVM-C10 | gapit-03-08 | |
Circutor | CVM-NRG96 | gapit-03-09 | |
Circutor | CVM-1D | gapit-03-10 | |
IME | Nemo 96 HD LE | gapit-03-11 | |
IME | Conto IMP IF4C001 | gapit-03-12 | |
IME | Nemo D4 LE MFD4421 | gapit-03-13 | |
IME | Nemo 96EA | gapit-03-14 | |
Carlo Gavazzi | WM3-96 | gapit-03-15 | |
Carlo Gavazzi | CPA series | gapit-03-16 | |
Entes | MPR-34S-20 | gapit-03-17 | |
Entes | MPR-47S | gapit-03-18 | |
Siemens | PAC4200 | gapit-03-19 | |
ABB | DMTME-I-485-96 | gapit-03-20 | |
Siemens | PAC5200 | gapit-03-21 | |
Siemens | PAC 3200/3220 | gapit-03-22 | |
Schneider Electric | PM800 | gapit-03-24 | |
Schneider Electric | PM ION 7500 (Old type) | gapit-03-25 | |
Deif | MIC-2-MKII | gapit-03-26 | |
Deif | MIQ 96-2 | gapit-03-27 | |
Deif | MIQ 96-3 | gapit-03-28 | |
Socomec | Diris digiware | gapit-03-29 | |
Schneider Electric | ION 9000 | gapit-03-30 | |
Janitza | UMG 512 | gapit-03-31 | |
Janitza | MPA-3 | gapit-03-32 | |
Schneider Electric | PM8000 | gapit-03-33 | |
Bender | LINETRAXX® PEM575 | gapit-03-34 | |
Phoenix contact | EMpro | gapit-03-35 | |
Socomec | Diris A-40 | gapit-03-36 | |
Seneca | S604 | gapit-03-38 | |
Bender | LINETRAXX® PEM735 | gapit-03-39 | |
Carlo Gavazzi | WM 20/30/40/50 | gapit-03-40 | |
Carlo Gavazzi | EM26 | gapit-03-41 | |
Accuenergy | Acuvim II | gapit-03-42 | |
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Bender | LINETRAXX® PEM353 | gapit-03-43 | |
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Energy meters
Electric meter or energy meter measures the total power consumed over a time interval.
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Info about Energy meters
An electricity meter, electric meter, electrical meter, energy meter, or kilowatt-hour meter is a device that measures the amount of electric energy consumed by a residence, a business, or an electrically powered device.
Manufacturer | Name | Gapit code | |
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Crompton | DL1 | gapit-04-01 | |
Carlo Gavazzi | EM111 | gapit-04-02 | |
Carlo Gavazzi | EM280 | gapit-04-03 | |
IME | Conto D2 MID | gapit-04-04 | |
ABB | CMS 700 | gapit-04-05 | |
IME | Conto D4-S | gapit-04-06 | |
Circutor | ED-MK | gapit-04-07 | |
Micro matic | SE-C series | gapit-04-08 | |
eTactica | EB-3XX | gapit-04-09 | |
Schneider Electric | PowerTag | gapit-04-10 | |
ABB | A41/42/43/44 | gapit-04-11 | |
Carlo Gavazzi | EM24 | gapit-04-12 | |
eTactica | Power meter EM | gapit-04-13 | |
Schleifenbauer | DPM3 | gapit-04-14 | |
ABB | B21 | gapit-04-15 | |
ABB | B23/B24 | gapit-04-16 | |
ABB | M2M | gapit-04-17 | |
IME | Conto D4-pt/72-pt/96-pt | gapit-04-18 | |
IME | Conto D4-pd | gapit-04-19 | |
IME | Conto D1 | gapit-04-20 | |
IME | Conto D4-pd-3 | gapit-04-21 | |
IME | Conto D6 | gapit-04-22 | |
Packet power | GW4 | gapit-04-23 | |
Inepro Metering | PRO 380-Mod | gapit-04-24 | |
IME | Conto D4-PT-MID CE4TBDTMID | gapit-04-25 | |
ND Metering Solutions | Rail 310 | gapit-04-26 | |
Siemens | 7KM PAC3200T | gapit-04-27 | |
Siemens | 7KT PAC1600 | gapit-04-28 | |
IME | Conto D4-PD-MID-21/31 | gapit-04-29 | |
Rayleigh Instruments | RI-D460 | gapit-04-30 | |
Siemens | PAC3100 | gapit-04-31 | |
Siemens | PAC2200 | gapit-04-32 | |
Aidon/Kamstrup/Kaifa | PIIGAB M-BUS 900S | gapit-04-33 | |
ABB | M4M 20 | gapit-04-34 | |
Carlo Gavazzi | EM300 | gapit-04-35 | |
Schneider Electric | IEM3000 | gapit-04-36 | |
Carlo Gavazzi | EM271 | gapit-04-37 | |
Carlo Gavazzi | EM270 | gapit-04-38 | |
Carlo Gavazzi | EM100/ET100 | gapit-04-39 | |
Wago | Wago 879-3000 | gapit-04-41 | |
Generator & Load Controllers
Most of the engine/generator controllers used today are digital and are designed to provide control of the generator. The controller system minitors the operation of the engine and generator functions.
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Info about Generator & Load Controllers
Typical safety items include low oil pressure, high temperature, engine start over-crank, over/under frequency (speed), low coolant level etc. Modern digital controllers for residential or small business applications are typically a simplified LED indicators a start-stop button with or without auto-start. If the generator has auto-start, the controller can be used to interface with an automatic transfer switch or inverter/battery system to start and stop automatically. Usually manual controls are provided on al generators including those with auto-start. Advanced controllers provides real time monitoring of volts, hertz and amperage in addition to the basic engine/generator safeties and auto-start functions. Complex controllers typically installed on larger generator systems provide engine safeties and shutdowns for low oil pressure, high temperature, engine start over-crank, over/under-speed, low coolant level and also have indicators for low fuel level, KVA output, KW output, power factor (PF), engine & generator gauges in real time. Larger generators often have a communication capability for remote monitoring and starting.
Manufacturer | Name | Gapit code | |
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Woodward | Easygen 3200XT | gapit-05-01 | |
Deep Sea Electronics | DSE 8620 | gapit-05-02 | |
FG Wilson | FG Wilson | gapit-05-03 | |
Deif | GPC-3 | gapit-05-04 | |
Woodward | Easygen 3200 | gapit-05-05 | |
SDMO | Kerys | gapit-05-06 | |
Woodward | Easygen 3000 | gapit-05-07 | |
Woodward | Easygen 1500 | gapit-05-08 | |
Deif | AGC-4 | gapit-05-09 | |
Deif | GPC-3 | gapit-05-10 | |
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Deif | ALC-4 | gapit-05-11 | |
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Earth fault detectors
Ground-fault detection through insulation monitoring and residual current monitoring
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Info about Earth fault detectors
Insulation monitoring devices continuously monitor the insulation resistance of IT systems (unearthed systems) and issue an alarm if the value falls below a response value. Residual current monitors are used to monitor earthed systems (TN and TT systems) for fault currents or residual currents. The sum of all conductors except the protective earth conductor is measured by means of measuring current transformers.
Manufacturer | Name | Gapit code | |
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Circutor | CBS-8-RCM SCE | gapit-06-01 | |
Bender | ISO 685 | gapit-06-02 | |
Bender | COM-462RTU | gapit-06-03 | |
Bender | ISO HV425 | gapit-06-04 | |
Bender | ISO425 | gapit-06-05 | |
Circutor | CBS4 | gapit-06-06 | |
Bender | COM 465IP | gapit-06-07 | |
Bender | IRDH 575 | gapit-06-08 | |
Bender | EDS 460-D | gapit-06-09 | |
Bender | EDS 470-12 | gapit-06-10 | |
Bender | RCMS 470 | gapit-06-11 | |
Bender | EDS 151 | gapit-06-12 | |
Bender | RCMS 490 | gapit-06-13 | |
Schneider Electric | Vigirex RMH | gapit-06-14 | |
I/O controllers
The basic concept of I/O is that for every input there should be an output. When talking about I/O controls in computer terminology, this can be defined as any set of programs, operations, and/or devices that transmit data between computer systems or other I/O devices. For every input that's sent through a computer system, it will produce an output.
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Info about I/O controllers
An example of an I / O controller could be an I / O controller located in a fire control panel. When it receives a signal from the fire control panel, it sends out a signal via, for example, Ethernet to the ventilation system, which in turn switches off predetermined fans to prevent the spread of fire.
Manufacturer | Name | Gapit code | |
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IME | Conto Imp | gapit-07-01 | |
Seneca | Z-D-IN-1 | gapit-07-02 | |
Weidmueller | UR20-FBC-MOD | gapit-07-03 | |
Wago | 750-315 | gapit-07-04 | |
Honeywell | Eagle | gapit-07-05 | |
Comet | Web sensor with PoE | gapit-07-06 | |
AKCP | THS01 | gapit-07-07 | |
TTK | Leak detection | gapit-07-08 | |
KNX | KNX controller | gapit-07-09 | |
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Gapit | IO-Guard | gapit-07-11 | |
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Gapit | Noise level | gapit-07-12 | |
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ABB | Ekip UP | gapit-07-13 | |
ABB | RTU 520 | gapit-07-14 | |
Siemens | PX IO Controller | gapit-07-15 | |
Seneca | Z-4AI | gapit-07-16 | |
Tridium | Niagara | gapit-07-17 | |
Seneca | Z-4RTD2 | gapit-07-18 | |
King Pigeon Hi-Tech CO., Ltd | M210T | gapit-07-19 | |
King Pigeon Hi-Tech CO., Ltd | M310T | gapit-07-20 | |
King Pigeon Hi-Tech CO., Ltd | M340T | gapit-07-21 | |
ABB | Arc guard system TVOC-2 | gapit-07-22 | |
Schneider Electric | NetBotz450 | gapit-07-23 | |
Brodersen | RTU32N | gapit-07-24 | |
Wago | PFC200 | gapit-07-25 | |
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Other datasources
Other datasources like type API
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Info about Other datasources
API stands for Application Programming Interface. In the context of APIs, the word Application refers to any software with a distinct function. Interface can be thought of as a contract of service between two applications. This contract defines how the two communicate with each other using requests and responses.
Manufacturer | Name | Gapit code | |
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Gapit | EOS/PUE | gapit-08-02 | |
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MET | Weather | gapit-08-03 | |
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MET | Lyndata | gapit-08-04 | |
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Flir | AX8 | gapit-08-05 | |
SafeLine | Lyra | gapit-08-06 | |
Norges Bank | Currency | gapit-08-07 | |
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Transparency Entsoe | Electricity price | gapit-08-08 | |
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NIX | Internet traffic | gapit-08-09 | |
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NNSN | Earthquakes | gapit-08-10 | |
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Statnett | Co2 Emission | gapit-08-11 | |
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Libre | Status & Alerts | gapit-08-12 | |
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UPS and IPS
UPS = Uninterruptible power supply. Usually the backup power switch within 10ms. Can be used as a backup power source for a computer for a short period of time, in case of power fluctuation. IPS = Instant Power Supply. Switching time is large and can be 1s. Used as backup power. Has large capacity.
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Info about UPS and IPS
The UPS allows the power to flow through the system so that the data can be saved before the primary supply is fully shut down. It also protects the system from power surges. The UPS has a battery which comes in contact with the power supply of the devices when it senses the power loss from the main supply. Their circuit consists the inverter, battery and the controller. The UPS converts the AC to DC by the help of the rectifier and again converts the DC power into AC power by the help of an inverter.
Manufacturer | Name | Gapit code | |
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Schneider Electric | Galaxy 7000 | gapit-09-01 | |
Schneider Electric | Galaxy VM / VX | gapit-09-02 | |
Eaton | Power Expert (Network Management Card Network-MS) | gapit-09-03 | |
Eltek | Smartpack S | gapit-09-04 | |
Omron | S8VK-X | gapit-09-05 | |
ABB | PowerValue 11 RT UPS | gapit-09-06 | |
Vertiv | Chloride 80-net | gapit-09-07 | |
Vertiv | Liebert Hipuls | gapit-09-08 | |
Vertiv | Liebert APM/NXC/NXR/EXL S1 | gapit-09-09 | |
Eaton | PXGX | gapit-09-10 | |
Phoenix Contact | QUINT-UPS/ 1AC/ 1AC/500VA | gapit-09-11 | |
Phoenix Contact | Quint4-UPS-24DC/24DC EIP | gapit-09-12 | |
Socomec | DELPHYS GP - Green Power 2.0 | gapit-09-13 | |
Gamatronic | Centric | gapit-09-14 | |
ABB | DPA upscala | gapit-09-15 | |
Riello | Riello | gapit-09-16 | |
Schneider Electric | Galaxy 5000 | gapit-09-17 | |
Eaton | Powerware 9395 | gapit-09-18 | |
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Schneider Electric | Galaxy VS | gapit-09-19 | |
Schneider Electric | Galaxy VL | gapit-09-19-2 | |
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Huawei | UPS 5000-S | gapit-09-20 | |
Schneider Electric | APC Symmetra PX | gapit-09-21 | |
Schneider Electric | Easy UPS 3S10-40kVA-DY802 | gapit-09-22 | |
Battery health systems
A Battery Health Monitoring System (BHMS) is a highly advanced and sophisticated battery health and efficiency monitoring system.
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Info about Battery health systems
A BHMS maintains complete security and offers correct guidance and enhanced battery performance. BHMS evaluates the battery bank's netload, bacterial bank deterioration during the loading/unloading cycles, as well as actual battery efficiency. The battery control system monitors all cells in the battery bank continually to detect cell deterioration before failure. The net capacity in the battery bank is identified by monitoring charging and discharging currents. Monitoring your battery helps to keep track of the voltage and current of a battery in real-time. This allows for information about how much power the battery has stored, how much power is being drawn from it, and how long the charge will last to be displayed. Communication protocols are often Modbus, SNMP or BACnet.
Manufacturer | Name | Gapit code | |
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Midtronics | Cellguard system gen 3 Telco | gapit-10-01 | |
Cellwatch | GMS-CLW | gapit-10-02 | |
Batscan | Batscan | gapit-10-03 | |
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Generex | BACS | gapit-10-04 | |
Samsung | SDI | gapit-10-05 | |
Anda-Olsen | Battery monitoring | gapit-10-06 | |
Schneider Electric | Galaxy Lithium-ion Battery Cabinet IEC | gapit-10-07 | |
Weather stations
Smart Weather station
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Info about Weather stations
Is a smart weather station that has the option of communication via a communication protocol
Manufacturer | Name | Gapit code | |
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Lufft | WS400-UMB Smart Weather Sensor | gapit-11-01 | |
VSD
The basic function of a variable speed drive (VSD) is to control the flow of energy from the mains to the process. Variable speed drives sit between the electrical supply and the motor.
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Info about VSD
Power from the electrical supply goes into a drive and the drive then regulates the power that is fed to the motor. Inside the drive the input power is run through a rectifier, that converts the incoming AC power to DC power. The DC power is fed into the capacitors inside the drive. This is done to smooth out the electrical waveform which provides the clean power supply for the next step. Power then flows from the capacitors to the inverter, that changes the DC power to the output AC power that goes to the motor.
Manufacturer | Name | Gapit code | |
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KSB | Pumpdrive 2 | gapit-12-01 | |
Grundfos | CIM200 | gapit-12-03 | |
Sulzer | EC 531 | gapit-12-04 | |
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Wedeco | Ecotouch 6 | gapit-12-05 | |
Danfoss | Danfoss 302 | gapit-12-06 | |
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Fire alarm
A fire panel is a safety appliance that commercial buildings typically require in order to set into motion a number of tasks that could save lives and minimize property damage.
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Info about Fire alarm
Fire panel has many components connected, it can be fire dampers, fire fans, sirens, manual detectors, sprinkler systems, etc. In many cases you can retrieve the status of components.
Manufacturer | Name | Gapit code | |
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Schneider Electric | FX1 (GMS-SFX) | gapit-13-01 | |
PDU
A power distribution unit (PDU)
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Info about PDU
A power distribution unit (PDU) is a device fitted with multiple outputs designed to distribute electric power, especially to racks of computers and networking equipment located within a data center.[1] Data centers face challenges in power protection and management solutions. This is why many data centers rely on PDU monitoring to improve efficiency, uptime, and growth.[2] For data center applications, the power requirement is typically much larger than a home or office style power strips with power inputs as large as 22 kVA or even greater. Most large data centers utilize PDUs with 3-phase power input and 1-phase power output. There are two main categories of PDUs: Basic PDUs and Intelligent (networked) PDUs or iPDUs. Basic PDUs simply provide a means of distributing power from the input to a plurality of outlets. Intelligent PDUs normally have an intelligence module which allow the PDU for remote management of power metering information, power outlet on/off control, and/or alarms. Some advanced PDUs allow users to manage external sensors such as temperature, humidity, airflow, etc.
Manufacturer | Name | Gapit code | |
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Enoc | EPI MM | gapit-14-01 | |
Powertek | GMS-POPDU | gapit-14-02 | |
Schneider Electric | AP8459 | gapit-14-03 | |
Raritan | PX2/PX3 | gapit-14-04 | |
Austin Hughes | InfraPower IPM-02 | gapit-14-05 | |
Schneider Electric | AP8853 | gapit-14-06 | |
EATON | EATS16 | gapit-14-07 | |
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Server Technology | CSG-24VEK415A1 & CXG-24VEK151C1 | gapit-14-08 | |
Exagate | Powerguard | gapit-14-09 | |
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Panduit | G5 PDU | gapit-14-10 | |
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Communication converters
Convert one type of communication protocol to another type.
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Info about Communication converters
Manufacturer | Name | Gapit code | |
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ABB | KNX iBus | gapit-15-04 | |
Noratel | IMED Secure GW-0109 | gapit-15-06 | |
Networking devices
Network equipment where you can retrieve data such as network traffic, alarms, speed of ports, status of ports and the like
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Info about Networking devices
Manufacturer | Name | Gapit code | |
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Teltonika | RUT950 | gapit-16-01 | |
Cisco | 1841 | gapit-16-02 | |
Moxa | Switch | gapit-16-04 | |
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Battery charger controllers
Controller for battery charger
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Info about Battery charger controllers
Smart battery chargers for small emergency power systems or for electric cars and larger electric vehicles such as trucks and buses are more and more in use in step with the green shift. Many companies, housing associations and the like want to be able to control their charging parks smartly. It may be that all chargers in a charging park have, for example, a maximum of 150kW available charging power. Then a smart battery controller can be used which adjusts that the maximum power does not exceed 150kW and that everyone gets the same amount of power.
Manufacturer | Name | Gapit code | |
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Phoenix Contact | EV-CC-AC1-M3-CBC-RCM-ETH | gapit-17-01 | |
Deep Sea Electronics | DSE9473 | gapit-17-02 | |
Flow and thermal energy
Flowmeters are devices that measure the amount of liquid, gas or vapor that passes through them. Some flowmeters measure flow as the amount of fluid passing through the flowmeter during a time period (such as 100 liters per minute). Other flowmeters measure the totalized amount of fluid that has passed through the flowmeter (such as 100 liters).
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Info about Flow and thermal energy
Flowmeters consist of a primary device, transducer and transmitter. The transducer senses the fluid that passes through the primary device. The transmitter produces a usable flow signal from the raw transducer signal. These components are often combined, so the actual flowmeter may be one or more physical devices.
Manufacturer | Name | Gapit code | |
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Fiskal | FI-51 | gapit-18-01 | |
Belimo | Energy Valve | gapit-18-02 | |
IMI | Pneumatex BrainCube | gapit-18-03 | |
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Environment
Different type of sensor for measure environment
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Info about Environment
Manufacturer | Name | Gapit code | |
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Carlo Gavazzi | KLH-M | gapit-19-01 | |