MICROCOMPUTER SENSING CONTROL EQUIPMENT
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MICROCOMPUTER SENSING CONTROL EQUIPMENT Cod: KL-620

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KL-620

μPA SENCONS

MICROCOMPUTER SENSING CONTROL EQUIPMENT

The KL-620 Microcomputer Sensing Control Equipment is a comprehensive sensor/transducer control training system that incorporates industrial-grade components with various control circuits.  Its modular and closed-loop control circuits allow implementation of open-ended, individual control loops used in industrial applications. The KL-620 uses only industrial- andard sensors/transducers (0~10V,4~20mA) and is equipped with RS-232 for Computer interface control experiments. Control  grams  can be written and down-loaded to the Single-Chip microprocessor on KL-62001 main unit from computer through RS-232 interface. LabVIEW

Industrial-standard sensors and transducers

¡·

EXPERIMENT MODULES

1. Using 2mm plugs and sockets used

2. Comprehensive experiment manuals

3. Modules secured in plastic housings

4. Connection by 2mm-0.65mm test leads

5. Dimension: 255x165x30mm

6. Circuit symbols, blocks and components printed on the surface of each module

7. Power supplied from KL-62001 main unit

LIST OF MODULES

KL-64001

1. Photo Transistor 2. Photo Interrupter 3. Magnetic (Hall-Effect) ~ Digital 4. Magnetic (Hall-Effect) ~ Analog  5. Accessories : magnet, 1pce (For KL-64001 and KL-64002 uses)

KL-64002

1. Pyroelectric Detector 2. Reed Switch 3. Thermistor 4. Mercury Switch

KL-64003

1. Limit Switch 2. Vibration Switch 3. Condenser Microphone 4. Dynamic Microphone

 

KL-64004

1. Gas/Smoke Sensor 2. Ethanol Sensor

KL-64005

1. IC (AD590) Temperature Sensor 2. Humidity Sensor (1) Humidity transducer rated voltage: 1 Vp-p AC (2) Frequency range : 100Hz ~ 10KHz (3) Temperature range : 0°C ~ 60°C (4) Humidity range : 20%RH ~ 90%RH (5) Impedance : 13K

Ω (70%RH at 25°C)

KL-64006

1. Infrared TX/RX Sensor  (1) Infrared Transmitter : emission intensity : 12mW/sr (l

KL-64007

1. Pressure Sensor (1) 0-7 psi to 0-30 psi pressure ranges 2. Strain Gauge (1) Maximum payload : <5kg (2) Teminal resistance : 350 ± 50

KL-64008

1. Hall Current Sensor (1) Normal input current : ±3A DC (if) (2) Linear range : 0 ~ + 6A DC (3) Output voltage : 4.5V ± 0.005V at+ if, 0.5V+ 0.005V at - if, R

KL-64009

1. CDS Sensor 2. Photovoltaic Sensor (1) Photovoltaic transducer open voltage

KL-64010

1. V/F Converter (1) Input voltage : +10mV ~+10V (2) Output frequency : 5Hz ~ 5KHz, 10Hz ~10KHz

 

KL-64011

1. F/V Coverter (1) Input frequency : 0 ~ 4.3KHz ( ±0.2Vp ~ ±5Vp) (2) Output voltage : 0 ~ 4.3V DC

 

KL-64012 

1. RTD (PT-100) (1) 0°C: 100

Ω , 100°C : 139.16Ω (2) Rating: 250°C (3) Accessories : PT-100 Sensor Probe

KL-64013

1. Level (Water) (1) Simulation of the reservoirs control status (motor included) (2) Accessories : plastic case

KL-64014

1. Fiber Optic Emitter (1) Forward current, DC (l

F): 50mA (2) Peak wave length: 950nm (3) Output Power: 50£gw 2. Fiber Optic Phototransistor (1) £fpeak: 850nm (2) Collect current (lC): 50mA  (3) Power dissipation: 100mw  3. Accessories

KL-64015

1. LVDT (1) Range : ±5mm  (2) Scale : 0.01mm (3) Optimum frequency: 50Hz ~ 1.1KHz (Nominal: 350Hz)

 

KL-64016

1. Rotation Angle Sensor (1) 10 turns (3600°) precision potentiometer  (2) Linearity : ± 0.25%

¡2V (2) Photovoltaic transducer close voltage ¡0.06 μA/lux
L= 10KΩ 2. Proximity Sensor (1) Operation voltages : 10 ~ 30V DC (2) Short circuit protection 3.  Accessories : Proximity switch 1pce Accessories (KL-68013) 1. Experimental Manual 2. Connector Leads : (1) 2mm-0.65mm, 5pcs (2) 2mm-2mm, 10pcs

Ω 3. Accessories: (1) Suction pump, 1pce (2) Plastic tube : 25cm, 1pce

F= 50mA) emission wavelength : 940nm (lF= 50mA) (2) Infrared receiver: sensitivity wavelength: 1000nm 2. Ultrasonic TX/RX Sensor (1) Norminal frequency : 40KHz
With RS-232 interface,¡·Open-ended design, ideal for expansion,¡·Offering a sensing data acquisition software, which isdeveloped under LabVIEW TM software
TM is a graphical programming language for data  cquisition, instrument control and data analysis. LabVIEW TM programs are called virtual instruments(Vis). A VI consists of an interactive user interface, a dataflow diagram, and icon connections. It's simple, easy to learn, that reduces the cost, and time for R&D and increase productivity.