ZM6302A Air Conditioning Training Bench Vocational Training Equipment Air Conditioner Trainer Equipment

ZM6302A Air Conditioning Training Bench Vocational Training Equipment Air Conditioner Trainer Equipment

ZM6302A Air Conditioning Training Bench Vocational Training Equipment Air Conditioner Trainer Equipment for college, vocational training center, university. 

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ZM6302A Air Conditioning Training Bench Vocational Training Equipment Air Conditioner Trainer Equipment

I. Product Overview

1.1 Overview

The  air conditioning training bench is designed to help students and workers in related fields understand and learn about the working principles of indoor air conditioning. It can simulate refrigeration and dehumidification conditions in summer and heating and humidification conditions in winter. The  air-conditioning training platform is mainly composed of five parts, namely the air-conditioning refrigeration part, the air-conditioning heating part, the air-conditioning humidification part, the air circulation and control part, and the electrical and sensor parts. The training platform is equipped with a touch screen, which can display and record all the data collected by the sensors on the screen. It also allows users to use a PC to connect to the screen and import data into the PC, which greatly facilitates users. usage of.

1.2 Features

  1. The  air-conditioned training platform adopts an aluminum frame structure, which is simple, sturdy and reliable. It is also equipped with 4 movable casters, which greatly facilitates users’ mobile use.
  2. The  air-conditioned training platform adopts a safe electrical layout, has safe and reliable grounding, and is equipped with an emergency stop button.
  3. The  air-conditioned training platform adopts a modular design, and each unit can operate independently, greatly increasing the type and quantity of experiments.
  4. The  air-conditioned training platform uses safe and environmentally friendly refrigerant R134A.
  5. The  air-conditioning training platform is equipped with a port that can communicate with a PC, which can realize data collection and chart analysis of the equipment.

II. Performance Parameter

Input power supply: single-phase AC220V 50Hz

Size: 1800mm×800mm×1800mm

Weight: <150kg

Working conditions: Ambient temperature 10℃~30℃ Relative humidity <75% (25℃)

III. Components List and Detailed Introduction

3.1 Main part

NumberName
1Air conditioning training bench body
2Electrical and Instrumentation Modules
3Air deflector and control drive module
4Condenser
5Gas-liquid separator
6Compressor
7High and low voltage controllers and instrument panels
8Fin evaporator
9Fan
10Fin preheater
11Humidifier
12Fin reheater
13Casters

 

3.2 Power box part

NumberName
1Single phase multi-function meter
2Touch display
3Indicator light
4Temperature Controller
5Control switch
6Breaker
7Six position plug socket
8Fan speed controller
9Emergency stop switch

3.3 Equipment configuration list

NumberNameQuantity
Component 1Compressor1
Component 2Condenser1
Component 3High and low voltage controllers and instrument panels1
Component 4Fin evaporator1
Component 5Fin preheater2
Component 6Fin reheater2
Component 7Fan1
Component 8Humidifier1
Component 9Baffle3
Component 10Air deflector drive motor1
Component 11Touch display1
Component 12Single phase multi-function meter1
Component 13Six position plug socket1
Component 14Temperature Controller1
Component 15Emergency stop switch1
Component 16Breaker1

 

3.4 Accessories

NumberNameQuantity
1Portable anemometer1
2Software CD1
3USB data cable1

IV. Experiment List

Experiment 1 Demonstrates the function and operation of the air-conditioned training platform

Experiment 2 Demonstrates the functional experiment of the refrigeration system of the air-conditioned training platform

Experiment 3 Demonstrates the functional experiment of the heating system of the air-conditioned training platform

Experiment 4 Demonstrates the indoor air circulation state experiment under simulated closed loop

Experiment 5 Demonstrates the indoor air circulation state experiment under simulated open loop

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