TZ-AW Series
Characteristics
- High Concentration
- Less Foot Print
- Fully Automated PLC Control
- Timing, Sleeping, Auto and other multiple intelligence mode
- Stylish
- Integrated
Feed Gas preparation | ||
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Sl | Particulars | Specification |
1.1 | Feed Gas | Inbuilt Oxygen concentrator |
1.2 | Type of oxygen generator | The PSA model with 2 molecular Oxygen Sieve bed |
1.3 | Outlet Pressure | 14 psi (1 bar) |
1.4 | Compressor | Air flow oil less |
1.5 | Oxygen Purity | 93% ± 3% |
1.6 | Oxygen flow control | 1 to 16 LPM |
1.7 | Sound Level | <= 45 dB (A) |
1.8 | Power supply | AC 230V+ 10%, 50 Hz + 10% |
1.9 | Electrical classification | II class B type |
1.10 | Temperature range | 10° C – 45° C |
1.11 | Relative Humidity | 20% to 70% |
CONTROL PANEL
Sl | FEATURES | ADVANTAGES |
---|---|---|
2.1 | Make | Delta |
2.2 | PLC | Slim Standard Type PLC |
2.3 | Standard mode bus | ASCII / RTU / Protocol |
2.4 | Class of Insulation | IP 20 |
2.5 | Text Display | HMI, High Color & wide Screen |
2.6 | Support | USB client for High Speed Upload / Download |
OZONE GENERATION | ||
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3.1 | OZONE OUTPUT | 100 GRMS PER HOUR |
3.2 | OZONE CONCENTRATION | 100GM / CUM |
3.3 | Make & Type of Electrode | Technozone make / Alumina coated ceramic tube electrode with high concentration of ozone |
3.4 | Cooling tube arrangement / material of the tube | Water cooled SS 316 inner & 304 outer cooling water jacket tube. Flange ended with Teflon (zero leak proof). Can withstand pressure up to 4 bar |
3.5 | No. of electrodes | Two |
3.6 | Ozone Generation by Corona discharge technology | Advanced Ceramic coated & glazed electrode covered with concentric annular SS cooling tube is alternated with high frequency corona discharge. This corona discharge disassociates the oxygen atoms to regroup to form ozone |
3.7 | Power electronics | Full bridge IGBT based microprocessor controlled power generation unit for the ceramic electrodes. Quantity: 1nos |
3.8 | CONTROLS | Program Logic Control and Microprocessor, Based Control With Touch Screen Display |
3.9 | FEED BACK SYSTEM | Auto Control Off for a) Gas Input b) Cooling Water Input c) High Current Failure d) High Temperature e) Electrode Failure |
CHILLER SPECIFICATION | ||
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4.1 | Liquid Chiller System | 1000Kcal/Hr capacity to maintain a temperature of 19°C to 22°C for the electrode |
4.2 | Compressor | Emersion Copeland, hermetically sealed with automatic overload protection |
4.3 | Condenser | Air cooled with Nippon copper fin and tube type |
4.4 | Evaporator | Fin and tube type heat exchanger SS 304 grade tank |
4.5 | Water pump | CNP Nanfang inline Centrifugal Monobloc pump |
SAFETY FEATURES | ||
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5.1 | AUTOMATION | Fully automated control unit & 100% leak proof. High voltage (>245VAC) & low voltage (< 200 V AC) indication & cut off Chiller low flow cut off Electrode failure indication & cut off |
5.2 | CONSTRUCTION | Rugged steel body for easy maintenance and solid strength |
ELECTRICAL SPECIFICATION | ||
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6.1 | Input Voltage | 230 V AC (single phase) |
6.2 | Frequency | 50 Hz |
6.3 | Power consumption | 3 Kilo Watts including Chiller, oxygen concentrator |
DIMENSION | ||
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7.1 | 1050 mm width X 500 mm depth X 1425 mm height |
TECHNICAL DETAILS | ||
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9.1 | Operating Principle | Voltage Source Inverter with PWM Control Technique 3rd Generation IGBT’s are used in the inverter |
9.2 | The Mode of Operation | V / F Control |
9.3 | Type of Inverter | The is Microprocessor control based digital Inverter |
9.4 | AC input Supply | Single Phase 230 V / 50 HZ |
9.5 | Sensing Resolution | 10bit voltage sensing Resolution 10 bit current sensing Resolution 10 bit High voltage Regulation |
9.6 | Desired Performance | Switching Duty |
9.7 | Operating Parameters | Automatic Soft start control Input power monitoring Adjustable current Limit Closed loop HV regulation |
9.8 | Protection | Over Current High Voltage Low Voltage High Temperature Low Pressure Control Low Flow control Power Good Failure |