SAFETY PRECAUTIONS
SAFETY PRECAUTIONS
8
GB
corrode refrigerant containing components, unless the components are constructed of materials which are inherently resistant to being
corroded or are suitably protected against being so corroded.
9) Checks to electrical devices
Repair and maintenance to electrical components shall include initial safety checks and component inspection procedures. If a fault
exists that could compromise safety, then no electrical supply shall be connected to the circuit until it is satisfactorily dealt with. If the
fault cannot be corrected immediately but it is necessary to continue operation, an adequate temporary solution shall be used. This
shall be reported to the owner of the equipment so all parties are advised.
Initial safety checks shall include:
That capacitors are discharged: this shall be done in a safe manner to avoid possibility of sparking;
That there no live electrical components and wiring are exposed while charging, recovering or purging the system;
That there is continuity of earth bonding.
7. Repairs to sealed components
1) During repairs to sealed components, all electrical supplies shall be disconnected from the equipment being worked upon prior to
any removal of sealed covers, etc. If it isabsolutely necessary to have an electrical supply to equipment during servicing, then a
permanently operating form of leak detection shall be located at the most critical point to warn of a potentially hazardous situation.
2) Particular attention shall be paid to the following to ensure that by working on electrical components, the casing is not altered in
such a way that the level of protection is affected.
This shall include damage to cables, excessive number of connections, terminals not made to original specification, damage to seals,
incorrect fitting of glands, etc.
Ensure that apparatus is mounted securely.
Ensure that seals or sealing materials have not degraded such that they no longer serve the purpose of preventing the ingress of
flammable atmospheres. Replacement parts shall be in accordance with the manufacturer’s specifications.
NOTE: The use of silicon sealant may inhibit the effectiveness of some types of leak detection equipment. Intrinsically safe
components do not have to be isolated prior to working on them.
8. Repair to intrinsically safe components
Do not apply any permanent inductive or capacitance loads to the circuit without ensuring that this will not exceed the permissible
voltage and current permitted for the equipment in use. Intrinsically safe components are the only types that can be worked on while
live in the presence of a flammable atmosphere. The test apparatus shall be at the correct rating.
Replace components only with parts specified by the manufacturer. Other parts may result in the ignition of refrigerant in the
atmosphere from a leak.
9. Cabling
Check that cabling will not be subject to wear, corrosion, excessive pressure, vibration, sharp edges or any other adverse
environmental effects. The check shall also take into account the effects of aging or continual vibration from sources such as
compressors or fans.
10. Detection of flammable refrigerants
Under no circumstances shall potential sources of ignition be used in the searching for or detection of refrigerant leaks. A halide torch
Summary of Contents for CD-7QF2 20
Page 1: ...DEHUMIDIFIER OWNER S MANUAL CDF2 16Q7 CD 7 Q F2 20...
Page 23: ...BG...
Page 24: ...1 2 2 4 R290 R32 5 11 12 15 16 16 17 18 20...
Page 25: ...2 BG...
Page 26: ...3 8...
Page 27: ...4 BG 1 PCB T3 15 250V 350V...
Page 28: ...5 CO2 R290 R32 4 2 R32 R290 R32 R290...
Page 29: ...6 BG R290 R32 1 2 3 4 5 6 1 2 3 4 5 C02...
Page 30: ...7 6 7 8 9 7 1 2...
Page 31: ...8 BG 8 9 10 11 25 OFN 12...
Page 32: ...9 13 14 80 15...
Page 33: ...10 BG 16...
Page 34: ...11 1 1 2 MODE 3 LED AP 8 8 3 35 85 5 0 0 24 3 10 4 5 3 LED SC 5 3 LED SC 5...
Page 35: ...12 BG 30 3 3 3 6 HEPA 3 3 7 35 85 0 24 5 30 90 3 AS ES E4 P2...
Page 36: ...13 45 55 3 4 3 3 15 bacteral HEPA A...
Page 37: ...14 BG Time Off 0 5 10 1 24 5 0 0 LED P2 30 50 30 50 A 30 50cm...
Page 38: ...15 1 2 3 4 5 5 4 1 2 3 2 1 2 3 4 5 6 B 7 1 2 3 5 4 6 7 3 B...
Page 39: ...16 BG 20 5 C 41 F 5 C 41 F 40 20 20 20 4 20 24 5 C 41 F 32 C 90 F 30 80...
Page 40: ...17 1 Full P2 1 5 2 6 3...
Page 41: ...18 BG 2 13 5 7 1 2 7...
Page 42: ...19 3 10 10 8 9 10 4...
Page 43: ...20 BG 5 C 41 F ES AS E4 P2...
Page 86: ...EL...
Page 87: ...1 2 2 4 R290 R32 5 11 12 15 16 16 17 18 20...
Page 88: ...2 EL...
Page 89: ...3 8...
Page 90: ...4 EL 1 o T 3 15A 250V or 350V...
Page 91: ...5 C 2 R290 R32 4 R32 R290 R32 R290...
Page 92: ...6 EL R290 R32 1 2 3 4 5 6 1 2 3 4 5...
Page 93: ...7 C02 6 7 8 9 7 1...
Page 94: ...8 EL 2 8 9 10 11 25 12...
Page 95: ...9 13 14 80...
Page 96: ...10 EL k 15 16...
Page 97: ...11 1 1 2 MODE 3 LED AP router 8 8 3 35 85 5 0 0 24 3 10 4 5 3 3 funtion LED SC 5 3 LED SC 5...
Page 99: ...13 45 55 3 4 3 MODE Turbo 3 15 High Efficiency Particulate Air HEPA A Hepa...
Page 101: ...15 1 2 2 3 4 5 5 4 1 2 3 2 1 2 3 4 5 6 7 4 5 1 2 3 6 3 B Hepa...
Page 102: ...16 EL 20 5 C 41 F 5 C 41 F 40 20 20 20 4 20 4 24 5 C 41 F 32 C 90 F 30 and 80 3...
Page 103: ...17 1 P2 1 5 2 6 3...
Page 104: ...18 EL 2 13 5 7 1 2 7...
Page 105: ...19 3 8 10 8 9 10 4...
Page 106: ...20 EL 5 C 41 F ES AS E4 P2...