background image

12

GB

D

F

I

NL

E

P

GR

RU

TR

Penetrations

[Fig. 9.4.4] (P.4)

<A> Inner wall (concealed)

<B> Outer wall

<C> Outer wall (exposed)

<D> Floor (waterproofing)

<E> Roof pipe shaft

<F> Penetrating portion on fire limit and boundary wall

A

Sleeve

B

Heat insulating material

C

Lagging

D

Caulking material

E

Band

F

Waterproofing laye

G

Sleeve with edge

H

Lagging material

I

Mortar or other incombustible caulking

J

Incombustible heat insulation material

10. Wiring

10.1. Caution

1

Follow ordinance of your governmental organization for technical standard re-
lated to electrical equipment, wiring regulations and guidance of each electric
power company.

2

Wiring for control (hereinafter referred to as transmission line) shall be (5 cm or
more [2 in or more]) apart from power source wiring so that it is not influenced
by electric noise from power source wiring. (Do not insert transmission line
and power source wire in the same conduit.)

3

Be sure to provide designated grounding work to heat source unit.

4

Give some allowance to wiring for electrical part box of indoor and heat source
units, because the box is sometimes removed at the time of service work.

5

Never connect the main power source to terminal block of transmission line. If
connected, electrical parts will be burnt out.

6

Use 2-core shield cable for transmission line. If transmission lines of different
systems are wired with the same multiplecore cable, the resultant poor trans-
mitting and receiving will cause erroneous operations.

7

Only the transmission line specified should be connected to the terminal block
for heat source unit transmission.
(Transmission line to be connected with indoor unit : Terminal block TB3 for
transmission line, Other : Terminal block TB7 for centralized control)
Erroneous connection does not allow the system to operate.

8

In the case of connecting with an upper class controller or to conduct group
operation in different refrigerant systems, the control line for transmission is
required between the heat source units.
Connect this control line between the terminal blocks for centralized control.
(2-wire line with no polarity)
When conducting group operation in different refrigerant systems without con-
necting to the upper class controller, replace the insertion of the short circuit
connector from CN41 of one heat source unit to CN40.

9

Group is set by operating the remote controller.

10.2. Control box and connecting position of

wiring

1. Connect the indoor unit transmission line to transmission terminal block (TB3),

or connect the wiring between heat source units or the wiring with the central
control system to the central control terminal block (TB7).
When using shielded wiring, connect shield ground of the indoor unit transmis-
sion line to the ground screw (

) and connect shield ground of the line be-

tween heat source units and the central control system transmission line to the
shield (S) terminal of the central control terminal block (TB7) shield (S) termi-
nal. In addition, in the case of heat source units whose power supply connector
CN41 has been replaced by CN40, the shield terminal (S) of terminal block
(TB7) of the central control system should also be connected to the ground
screw (

).

Fix the wiring securely in place with the cable strap at the bottom of the termi-
nal block so that the external force if not applied to the terminal block. External
force applied to the terminal block may damage the block and short-circuit,
ground fault, or fire may result.

[Fig. 10.2.1]

 

(P.4)

A

Power source

B

Transmission line

C

Ground screw

2. Conduit mounting plates (ø27 mm [1-3/32 in]) are being provided. Pass the

power supply and transmission wires through the appropriate knock-out holes,
then remove the knock-out piece from the bottom of the terminal box and con-
nect the wires.

2. Remote control cables

M-NET Remote Controller

MA Remote Controller

*

Connected with simple remote controller.

2

Wiring examples

Controller name, symbol and allowable number of controllers.

Kind of remote control cable

Cable diameter

Sheathed 2-core cable (unshielded) CVV

0.3 to 1.25 mm

2

 [AWG22 to 16]

(0.75 to 1.25 mm

2

 [AWG18 to 16]))*

Within 200 m [656 ft]

Kind of remote control cable

Cable diameter

Sheathed 2-core cable (unshielded)

0.3 to 1.25 mm

2

 [AWG22 to 16]

(0.75 to 1.25 mm

2

 [AWG18 to 16])*

When 10 m [32 ft] is exceeded, use cable with

the same specifications as 1. Wiring transmis-

sion cables.

3. Fix power source wiring to terminal box by using buffer bushing for tensile

force (PG connection or the like).

4. Narrow the opening by using a conduit to keep small animals out.

10.3. Wiring transmission cables

1

Types of control cables

1. Wiring transmission cables

Types of transmission cables: Shielding wire CVVS or CPEVS or MVVS

Cable diameter: More than 1.25 mm

2

 [AWG16]

Maximum wiring length: Within 200 m [656 ft]

Maximum length of transmission lines for centralized control and indoor/out-
door transmission lines (Maximum length via indoor units): 500 m [1640 ft]
MAX

The maximum length of the wiring between power supply unit for transmission
lines (on the transmission lines for centralized control) and each outdoor unit
and system controller is 200 m [656 ft].

When filling a gap with mortar, cover the penetration part with steel plate so that
the insulation material will not be caved in. For this part, use incombustible materi-
als for both insulation and covering. (Vinyl covering should not be used.)

Insulation materials for the pipes to be added on site must meet the following
specifications:

Thickness

Pipe size

ø6.35 ~ 25.4 mm

[1/4 to 1 in]

10 mm min.

[13/32 in min]

ø28.58 ~ 38.1 mm

[1-1/8 to 1-1/2 in]

15 mm min.

[19/32 in min]

100 

°

C [212 

°

F] min.

Temperature Resistance

*

Installation of pipes in a high-temperature high-humidity environment, such as
the top floor of a building, may require the use of insulation materials thicker
than the ones specified in the chart above.

*

When certain specifications presented by the client must be met, ensure that
they also meet the specifications on the chart above.

Remarks

Remarks

Name

Heat source unit controller
Indoor Unit Controller
Remote Controller

Symbol

OC

IC

RC

Allowable number of controllers

One to twenty four controllers for one OC
Maximum of two per group

Summary of Contents for CITY MULTI PQHY-P72TGMU-A

Page 1: ...r safe and correct use please read this installation manual thoroughly before installing the air conditioner unit MANUEL D INSTALLATION Veuillez lire le manuel d installation en entier avant d installer ce climatiseur pour éviter tout accident et vous assurer d une utilisation correcte For use with R410A ...

Page 2: ...4 ø14 9 16 Anchoring hole C Top view A Piping space for side piping B Heat source unit C Service space front side D Top view D Anti vibration pad etc E Concrete base E Piping space for top piping F Piping space for side piping G Heat source unit H Front view A Water circulation pipe B Close valve C Close valve D Water outlet A Short circuit wire Connected before delivery from manufacturer B Pump i...

Page 3: ...2 ø15 88 5 8 ø19 05 3 4 ø22 2 7 8 Ó 4 Branching header Downstream unit model total 200 CMY Y104 G 8 Branching header Downstream unit model total 400 CMY Y108 G Ô 10 Branching header Downstream unit model total 650 CMY Y1010 G Ï Downstream unit model total 72 73 400 Ì Branch kit model CMY Y102S G CMY Y102L G Fig 9 2 2 9 2 9 Fig 9 2 1 A B 1 3 A Ball valve Low press side flanged type B Ball valve Hig...

Page 4: ... material C Lagging D Caulking material E Band F Waterproofing laye G Sleeve with edge H Lagging material I Mortar or other incombustible caulking J Incombustible heat insulation material A Power source B Transmission line C Ground screw D C C B B E F G H I J A LO HI LO HI B A K J L H M C D E N O F G I Fig 9 3 1 Fig 9 3 3 Fig 9 3 2 9 3 A A Nitrogen gas B To indoor unit C System analyzer D Lo knob ...

Page 5: ... M1M2S TB5 07 IC M1M2S TB5 06 L 2 L1 MA MA MA OC M1M2 M1M2S TB7 TB3 52 OC c 1 c4 S System controller L3 L 6 L4 c 2 A B A B A B A B M1M2 c 2 c 1 c 1 c2 CN40 CN40 c 3 10 3 B A C 208 230 V B A 208 230 V E E D E E Fig 10 3 2 Fig 10 3 1 A Group 1 B Group 3 C Group 5 D Shielded wire E Sub remote controller Address A Change the jumper connec tor from CN41 to CN40 B SW2 1 ON C Keep the jumper connector on...

Page 6: ...to be exceeded hazards due to lack of oxygen in the room could result When moving and reinstalling the air conditioner consult the dealer or an authorized technician If the air conditioner is installed improperly water leakage electric shock or fire may result After completing installation work make sure that refrigerant gas is not leaking If the refrigerant gas leaks and is exposed to a fan heate...

Page 7: ... valve The vacuum pump oil may flow back into the refrigerant cycle and cause the refrigerator oil to deteriorate Do not use the following tools that are used with conventional refriger ants Gauge manifold charge hose gas leak detector reverse flow check valve refrigerant charge base refrigerant recovery equipment If the conventional refrigerant and refrigerator oil are mixed in the R410A the refr...

Page 8: ... excess air Compressed water may form in the low temperature sections of heat source unit Use a drainage pipe connected to the drain valve at the base of the unit to drain the water There is a water vent plug in the center of the heat exchanger water inlet head at the middle of the unit Use this for maintenance etc In addition do not allow any of the unit s electrical parts such as the solenoid va...

Page 9: ...erator oil will dete riorate Never use existing refrigerant piping The large amount of chlorine in conventional refrigerant and refrigerator oil in the existing piping will cause the new refrigerant to deteriorate Store the piping to be used during installation indoors and keep both ends of the piping sealed until just before brazing If dust dirt or water gets into the refrigerant cycle the oil wi...

Page 10: ...orque by torque wrench Copper pipe external dia mm in Tightening torque N m kg cm ø6 35 1 4 14 to 18 140 to 180 ø9 52 3 8 35 to 42 350 to 420 ø12 7 1 2 50 to 57 5 500 to 575 ø15 88 5 8 75 to 80 750 to 800 ø19 05 3 4 100 to 140 1000 to 1400 Tightening angle standard Pipe diameter mm in Tightening angle ø6 35 1 4 ø9 52 3 8 60 to 90 ø12 7 1 2 ø15 88 5 8 30 to 60 ø19 05 3 4 20 to 35 Fig 9 2 3 P 3 flar...

Page 11: ...ic refriger ant R410A gas leakage causes the composition to change and affects perform ance Therefore perform the airtightness test cautiously Caution Only use refrigerant R410A The use of other refrigerant such as R22 or R407C which contains chlorine will deteriorate the refrigerating machine oil or cause the compressor to malfunction 2 Evacuation Evacuate with the ball valve of the heat source u...

Page 12: ...heat source units whose power supply connector CN41 has been replaced by CN40 the shield terminal S of terminal block TB7 of the central control system should also be connected to the ground screw Fix the wiring securely in place with the cable strap at the bottom of the termi nal block so that the external force if not applied to the terminal block External force applied to the terminal block may...

Page 13: ...A Change the jumper connector from CN41 to CN40 B SW2 1 ON C Keep the jumper connector on CN41 A Group 1 B Group 4 C Group 5 D Shielded wire E Sub remote controller Address Wiring Method and Address Settings a Always use shielded wire when making connections between the heat source unit OC and the indoor unit IC as well for all OC OC and IC IC wiring intervals b Use feed wiring to connect terminal...

Page 14: ...light rain water etc when proceeding with the wiring and connections 3 The wire size is the minimum value for metal conduit wiring The power cord size should be 1 rank thicker consideration of voltage drops Make sure the power supply voltage does not drop more than 10 4 Specific wiring requirements should adhere to the wiring regulations of the region 5 Power supply cords of parts of appliances fo...

Page 15: ...rent utilisez le réfrigérant R410A spécifié sur l appareil Lorsqu un réfrigérant différent est mélangé au réfrigérant d origine il se peut que le cycle du réfrigérant ne fonctionne pas correctement et que l appareil soit endommagé Si le climatiseur est installé dans une pièce relativement petite certaines mesures doivent être prises pour éviter que la concentration de réfrigé rant ne dépasse le se...

Page 16: ...nterventions techniques Si l appareil est raccordé au secteur sans fonctionner le chauffage du carter est toujours sous tension au niveau du compresseur 1 2 Précautions à prendre avec les dispo sitifs utilisant le réfrigérant R410A Précaution N utilisez pas les tuyaux de réfrigérant actuels Le vieux réfrigérant et l huile réfrigérante se trouvant dans les tuyaux con tiennent une large quantité de ...

Page 17: ...e il est conseillé de monter une base anti vibrations sur le socle de support de l appareil Fig 6 1 2 P 2 D Coussinet anti vibrations etc E Socle en béton Avertissement Installez toujours l appareil dans un endroit pouvant supporter son poids Dans le cas contraire l appareil pourrait tomber et par conséquent bles ser quelqu un Effectuez les travaux nécessaires afin d assurer a protection de l appa...

Page 18: ...iez que le niveau d oxygène dissous de l eau ne dépasse pas 1 mg r 2 Norme de qualité de l eau Référence Guideline of Water Quality for Refrigeration and Air Conditioning Equipment Directive relative à la qualité de l eau pour le matériel de réfrigération et de climatisation JRA GL02E 1994 3 Contacter un spécialiste du contrôle de la qualité des eaux pour en savoir plus sur les méthodes de contrôl...

Page 19: ...els Jauge collectrice tuyau flexible de remplissage détecteur de fuites de gaz valve de contrôle base de remplissage de réfrigérant jauge à vide équipements de récupération de réfrigérant Il se peut que l huile réfrigérante se détériore à la suite du mélange d un réfrigérant traditionnel à l huile réfrigérante Il se peut que l huile se détériore si de l eau y est mélangée Le réfrigérant R410A ne c...

Page 20: ...9 1 13 2 16 6 19 7 24 0 dimension de l évasement mm taille de l écrou évasé mm diamètre extérieur ø6 35 ø9 52 ø12 70 ø15 88 ø19 05 taille en pouces 1 4 3 8 1 2 5 8 3 4 dimension B R410A 17 0 22 0 26 0 29 0 36 0 Fig 9 2 2 P 3 A Soupape à bille Côté gaz raccordement à brides B Soupape à bille Côté liquide raccordement évasé C Cette figure montre la soupape complètement ouverte A Tige de la valve Ent...

Page 21: ...istor ROBINAIR 14830A Utiliser également une jauge à vide pouvant atteindre 65 Pa abs 0 00943 psi 0 5 Torr maximum après cinq minutes d utilisation 3 Ajout du réfrigérant Etant donné que le réfrigérant utilisé dans cet appareil est nonazéotropique il doit être dans un état liquide lorsqu ajouté Par conséquent lorsque vous char gez l appareil de réfrigérant à l aide d un cylindre si celui ci n est ...

Page 22: ...ls source de chaleur ou le câblage avec le système de contrôle centralisé au bloc de terminaux de le contrôle centralisé TB7 Lors de l utilisation de câblage blindé raccordez la terre blindée de la ligne de transmission de l appareil intérieur à la vis de terre et raccordez la terre blindée de la ligne située entre les appareils source de chaleur et la ligne de transmission du système de contrôle ...

Page 23: ... M2 et à la borne S des câbles de transmission du bloc de l appareil intérieur IC c Raccorder les bornes 1 M1 et 2 M2 du bloc terminal des câbles de transmission de l appareil intérieur IC qui possède l adresse la plus récente au sein d un même groupe au bloc terminal de la commande à distance RC d Raccordez les bornes M1 M2 et la borne S du bloc de terminaux pour le contrôle centralisé TB7 sur l ...

Page 24: ...jusqu à ce que la température des tuyaux atteigne 35 C 95 F il fonctionne lentement pendant les 2 minutes qui suivent puis il fonctionne selon le préréglage Commande de réglage de la chaleur Le système est en train d être mis en marche Utilisez de nouveau la télécommande lorsque HO ou PLEASE WAIT a dis paru de l affichage Lorsque l appareil s arrête après le mode de refroidissement il continue de ...

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Page 28: ...HIYODA KU TOKYO 100 8310 JAPAN Please be sure to put the contact address telephone number on this manual before handing it to the customer This product is designed and intended for use in the residential commer cial and light industrial environment Printed in Japan ...

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