Alat Simulator
Basic Hydraulic Feed Syst
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Centrifugal pump: 0.37 KW, 30-80 l./min at 20.1-12.8m., single-phase 220V. / 50Hz. or 110V. / 60Hz. Stainless steel impeller. Tank capacity:140 l. approx. Flowmeter. Membrane
Flow over Weirs
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Dimensions of the weirs: 230 x 4 x 160 mm. Neckline angle in the V-shape weir: 90º. Dimension of rectangular notch: 30 x 82 mm. Scale of the level meter: 0 to 160
Dead Weight Calibrator
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Pressure manometer: Bourdon type. 0 - 2.5 bar. Masses (approximated weights): 0.5 kg. 1.0 kg. 2.5 kg. 5
Flow Meter Demonstration
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Manometer range: 0 to 500 mm. of water column. Number of manometric tubes: 8. Orifice plate diameter: 25 mm. Flowmeter: 2 to 30 l./min. Venturi dimensions: Throat
Computer Controlled Combu
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TVCC. Unit: Metallic structure that guarantees a good stability and resistance. Diagram in the front panel with similar distribution to the elements in the real unit. Stainless
Slotted Link Mechanism
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MBM1: - Dimensions: 400 x 300 x 100 mm. approx. (15.75 x 11.81 x 3.94 inches approx.). - Weight: 3 Kg. approx. (6.6 pounds
Hydraulics Bench
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Mobile hydraulic bench, made of fibreglass reinforced polyester, and mounted on wheels for its mobility. Centrifugal pump, 0.37 KW, 30 - 80 l./min at 20.1-12.8 m., single phase
Load Elevation Mechanisms
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All experiment elements are made in special anodized aluminium. Centres of gravity of various shaped plates: Rectangle. Circle. Triangle. T. Kite. Irregular. Drawing
Load Elevation Mechanisms
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All experiment elements are made in special anodized aluminium. Centres of gravity of various shaped plates: Rectangle. Circle. Triangle. T. Kite. Irregular. Drawing
Dynamics Experiments
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All experiment elements are made in special anodized aluminium. Centres of gravity of various shaped plates: Rectangle. Circle. Triangle. T. Kite. Irregular. Drawing
FCE. Set for Electrical F
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This application can be done by using just the following: -Common items for all applications: 1) FUB. Base structure and Robot. 2) EFAC/CIB. Control Interface Box. 3) DAB.
Statics Experiments
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Anodized aluminium structure. Front Panel in painted steel. The holes on the base panel are accurately spaced at 25mm
Air Flow Temperature Cont
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RYC. Unit: Unit: Metallic box. Diagram in the front panel with distribution of the elements similar to the real one. Reference signals
Air Flow Temperature Cont
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RYC. Unit: Unit: Metallic box. Diagram in the front panel with distribution of the elements similar to the real one. Reference signals
Ball and Beam Module
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RYC. Unit: Unit: Metallic box. Diagram in the front panel with distribution of the elements similar to the real one. Reference signals
Computer Controlled Teach
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With this unit there are several options and possibilities: - Main items: 1, 2, 3, 4 and 5. - Additional applications for working with the RYC unit:
DC Servo Motor Module
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RYC. Unit: Unit: Metallic box. Diagram in the front panel with distribution of the elements similar to the real one. Reference signals
Basic Teaching Unit for t
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Metallic enclosure, including all the modules and Systems: elements. First Order System: Power Supply. Time constant T : 1ms to 100 ms Protection fuse. Second Order
Computer Controlled Teach
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With this unit there are several options and possibilities: - Main items: 1, 2, 3, 4 and 5. - Additional applications for working with the RYC unit:
Semiconductors I
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Circuit blocks: Diode. (Circuit#1). Signal filtration. (Circuit#2). Diodes bridge. (Circuit#3). Zener diode.
Computer Controlled Stand
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Optional accessories: • PV-KIT. Current Controller and Photovoltaic Panel Kit. • WT-KIT. Current Controller and Wind Turbine
Computer Controlled Photo
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Advanced Real-Time SCADA. Open Control + Multicontrol + Real-Time Control. Specialized EDIBON Control Software based on LabVIEW. National Instruments Data Acquisition board
Photovoltaic Solar Energy
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Metallic box. Connector for the solar radiation sensor. Digital display for the solar radiation sensor. Connectors for the temperature sensors.
Photovoltaic Solar Energy
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Main features: Supply and Consumption at 12 V (DC). Supply and Consumption in alternating current (AC). Supply to the network
TDS Computer Controlled T
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With this unit there are several options and possibilities: - Main items: 1, 2, 3, 4 and 5. - Optional items: 6. Let us describe first the main items (1 to
Computer Controlled Anten
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With this unit there are several options and possibilities: - Main items: 1, 2, 3, 4 and 5. - Optional items: 6, 7, 8 and 9. Let us describe first the main
Computer Controlled Micro
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EMIC. Unit: Power meter: Based on Thermistor. Wide frequency range: 10 – 12000 MHz. Typically level range: -55 dBm – +18 dBm. Stability
AEL-SAPV Stand-Alone Phot
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The Stand-Alone Photovoltaic Application, "AEL-SAPV", has been designed by EDIBON to study the energy production by photovoltaic panels. This application will provide
Pulse Modulations Trainer
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All elements are mounted in a metallic box, with power supply and block diagram. Functional blocks: Modulators and demodulators: Pulse Code Modulation
TDS Computer Controlled T
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With this unit there are several options and possibilities: - Main items: 1, 2, 3, 4 and 5. - Optional items: 6. Let us describe first the main items (1 to
Semiconductors II
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Circuit blocks: Complementary transistors. (Circuit#1). Darlington configuration. (Circuit#2). Differential configuration. (Circuit#3). JFET field-effect transistors.
Oscillators
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Circuit blocks: RC and LC oscillators. (Circuit#1). Wien bridge. (Circuit#2). Colpitts, Hartley oscillators. (Circuit#3). Astable multivibrator. (Circuit#4). 555 Timer.
Analog Modulations Traine
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All elements are mounted in a metallic box, with power supply and block diagram. Functional blocks: Modulators and demodulators: Amplitude Modulation (AM): Double Side Band
Digital Modulations Train
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All elements are mounted in a metallic box, with power supply and block diagram. Functional blocks: Line Coding: Non Return to Zero Level line coding circuit (NRZL). Non
FUB. Base structure and R
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Movement in the X, Y and Z axes. Support for the different sensors. Robot arm, computer controlled, with a sweeping area . Electronic box for the motors multiplexing. This
EFAC/CIB. Control Interfa
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Control interface box with process diagram in the front panel and with the same distribution that the different elements located in the unit, for an easy understanding by the
DAB. Data Acquisition Boa
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Analog input: Number of channels= 16 single-ended or 8 differential. Resolution=16 bits, 1 in 65536. Max. Sampling rate up to: 250 KS/s (Kilo samples per second). Input range
FA-CO. Power Supply
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Fixed outputs DC: + 5 V, ± 12 V, 1 A. Variable outputs DC: ± 12 V, 0.5 A. AC output: 12V. or 24 V. Outputs through either 2mm. contact terminals, or
EBC-100. Base Unit, with
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Hardware support and power supply. Modules supporting unit. Fixed outputs DC: + 5V, + 12V, -12V. Variable outputs DC: ± 12 V. AC output: 12 V. or 24 V. Outputs
Thermal Expansion Trainin
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Anodized aluminum frame and panels made of painted steel. The unit includes wheels to facilitate its mobility. Main metallic elements made of stainless steel. Diagram in the
Computer Controlled Expan
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TEPGC. Unit: Bench-top unit. Anodized aluminum structure and panels of painted steel. Main metallic elements of stainless steel. Diagram in the front panel with distribution
Bomb Calorimeter
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Bench-top unit. Anodized aluminum frame and panels made of painted steel. Main metallic elements made of stainless steel. Diagram in the front panel with distribution of the
Computer Controlled Separ
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TCESC. Unit: Anodized aluminum frame and panels made of painted steel. Main metallic elements made of stainless steel. Diagram in the front panel with distribution of the
Basic Teaching Unit for t
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Metallic enclosure, including all the modules and Systems: elements. First Order System: Power Supply. Time constant T : 1ms to 100 ms Protection fuse. Second Order
Computer Controlled Teach
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RYC. Unit: Unit: Metallic box. Diagram in the front panel with distribution of the elements similar to the real one. Reference signals
Water Flow Temperature Co
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RYC-TAG. Water Flow Temperature Control Module. The RYC-TAG Water Flow Temperature Control module has been designed to study a practical control system, through the control of
Temperature Control Modul
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Regulation and control theory is divided into two major divisions in, namely, classical and modern. The implementation of classical controller designs as compared to systems
Pressure Control Module
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RYC-P. Pressure Control Module. The RYC-P Pressure Control module has been designed to study a practical control system, through the control of the air pressure level of an air
Computer Controlled Risin
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EPAC. Unit: Anodized aluminium structure and panels in painted steel. Main metallic elements in stainless steel. Diagram in the front panel with
Fixed and Fluidized Bed U
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Bench-top unit. Anodized aluminum frame and panels made of painted steel. Main metallic elements made of stainless steel. Diagram in the front panel with distribution of the
Computer Controlled Fluid
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TTLFC. Unit: Bench-top unit. Anodized aluminum frame and panels made of painted steel. Main metallic elements made of stainless steel. Diagram in the front panel with
Fluidization and Fluid Be
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Bench-top unit. Anodized aluminum frame and panels made of painted steel. Main metallic elements made of stainless steel. Diagram in the front panel with distribution of the
Permeability/Fluidisation
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Unit to verify the Darcys Law, to examine the Kozenys equation and to observe liquid fluidisation behaviour of a granular bed. Unit mounted on an anodized aluminum structure with
Computer Controlled Tray
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1 Advanced Real-Time SCADA and PID Control. Open Control + Multicontrol + Real-Time Control. Specialized EDIBON Control Software based on LabVIEW. National Instruments Data
Computer Controlled Spray
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SSPC. Unit: Bench mounted spray drier for processing aqueous emulsions, solutions, suspensions and colloids. This unit is suitable for aqueous solutions
Spray Drier
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Bench mounted spray drier for processing aqueous emulsions, solutions, suspensions and colloids. This unit is suitable for aqueous solutions only. Diagram in the front panel
Computer Controlled Spray
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SDCC. Unit: Mounted on an anodized aluminum frame with panels made of painted steel. Includes wheels to facilitate its mobility. Main metallic elements made of stainless
Computer Controlled Multi
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VPMC. Unit: Anodized aluminum structure and panels of painted steel. Main metallic elements of stainless steel. Diagram in the front panel with
Computer Controlled Hydro
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ESHC(4x2m). Unit: Metallic structure and panels. Diagrams in the front panel with similar distribution to the elements in the real unit. This unit
Computer Controlled Hydro
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ESHC(2x1m). Unit: Anodized aluminum frame and panels made of painted steel. Main metallic elements made of stainless steel. Diagram in the front panel with distribution of the
Hydrologic Systems, Rain
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Anodized aluminum frame and panels made of painted steel. Main metallic elements made of stainless steel. Diagram in the front panel with distribution of the elements similar to
Rainfall Hydrographs Unit
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Anodized aluminum frame and panels made of painted steel. It includes wheels for its mobility. Main metallic elements made of stainless steel. Diagram in the front panel with
River Flow Simulator
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Anodized aluminum frame and panels made of painted steel. The unit includes wheels to facilitate its mobility. Main metallic elements made of stainless steel. Diagram in the
Statics Experiments
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All experiment elements are made in special anodized aluminium. Centres of gravity of various shaped plates: Rectangle. Circle. Triangle. T. Kite. Irregular. Drawing
Load Elevation Mechanisms
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All experiment elements are made in special anodized aluminium. Three pulley block. Two pulley block. Wheel and axle set. Weston differential chain block. Screw
Transmissions Experiments
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All experiment elements are made in special anodized aluminium. System of belt drive (includes: flat belt, round belt and leather strip). Chain drive. Simple gear
Transmissions Experiments
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All experiment elements are made in special anodized aluminium. System of belt drive (includes: flat belt, round belt and leather strip). Chain drive. Simple gear
Dynamics Experiments 1
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All experiment elements are made in special anodized aluminium. The spring balance. Wheel. Centrifugal force system. The simple pendulum. Adjustable screw. Set of
EDIBON Scada-Net Systems
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The EDIBON Scada-Net Systems, “ESN”, and Mini Scada-Net, “MINI ESN”, are made up of the following elements: - EDIBON technical
EDIBON Cloud Learning
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EDIBON Cloud Learning is a Cloud Computing solution designed to control EDIBON Technology based Laboratories remotely in a simple and easy way. EDIBON Cloud Learning is divided
EDIBON Software Developme
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• EDIBON Software Development KIT requires: NI LabVIEWTM Professional Development System 2015 32 bits or later. EDIBON TECHNICAL TEACHING
EDIBON USB KIT
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Contact EDIBON Sales Force to consult prices and availability. The basic KIT is not supplied with desktop computers or
Computer Controlled Conti
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Unit of stainless steel. The unit includes wheels to facilitate its mobility. Diagram in the front panel with distribution of the elements similar to the real one. Extraction
Computer Controlled Teach
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PADC. Unit: Stainless steel structure. Main metallic elements of stainless steel. Diagram in the front panel with similar distribution to the elements in the real
Computer Controlled Plate
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AFPMC. Unit: Anodized aluminum frame and panels made of painted steel. The unit includes wheels to facilitate its mobility. Main metallic elements made of stainless
Computer Controlled Batch
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QEDC. Unit: Metallic structure and panels in painted steel. Diagram in the front panel with similar distribution to the elements in the real unit. All the vessels, valves and
Computer Controlled Teach
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EDLC. Unit: Metallic frame with adjustable legs. Main metallic elements of stainless steel. Diagram in the front panel with similar distribution to the elements in the real