danfoss_BTP_RB.00.S7.50


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C 
   Danfoss
\r\r\r «\f \n\n»
\b\n
\n «     Danfoss RB.00.S6.50
  RB.00.S5.50. \b  \n     
,   ,   \n   
. \b\n \n  \n \n   
 \n \n,  \n  \n\n\n  ,
    ,       
 \n\n.  \n\n \n \n  , \n 
,   \n . \f  \n\n
\n,    ,   \n  \n 
\n  \n        
 .
\b\n ,  \n,    \n ,  
\n,   .
     \r\r\r «\f \n\n» ..  \n  \n
\f.­. \n, \f.­. \f, .­.   \f.­. .
€     \n \n. \b\n    \n:
(495)792-57-57,  ‚ : VVN@danfoss.ru.
      «\r\f\f»,
   \f\n\t \b \r  \f\f\n
!


1. \b
2. C\be  \n \n  Danfoss
2.1. \r \n 
2.2. \r\n  \n  \n ƒ„\b
2.3. \t ‚ ƒ„\b
2.4. ­ \n ƒ„\b
2.5. …\n \n\n ƒ„\b
2.6. €    \n ƒ„\b
2.7. \n \n ƒ„\b Danfoss
\n 
\b 1. †\n   \n \n ƒ„\b
\b 2.  \n  \n ,    ƒ„\b
\b 3. €    \n \n ƒ„\b
\b 4. \r   \n ƒ„\b  \n 10 
\b 5. €\n\n  \n\n \n ƒ„\b, 
  \n \n,     \n ( \n\n  01.01.2010 .)
 \f \f\n\t \n

„  („\b) —    ‚ \n\n
 \n , 
   \n,  (
\n)  , \n 
  ‚    \n.
 \n\n  , \n \n
    \n,  
  . „\b \n\n\n    
 .
\f  \n\n , 
   „\b  \n  \n \n
  \n\n  ‡ \n\n   
  —    (ƒ„\b) (. 2.19) [2].
ƒ„\b \n \n \n    
\n   ,  
,   \n   \n\n ,
\n   .
… «\f \n\n»   
 \n\n \n   
   \n \n, -
  \n   \n 
\n\n     
\n \n \n  
      \n 
 \n\n \n
   Danfoss \r\f
\r \r\n \t\b \t    \r \f
\r  — \f\t\b  \r \n,
 \b\r   \r\f  
\r \n\r     \n \f \r
  \f\n  \r   
\r-\f \n \f  
.
  \r \r \t
    \f\r   
«\r\r», \r \r  \n,
\f\b:
\n\f\r \f\r\r \f \f \f\n
 \n   \f \r\b \r \f
\r      \r\r «\r\r\f\b»;
 \r\f \r\t \r  ;
\r\b   \r -
    \r, \r   \n\r
  \f   \f\b\b   \n \f
   \r \r .
­ \r\f   \r:
\f\r \b \r\r \f\r 
   \r;
 \f\n\b  \n\b
\r\r\n\b \r\n \n, \r \f    \f\r
\f  \r\n\b \f \f\n;
 \r\f \r\n\r\n\b \b \f  
\r  \f \f\r\n\b \r\f\n
\r\r \f\f , \f\b  
 ;
\f \f\n  \f\n\b \b \f \n 
\f ;
 \r\r\n \r\f\r , \n\f
  \n \f\f    .
  \n 
   ‚\n  80 \n ƒ„\b, \n
 \n \n  Danfoss   \n
 ,   \n  \n\n (\t\n, -\b,
, , , ˆ\n, ˆ\n,  \n,
\r, ‰  .).
€  \f\r\n\b    43 
  \r \f\r \f 
  ‚\n\r \f \f\b \n:
\f\n \n  \f \f
 \f\r \r 10–16  20–22 °C;
\f\n   \r\r ƒ„ \t  \n  \r
\r 60 °C,  \n  \n\t\r \r
  \r 149  128 /.  \r\n;
\r  \f   \f
\r \r\r 27%,   \r  \r \f
\r 45–55%;
\f\f\r \r  \r
\r  8,5%;
\n \r \r  \r\r
   \f\n \f\r
 \r\r 15%;
   \f\f  \r  \n\t\r
\r \f\n \f\r \f\r
\r 104  115 °C;
\f\n \f\r    \r
\f\r  6–8 °C;
\f \r\f\n \f\f \f\n \f
\r \n\r \r 20–25  40–60 °C;
\n\n\t\r \f\r   
\r \r\r \f\r .
\f \n   \n   
 \n\n.
 \n  \n \n\n 
 \n\n  \n,
1. „
… «\f \n\n»   ƒ„\b   \n  \n  \n \n  \n ,
\n\n\n \n  \n\n\n  .

\n     
 (Š„\b)  \n   
   (ˆ„\b),  ‚
   \n  \n\n
  \n\n  \n  \n 
 \n ,   
\n\n \n  . „ 
  \n    -
\n \n \n  ,  
\n  \n \n\n ƒ„\b. ˆ 
\n ‚    \n\n.
ƒ„\b Danfoss  \n \n -
, \n  \n\n   \n
\n      \n
\n \n\n  \n
 \n.
.
      (. \r\f )  \f\n\t  \b  Danfoss.
   Danfoss  
  \r 17  \r \r, \r
 \f  \f\r   .
 \b\b \r   \n
\n  \n \f \f\n:
\n ;
\n \n \f\f  (\n \f\n);
\n  \r\f \r ;
\n \f\r \r\r \f, 
 \r ;
\n \f\f \r \n \r\t \r\r\n.
†    \n 
\n
 „\b. \r  \n\n \n ƒ„\b Danfoss 
 ,     \n  
 \n , \n\n\n  \n 
 \n . \t \n
 \n\n     ƒ„\b - \n
 \n. \f \n  \n
 „\b  \n   ƒ„\b,     \n \n
  \n ƒ„\b ‚    \n
 \n\n   \n   \n  
 .
  \n \n    
 (†),   (††)   \n \n
\n (\t)    ,
  \n\n    — 
 .
†\n  ‚ \n
\n ƒ„\b   \b 1.
 
†   \n  \n\n  \n \n\n-
 \n (  ), \n\n
\n \n\n     
 \n (\n  \n),    
 \n „\b.
  \r\f     \n 
\n ,  \f \n  , 
 \r\r \r  Danfoss (\f.
[1].
  \r \f\r     \n
\f \n  \n\r\r \f\r \r 
     \r\f  \r 
  \f ,  \r\r \f \r\n
 (\r. 18–21). \f\n\r\r \n\r\r   \f\r,
  , \f  \r \f\r 
\r \r \f\r \f\f  
 \r\f \r \f\r  \f \f
\r\r.
\b \n \n   
 \n     
   \n  \n   
    (\n. 2–3, 7–8, 11–14, 19–20).
‹\n   \n „\b  2,3 \t,
    , \n 
     (\n \n
  \n),   \n\n
  (. 8.9) [2].
„ \n  \f \f \n  \f\b
    \n \f   \r
[1]). …\n  \b \n\b  \t
 \r Danfoss \f JiP,   \f
\t \n \n  
   — 32  (. 8.6) [1].
  \r
†   \n\n \n  \n
 „\b. \r \n   \n  „\b
 \n\n \n  «\b  
‚  \n» [3].
…
«\r\r» \f  \r ††
\f\r SONOMETER 2000   \n\n
\r SONO 1500 , \f\r  943.1
 \f  \r\f ‡ˆ-01.
\n \n\n    
  „\b,   (
 ),     \n\n Œ \n
      \n -
\n. \b \n ††   \n \n
 SONO 1500CT \n \n 
 \n   \n.
 \n ††     
     MBS 3000.
\b  „\b ††   \n -
\n  \n    
 ƒ„\b.
ƒ     \n
SONOMETER 2000 \n   [14],    
\n [7].
\f \n \t\b 
\t \n \n\n \n -
\n  ,  \n  
\n \n \n\n 
2. Ce 
 \f \f\n Danfoss
2.1. ‰  \r \t
  \n.   \n\n ,  , 
   
 
 \n     
. \r  \n   \n\n
  „\b.
2.2. ‰\f\r   \r
\f \r 
  Danfoss \f  \f
,  \f,  \n    
\f \r\b  4 €„ \r  \r\b
 \r\r \f\f  \f \n
 \r\f   2 €„.
 \f\r  \f \r \r\r
 \f\r   \f
\r 
  \f\b \n \f ˆ
 1,6 €;
\f\n \f\r  \f\b \n \f
 
 150
\f\f   \f\b    \n \f
 Šˆ
  0,15 € (  \f. 8.17) [1].
 ƒ„\b ‡  \n 
( \n \n ,  \n
 \n\n ,    \n
,     \n \n\n)
  \n  \n     -
:
   , 
   \n\n   
(\n. 2–5),   \n\n Œ (\n. 6);
 , ‡   
 \n\n  (\n. 7–22).
 \r \b 
    \r\f \r 
\r    \r \r\r 
 \f\r .    \r 
\f\n\r\b\r \n \f\f ,
\n\r \f \f\r\f\n\b \r\r
  \n\n\b \f  \f
\b \r\n \r \n:
\b \r\r \f\f    
  \n \f \r;
\f\b \f\n  \f\n\b \r  
,    \n\n\b \f
  \r\r \f\f ;
 \r\f\b  \n \n\n\b \n\r\r 
 \f , \r\b \r  
   \t\n;
\f\b, \f \f \n\r, \r\r
\f\f   \f\n\r ,  
 \f;
\f\b, \f \f \f 
 \n,  \r \r
\f\r.
\f    \n
 \n \n   
    „\b (\n. 2, 4  6).
\r, \n  \n\n\n ,  \n 
 \n ƒ„\b \n\n, 
,     \n \n\n
 (\n. 3, 5, 7–22),   \n
   .
\r      
     \n\n \n
(\n. 19–22),     \n  
   \n \n\n ,  
 \n\n     \n
,  \n\n   \n
     30%   \n-
 „\b. (\r   \n \n
  ƒ„\b       .)
 \n ƒ„\b  \n \n \n\n
     \n 
  \n   
,        
. \b \n \n \n\n,   
  \n    
\n \n \n ,   
 \n   .
ˆ\n    
     
\n  \n \n\n\n ƒ„\b   
      
\n  .
\t \r \r \r \r
† \f \f\r  \f  
 \f. ‰ \n \f\r \r \r
  \r \f\r  \f \r.
       \r\n. „  
  \r \f\r \f\r \f
\r    \f \r  , \r
 \r\r \f  \r  \n
\f\r\f\n\b \n\r, \f\r\b \f
  \n (ˆ
,    \r\r) 
\r    \f\r \b .
… «\f \n\n» \n \n\n    \n\n \n   \n ƒ„\b   \n.
… «\f \n\n»    \n ƒ„\b,      \n \n, \n,
 4 \t ( 30 \t),  \n   25 \t\b  \n      0,15 \t\b.
„\r \r  \n\r  \f\f 
\r\n \r\f\r \n \f\r \r\r  \f
    \r\n. ƒ\r
  \n \r\r   \r\r 
\f\r   \r\f \r\t\n\b \r
 \r\b \f \r \n \r\r
 \r \f \r \n
 «\f\r \r »  \n \f\f  \r\r-
  \n.
† \n  \n 
\n  ƒ„\b \n    \n\n ,
\n   \n   30%  
\n  .   \n ‚ 
\n    ,  \n
\n     \n  
 \n   \n\n   Œ.
(\f   \n  \n .)
„ \n ƒ„\b \n   
 \n  \n\n  
      . ‹\n 
\n  \n  ,   
  \n  \n \n  
\n   .
\t \r \t 
       \f\r
 \r\r ƒ„  \f \r \r\r 
 \f\r :
 \f \f \r\n\f \r;
 \f \f \n\r\n\f \r;
 \n \r\t (\f  \r\r \f
\r ).
\r \r\r ƒ„  \f
\f \r\n\f \r \r \f\f,
   \r\n \f \f\r \f 
   \r\r   \r
\r   \r\r \f\r .
\f\n \n  \n  \n
\n   \n, \n  \n\n \n,  Œ,
\n\n \n\n   \n  
     ( . 3.14) [2]:
0,2 (Q
Œ
‹\n   \n  Œ 
\n  \n \n \n\n   
,    \n   \n
\n \n   ‚ \n\n (Q
 
† \f\f \f\r\n\r\n\b  \r \r
\f\r \r\r \f ()  \f
 \r  \f (\r. 2–3, 7–8, 11–14,
19–20).     \r\r \f (
) \f\n\r \r \n \f\f.
†  \n  
 ‚   \n\n 
(),   (\n\n\n), 
,  , \n \n\n.
( \n   \n\n ƒ„\b  .)
\f \r\r \n\r\r   \r\n,
\r  \f\r    \n \f
\f \r \r  \f  \n
 \r\r   \r\r \f\f .
2.3. €
 
‹   \f\r  -
 \r\f. ‡  \r\r:
\n \f  \r\r \f;
\n \n  \f\f \r\r.
€\n \f  \r\r \f
\f\r  \n  (\f. 14.12) [1]:
\r  \f  (  ) — \r
. \r   \r\f 
 \r \r \f\n \n \n 
\f \f \r\t –40 °C   \r\n,
 \f\n\r\b\r \f  \f  \f
 \r\n \r \f;
\r \n \f \f . ‡
\r\r  75% \f \n (\r \f\n
\r\b\r \f  \f,   \r \r
\f\n \n \n  –40
°C)  
100% (  \r \b  \r \f\n
\n \n,   \f\n\r\b\r \f
 \f) — \f.
   \n  -
   \n. 23.
€\n \f  \r\r ƒ„  
 \r  \f  
\f  \f\f (\f. 14.12) [1].
…\n   \n ƒ„\b 
   .  ,  
  \n 
Œ ƒ„\b  \n\n   
\n  \n\n    
   \n  .
\b \n \n  
  \n\n Œ ( ,   \n\n
   \n  \n \n\n
  2 \t)   ( 
) ƒ„\b \n  
\n.
\b    
   ƒ„\b \n\n  \n 
  \n  . \t 
 \n\n ,   Œ,
 \n\n  \n   ,
\n\n    (
 \n).
  \n\n   
  \n ƒ„\b \n   \n
    
Danfoss. \f\n  Œ 
\n\n      
 \n  (\n. 12, 14, 16
 18)      
 (\n. 11, 13, 15  17).
\b  ,   \n
 \n  \n \n
\n \n  \n, \n
  \f
= 20  \n  . \f \n
   \n  
\n\n  \n\n     
   ƒ„\b \n 
  .
€\n \n \r\r (€Œ‹) \r\r 
\f,   ƒ„,   \n \f\f
\r\r (€‹)  \r  \f\n\r  
:
\r  \r\n \n \r\r
(\r. 24 ) — \r . ˆ \r\r \f
\r\r  \f  \b  
\f\r\n\b   \r \r\f\n\n\b
 (\f. 4.15) [2];
\r  \r \r\r ( \r. 24 ) — \f;
\r \n  \r\r (   
), \f   100%-\n\b \f\r
,  \r \r   \f  \f
 \n (\r. 24 ) — \f.
\b \n \n  \n
\n\n ƒ„\b \n   .
\f \n\n   Œ   \n\n
 \n   \n\n,  -
 ,     -
  \n  ( 
 )  \n\n  \n 
(­ \n\n).
2.4. Ž
\r 
ˆ\t \f   \n\b\r 
\r,   \r
\r\r.
­\n\n
( \r\r)  \r
  \r\f\b:
\f\n\b \b \f\n \f\r, \f
  \r\r \f  ;
\f\r\n\b \f\n\n   \r\r ƒ„;
\f  \f\n 
 \f \r \r\n   ;
 \r   
\n\n \f\n \f\r  
;
 \f \n \f\r\n \n
\f\n \f\r,   \f
\n\b \r \r\r \f\r ;
\r\n \r\r \f   \r 
 \f\r \b \r\r  \n
\n\b \f;
\n\f \n \r\r \r  
 \r\n ;
\f  \r\r   \r\r-
 \f\f , \f\b  \r\r
\f\r  \f \r \r;
\f\b  \r\r \r\f \f 
\r, GSM, TCP\IP  \r;
 ;
\n\b \r\b;
 .
„ \r  \r\r \f\b\r 
Danfoss \r ECL Comfort \r  \n\f\b
 \b  \f\f \r\t 
ECL Apex 20. ‹  \r \n  \f
 \r\r  \r\f \f\b 
 ‘ \t\r\n \r SCADA-\r\r.
‡ Danfoss \b\r \n \f
,   \f -
\t \r,   \n\b \r\f 
   \r  , \f\r 
\f\n\r   \r\n.
€\n‚\f \f\b\f
\n\b\r  
\r \t  \t    
\r\f\b:
\n\b \r  \n ,
\f  \r \n \t\r \f
  \n ,
\b \r\r  \n,
    \n.
 \r\f \r \t \r\f\n\b\r
\f \n \f\r \f.
ƒ\r \r\r  \r\f\b:
\f  \r\r   \r\r-
 \f\f , \f\b  \r\r
\f\r  \f \r \r;
\r \b \f\f  \f\r 
\r\r \f      \f
 \f\n (\f);
\f \f\r \f\f   
\n\n\b \f \r \r \f \r.
 \r 
    \n\n 
  \n \n   \n \n\n
  ƒ„\b \n ‚ (\n)
  EV220B  \n \n ‚ 
 (\n\n\n)  KPI35. \r ‚  \n\n\n
 \n  \n\n (  ).
„     \n 
  ECL Comfort 310.
\r    \t\b  
\t \r  \r
\b\n\n  ƒ„\b    
.
 \b \f\f   \r\r \f
\f  \n\r \f \f \f
 \r \f\r  \r\n\b \r\n:
 \n\n  \r\r \f \r 
\n;
   \n\r.
 ‚  \n \n 
 \n\n \n \n   \n
  \n:
      
 \n \n   \n
\n\n   ;
   \n\n  \n 
\n \n\n.
 \n   \n  
 \n  \n\n
  . \b\n  
    \n. 25.
2.5. ‡\r\n
\r \r 
 \n \n ƒ„\b \n\n 
 \n    \n 
,     
:
\n  –  
 Ž    \n  \n
\n   ,   XG 
-  \n (\n  
)  \n\n Œ,   Ž
 ,   XG  \n
    \n\n Œ \n  -
 [12];
\n\n  Grundfos  Wilo (  \n
, \n \n    );
  VB2 \f
= 15–50  \n ‚
 ­\tV20  30, VFM2 \f
= 65-250  \n
 AME 655  AME 658 SU/SD (\n. 
[8]). «\t»  AMV20 \n\n 
  \n\n   ,  «
\n»  AMV30  AMV56 —  \n\n Œ;
\b AME 655/658 \n \n  
\n  \n\n.
‚   ECL Comfort 210
 310 (\n. \n [7]);
    AVP,
, \n   50 ,  
     ‘ = 0,2–1  
‘ = 0,3–2 , \n    \n 
 AV  \n\n  AFP/VFG2, \n\n 
 VFG2 \f
= 15–150 ,  ‚
AFP–9  ‘ = 0,15–1,5   ‘ = 0,5–3    
\n  AF [9];
  \n AVPA, P
,
\n   50 ,  ‘ = 0,2–1 , 
AVPA, P
, \f
= 15–25 ,  ‘ = 0,3–2 , 
AVPA, P
, \f
= 32–50 ,  ‘ = 0,2–1   ‘ =
= 0,3–2   \n\n  AFP­/VFG2, \n
\n   VFG2 \f
= 65–100 , 
  AFP­  ‘
0,15–1,2   ‘
 \n  AF [9];
‚ (c)   
 EV220B \f
15–50  \n ‚ 
     [8];
‚   (\n\n\n) …PI 35’[10];
 \n   RT262A  ­ \n\n;
  \n  Y222P   
    223 \f
20–50 
\n \n  ( 
\n    80
°C),  — 
 (  \n
 100
°C)   \n    802
20–150
 (  \n \n
°C) [12];
  \n ESMU \n 
\n   \n    
 \n    \n
’[7];
  \n ESMU \n \n
  \n,  ,   
    \n\n Œ [10];
 \n ESM„   
   [10];
 \n \n \n
 (  );
   \n   MSV-
BD, \f
15–50     MSV-F2 \f
=15-40,
200-400       \n
  \n \n   Jip BaBV
\f=50-150  [11];
\n    JiP    
\n   \n,  
   [12];
\n    SYLAX  \n
      \n\n
Œ [12];
      \n 
Ž1666  \n     
  \n\n Œ   ( \n
\n \n, \n   ),   
\n   [12];
    \n  
°C — \n ;
\n   \n\n  ,
\n , \n\n   
 \n ( , \n\n  \n
 ƒ„\b);
\n   \n\n  \n  
 , \n\n \n 
   \n  \n\n  (
, \n\n  \n  ƒ„\b).
 \n    \n ƒ„\b
,   , \n    
\n \n,   \b 2.
      ,   
  \n\n Œ \n 
\n\n \n    
 \n  \n    50 ,
 \n — \n  .
†\n    ƒ„\b 
\n  \n  \n\n \n, 
   :
 0,6  1,2 /\n —   \f
 1  1,5 /\n  —  \f
 50 .
\f     ,   
 \n\n ,  ƒ„\b  \n \n-
 \n .
… \n ,   \n  
, \n\n:
\n  \n   \n\n;
\n \n\n  ƒ„\b  \n 
 \n;
 ƒ„\b \n     \n
 \n    \n 
 \n\n  \n\n \n .
… ,  \n\n \n  
    ƒ„\b  \n 
  \n   ,
 \n \n\n \n \n ƒ„\b.
 ƒ„\b \n\n,  ,  
 \n    \n  
 ‚\n \n.
“  ƒ„\b   \n,  ‚-
   ECL,  
‚\n  „\b, ‚ 
  , \n\n  \n
 ,   \n .
\r \n \n  , 
 \n:
‚  „\b;
  \n\n (\n, \n
,  \n   ,  
«\n »)  \n, \n ‚    
 \n  ;
    (\n 
,  \n\n  .);
 \n\n  ‚ „\b;
 \n;
    
  (,   ECL  
\n\n )  .
 \n \n  \n
  ƒ„\b, \n    
  \n  \n\n
 (     ),  \n
  ,  ­ \n\n, \n\n-
 ‚.
       
   ‚ .
\b \n \n \n\n \n
 \n ƒ„\b    ,
   .
\b ‚    \n  
 \n  \n \n
 :
\n\n \n ;
\n\n  (./.);
\n   ‚;
 \n\n , \n \n \n 
 ECL;
   (  ECL,
  \n, ).
\f  \n   
 \n \n \n.
\r  ƒ„\b,   \n
10 ,       \b 4.
\b   ,   -
        
   \n  \n\n\n 
\n  ‚,  
\n   \n  \n  
    \n-
 \n. ƒ„\b \n  ‚,
 ,  \n \n. \b ‚
 ‚   \n \n  
    .
\b     
 ƒ„\b \n   \n
  «\f \n\n»,   \n
\n   \n  \n
\n.
2.6. ’  
 \f\r\n 
ˆ  \n \n ƒ„\b \n
 \n   ,  
 \n     \b 3.
€ \n   ,  
\n  \n\n  \n\n \n
2.7. \r \r 
Danfoss
\f   \n\n \n ƒ„\b
Danfoss  \b 5  \n\n 
  ƒ„\b,    \n 
 \n \n   1,   
 \n  \n \n :
\n   \n\n Œ  
Œ
\n  \n   
  \n \n\n \n

\n  \n   
  \n\n  — 95
\n  \n   
  \n \n\n \n 
 \n\n  — 70
\n     \n\n Œ

\n    —
\n    ƒ„\b — 150 \b;
\n   \n\n  — 60 \b;
\n  (\n\n   Œ) — 70 ;
\n     \n\n-
 Œ — 30 \b;
\n :  —  \n\n
   —  \n\n Œ;
  \n \n  
\n \n\n  \n   
\n\n  \n ;
 \n\n \n\n Œ —  
 \n ;
 \n\n \n\n  —
 
  \n .
 \n\n ƒ„\b  \n :
  \n  ECL Comfort;
\n     \n  ;
    ;
  \n ‚;
   .
\f\n \n\n ƒ„\b \n  
\n      \n\n
\n     \n \n ƒ„\b
\b 3).
 1.
  \r \f    \f \n  \t  \b\r Danfoss
 \f \n (\n)
 \f
ƒ 
 
\b \n \n
  \n  
\b \n \n
  \n  \n\n  \n
 \n\n
 \n\n
 \n\n
 \n\n
 
 \n

 \n

\b  \n\n
\n
(\n\n
)
:
 \n \n 10-  13- \n \n «»   Œ  \n    ,     \n
\n
—    \n  \n   .
.
\f  \f\b 
1    \f\f\n\b\t \n  \f\b\b \f \n \f\n.
.
\f  \f\b 
2    \f\f\n\b \n  \f\b\b \f \n \f\n.
.
\f  \f\b 
3    \f\f\n\b\t \n  \f\b\b \f \n \f\n.
.
\f  \f\b 
4    \f\f\n\b \n  \f\b\b \f \n \f\n.
.
\f  \f\b 
5   \f\f\n\b\t  \f \f\n\n\t\b \n\b.
.
\f  \f\b 
6   \f\f\n\b\t \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b.
.
\f  \f\b 
7    \f\f\n\b \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f \f\n\n\t\b
\n\b.
.
\f  \f\b 
8   \f\f\n\b\t \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b.
.
\f  \f\b 
9    \f\f\n\b \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b.
.
11.
\f  \f\b 
10    \f\f\n\b\t \n  \f\b\b \f \n \f\n \f\f\n\b\t  \f
\f\n\n\t\b
\n\b    \b \n\b .
.
\f  \f\b 
10    \f\f\n\b\t \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b   \t \t \n\b .
.
\f  \f\b 
11     \f\f\n\b \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b    \b \n\b .
.
\f  \f\b 
11     \f\f\n\b \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b   \t \t \n\b .
.
\f  \f\b 
12    \f\f\n\b\t \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b    \b \n\b .
.
\f  \f\b 
12    \f\f\n\b\t \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b   \t \n\b .
.
\f  \f\b 
13     \f\f\n\b \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b    \b \n\b .
.
\f  \f\b 
13     \f\f\n\b \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\n\n\t\b
\n\b   \t \n\b .
.
\f  \f\b 
14   \f\f\n\b\t \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\f\n\t\b \b.
.
\f  \f\b 
15    \f\f\n\b \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\f\n\t\b
\b.
.
\f  \f\b 
16   \f\f\n\b\t \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\f\n\t\b \b.
.
\f  \f\b 
17    \f\f\n\b \n  \f\b\b \f \n \f\n  \f\f\n\b\t  \f
\f\f\n\t\b \b.
.
 \n \f\f\n\b\t \n.
.
\n\t \f\f \b \f\f\n\b\t \n, \n,    \n 
 — \f \b \f\b\n\t\b \f\f\b;
 — \f \f\t\b \f\f\b;
 — \f \b \t\b \f\f\b.
\b \n \n\n   \n  \n.
.
\n\t \b \n \f :
 —  \b\t  \b  ­\b  \n\t\b \n\b  \f\b\b \f \n \f\n
\f\f\n\b \n  \n;
 —  \b \n \f\f  \f\b\b \f \f\f\n\b.
\b  \n\n ,
   \n 
  \n
°C)
\b  \n\n ,
   \n 
  \n
°C)
\r  \n\n ,
   \n 
\n  \n
°C)
„   
„   \n\n Œ
Š  \n\n Œ
\b  
\n \n  
\n \n\n   
\r \n 
Danfoss
\f  \n
 Danfoss
 \n\n   

 \n\n \n  

\n  SONO 1500 CT
„\n \b„ 943.1 \n
\b  (
\n …„\b„-01) \n
\f   MBS 3000
…  \n
 ‚
\f  \n
‚ \n\n 
     ESMU
\f   

ESMT
•  
() ECL omfort 210 
omfort 310 \n   
 

ˆ\r\n
\f  
\n\r\r
‹ \f 
 \n\r\r
ˆ\r\n
\f  
\n\r\r
‹ \f 
 \n\r\r
 1.
†\n   \n \n ƒ„\b
\b 1
\b 1
ˆ\r\n
\f  
\n\r\r
‹ \f 
 \n\r\r
  
\n 
 \n
  \n\n 
 EV220B \n ‚ 

•   \n\n
  KPI35
˜    JiP, 
  ,  
… ,   
™ \n,   
Π\n
… \n  
 
…   
  \n \n\n  
\t     X1666
\f\n    SYLAX
\t 
„ 
€ \n \n\n
… 
ˆ\r\n
\f  
\n\r\r
‹ \f 
 \n\r\r
\b 2
 2.
 \n  \n
, 
 ƒ„\b

\f \r
‰\f\r  \n, \f   \n\r\r   \f  \f\b

\r   \n\n ,   Œ
\b  Ž, 
\n.
  XG, 
\n.
\f    \n  \n\n Œ
\b  Ž, 
\n.
  XG, 
\n.
 \n\n   
Grundfos
 Wilo
\r  \n \n \n    
… , \n, 
, ,
\n.
VFM2
/, , ,
\n.
 ‚  
AMV20
  VB2,
AMV30
  VB2,
AME 655, 658 SU/SD
  VFM2, 220, 4/6 \n/
  
\t  AVP      \f
/, , ,
\n.
°C, ‘ = 0,2–1,0  0,3–2,0 
\n  AFP/VFG2
… VFG2
, , 
\n.
 ‚ AFP-9
‘ = 0,15–1,50  0,5–3,0 
ˆ\n  AV  AVP (1  2 .)
ˆ\n  AF  AFP (2 .)
 \n
\t  AVPA
\n  AFPA/VFG2
= 15–25 ,
/, ,
\n  ,
\n.
°C,
= 15–25 ,
/, ,
\n  ,
\n.
°C,
= 32–50 ,
/, ,
,
\n.
°C,
‘ = 0,2–1,0  0,3–2,0 
… VFG2
, ,
\n.
 ‚ AFP-9
0,15–1,20  0,5–2,5 
ˆ\n  AF  AFP­
(2 .)
\b\n   AVPA
  
(, 2 .)
\b  (,
2 .)
• (\n) 
… EV220B \f
/, ,  , 
\n.
… ‚  220    EV220B
˜     ‚ 
•   (\n\n\n) KPI35

\f \r
‰\f\r  \n, \f   \n\r\r   \f  \f\b

 \n  RT262A  ­ \n\n
•  / ECL
 \n \n  \n ƒ„\b,   ‡ /    \n
ECL Apex 20
… ­230, ­260, ­266
… ­260, ­266, ­368
„\n   24 
\n   
… ‚     
\f    ESMT
\f  \n   
ESMU, , , L = 100 
ESMU, ,   \n, L = 100 
Œ   \n  
  ESMU
\n 
\b:
 

… \n, 
MSV-BD \f
,  ,
\n.
Jip BaBV \f
\n,  ,
\n.
MSV-F2 \f
= 15–40; 200-400 , , ,
\n.
Jip BaBV \f
=50-150 , \n, ,
\n.
…   JiP \f
= 32–150 , \n,    ,
40  ( \f
25  ( \f
\n.
…   Ž1666 \f
= 15–50 , \n,  , 
\n.
…   , \f
\n.

\n
\f\n    SYLAX \f
,  \n  , 
\n.
… 
„ 223 \f
, \n 
, 
\n.
„ 462 \f
, ,
\n.
„ 802 \f
,  \n
 , 
\n.
„ 802 \f
,  \n
 , 
\n.
\b\n 
\n 

(., 2 .)


(., 2 .)
™ \n
„ Y222P \f
= 20–50 , ,  ,
\n \n\n , 
\n.
„ FVF \f
= 15–150 , , ,
\n \n\n , 
\n.
\t , \n   \n\n, \n     100 ,
    \n\n \n  \n 

\n
„  \n , \n   \n\n,
\n     \n\n \n \n   \n

\n
… 

\n
\b 2
 3.
€    \n \n ƒ„\b
\r‡ (  \n)
€
\b\n 
\f\n
™
ˆ
\r\n
„ 
™\n
  \n \n ƒ„\b (  \n \n)
„\n …\f\t †„  \f\f \n\n, ‡
ƒ„\b ()
\n  ”
\n  ”

\n\n 
\n 
\n (Œ)
ˆ\f   \f\f,   \n‚\f \b‰
ˆ„‹\t­ „‹\bš\r ­ƒ›‹ ˆ‰
„ \n    „
\n
  
  
„ \n    „
\n
  
  
\f \n    
\f \n    
ˆ„‹\t­ \r„\r\bš‹ ˆ‰ ”
\n  \n    t
\n  \n    t
\t\n    \n\n  ‘
\t\n \n \n\n (   )  
\t \n    \n\n ( ) 
\r‡   \n\n V
…\n 
( \n \n \n\n   \n)


Š \n\n
 ( )
 (  \n)
\n
 
\b \n\n (  \n)
 ( )
 (  \n)
\n
 
ˆ„‹\t­ \r„\r\bš‹ ˆ‰ ”
2  ˆ„‹\t­ ‹ „ˆš‰Šˆˆ
\n  \n    t
\n  \n    t
\t\n    \n\n  () ‘
\t\n \n \n\n (   )  
\b 3
\t \n    \n\n () 
\r‡   \n\n V
…\n 
( \n \n \n\n   \n)


Š \n\n
 ( )
 (  \n)
\n
 
\b \n\n ( \n)
 ( )
 (  \n)
\n
 
\r\f\r\b\r\r\f
\n    „
\f   
ˆ„‹\t­ Œ\r‰œ‹Œ\r \r\f\r ­ƒ›‹ ˆ‰
\n     \n\n Œ „
\t\n \n \n    \n\n Œ G
\n     G
\t\n \n \n\n (   )  
\t\n      \n\n Œ ‘
Œ
…\n 
( \n \n \n\n   \n)


Š \n\n
 ( )
 (  \n)
\n
 
„  \f\b\f \n, \fŠ Š\n  
„ ‚  
ECL Comfort 210
ECL Comfort 310
ECL Apex 20
„    \n
\b \n 
 \n\n
 \n\n  ”
 \n\n  ”
()
 \n\n Œ
†\n  \n
 \n\n  ”
 \n\n  ”
()
„  \f  
… , \n
 

Š Š †„
\n, 
\f, 
\b\n   \n \n  \n\n    (    \n\n
Œ).
†\n\n \n \n\n \n \n .
\b 3
 4.
\r   \n ƒ„\b  \n 10 
Š, ‡
ƒ , *

\n\n 
\n\n Œ
* †   \n    . „  ƒ„\b \n\n 
\n\n \n \n.
** \f \n \n   ƒ„\b \n    2  .
\b 4




\b 4
 5.
€\n\n  \n\n \n ƒ„\b,
   \n \n,
    \n ( \n\n  01.01.2010 .)*
* \f   \n    \n \n\n ƒ„\b    \n \n  \n
 \n  \n  .
2000
4000
0
,
0
0
0
,
5
0
1
,
0
0
1
,
5
0
2
,
0
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