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      AE-CC-01

    CONTROL PANEL

     

    Table of Contents

    PROV. FAN PANEL

    INSTRUCTION &

    OPERATION

    MANUAL

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    1. Instructions2. La!out of AE!CC!"1 Controller

    #. Pa$ %uttons an$ LE In$icator

    '. O(eration

    ). In(ut an$ Out(ut escri(tion

    *. Pro+ra,,in+

    -. Troublesootin+

    1." INSTRUCTION

    Te col$ ca,ber electronic controller (rinte$ circuit

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    boar$ /AE!CC!"10 is $esi+ne$ for auto,atic control of

    roo, te,(erature an$ coolant solenoi$ ale control.

    AE!CC!"1 PC% is a feature (ace$ ,icro(rocessor base$

    control unit suitable to (erfor, fan ,otor run3 to o(en

    an$ close refri+erant solenoi$ ale an$ to turn ON an$

    O44 $efrostin+ ele,ent.

    AE!CC!"1 PC% is $esi+ne$ for ,a5i,u, reliabilit 6it

    1""7 soli$ state circuitr an$ isolate$ rela contact

    for outsi$e use.

    AE!CC!"1 PC% is incor(orate$ 6it t6o /20 te,(erature

    controller3 run our ,eter3 coolin+ an$ $efrostin+

    ti,er.

    An al(a!nu,eric $is(la /)!$i+it -!se+,ent0 is isible

    trou+ 6in$o6 in front of enclosure. urin+ nor,al

    con$ition it $is(las roo, te,(erature.

    Sste, alar, con$itions are si+nale$ at te (anel

    isuall /b alar, LE0 an$ al(a!nu,eric $is(la. 8en

    an alar, con$ition is (resent3 te $is(la 6ill e,it an

    al(a!nu,eric co$e. Tis co$e can ten be inter(rete$

    usin+ a ,enu affi5e$ in front of te $oor to $eter,ine

    te error.

    Pa$ buttons an$ LE In$icators 6it its $ifferent

    functions are (roi$e$ for (ro+ra,,in+3 ,onitorin+ of

    roo, te,(erature3 surface te,(erature of coolin+ coil3

    fan runnin+ ours3 start9sto( of fan ,otor.

    La,( test function is (roi$e$ to cec $ea$ LE an$ -!

    se+,ent $is(la. Press te button an$ it 6ill li+t u(all LEs an$ te -!se+,ent $is(la.

    IMPORTANT

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    Co,(letel rea$ an$ un$erstan$ tis ,anual before usin+

    te AE!CC!"1 PC%.

    ! AE!CC!"1 controller sall be su((lie$ se(aratel in

    eac roo,.

    !Master an$ Slae for Coolin+ an$ efrostin+ Ti,e

    One AE!CC!"1 controller can set te Coolin+ an$

    efrostin+ ti,e for all $ifferent in$s of roo,s i.e.

    Meat roo,3 :e+etable roo,3 4is roo,. Or eac coolin+ an$

    $efrostin+ ti,e of eac roo, can be set b teir o6n

    AE!CC!"1 controller. Tis function is calle$ MASTER an$

    SLA:E /see (ro+ra,,in+ section for ,ore $etails0. 4or

    e5a,(le3 tere are # roo,s /Meat3 4is an$ :e+etable

    roo,0 te controller AE!CC!"1 of Meat roo, as been cosen

    to be te Master. Tis ,eans tat 4is an$ :e+etable roo,s

    ae to be te Slae. Te coolin+ an$ $efrostin+ ti,e of

    te Master as to be follo6e$ b te Slaes.

    !Col$ Roo, an$ 4ree;in+ Roo, /OTO O4 RE4!AT!"1 CONTROLLER

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    4i+. 1 4RONT ETAIL

    LE ESCRIPTION

    No. Na,e 9 escri(tion Color1 4AN RUN INICATOR ?REEN2 SOLENOI :AL:E OPEN INICATOR ?REEN# E4ROST INICATOR ?REEN

    ' ALARM INICATOR RE) ROOM TEMPERATURE INICATOR @ELLO8* COOLIN? COIL SUR4ACE TEMP. INICATOR @ELLO8- 4AN RUN >OUR INICATOR @ELLO8 4AN START %UTTON A!NUMERIC ISPLA@

    T>E ALP>A!NUMERIC ISPLA@ /-!SE?MENT0 ISPLA@S ROOM TEMPERATURE3 RUNNIN?

    >OURS3 SUR4ACE TEMPERATURE ON COOLIN? COIL %@ PRESSIN? T>E ISPLA@

    %UTTON. AN ERROR COE S>ALL %E ISPLA@E UNER RELE:ANT CONITIONS.

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    4i+. 1 4RONT ETAIL

    #." PA %UTTONS AN LE INICATOR

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    #.1 LE INICATOR

    1. 4AN RUN LE Illu,inates 6en fan ,otor runs

    2. SOLENOI :AL:E LE Illu,inates 6en solenoi$ ale o(ens.

    #. E4ROST LE! Illu,inates $urin+ $efrostin+ ti,e an$ (o6er is

    su((lie$ to $efrostin+ ele,ent un$er coolin+ coil.

    '. ALARM LE! Illu,inates 6it error co$e on te al(a!nu,eric

    $is(la 6en an alar, con$itions ,eet.

    ). TEMP. 1 LE! Illu,inates 6en Roo, Te,(erature is in$icate$

    on te al(a!nu,eric $is(la.

    *. TEMP. 2 LE! Illu,inates 6en Surface Te,(erature on te

    coolin+ coil is in$icate$ on te al(a!nu,eric $is(la.

    -. >OUR LE! Illu,inates 6en 4an ,otor runnin+ ti,e /our0 is

    in$icate$ on te al(a!nu,eric $is(la.

    4or e5a,(leD $is(la alue is roo, te,(erature

      Roo, Te,(eratureD

    !2"OC

    Pressin+ Pa$ %utton

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    an$ O44

    2. UP %UTTON 9 LAMP TEST! Increases te alue of in(ut nu,ber3

    also for la,( testin+. Perfor, la,( test b (ressin+ it off

    an$ on3 cec for $ea$ LE of -!se+,ent3 if $ea$ LE 6ere

    foun$3 re(lace 6it ne6 %utton an$ is(la PC%

    #. O8N %UTTON 9 MANUAL E4ROST! ecreases te alue of te

    in(ut nu,ber3 also for Manual efrostin+.

    Manual efrostD Press te button to ,anuall start or sto(

    ,anuall te $efrostin+.

    '. ISPLA@ %UTTON! Can+es te $is(lae$ alue on Al(a!

    nu,eric $is(la. Te # LEs on te left si$e of te Al(a!

    nu,eric $is(la in$icate if te $is(lae$ alue is roo,

    te,(erature3 surface te,(erature on coolin+ coil or fanrunnin+ ti,e.

    Tis fi+ure so6s al(a!nu,eric $is(la in$icates fan

    runnin+ our because te LE >our illu,inates.

    ). SET %UTTON! Initiates settin+ for all (ara,eters an$ saes

    can+e$ alue.

    #.# ALP>A!NUMERIC ISPLA@ /)!I?IT3 -!SE?MENT0

    8en un$er 4an Motor Sto( Con$ition3 (ressin+ Set %utton

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    '.1 INITIAL START UP

    1. isconnect (o6er su((l to te controller. Cec te

    e5ternal connection /es(eciall3 ,otor (o6er line an$

    PT1""F sensors0. After tat3 +o to te ne5t ste(.

    2. Su((l te (o6er a+ain. Ten all LEs an$ -!se+,ent 6ill

    li+t u( for ) secon$s. Cec if it all li+t u(.

    GAs soon as tere is (o6er su((l3 te coolin+ 9 $efrostin+

    ti,er starts3 terefore if ou 6ant to restart te coolin+

    ti,e3 $isconnect te controllerHs (o6er su((l for at least 1"

    secon$s ten su((l te (o6er a+ain.

    #. Press te 4an Start %utton on front of controller.

    Gurin+ startu(3 te roo, te,(erature is i+er tan te i+

    te,(erature alar, on te settin+3 so e5(ect an alar, 6ill

    occur. Tis alar, soul$ be ne+lecte$ as eertin+ is 6orin+

    nor,all. Ten cec 6eter te roo, te,(erature is

    $ecreasin+.

    '. Te in$ii$ual roo, te,(erature is in$icate$ on -!se+,ent

    of eac controller.

    ). Confir, if eac (ara,eter as been set e5actl base$ on te

    uic reference +ui$e affi5e$ outsi$e of te $oor.

    GIf tere is an abnor,al status3 te alar, 6ill turn ON. It

    eiter +o to Auto Reset or it can be Manuall Reset. If it

    +oes to Auto Reset3 te 4an re,ains ON3 if it +oes to Manual

    Reset3 te 4an turns O44.

    ). If eertin+ is 6orin+ nor,all3 cec te refri+eratorHs

    co,(ressor3 it soul$ be runnin+.

    GIf te Co,(ressor STOPS3 te solenoi$ ale soul$ be O44an$ te 4an soul$ be ON.

    -. 8ile in Coolin+ Ti,e3

    GIf te Roo, Te,(erature is aboe te set te,(erature3 bot

    Solenoi$ Sale an$ 4an soul$ be ON. %ut if te Roo,

    te,(erature is belo6 te set te,(erature3 te Solenoi$ :ale

    soul$ be O44 an$ te 4AN soul$ be ON.

    G8ile in Coolin+ Ti,e3 it is (ossible to ,anuall $efrost b,anuall (usin+ te efrost button3 >eater turns ON3 Solenoi$

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    :ale an$ 4an turn O44. Also 6ile in Manual efrost3 te

    coolin+ ti,er is still runnin+.

    . After Coolin+ Ti,e3 efrostin+ Ti,e co,es ne5t3

    Gurin+ efrostin+ Ti,e if te Te,(erature on te surface ofcoolin+ (ins is belo6 Set Te,(erature3 te >eater soul$ be ON

    an$ te Solenoi$ :ale an$ 4an soul$ be O44. %ut if it is

    aboe Set Te,(erature3 All te >eater3 4an an$ Solenoi$ ale

    soul$ be O44.

    B. After te efrostin+ Ti,e3 te ccle 6ill +o bac to te

    4an Start ON an$ re(eat te ccle.

    4i+ure '.2

    4i+ure

    '.#

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    )." INPUT 9 OUTPUT ESCRIPTION

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    ).1 INPUT ESCRIPTION

    ).1.1 Analo+ In(ut

    A. Roo, Te,(eratureD /No.1 PT1"" O,0

    Roo, Te,(erature ia PT1"" o, sensor in te roo,.

    %. Surface Te,(erature on Ea(orator CoilD /No.2 PT1"" O,0

    Te,(erature aboe ea(orator coil.

    ).1.2 i+ital In(ut

    Table ).1.2

    INPUT NUM%ERS NORMAL ERROR COE REMARJSIN 1 OPEN N9A REMOTE START9STOP 4OR 4AN

    IN 2 CLOSE N9A SOL. :9: OPEN9CLOSEIN # CLOSE Err ! "# 4AN RUN 4EE %ACJ SI?NAL

    ).2 OUTPUT ESCRIPTION

    ).2.1 4AN RUN SI?NAL

    Transistor Out(ut 2D Out 2 sall be ener+i;e$ $urin+ fan ,otor

    run. Tese (orts sall be nor,all connecte$ 6it fan

    ,a+netic contactor.

    ).2.2 E4ROSTIN? SI?NAL

    Transistor Out(ut 1D Out 1 sall be ener+i;e$ $urin+ electric

    eater run. Tese (orts sall be nor,all connecte$ 6it

    electric $efrostin+ eater ,a+netic contactor.

    ).2.# SOLENOI OPEN9CLOSE SI?NAL

    Rela Out(ut 2D Rela Out 2 sall be connecte$ to solenoi$

    ale an$ ener+i;e$ $urin+ co,(ressor run an$ 9 or stan$!b

    con$ition.

    ).2.' ALARM SI?NAL

    Rela Out(ut 1D Rela Out 1 sall be ener+i;e$ 6en alar,

    occurre$. Te alar, con$ition as to be transferre$ to

    e5ternal alar, $eice /Nor,al Close r Contact0.

    *." PRO?RAMMIN? /Tis section (roi$e$

    for su(erisor or autori;e$ (erson0

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    Table *." MOE ESCRIPTION 4OR SETTIN?

    ISPLA@ ESCRIPTION UNIT SET :ALUEE! CON4IRMATION 8>AT ERRORS OCCURRE

    nStK5

    MASTER CONTROLLER 1

    SLA:E CONTROLLER "RUN >OUR ISPLA@ RUNNIN? >OUR >OUR !T

    E

    M

    P

    2

    Pt2COL ROOM "4REEIN? ROOM 1

    Su CORRECTION 4OR ISPLA@ TEMPERATURE oC I4 REUIRE

    $f I44. TEMP.4OR E4ROSTIN? ! oC 1"1"St SET TEMP. 4OR E4ROSTIN? oC 2"#"i SET >I?> TEMP. ON T>E E:AP. COIL oC "

    T

    E

    M

    P1

    Su CORRECTION 4OR ISPLA@ TEMPERATURE oC I4 REUIRE

    $4 I44. TEMP. 4OR SOL. :9: OPEN9CLOSE  oC 2St SET POINT 4OR ROOM TEMP. oC SEE %ELO8

    Lo SET POINT 4OR LO8 TEMP. IN T>E ROOM /COL RM ONL@0o

    C !1i SET POINT 4OR >I?> TEMP. IN T>E ROOM

    oC )"

    nt MANUAL E4ROSTIN? TIME MIN 1"

    $t E4ROSTIN? TIME T>IS MENU IS TO %E USE 4OR

    MASTER CONTROLLER ONL@

    MIN 2"

    Ct COOLIN? TIME >OUR 11

    rt TIMER 4OR >I?> TEMP ALARM REPOSE MINAS PER ACTUAL

    CONITION

    T@PICAL SET :ALUE 4OR ROOM TEMPERATURE /RE4ERENCE ONL@0

    MEAT ROOM 4IS> ROOM :E?. ROOM

    ESI?N !1o

    C !1o

    C 'o

    CACTUAL

    Te controller utili;es a ,e,or $eice calle$ an EEPROM. Tis

    ,e,or3 once (ro+ra,,e$3 6ill store te $esire$ (ro+ra, infor,ation

    (er,anentl3 een if (o6er is re,oe$3 et it 6ill allo6 a$a(t te

    controller to te sste, reuire,ent.

    *.1 MASTER OR SLA:E SETTIN?

    Tis settin+ is set fro, factor3 it is not necessar to

    can+e te settin+ on te for,er (anel. %ut it ,ust be ,easure$

    accor$in+ to te content

    *.1.1 Master /In case of usin+ te ti,er se(aratel0

    Set!u( te controllers as follo6sD

    1. Press

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    #.

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    #.1 Press

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    oter $esi+nate$ 4ree;in+ Roo,.

    *.2.2 Col$ Roo, /PT2!"0

    Set!u( for Col$ Roo,

    1. Press

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    AE!CC!"1 CONTROLLER as a function to store alar, ,essa+es.

    @ou ,a fin$ te ,eanin+ of eer alar, occurre$ in ,enu

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    Table -." ERROR COE ESCRIPTIONERROR

    COE

    ESCRIPTION CORRECTI:E ACTION

    Err ! "" EEPROM ERROR Re(lace a ne6 controllerErr "# 4AN RUN 4EE %ACJ 4AULT Cec control (o6er an$

    contactor of fan ,otorErr 11 NO.1 PT 1""Ω SENSOR LOOP 4AULT Cec No.1 sensor an$ connection

    Err 12 >I?> TEMPERATURE IN C>AM%ER /AUTO

    RESET0

    Te roo, te,(erature is i+er

    tan set te,(eratureErr 1# LO8 TEMPERATURE IN C>AM%ER /AUTO

    RESET0 COL ROOM ONL@

    Te roo, te,(erature is lo6er

    tan set te,(eratureErr 21 NO.2 PT 1""F SENSOR 4AIL OR >I?>

    TEMP. ALARM

    Cec No.1 sensor an$ connection

    Te AE!CC!"1 Controller as been teste$ for t6o /20 ears in

    our co,(an 6it actual con$itions an$ it $i$nHt encounter an

    ,alfunction.

    It is +uarantee$ tat tere 6ill be no (roble,s.

    >o6eer3 if ou foun$ an (roble,s 6it te controller3 (lease

    cec te follo6in+D

    !Alar, 6it error co$e $is(lain+D

    Most errors are cause$ b ,i5e$!internal 6irin+ or connection

    bet6een local instru,ents an$ controller In(ut (ort.

    Terefore3 if alar, error co$e a((ens3 (lease cec e5ternal

    6irin+ an$ connection accor$in+ to table -.". If it $oes not

    6or3 consult >I AIR JOREA.

    !Controller $oes not 6orD

    Cec (o6er su((l an$ correct accor$in+ to $ra6in+

    !Stran+e $is(la on -!se+,ent LE

    Perfor, la,( test b (ressin+ it off an$ on3 cec for $ea$LE of -!se+,ent3 if $ea$ LEs 6ere foun$3 re(lace 6it ne6

    %utton an$ is(la PC% /S9NDS!PT!2!:1!A10.

    !4an an$9or solenoi$ ale $onHt 6or un$er nor,al con$ition

    INPU

    T

    NORMA

    L

    A%NORMA

    L

    TROU%LE

    IN 1 OPEN CLOSE 4an $oesnHt 6or. Cec In(ut No.1 6eter OPEN or

    CLOSE 6it co,,onIN 2 CLOSE OPEN Sol. 9 $oesnHt 6or. Cec In(ut No.2 6eter

    OPEN or CLOSE un$er co,(ressor stan$!b con$ition