Daikin RXM35N2V1B9 [38/55] Capacity tables

Daikin RXM35N2V1B9 [38/55] Capacity tables
• Outdoor Unit • RXM-N9
4
• Split - Sky Air • RXM-N9
36
4 Capacity tables
4 - 1 Cooling/Heating Capacity Tables
&,ϲϬϵZyDϲϬEϵ
t 
Σ Σ d ^, W/ d ^, W/ d ^, W/ d ^, W/ d ^, W/ d ^, W/
ϭϰϬ ϮϬ ϱϴϰ ϰϰϱ ϭϯϯ ϱϱϳ ϰϯϮ ϭϰϲ ϱϯϭ ϰϭϵ ϭϱϵ ϱϮϬ ϰϭϯ ϭϲϰ ϱϬϰ ϰϬϲ ϭϳϭ ϰϳϴ ϯϵϯ ϭϴϰ
ϭϲϬ ϮϮ ϲϭϬ ϰϯϳ ϭϯϰ ϱϴϰ ϰϮϱ ϭϰϳ ϱϱϳ ϰϭϯ ϭϱϵ ϱϰϳ ϰϬϴ ϭϲϰ ϱϯϭ ϰϬϭ ϭϳϮ ϱϬϰ ϯϴϵ ϭϴϱ
ϭϴϬ Ϯϱ ϲϯϲ ϰϱϵ ϭϯϰ ϲϭϬ ϰϰϴ ϭϰϳ ϱϴϯ ϰϯϳ ϭϲϬ ϱϳϯ ϰϯϮ ϭϲϱ ϱϱϳ ϰϮϲ ϭϳϯ ϱϯϬ ϰϭϱ ϭϴϲ
ϭϵϬ Ϯϳ ϲϱϬ ϰϴϲ ϭϯϱ ϲϮϯ ϰϳϱ ϭϰϴ ϱϵϳ ϰϲϰ ϭϲϬ ϱϴϲ ϰϲϬ ϭϲϲ ϱϳϬ ϰϱϰ ϭϳϯ ϱϰϯ ϰϰϯ ϭϴϲ
ϮϮϬ ϯϬ ϲϴϵ ϰϲϵ ϭϯϲ ϲϲϮ ϰϲϬ ϭϰϵ ϲϯϲ ϰϱϬ ϭϲϮ ϲϮϱ ϰϰϲ ϭϲϳ ϲϬϵ ϰϰϭ ϭϳϰ ϱϴϯ ϰϯϭ ϭϴϳ
ϮϰϬ ϯϮ ϳϭϱ ϰϱϳ ϭϯϳ ϲϴϵ ϰϰϵ ϭϱϬ ϲϲϮ ϰϰϬ ϭϲϮ ϲϱϮ ϰϯϲ ϭϲϴ ϲϯϲ ϰϯϭ ϭϳϱ ϲϬϵ ϰϮϯ ϭϴϴ
d W/ d W/ d W/ d W/ d W/ d W/
ϯ
ϰϵ ϭ
ϳϰ ϰ
ϭϵ ϭ
ϴϯ ϰ
ϵϬ ϭ
ϵϮ ϱ
ϲϬ Ϯ
Ϭϭ ϳ
ϰϱ Ϯ
ϭϮ ϴ
ϭϬ Ϯ
ϭϵ
ϯ
Ϯϳ ϭ
ϳϵ ϯ
ϵϴ ϭ
ϴϴ ϰ
ϲϴ ϭ
ϵϳ ϱ
ϯϴ Ϯ
Ϭϲ ϳ
ϮϬ Ϯ
ϭϳ ϳ
ϴϱ Ϯ
Ϯϰ
ϯ
ϭϵ ϭ
ϴϭ ϯ
ϴϵ ϭ
ϵϬ ϰ
ϱϵ ϭ
ϵϵ ϱ
ϯϬ Ϯ
Ϭϴ ϳ
ϭϬ Ϯ
ϭϵ ϳ
ϳϱ Ϯ
Ϯϲ
ϯ
ϭϬ ϭ
ϴϯ ϯ
ϴϭ ϭ
ϵϮ ϰ
ϱϭ Ϯ
Ϭϭ ϱ
Ϯϭ Ϯ
ϭϬ ϳ
ϬϬ Ϯ
Ϯϭ ϳ
ϲϱ Ϯ
Ϯϴ
ϯ
Ϭϲ ϭ
ϴϰ ϯ
ϳϲ ϭ
ϵϯ ϰ
ϰϳ Ϯ
ϬϮ ϱ
ϭϳ Ϯ
ϭϭ ϲ
ϵϱ Ϯ
ϮϮ ϳ
ϲϬ Ϯ
Ϯϵ
Ϯ
ϵϳ ϭ
ϴϲ ϯ
ϲϴ ϭ
ϵϱ ϰ
ϯϴ Ϯ
Ϭϰ ϱ
Ϭϴ Ϯ
ϭϯ ϲ
ϴϱ Ϯ
Ϯϰ ϳ
ϱϬ Ϯ
ϯϭ
/ŶĚŽŽƌƚĞŵƉĞƌĂƚƵƌĞ
KƵƚĚŽŽƌƚĞŵƉĞƌĂƚƵƌĞ΀Σ΁
ϰϬ
&Z ϭϵϱ
& ϬϮ
ϮϬ Ϯϱ ϯϬ ϯϮ ϯϱ
&Z ϭϵϱ
/ŶĚŽŽƌƚĞŵƉĞƌĂƚƵƌĞ
KƵƚĚŽŽƌƚĞŵƉĞƌĂƚƵƌĞ΀Σt΁
 Ͳϭϱ ͲϭϬ Ͳϱ Ϭ ϲ
ϮϱϬ
ϮϳϬ
ϭϬ
Σ
ϭϱϬ
ϮϬϬ
ϮϮϬ
ϮϰϬ
ŽŽůŝŶŐ
ϱϬ,nj ϮϮϬͲ ϮϰϬs
,ĞĂƚŝŶŐ ϱϬ,nj
^LJŵďŽůƐ
&Z
&
t

d
^,
W/
ŝƌĨůŽǁƌĂƚĞ΀ŵϹŵŝŶ΁
LJƉĂƐƐĨĂĐƚŽƌ
ŶƚĞƌŝŶŐǁĞƚͲďƵůďƚĞŵƉĞƌĂƚƵƌĞ;ΣtͿ
ŶƚĞƌŝŶŐĚƌLJͲďƵůďƚĞŵƉĞƌĂƚƵƌĞ;ΣͿ
dŽƚĂůĐĂƉĂĐŝƚLJ΀Ŭ
^ĞŶƐŝďůĞŚĞĂƚĐĂƉĂĐŝƚLJ΀Ŭt΁
WŽǁĞƌŝŶƉƵƚ΀Ŭt΁
EŽƚĞƐ
dŚĞƌĂƚŝŶŐƐƐŚŽǁŶĂƌĞŶĞƚĐĂƉĂĐŝƚŝĞƐǁŚŝĐŚŝŶĐůƵĚĞĂĚĞĚƵĐƚŝŽŶĨŽƌŝŶĚŽŽƌĨĂŶŵŽƚŽƌŚĞĂƚ
dŚĞƚŽƚĂůĐĂƉĂĐŝƚLJƉŽǁĞƌŝŶƉƵƚĂŶĚƐĞŶƐŝďůĞŚĞĂƚĐĂƉĂĐŝƚLJŵƵƐƚďĞĐĂůĐƵůĂƚĞĚďLJŝŶƚĞƌƉŽůĂƚŝŽŶƵƐŝŶŐƚŚĞĨŝŐƵƌĞƐŝŶƚŚĞƚĂďůĞ;ĨŝŐƵƌĞƐŶŽƚŝŶƚŚĞƚĂďůĞŵĂLJŶŽƚ
ďĞƵƐĞĚŝŶƚŚĞĐĂůĐƵůĂƚŝŽŶͿ
ŽƌƌĞƐƉŽŶĚŝŶŐƌĞĨƌŝŐĞƌĂŶƚƉŝƉŝŶŐůĞŶŐƚŚϱŵ
>ĞǀĞůĚŝĨĨĞƌĞŶĐĞϬŵ
/ŶĐĂƐĞƚŚĞƐĞŶƐŝďůĞŚĞĂƚĐĂƉĂĐŝƚLJŝƐŶŽƚŵĞŶƚŝŽŶĞĚŝŶƚŚĞƚĂďůĞƉůĞĂƐĞĐĂůĐƵůĂƚĞŝƚƵƐŝŶŐĂŶĂƉƉƌŽdžŝŵĂƚŝŽŶďĞƚǁĞĞŶƚǁŽǀĂůƵĞƐŝŶĚŝƌĞĐƚ
ƉƌŽƉŽƌƚŝŽŶ
ϭ
ϯ
ϰ
ϱ
ϮϮϬͲ ϮϰϬs
Ϯ
KŶƚŚĞĨŝŐƵƌĞƚŚĞŵĂƌŬƐŚŽǁƐƚŚĞƌĂƚĞĚĐĂƉĂĐŝƚLJĂŶĚƌĂƚĞĚĐŽĞĨĨŝĐŝĞŶƚŽĨƚŚĞƉŽǁĞƌŝŶƉƵƚ
dŚĞĂŝƌĨůŽǁƌĂƚĞĂŶĚďLJƉĂƐƐĨĂĐƚŽƌĂƌĞŵĞŶƚŝŽŶĞĚŝŶƚŚĞƚĂďůĞ
ϲ
dŚĞĐĂƉĂĐŝƚŝĞƐĂƌĞďĂƐĞĚŽŶƚŚĞĨŽůůŽǁŝŶŐĐŽŶĚŝƚŝŽŶƐ
ϯϭϭϬϬϴϴ
&EϮϱϵZyDϮϱEϵ
t 
Σ Σ d ^, W/ d ^, W/ d ^, W/ d ^, W/ d ^, W/ d ^, W/
ϭϰϬ ϮϬ Ϯϲϲ ϮϬϰ ϬϱϮ Ϯϱϰ ϭϵϴ Ϭϱϴ ϮϰϮ ϭϵϮ Ϭϲϯ Ϯϯϳ ϭϵϬ Ϭϲϱ ϮϯϬ ϭϴϲ Ϭϲϴ Ϯϭϴ ϭϴϭ Ϭϳϯ
ϭϲϬ ϮϮ Ϯϳϴ ϮϬϬ Ϭϱϯ Ϯϲϲ ϭϵϱ Ϭϱϴ Ϯϱϰ ϭϴϵ Ϭϲϯ Ϯϰϵ ϭϴϳ Ϭϲϱ ϮϰϮ ϭϴϰ Ϭϲϴ ϮϯϬ ϭϳϴ Ϭϳϯ
ϭϴϬ Ϯϱ ϮϵϬ Ϯϭϭ Ϭϱϯ Ϯϳϴ ϮϬϲ Ϭϱϴ Ϯϲϲ ϮϬϬ Ϭϲϯ Ϯϲϭ ϭϵϴ Ϭϲϱ Ϯϱϰ ϭϵϱ Ϭϲϴ ϮϰϮ ϭϵϬ Ϭϳϯ
ϭϵϬ Ϯϳ Ϯϵϲ ϮϮϯ Ϭϱϯ Ϯϴϰ Ϯϭϴ Ϭϱϴ ϮϳϮ Ϯϭϯ Ϭϲϯ Ϯϲϳ Ϯϭϭ Ϭϲϱ ϮϲϬ ϮϬϴ Ϭϲϴ Ϯϰϴ ϮϬϰ Ϭϳϯ
ϮϮϬ ϯϬ ϯϭϰ Ϯϭϲ Ϭϱϰ ϯϬϮ Ϯϭϭ Ϭϱϵ ϮϵϬ ϮϬϳ Ϭϲϰ Ϯϴϱ ϮϬϱ Ϭϲϲ Ϯϳϴ ϮϬϮ Ϭϲϵ Ϯϲϲ ϭϵϴ Ϭϳϰ
ϮϰϬ ϯϮ ϯϮϲ ϮϭϬ Ϭϱϰ ϯϭϰ ϮϬϲ Ϭϱϵ ϯϬϮ ϮϬϮ Ϭϲϰ Ϯϵϳ ϮϬϭ Ϭϲϲ ϮϵϬ ϭϵϴ Ϭϲϵ Ϯϳϴ ϭϵϰ Ϭϳϰ
d W/ d W/ d W/ d W/ d W/ d W/
ϭ
ϰϵ Ϭ
ϲϰ ϭ
ϳϵ Ϭ
ϲϴ Ϯ
Ϭϵ Ϭ
ϳϭ Ϯ
ϯϵ Ϭ
ϳϰ ϯ
ϯϭ Ϭ
ϳϴ ϯ
ϲϬ Ϭ
ϴϭ
ϭ
ϰϬ Ϭ
ϲϲ ϭ
ϳϬ Ϭ
ϲϵ Ϯ
ϬϬ Ϭ
ϳϯ Ϯ
ϯϬ Ϭ
ϳϲ ϯ
ϮϬ Ϭ
ϴϬ ϯ
ϰϵ Ϭ
ϴϯ
ϭ
ϯϲ Ϭ
ϲϳ ϭ
ϲϲ Ϭ
ϳϬ ϭ
ϵϲ Ϭ
ϳϯ Ϯ
Ϯϲ Ϭ
ϳϳ ϯ
ϭϲ Ϭ
ϴϭ ϯ
ϰϰ Ϭ
ϴϯ
ϭ
ϯϮ Ϭ
ϲϴ ϭ
ϲϮ Ϭ
ϳϭ ϭ
ϵϮ Ϭ
ϳϰ Ϯ
ϮϮ Ϭ
ϳϳ ϯ
ϭϭ Ϭ
ϴϭ ϯ
ϰϬ Ϭ
ϴϰ
ϭ
ϯϬ Ϭ
ϲϴ ϭ
ϲϬ Ϭ
ϳϭ ϭ
ϵϬ Ϭ
ϳϱ Ϯ
ϮϬ Ϭ
ϳϴ ϯ
Ϭϵ Ϭ
ϴϮ ϯ
ϯϴ Ϭ
ϴϰ
ϭ
Ϯϳ Ϭ
ϲϵ ϭ
ϱϳ Ϭ
ϳϮ ϭ
ϴϳ Ϭ
ϳϱ Ϯ
ϭϳ Ϭ
ϳϵ ϯ
Ϭϱ Ϭ
ϴϯ ϯ
ϯϯ Ϭ
ϴϱ
/ŶĚŽŽƌƚĞŵƉĞƌĂƚƵƌĞ
KƵƚĚŽŽƌƚĞŵƉĞƌĂƚƵƌĞ΀Σ΁
ϰϬ
&Z ϴϳ
& Ϭϭϳ
ϮϬ Ϯϱ ϯϬ ϯϮ ϯϱ
&Z ϴϳ
/ŶĚŽŽƌƚĞŵƉĞƌĂƚƵƌĞ
KƵƚĚŽŽƌƚĞŵƉĞƌĂƚƵƌĞ΀Σt΁
 Ͳϭϱ ͲϭϬ Ͳϱ Ϭ ϲ
ϮϱϬ
ϮϳϬ
ϭϬ
Σ
ϭϱϬ
ϮϬϬ
ϮϮϬ
ϮϰϬ
ŽŽůŝŶŐ
ϱϬ,nj ϮϮϬͲ ϮϰϬs
,ĞĂƚŝŶŐ ϱϬ,nj
^LJŵďŽůƐ
&Z
&
t

d
^,
W/
ŝƌĨůŽǁƌĂƚĞ΀ŵϹŵŝŶ΁
LJƉĂƐƐĨĂĐƚŽƌ
ŶƚĞƌŝŶŐǁĞƚͲďƵůďƚĞŵƉĞƌĂƚƵƌĞ;ΣtͿ
ŶƚĞƌŝŶŐĚƌLJͲďƵůďƚĞŵƉĞƌĂƚƵƌĞ;ΣͿ
dŽƚĂůĐĂƉĂĐŝƚLJ΀Ŭ
^ĞŶƐŝďůĞŚĞĂƚĐĂƉĂĐŝƚLJ΀Ŭt΁
WŽǁĞƌŝŶƉƵƚ΀Ŭt΁
EŽƚĞƐ
dŚĞƌĂƚŝŶŐƐƐŚŽǁŶĂƌĞŶĞƚĐĂƉĂĐŝƚŝĞƐǁŚŝĐŚŝŶĐůƵĚĞĂĚĞĚƵĐƚŝŽŶĨŽƌŝŶĚŽŽƌĨĂŶŵŽƚŽƌŚĞĂƚ
dŚĞƚŽƚĂůĐĂƉĂĐŝƚLJƉŽǁĞƌŝŶƉƵƚĂŶĚƐĞŶƐŝďůĞŚĞĂƚĐĂƉĂĐŝƚLJŵƵƐƚďĞĐĂůĐƵůĂƚĞĚďLJŝŶƚĞƌƉŽůĂƚŝŽŶƵƐŝŶŐƚŚĞĨŝŐƵƌĞƐŝŶƚŚĞƚĂďůĞ;ĨŝŐƵƌĞƐŶŽƚŝŶƚŚĞƚĂďůĞŵĂLJ
ŶŽƚďĞƵƐĞĚŝŶƚŚĞĐĂůĐƵůĂƚŝŽŶͿ
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Содержание

I TDAIKIN Outdoor Unit RXM N9 4 Capacity tables 4 1 Cooling Heating Capacity Tables FHA60A9 RXM60N9 50 Hz Cooling Indoor temperature EWB EDB C C 14 0 20 16 0 22 18 0 25 19 0 27 22 0 30 24 0 32 20 SHC 4 45 4 37 4 59 4 86 4 69 4 57 TC 5 84 6 10 6 36 6 50 6 89 7 15 Heating PI 1 33 1 34 1 34 1 35 1 36 1 37 50 Hz Indoor temperature EDB C 15 0 20 0 22 0 24 0 25 0 27 0 TC 5 57 5 84 6 10 6 23 6 62 6 89 10 PI 1 74 1 79 1 81 1 83 1 84 1 86 25 SHC 4 32 4 25 4 48 4 75 4 60 4 49 PI 1 46 1 47 1 47 1 48 1 49 1 50 TC 4 19 3 98 3 89 3 81 3 76 3 68 PI 1 83 1 88 1 90 1 92 1 93 1 95 19 5 0 2 Outdoor temperature C DB 30 32 SHC PI TC SHC PI 4 19 1 59 5 20 4 13 1 64 4 13 1 59 5 47 4 08 1 64 4 37 1 60 5 73 4 32 1 65 4 64 1 60 5 86 4 60 1 66 4 50 1 62 6 25 4 46 1 67 4 40 1 62 6 52 4 36 1 68 TC 5 31 5 57 5 83 5 97 6 36 6 62 AFR 220 240 V 15 TC 3 49 3 27 3 19 3 10 3 06 2 97 AFR BF 220 240 V 35 SHC 4 06 4 01 4 26 4 54 4 41 4 31 TC 5 04 5 31 5 57 5 70 6 09 6 36 Pl 1 71 1 72 1 73 1 73 1 74 1 75 TC 4 78 5 04 5 30 5 43 5 83 6 09 40 SHC 3 93 3 89 4 15 4 43 4 31 4 23 PI 1 84 1 85 1 86 1 86 1 87 1 88 19 5 Outdoor temperature C WB 5 0 TC PI TC PI 4 90 1 92 5 60 2 01 4 68 1 97 5 38 2 06 4 59 1 99 5 30 2 08 4 51 2 01 5 21 2 10 4 47 2 02 5 17 2 11 4 38 2 04 5 08 2 13 Symbols 6 TC 7 45 7 20 7 10 7 00 6 95 6 85 10 PI 2 12 2 17 2 19 2 21 2 22 2 24 TC 8 10 7 85 7 75 7 65 7 60 7 50 PI 2 19 2 24 2 26 2 28 2 29 2 31 AFR Air flow rate m mln BF Bypass factor EWB Entering wet bulb temperature C WB EDB Entering dry bulb temperature C DB IC Total capacity kW SHC Sensible heat capacity kW Pl Power input kW Notes 1 The ratings shown are net capacities which include a deduction for indoor fan motor heat 2 On the figure the mark shows the rated capacity and rated coefficient of the power input 3 The total capacity power input and sensible heat capacity must be calculated by interpolation using the figures in the table figures not in the table may not be used in the calculation 4 in case the sensible heat capacity is not mentioned in the table please calculate it using an approximation between two values in direct proportion 5 The capacities are based on the following conditions Corresponding refrigerant piping length 5 m Level difference 0m 6 The air flow rate and bypass factor are mentioned in the table 3D110088B FNA25A9 RXM25N9 50 Hz Cooling AFR BF 220 240 V Indoor temperature EWB C 14 0 16 0 EDB C 20 22 18 0 19 0 22 0 24 0 8 7 0 17 Outdoor temperature C DB TC 2 66 2 78 20 SHC PI 2 04 0 52 2 00 0 53 TC 2 54 2 66 25 SHC PI 1 98 0 58 1 95 0 58 25 27 2 90 2 96 2 11 2 23 30 32 3 14 3 26 2 16 2 10 0 53 0 53 2 78 2 84 2 06 2 18 0 54 0 54 3 02 3 14 2 11 2 06 Heating TC 2 42 2 54 30 SHC PI 1 92 0 63 1 89 0 63 TC 2 37 2 49 32 SHC PI 1 90 0 65 1 87 0 65 TC 2 30 2 42 35 SHC 1 86 1 84 PI 0 68 0 68 TC 2 18 2 30 40 SHC 1 81 1 78 PI 0 73 0 73 0 58 0 58 2 66 2 72 2 00 2 13 0 63 0 63 2 61 2 67 1 98 2 11 0 65 0 65 2 54 2 60 1 95 2 08 0 68 0 68 2 42 2 48 1 90 2 04 0 73 0 73 0 59 0 59 2 90 3 02 2 07 2 02 0 64 0 64 2 85 2 97 2 05 2 01 0 66 0 66 2 78 2 90 2 02 1 98 0 69 0 69 2 66 2 78 1 98 1 94 0 74 0 74 AFR 220 240 V 8 7 Symbols Indoor temperature W T 20 0 22 0 24 0 25 0 2 0 Outdoor temperature C 3 _LC_ jc 1 49 _0 4 1 40 0 66 1 70 0 67 1 66 1 32 0 68 1 62 1 30 0 68 1 60 w WB 6 _ 1_ A68 0 69 _HL 09 AZI 200 0 73 0 71 1 90 iEZ oX oX TO I Pl 2 9X74 2 30 0 76 2 26 2 22 I 0 77 270 0 8 2 171 0 79 JC W 3 05 0 _ _ pr Ì60 3 49 0 83 3 44 3 40 it 082 3 38 0 84 0 83 IT 0 85 L T AFR Air flow rate m min BF Bypass factor EWB Entering wet bulb temperature C WB EDB Entering dry bulb temperature C DB TC Total capacity kW SHC Sensible heat capacity kW PI Power input kW Notes 1 The ratings shown are net capacities which include a deduction for indoor fan motor heat 2 On the figure the mark shows the rated capacity and rated coefficient of the power input 3 The total capacity power input and sensible heat capacity must be calculated by interpolation using the figures in the table figures not in the table may not be used in the calculation 4 In case the sensible heat capacity is not mentioned in the table please calculate it using an approximation between two values in direct proportion 5 The capacities are based on the following conditions Corresponding refrigerant piping length 5 m Level difference 0m 6 The air flow rate and bypass factor are mentioned in the table 3D110089A 36 I yDAlKlN Split Sky Air RXM N9

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