CoVAULT™ Colocation Cabinets

CoVAULT ™ Colocation Cabinets
Dual-Compartment Racks
Model: ECM2-4539C-XX-X
Securely house multiple clients in a single rack!
Electrorack’s CoVAULT™ Colocation Cabinets are designed to securely house
multiple tenants within the same footprint of a single rack. In colocation environments, many tenants don’t require a full rack to house their equipment - but they
certainly expect their equipment to be protected from unauthorized access. With
CoVAULT, colocation providers now have a cost-effective method to maximize
space utilization while providing their clients the comfort of knowing their
equipment is well protected.
Built on our successful Eclipse™ server enclosure platform, we’ve designed our
multiple-compartment racks to gang to our full-height Eclipse racks, allowing
continuous rows of mixed-environment enclosures. With a multitude of locking
options, from mechanical key to electronic locks, we provide unique locking for
each compartment. Cable ducts inside the rack provide secure, separate cable
passages for power and data lines through the top or bottom compartment or one
through each, accommodating cable entry from overhead or from under a raised
floor. And, our Inter-bay Divider Panels provide thermal separation as well as security from the next rack. Our optional removable cable ports in the Inter-bay panels
allow potential expansion of a given client without having to remove all of their
existing equipment.
Features
• Secure Cable Pathways: Internal cable duct system provides separate
pathways for power and data to pass securely through the bay of the
other occupant to prevent any tampering. Duct covers are only removable if access to both compartments is granted via facilities personnel.
• Reversible Cable Ducts: Cable ducts are movable, allowing cables to
enter through the top or bottom of the rack. If data and power enter
from separate ends, one duct passes through the top and one through
the bottom.
• Multiple Lock Options: Standard combination locks allow users to define
their own lock code while the master key override gives facilities personnel access to the rack. These locks reduce the hassle of managing
large quantities of mechanical keys. Other options are also available.
• Zero-footprint Inter-bay Divider Panels: Protect each rack from the
adjacent rack via Inter-bay Divider Panels. Panels are flush and don’t
add any width to the racks, maintaining alignment with 24” floor tiles.
• Gang to Full-height Single-bay Cabinets: Uniform look delivered when
ganged to a standard Eclipse enclosure of the same height and depth.
• Independent Mounting Angle Adjustment: Unique Uni-strut design
provides infinite independent adjustment of top & bottom angles.
• 180 Degree Door Swing: Self-contained, lift-off hinges provide 180
degrees of door swing to simplify moving, adding or changing equipment
without removing the door.
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CoVAULT™ colocation cabinets deliver the perfect combination of form, function and
security. The curved, mesh front doors offer an aesthetically pleasing look while the
robust 4-Unistrut frame provides the foundation for securely housing 2 clients in the
same rack.
Front and rear doors of each compartment open independently at a full 180
degrees, maximizing equipment access without removing the door. The horizontal divider shelf and internal cable duct system protect the integrity of
each occupant’s systems.
C a b l e
P a t h w a y s
Data cables (blue) drop directly
into upper compartment of rack.
Power cables drop directly into
upper bay through opening in
top of rack.
Bottom Cable Entry - cable duct system
securely passes cables into the top
compartment as shown by the blue
cables while cables for the bottom enter
directly through the bottom opening.
Top Cable Entry - the cable duct system
securely passes cables through the top
compartment, into the bottom compartment as shown by the yellow cables.
Data cables (yellow) drop directly
into a cable duct and pass securely
through the upper compartment to
the bottom compartment.
Cable Duct
Low-profile cable ducts allow full,
non-blocking access to equipment
mounting angles.
Grommet caps are
utilized to fill the
round holes when
cables enter from the
bottom of the rack.
Power cables drop directly into
a cable duct and pass securely
through the upper compartment
to the bottom compartment
keeping power and data signals
separate.
Securing Cables in 3 Easy Steps
1.
2.
Open both doors at the rear
of the rack. Remove duct
covers and route cables into
cable duct either from top
(shown) or bottom.
Duct Cover
Slide cover over cable duct,
slide upward and fasten into
position. Note: All fasteners
must be used to ensure full
security of final assembly.
Cables for the upper compartment
are routed through the smaller
holes in the outer corners into the
cable duct and then get covered
for security. Cover not shown.
3.
Divider Cover
Slide horizontal divider cover
over the back of the power
trough in shelf and secure into
place using fasteners.
2
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S i d e s
&
D i v i d e r s
Solid Inter-bay Divider Panels
Inter-bay Divider Panels with
Secure Cable Ports
2-piece panel kit securely separates 2
racks that are ganged together to prevent intrusion and any tampering.
2-piece panel kit securely separates 2
racks that are ganged together. The 2
cable ports in each panel accommodate
expansion of 1 client into the next cabinet. Access to both
bays is required to
remove 2 plates and
create the opening.
Zero-footprint, 2-piece
Finishing Side Panels
Easily remove, handle, store
and replace the 2-piece panels
while adding no additional
width to the overall row of
enclosures. Side Panels are
lockable for security.
Inter-bay Divider Panel
shown with cable port
plates removed and with
cables passing through.
(see inset photo)
L o c k
Combination Dial Lock
Mechanical Key Lock
Utilizes a user-defined 3-digit
combination with master key
override. Ideal for reducing
mechanical key administration.
Key each compartment with a
different mechanical key.
O p t i o n s
Electronic Keypad Lock
Proximity Card Lock
Utilizes a user-defined combination to unlock. Allows networking of locks for administration of
many cabinets.
Utilizes a proximity card to operate lock electronically. Allows
networking of locks for administration of many cabinets.
3
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CoVAULT ™ Colocation Cabinets
Colocation Cabinets - Ordering Information
Base Cabinets
Number of Rack Units (U) per
Compartments
Compartment
Part Number
Max Mounting
Angle Spacing
Overall
Height*
Overall
Width
Overall
Depth
Mounting Angle
Style
ECM2-4539C-SS-#
2
22U
32.75”
84.0”
24.0”
42.0”
0.375 Sq. Hole
ECM2-4539C-TT-#
2
22U
32.75”
84.0”
24.0”
42.0”
Tapped #10-32
Base Cabinets include:
- heavy duty, fully-welded 4 Uni-strut frame
- 2 pair 22U mounting angles per compartment
- 2 mesh front doors with 3-dial combination lock
- 2 mesh rear doors with 3-dial combination lock
- 2 reversible interior cable ducts
Notes:
- side panels & inter-bay dividers are NOT included
(see below for ordering information)
- casters are not compatible with CoVAULT frames
- center-mounted horizontal divider shelf
- solid top panel
- 1 set of levelers
- rack unit labels on mounting angles
Inter-bay Divider Panels & Side Panels
Hardware
Part Number
Description
EC-DP4S4539-#
Solid Inter-bay Divider Panel Kit - 2 panels
Part Number
EC-D P4S4539-C-#
Solid Inter-bay Divider Panel Kit w/Cable Ports - 2 panels
EC-S4S4539S-L-#
Solid Finishing Side Panel Kit w/Locks - 2 panels
S1B-1032-50
# Select Finish Code: “2” = Black; “9” = Platinum
Notes:
- 1 inter-bay divider panel kit covers one full side of the CoVAULT rack
- only 1 inter-bay divider panel kit is required between two racks to achieve separation
- order finishing side panel kits for the end of rows - 1 kit covers 1 full side of a rack
Black
Description
(50) #10-32 x 5/8” Screws
CN12-1032-50
(50) #10-32 Cage Nuts
C N-TOOL
Cage Nut Installation Tool
Part Number
Description
Description
1” Wide Steel Vertical Lacing Bar
PSF-1-#
1U x 19” Solid Blanking Panel
LBT-19-2
19” EIA Horizontal Lacing Bars, Pack of 10
PSF-2-#
2U x 19” Solid Blanking Panel
HC1-19-2
19” EIA Horizontal Cable Manager, 1U with Welded Rings
PSF-3-#
3U x 19” Solid Blanking Panel
8” Velcro Cable Ties, Pack of 10
PSF-4-#
4U x 19” Solid Blanking Panel
LBV1S-22-2
VT-10
Platinum
Blanking Panels - Formed Steel
Cable Management
Part Number
# Select Finish Code: “2” = Black; “9” = Platinum
# Select Finish Code: “2” = Black; “9” = Platinum
Power
Voltage
Amp/kW
Input
Output
Form Factor (LxWxD) Description
PB12010-01
120V
20A
L5-20P
(10) NEMA 5-20
17.5"x1.72"x1.72"
Basic 17.5” Horizontal PDU, 120V 20A, (10) NEMA 5-20 outlets, L5-20P input plug.
PB22012-01
208V
20A
L6-20P
(12) IEC-320 C13
17.5"x1.72"x1.72"
Basic 17.5” Horizontal PDU, 208V 20A, (12) C13 outlets,
L6-20P input plug w/10' cord.
PM12010-01
120V
20A
L5-20P
(10) NEMA 5-20
17.5"x1.72"x1.72"
Metered 17.5" Horizontal PDU, 120V 20A, (10) NEMA 5-20
outlets, L5-20P input plug w/10' cord.
PM22012-01
208V
20A
L6-20P
(12) IEC-320 C13
17.5"x1.72"x1.72"
Metered 17.5" Horizontal PDU, 208V 20A, (12) C13 outlets,
L6-20P input plug w/10' cord.
PC-8H-1-C20
120V
20A
IEC C20**
(8) NEMA 5-20
17.0"x1.75"x7.0"
Switched PDU, (8) NEMA 5-20R outlets, 120V, 20A input, C20
inlet
PX-8H-1-C20
120V
20A
IEC C20**
(8) NEMA 5-20
17.0"x1.75"x7.0"
Switched PDU (Expansion), (8) NEMA 5-20R outlets, 120V, 20A
input, C20 inlet
PC-8H-2-C20
208V
20A
IEC C20**
(8) IEC-320 C13
17.0"x1.75"x7.0"
Switched PDU, (8) C13 outlets, 208V 20A input, C20 inlet
PX-8H-2-C20
208V
20A
IEC C20**
(8) IEC-320 C13
17.0"x1.75"x7.0"
Switched PDU (Expansion Unit), (8) C13 outlets, 208V 20A
input, C20 inlet
Notes:
** order input cord separately for units with IEC C20 inlets:
PCS-02 -10’ cord for C20 Inlet with NEMA 5-20 Plug
PCS-03 -10’ cord for C20 Inlet with NEMA L5-20 Plug
- many other power options are available - don’t see it - call us!
1443 South Sunkist Street Anaheim, CA 92806 800.433.6745 T 714.776.5420 F 714.776.9683 E info@electrorack.com
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Copyright – Electrorack® Enclosure Products, 2008
Form 08-013/0K/8-2008
Every effort has been made to ensure the information contained herein is correct.
Electrorack reserves the right to modify product specifications without notice and
assumes no responsibility for any errors which may appear in this publication.
Model