Black Box Air Conditioner cold row chilled waterCW engineering manual User Manual |
CRCW-12
CRCW-24
Cold Row™ Chilled Water (CW) Engineering Manual
This precision data center air-conditioning system
uses the latest, state-of-the-art control technology.
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Table of Contents
Table of Contents
1. About the Cold Row CW......................................................................................................................................................4
2. Features ...............................................................................................................................................................................5
3. Configurations.......................................................................................................................................................................7
4. Technical Data.......................................................................................................................................................................8
5. Performance, Electrical, and Sound Data...............................................................................................................................9
6. Dimensional Data ................................................................................................................................................................13
7. Product Features..................................................................................................................................................................15
8. Product Guide Specifications...............................................................................................................................................16
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Chapter 1: About the Cold Row CW
1. About the Cold Row CW
Designed for scalability, reliability, and seamless integration into new or existing data centers; the rack cooling systems are suitable
for use in open and contained hot-aisle and cold-aisle configurations. The models covered in this manual are ideal for hot-spot
cooling in small- to enterprise-size data centers.
Typical applications include:
• Internet/Web hosting
• Telecommunications
• Financial/banking
• Insurance
• Airlines/mass transit
• Legal services
• Entertainment
• Government
• Colleges/universities
• Data centers
• Computer/LAN rooms
• Telecommunications rooms
• Co-location centers
• Internet service providers (ISPs)
• Applications service providers (ASPs)
• Hospital operating and isolation rooms
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Chapter 2: Features
2. Features
Chilled water (CW) is supplied to the Cold Row CW unit via a building chiller or other chilled water plant. Chilled water has high
affinity for heat, making it a very efficient cooling method. The E² controller enables independent valve and fan control so the unit
can adjust immediately, and precisely, to varying heat loads and optimize energy efficiency.
Two models are available:
Table 2-1. Available models.
Product Code
CRCW-12
Product Name
Cold Row CW, 12"
Cold Row CW, 24"
CRCW-24
The Cold Row CW offers the following features:
• Highest cooling capacities in the industry.
• 12" and 24" cabinet width.
• 3 EC fans: Independently and infinitely adjustable EC fans ensure maximum efficiency.
• Used in containment, open architecture, and hot spot reduction applications.
• Adapts to both high- and low-density IT environments.
• Wide range of cooling capacities available.
• 100% front and rear service access.
• Adapts to all major manufacturers' racks and rack containment systems.
• Integrates seamlessly with all Building Management Systems (BMS) platforms.
• Private VLAN (pLAN) link to 8 units without a BMS.
• High airflow with low noise.
• Built-in redundancy and capacity assist functions.
• Top and bottom piping options.
• Casters and leveling feet included.
• Indoor use only.
• Installation on raised and non-raised floors.
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Chapter 2: Features
Chiller
(Full Capacity
or Trim)
Cold Row CW
Chilled Water
Pump
Figure 2-1. Traditional cooling example.
Chiller
Cold Row CW
Cooling Tower Pump
Chilled Water Pump
Closed Loop
Cooling Tower
Figure 2-2. Hybrid-free cooling diagram.
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Chapter 3: Configurations
3. Configurations
Open Aisle Configuration
Open aisle configuration organizes racks in a single row or in hot
and cold aisle rows, but without containment. The Cold Row
CW draws hot air from the external environment or hot aisle,
removes the heat, and supplies cooled air to the front of IT
equipment in the cold aisle.
Open Aisle
Containment with
Side Discharge
Cold Aisle Containment
Cold aisle containment captures cooled air from the Cold Row
CW and prevents it from mixing with hot air. The front of IT
equipment is accessed in the contained cold aisle. The Cold Row
CW draws hot air from the external environment, removes the
heat, and supplies cooled air back into the contained cold aisle.
Cold Aisle
Containment with
Front Discharge
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Chapter 4: Technical Data
4. Technical Data
Table 4-1. CW System Technical Data.
Model
12" Chilled Water, CRCW-12
24" Chilled Water, CRCW-24
Chilled Water Control Valve
2-Way (Standard) — Modulating
Valve Pressure Rating — psi
400
200
400
200
Close-off Pressure Rating — psi
3-Way (optional) — Modulating
Valve Pressure Rating — psi
400
200
400
200
Close-off Pressure Rating — psi
Chilled Water Coil — Aluminum Fin, Copper Tube
Rows/Face Area (ft.2)
4/5.8
500
4/11.6
500
Face Velocity, fpm
Blower/Motor — Backward Curved Direction Driven EC
Horsepower (Each)
CFM
1/4 H.P.
2,900*
1-1/4 H.P.
5,800
Quantity of Blowers
3
3
Drive Method
Direct
Direct
Humidification: Electrode Steam Canister Humidifier with Adjustable Output (Optional)
lb./hr. (KW input)
N/A
N/A
5 (1.7)
Std Control
Proportional
Washable Filters
Nom. Size (in.) (Qty,)
Connection Sizes (Copper)
10.5 x 37.38 x 0.43 (2)
22.0 x 37.37 x 0.43 (2)
Condensate Drain (w/pump)
Humidifier Inlet
1/2" FPT
N/A
1/2" FPT
1/4" OD
Water In/Out
1-1/4" NPT
1-1/2" NPT
Physical Data
Approx. Weight (lb.)
384
550
Dimensions: (H" x W" x D")
78.5" x 11.6" x 42.1"
78.5" x 23.4" x 42.1"
Approx. Shipping Weight
570
711
Approx. Shipping Dimensions:
(H" x W" x D")
84" x 22" x 48"
84" x 32" x 48"
*NOTE: When 110v/Ph/60 Hz power input is selected, unit airflow is reduced by 200 CFM, which will result in capacity reduction
of 3.5% or less.
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Chapter 5: Performance, Electrical, and Sound Data
5. Performance, Electrical, and Sound Data
Table 5-1. Performance Data.
Total System
Pressure Drop
Total Capacity
Sensible Capacity Flow Rate
12" Chilled Water Temperature
(CRCW-12) Change
BTU/H
kW
BTU/H
kW
GPM
(ft. H2O)
100° F DB/69.2° F WB Entering AIr Temperature
10° F Temperature
127,008
37.2
35.0
125,200
119,461
36.7
35.0
25.7
20.2
18.0
12.2
change
40° F EWT
12° F Temperature
119,461
change
10° F Temperature
107,333
31.4
30.1
28.0
26.8
107,333
102,855
95,717
91,561
31.4
30.1
28.0
26.8
21.8
17.4
19.5
15.5
13.7
9.6
change
45° F EWT
12° F Temperature
102,855
change
10° F Temperature
95,717
11.4
8.0
change
50° F EWT
12° F Temperature
91,561
change
95 FDB/67.7° F WB Entering AIr Temperature
10° F Temperature
116,107
34.0
31.7
28.2
113,554
108,271
96,465
33.2
31.7
28.2
23.5
18.3
19.6
15.5
10.5
11.6
change
40° F EWT
12° F Temperature
108,271
change
10° F Temperature
96,465
change
45° F EWT
12° F Temperature
91,834
26.9
24.8
23.5
91,834
84,669
80,417
26.9
24.8
23.5
15.6
17.3
13.7
8.2
9.5
6.8
change
10° F Temperature
84,669
change
50° F EWT
12° F Temperature
80,417
change
90° F DB/66.1° F WB Entering AIr Temperature
10° F Temperature
108,988
31.9
30.3
28.2
108,988 31.9
22.1
17.5
19.5
14.0
9.7
change
40° F EWT
12° F Temperature
103,324
103,324
96,139
30.3
28.2
change
10° F Temperature
96,139
11.5
change
45° F EWT
12° F Temperature
91,959
26.9
24.8
23.6
91,959
84,788
80,524
26.9
24.8
23.6
15.6
17.3
13.7
8.2
9.5
6.8
change
10° F Temperature
84,788
change
50° F EWT
12° F Temperature
80,524
change
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Chapter 5: Performance, Electrical, and Sound Data
Table 5-1 (continued). Performance Data.
Total System
Pressure Drop
Total Capacity
Sensible Capacity Flow Rate
12" Chilled Water Temperature
(CRCW-12) Change
BTU/H
kW
BTU/H
kW
GPM
(ft. H2O)
80° F DB/64.5° F WB Entering AIr Temperature
10° F Temperature
81,155
23.8
21.2
18.1
16.6
14.5
13.0
77,151
72,250
61,703
56,587
49,488
33,393
22.6
21.2
18.1
16.6
14.5
13.0
16.6
12.3
12.6
9.7
9.0
6.0
6.2
4.5
4.8
3.7
change
40° F EWT
12° F Temperature
72,250
change
10° F Temperature
61,703
change
45° F EWT
12° F Temperature
56,587
change
10° F Temperature
49,488
10.2
7.7
change
50° F EWT
12° F Temperature
44,393
change
Total System
Pressure Drop
Total Capacity
Sensible Capacity Flow Rate
24" Chilled Water Temperature
(CRCW-24) Change
BTU/H
kW
BTU/H
kW
GPM
(ft. H2O)
100° F DB/69.2° F WB Entering AIr Temperature
10° F Temperature
263,192
77.1
73.7
64.4
62.1
56.3
54.6
250,429 73.3
54.5
43.5
45.9
37.0
40.5
32.8
39.4
26.8
29.2
20.2
23.4
16.5
change
40° F EWT
12° F Temperature
251,539
245,539
219,854
211,927
192,259
71.9
64.4
62.1
56.3
change
10° F Temperature
219,854
change
45° F EWT
12° F Temperature
211,927
change
10° F Temperature
192,259
change
50° F EWT
12° F Temperature
186,556
186,556 54.6
change
95° F DB/67.7° F WB Entering AIr Temperature
10° F Temperature
242,729
71.1
67.6
58.3
55.7
50.0
48.1
227,717
66.7
50.5
40.1
41.8
33.4
36.2
29.0
34.8
23.3
24.9
17.0
19.4
13.4
change
40° F EWT
12° F Temperature
230,726
222,663 65.2
199,089 58.3
190,287 55.7
change
10° F Temperature
199,089
change
45° F EWT
12° F Temperature
190,287
change
10° F Temperature
170,772
170,772
50.0
change
50° F EWT
12° F Temperature
164,228
164,228 48.1
change
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Chapter 5: Performance, Electrical, and Sound Data
Table 5-1 (continued). Performance Data.
Total System
Pressure Drop
Total Capacity
Sensible Capacity Flow Rate
24" Chilled Water Temperature
(CRCW-24) Change
BTU/H
kW
BTU/H
kW
GPM
(ft. H2O)
90° F DB/66.1° F WB Entering AIr Temperature
10° F Temperature
221,108
64.7
60.9
51.9
49.0
43.5
41.4
204,623 59.9
46.2
36.2
37.4
29.5
31.6
25.2
29.8
19.6
20.3
14.0
15.4
10.8
change
40° F EWT
12° F Temperature
207,922
199,053
177,357
167,355
58.3
51.9
49.0
change
10° F Temperature
177,357
change
45° F EWT
12° F Temperature
167,355
change
10° F Temperature
148,407
148,407 43.5
change
50° F EWT
12° F Temperature
141,408
141,408
41.4
change
85° F DB/64.5° F WB Entering AIr Temperature
10° F Temperature
199,491
58.4
54.1
45.3
42.2
36.7
34.5
180,880 53.0
41.8
32.4
32.9
25.6
27.0
21.3
25.0
16.3
16.7
11.1
12.1
8.5
change
40° F EWT
12° F Temperature
184,737
174,604
154,771
51.1
change
10° F Temperature
154,771
45.3
change
45° F EWT
12° F Temperature
144,039
144,039 42.2
change
10° F Temperature
125,357
125,357
117,882
36.7
34.5
change
50° F EWT
12° F Temperature
117,882
change
80° F DB/62.8° F WB Entering AIr Temperature
10° F Temperature
176,442
51.7
46.8
38.3
35.1
29.8
27.3
156,565
45.8
37.2
28.2
28.2
21.6
22.3
17.1
20.6
13.0
12.9
8.7
change
40° F EWT
12° F Temperature
159,804
149,444 43.8
change
10° F Temperature
130,953
130,953
119,742
101,625
93,093
38.3
35.1
29.5
27.3
change
45° F EWT
12° F Temperature
119,742
change
10° F Temperature
101,625
9.0
change
50° F EWT
12° F Temperature
93,093
6.3
change
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Chapter 5: Performance, Electrical, and Sound Data
Table 5-2. Electrical Data.
CRCW-12
CRCW-24
Electrical Data
FLA
MCA
MFS
FLA
MCA
MFS
Cooling Only
120/1/60
9.5
5.7
5.7
2.8
2.3
11.9
7.1
15
15
15
15
15
N/A
N/A
10.0
4.8
N/A
N/A
12.5
6.0
N/A
N/A
15
208/1/60
208/3/60
460/3/60
575/3/60
7.1
3.6
2.9
15
3.9
4.9
15s
Cooling and Humidifier
120/1/60
208/1/60
208/3/60
460/3/60
575/3/60
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
19.2
9.0
N/A
N/A
24.0
11.2
9.1
N/A
N/A
30
15
7.3
15
NOTE: Standard 1 KAIC rating; optional 65 KAIC rating available.
Table 5-3. Sound Data.
Sound Data for CRCW-12
Sound Pressure — LpA, free field (dBA) in a 121.13 ft.2 (3.43 m3) room at 3.28 (1.0 m) distance
Fan Speed %
50%
Airflow (SCFM)
63
125
250
31.3
42.7
49.8
500
1000 2000 4000 8000 Total dBA NR Value
1800
2150
2900
15.8 19.7
13.1 41.6
19.6 47.2
35.0
38.8
36.1
46.2
51.7
25.3
38.5
45.0
10.9
23.4
30.6
42.0
52.6
58.4
39
48
54
75%
45.2 48.1
51.4 53.6
100%
Sound Data for CRCW-24
Sound Pressure — LpA, free field (dBA) in a 146.91 ft.2 (4.16 m3) room at 3.28 (1.0 m) distance
Fan Speed %
50%
Airflow (SCFM)
63
125
250
46.6
57.3
61.5
500
48.6 52.3
59.7 62.8
64.0 67.0
1000 2000 4000 8000 Total dBA NR Value
4100
5000
5800
29.4 42.5
34.9 49.7
43.0 52.6
52.5
60.5
64.2
41.5
56.0
59.6
26.1
40.3
45.8
57.0
67.0
71.1
54
63
67
75%
100%
NOTE: All sound testing is performed in accordance with ISO 9614-2 Determination of Sound Power Levels. ISO 9614-2 specifies
a method for measuring the component of sound intensity that is normal to a measurement surface. The measurement
surface is chosen to enclose the noise source(s) so that the sound power level can be determined.
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Chapter 6: Dimensional Data
6. Dimensional Data
Top Piping Option
Bottom Piping Option
Power
Connections
Piping
Connections
11.6"
Condensate
Connection
Air
In
77.8"
Air
Out
Condensate
Connection
Piping
Connections
Power
42.1"
Connections
Figure 6-1a. Size and piping options, CRCW-12.
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Chapter 6: Dimensional Data
Side-Diverted Front Panel Piping Option, CRCW-12
11.6"
77.8"
48.3"
Figure 6-1b. Size and piping options, CRCW-12.
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Chapter 6: Dimensional Data
Top Piping Option
Bottom Piping Option
Humidifier
Connections
Power
Connections
Piping
Connections
23.4"
Condensate
Connection
Air
In
77.8"
Piping
Connections
Air
Out
Condensate
Connection
Humidifier
Connection
Power
Connections
42.1"
Figure 6-2a. Size and piping options, CRCW-24.
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Chapter 6: Dimensional Data
Side-Diverted Front Panel Piping Option, CRCW-24
Figure 6-2b. Size and piping options, CRCW-24.
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Chapter 7: Product Features
7. Product Features
Table 7-1. Product features.
Features
Cabinet
Part Numbers
CRCW-12
CRCW-24
Galvanized Steel, Black Power-Coated Finish
Standard
Standard
Air Pattern and Filtration
Front Discharge
Standard
Standard
Front Diverted Plenum Discharge
Permanent Washable Filters
Optional
Standard
Optional
Standard
Mechanical Components
Backward Inclined, Plenum-Style Fan, with an EC Motor
Chilled Water Cooling Coil
Standard
Standard
Selectable*
Standard
Standard
Optional
N/A
Standard
Standard
Selectable*
Standard
Standard
Optional
Optional
Piping Configuration (Top or Bottom)
Condensate Pump
2-Way Modulating Chilled Water Control Valve
3-Way Modulating Chilled Water Control Valve
Electrode Steam Condenser Humidifier
Electrical System
Automatic Dual Power Transfer Switch
Remote Stop/Start Controls
Main Power Switch
Optional
Standard
Standard
Optional
Standard
Standard
E2 Microprocessor Controller
A/C Grouping pLAN Interface
BMS Interface
Optional
Optional
Standard
Optional
Optional
Standard
Common Alarm, Dry Contact
Optional Accessories
Mechanical Flow Switch
Differential Temperature Flow
Smoke Detection
Optional
Optional
Optional
Optional
Optional
Optional
Optional
Optional
Optional
Optional
Firestat
Remote Water Detector
Code Conformance
ETL Conformance Compliance to UL® 1995 Standard
CAN/CSA C22.2 No. 236
Standard
Standard
Standard
Standard
*NOTE: Piping connection location to be specified at time of order.
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Chapter 8: Product Guide Specifications
8. Product Guide Specifications
SUMMARY
This specification describes requirements for a precision environmental control system. The Cold Row CW is a row-based cooling
system that provides precision temperature control (and humidity control for the 24" models) for computer rooms, or rooms
containing telecommunications or other highly sensitive heat load equipment, where continuous 24 hours a day, 365 days a year
air conditioning is required. Designed with both front and rear access, Cold Row CW systems require minimum floor space. The
supplied system has ETL Certification. The part numbers are CRCW-12 and CRCW-24.
DESIGN REQUIREMENTS
The environmental control system is a Cold Row Chilled Water (CW) factory-assembled unit. The unit is designed for a
row-based installation with removable front and rear access panels. No allowance for side service access is required, however,
removable side access panels are provided for additional access.
Cold Row CW units are especially adapted for both raised and non-raised floors. The air handling system is specifically designed
for high sensible heat ratio. Each system is capable of handling ___CFM. The unit shall have the cooling capacity of ___BTU/H,
and the sensible cooling capacity of ___BTU/H based on entering air condition of ___°F (°C) dry bulb and ___°F (°C) wet bulb.
The main fan motors shall be ___HP. The unit shall have a power supply of ___volts.
QUALITY ASSURANCE
The manufacturer will maintain a set of international standards of quality management to ensure product quality. Each system will
be subjected to a complete operational and functional test procedure at the factory before shipment.
CABINET
Access panels must be fabricated from 18-gauge galvannealed steel and must be securely fastened to the 10-gauge base and
16-gauge top plates, fabricated from galvannealed steel. Both must be painted with a 2-ply epoxy finish to match and to protect
from corrosion. The main unit color shall be satin black. Armaflex® elastomeric thermal insulation must be used to insulate the
cabinet, block noise, and prevent damage from vibration. Casters and leveling feet shall be included to ease the installation and
level the equipment with existing IT solutions.
AIRFLOW PATTERNS
All units must be designed using a front discharge with a rear return airflow pattern. An optional plenum with a front diverted
discharge pattern is available.
AIR FILTRATION
All units must be equipped with permanent washable filters. These filters must consist of an open cell structured polyurethane
foam with a roll-formed 3000 series aluminum frame. Filters shall meet both UL® 900 and UL 94 HF-1 standards.
MECHANICAL COMPONENTS
BACKWARD-INCLINED, PLENUM-STYLE FAN, WITH AN EC MOTOR
The blowers must be backward-inclined, plenum-style fans with an electronically commutated (EC) motor, for maintenance-free
operation. The motor must include: integrated electronic control board and direct microprocessor control signaling for fan speed
control, soft-starting capabilities, and integrated current limitations. Each fan must be low noise, low vibration manufactured with
an anti-corrosive aluminum impeller. Each fan impeller must be dynamically and statically balanced in two planes to minimize
vibration during operation.
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Chapter 8: Product Guide Specifications
CHILLED WATER COOLING COIL
The coil must be constructed of seamless drawn copper tubes, mechanically bonded to tempered aluminum fins with enhanced
fin design for maximum heat transfer, and mounted in a stainless steel condensate drain pan. The coil must be designed for a
maximum of 500 ft./min. face velocity. The water circuit will be designed to distribute water into the entire coil face area.
PIPING CONFIGURATION
Top piping: When top piping is specified, the Cold Row CW units must be provided with connections for both chilled water
piping and condensate discharge on the top of the cabinet.
Bottom piping: When bottom piping is specified (for example, raised floor applications), the Cold Row CW units must be provided
with connections for both chilled water and condensate pump discharge through the bottom of the cabinet.
CONDENSATE PUMP
The Cold Row CW must include a factory-wired and installed, in-pan condensate pump. The condensate pump must have the
capacity of 40 gal/hr. at 6 ft. of lift with a maximum shutoff (head) of 12 ft. The condensate pump must be piped with either top
or bottom discharge connections, to remain consistent with top or bottom chilled water piping connections.
2-WAY (STANDARD)
A 2-way modulating valve rated for a maximum 400 psig w.w.p. must be factory piped and wired. The 2-way chilled water
modulating valve will automatically meter the flow of chilled water to the cooling coil in response to a proportional signal
(0–10 VDC) provided to the valve by the microprocessor controller w.w.p.
3-WAY (OPTIONAL)
The water circuit must include a factory-mounted, 3-way modulating (0–10 VDC) control valve. Design pressure must be
400 psig.
STEAM-GENERATING HUMIDIFIER FOR 24" CABINET DESIGN (CRCW-24)
The humidifier must be a self-contained, steam-generating electrode type, using a plastic disposable cylinder with full probes,
connected to electric power via cylinder plugs that slide onto the electrode pins. The electrode pins must be constructed from
expanded low carbon steel, zinc plated, and dynamically formed for precise current control. The humidifier assembly must include
an integral fill cup, fill and drain valves, and associated piping.
The canister must be designed to collect the mineral deposits in the water and provide clean, particle-free steam to the air stream,
reducing maintenance cost.
The microprocessor control must maintain humidifier operation through fill and drain cycles based on the water conductivity.
Overflow and loss of flow protection shall be provided along with a manual drain switch. A high water alarm with built-in time
delay shall provide an indication to change canister. The humidification system must not require cleaning maintenance during the
cylinder life.
The humidifier must discharge steam at 212 degrees F and atmospheric pressure. It must be capable of operating with water in
the range of 200 to 1500 micromhos. The steam must be introduced into the air stream, after the evaporator, by a calibrated
discharge tube designed to equally distribute the steam to the air stream without condensation. The humidifier must have a
capacity of 5 lb./hr.
A factory-wired and installed humidifier drain pump must be installed. This pump is designed to operate with the higher
condensate temperatures caused by the flush and drain cycle of the electrode canister humidifiers. The humidifier drain line will
be connected to the main condensate line prior to exiting the cabinet.
DEHUMIDIFICATION CYCLE
The Cold Row CW unit must have a dehumidification control mode. During dehumidification demand, the control mode must
permit chilled water valve operation and EC motor speed control to condense moisture on the cooling coil.
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Chapter 8: Product Guide Specifications
ELECTRICAL SYSTEM
The electrical system must conform to National Electrical Code (NEC) requirements. In accordance with NEC Class II requirements,
the control circuit must be 24 volts AC wire, and control circuit wiring must not be smaller than 18 AWG. All wiring must be
neatly wrapped, or run in conduit, or cable trays, and routed in bundles. Each wire must end with a service loop and be securely
fastened by an approved method. Each wire in the unit must be numbered for ease of service tracing.
All electrically actuated components should be easily accessible from the front of the unit without reaching overexposed
high-voltage components or rotating parts. Each high-voltage circuit should be individually protected by circuit breakers, or
manual motor starters, on all three phases. The blower motor must have thermal and short-circuit protection. Line voltage and
24-volt control circuit wiring must be routed in separate bundles. The electric box must include all the contactors, starters, fuses,
circuit breakers, and terminal boards required for operation of the Cold Row unit. It must also allow for full service via front and
rear access panels.
AUTOMATIC DUAL POWER TRANSFER SWITCH (OPTIONAL)
Two individual main power input disconnect switches will be provided, one for each incoming power source. If the primary power
fails or a phase loss/imbalance occurs, the automatic transfer switch transfers power to the secondary power source. Once the
primary power has been restored, the transfer switch automatically shifts the power load back to the primary power. The transfer
time from one source to the other is user adjustable to allow staging or sequence restart of load.
In addition to the automatic transfer switch function, the local controller display will indicate which power source has failed. This
indication is a visual depiction that allows the user to determine the status of the input source. This status can also be conveyed
thru the BMS serial communication link.
REMOTE STOP/START CONTACTS
Included in the system’s electrical control circuit must be a 2-pin terminal connection for remote stop/start of the Cold Row CW
air conditioner by remote source.
MAIN POWER SERVICE SWITCH
The Cold Row CW must have a unit-mounted main power service switch.
E2 Series Controller Description
GENERAL
The advanced microprocessor based E² Series controller must be equipped with flexible software that meets the specific needs
of the application. The setpoints must be default and their ranges must be easily viewed and adjusted from the user interface
display. The program and operating parameters must be permanently stored on a non-volatile system in case of power
failure.
The controller must be designed to manage temperature and relative humidity (RH) levels to a user-defined setpoint via control
output signals to the Cold Row CW unit. Control parameters have variable outputs from 0 to 100% of the full rated capacity.
The controller must receive inputs for measurable control conditions (temperature, relative humidity, and dew point) via return air
or room-mounted sensors. The internal logic will then determine if the conditions require cooling, humidification, or
dehumidification. Control setpoints must be established to maintain design conditions of the installation. The controller will
respond accordingly to changes in these conditions and control the output/demand for the appropriate mode of operation until
user-defined conditions are achieved.
FIELD CONFIGURABLE
The program for the E² Series controller must be field configurable, allowing the operator the capability of selecting control
setpoints specific to the application. Operator interface for the E² controller is provided via a door-mounted user interface display
panel. The display panel must have a backlit LCD graphical display and function keys, giving the user complete control and
monitoring capability of the precision cooling system. The menu-driven interface should provide users with the ability to scroll
through and enter various menu screens.
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Chapter 8: Product Guide Specifications
PASSWORD PROTECTION
Access to the Info Menu, Alarms Log, and the ability to monitor room conditions must be allowed without the use of a password.
Modifications to the control setpoints require the use of a password. The controller shall be programmed to recognize
predetermined security levels before allowing access to display screens containing critical variables. Three secured menu levels
(Control, Service, and Factory) will support unique passwords that must be entered to access the menu screens so only authorized
personnel may perform modifications to the settings.
RESTORABLE PARAMETERS/FACTORY DEFAULTS
Upon initial startup, the Cold Row CW system must operate using the setpoints programmed by the factory. The customer may
enter new operating parameters in the Control menu and the system will then operate accordingly. The new setpoints may be
stored as “Customer Default Setpoints.” The primary setpoints entered by the factory still remain stored in the controller's
memory as “Factory Setpoints.” The setpoints for the system may be readjusted in the Control menu at any time. If necessary, the
customer may restore the setpoints back to the Customer Default setpoint values or to the original factory (primary) setpoint
values.
TIMER FEATURE
The timer must allow the user to set up an operating schedule to automatically scale back or shut down the air conditioner during
low demand or unoccupied periods. This is an energy-saving feature offering the user the ability to create an operating schedule
tailored to the needs of the building. An evening (night-setback) schedule may also be created, allowing the Cold Row unit to
operate at night with relaxed temperature/humidity setpoints and offsets.
A/C GROUPING PRIVATE LAN (pLAN) OPERATION (OPTIONAL)
Multiple Cold Row CW system controllers must be able to connect (grouped) to a pLAN local network, allowing the communica-
tion of data and information from each controller to a central control terminal or lead controller. The lead controller display
screens monitor and adjust group control variables for the individual system controllers. Each E² controller connected to the pLAN
network must be identified with its own unique address.
Multiple Cold Row CW units consisting of up to eight precision air conditioners equipped with like controllers may be controlled
and monitored via the E² series controller. With multiple Cold Row CW units, each unit can selectively be configured as “Active”
to operate as a primary A/C, “Capacity Assist” for staged operation, or as “Standby” to come on-line in case of a failed air
conditioning unit to ensure continuous availability. The controller may also be configured to rotate units with timed duty cycling to
promote equal run-time and ensure that each Cold Row CW unit within the rotating group is operationally exercised on a periodic
timed basis.
BUILDING MANAGEMENT SYSTEM (BMS) INTERFACE (OPTIONAL)
The E² series controller incorporates a communication interface port that can be field connected through a serial interface to a
BMS via Modbus, BACnet, SNMP, or HTTP as configured by the factory. A controller interfaced to a network must be configured
for BMS communication.
ALARMS
Alarm conditions activate a red LED indicator that backlights the alarm function key. As an option, an alarm condition may also be
enunciated by an audible alarm signal. An alarm is acknowledged by pressing the alarm key. This calls up alarm display screens
that provide a text message detailing the alarm conditions. After an alarm condition is corrected, the alarm can be cleared by
pressing the alarm key.
SMALL BEZEL DISPLAY PANEL
The small bezel user interface display panel features an easy-to-read, backlit liquid-crystal alphanumeric display equipped with
contrast adjustment and LED illuminated function keys. The screens that appear on the user interface display panel present data
that originates from the controller I/O module. The controller is operated via a 6-key menu-driven loop structure and offers an
alarm log plus four different interface menu levels to the operator: Information, Control, Service, and Factory. These menus permit
the user to easily view, control, and configure operating parameters for the Cold Row unit.
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Chapter 8: Product Guide Specifications
OPTIONAL ACCESSORIES
MECHANICAL FLOW SWITCH
A flow switch (shipped loose) must activate a loss of flow alarm if chilled water flow is interrupted.
DIFFERENTIAL TEMPERATURE FLOW (OPTIONAL)
A factory-mounted and wired temperature sensor for inlet and outlet water temperatures must permit a loss of flow alarm if the
temperature difference is within 1° F (adjustable) during chilled water valve operation.
SMOKE DETECTION
A photo-electric smoke detector must be factory installed and wired in the evaporator section of the suction side of the
evaporator blower. The air conditioner will shut down upon sensing smoke in the return air stream.
FIRESTAT
The air conditioner must be provided with a factory-wired and mounted firestat. The firestat will shut down the air conditioner
upon sensing a high return air temperature.
REMOTE WATER DETECTOR: SPOT TYPE
A remote, single-point water and leak detector must be factory supplied and ship separately for field installation. Upon sensing a
water leak, the normally closed water detector control circuit shall open, thereby shutting down the Cold Row CW unit’s
water-producing components.
REMOTE WATER DETECTOR: STRIP TYPE
A 20-ft. long remote strip/cable type water and leak detector must be provided for remote field installation. Upon sensing a
water leak, the normally closed water detector control circuit shall open, thereby shutting down the Cold Row CW unit’s water-
producing components.
CODE CONFORMANCE
The unit must be designed and built to conform to UL® STD 1995, certified to CAN/CSA C22.2 No. 236. and listed with ETL.
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NOTES
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© Copyright 2013. Black Box Corporation. All rights reserved.
CRCW-12 Engineering Manual, rev. 2
BB-QEWR001 Rev. A, March 2013
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