Liebert GXT2 6 kVA 230V

Liebert GXT2

 

 

10 kVA 208V

Liebert GXT2 10 kVA 230V

Liebert GXT2 6 kVA 208V

International Model

 

 

 

 

International Model

 

 

 

 

POWER DISTRIBUTION

GXT2-6000RT208

Model Number

Amp Rating

Input Power Connection

Output Power Connection

PD-HDWR

30 No Bypass

Hardwire Terminals

Hardwire Terminals

PD-HDWR-MBS

30 With Bypass

Hardwire Terminals

Hardwire Terminals

PD-001

30 With Bypass

L14-30P

 

(1) L6-30R,(1) L14-30R,

 

 

 

 

(4) 5-15/20R T-slot

PD-002

30 With Bypass

L14-30P

 

(2) L6-20R, (2) 5-15/20R T-slot

PD-003

30 With Bypass

L14-30P

 

(2) L6-30R,

 

 

 

 

(4) 5-15/20R T-slot

PD-004

30 With Bypass

L14-30P

 

(4) EN60320 / C19

PD-005

30 With Bypass

L14-30P

 

(4) L5-20R,

 

 

 

 

(2) L5-30R

PD-006

30 With Bypass

L14-30P

 

(4) L5-20R, (2) L6-30R

PD-007

30 With Bypass

L14-30P

 

(4) L6-20R

GXT2-10000RT208

 

 

 

 

 

Model Number

Amp Rating

Input Power Connection

Output Power Connection

PD-101

50

N/A

 

(8) 5-15/20R T-slot, (2) L6-30R

PD-102

50

N/A

 

(4) 5-15/20R T-slot, (4) L6-20R

PD-103

50

N/A

 

(4) 5-15/20R T-slot, (4) L6-30R

GXT2-PP20KRT208

 

 

 

 

 

Model Number

Amp Rating

Input Power Connection

Output Power Connection

PD-201

120

N/A

 

(4) 5 - 15/20R T-slot, (4) L6-20R

PD-202

120

N/A

 

(4) 5 - 15/20R T-slot, (4) L6-30R

 

 

 

 

 

 

 

 

 

 

Total Runtime with Internal and

BATTERY CABINETS

 

 

 

Extended Battery Cabinets/Full Load

UPS Model

Runtime w/Internal

Extended Battery

 

 

 

 

Batteries/Full Load

Cabinet P/N

Voltage

One Cabinet

Two Cabinets

GXT2-6000RT208

5 min.

GXT2-144VBATT

144 VDC

14 min.

25 min.

GXT2-6000RT230

7 min.

GXT2-240VBATT

240 VDC

21 min.

38 min.

GXT2-4500RT230

10 min.

GXT2-240VBATT

240 VDC

31 min.

54 min.

GXT2-10000RT208

5 min.

GXT2-288RTVBATT

288 VDC

14 min.

25 min.

GXT2-10000R230

NA

GXT2-240RVBATT

240 VDC

5 min.

15 min.

GXT2-10000T230

5 min.

GXT2-240TBATTCE

240 VDC

23 min.

43 min.

GXT2-10000T220

5 min.

GXT2-240TBATTUL

240 VDC

22 min.

42 min.

INTERNATIONAL MODELS

Model

Input Voltage / Frequency

Output Voltage / Frequency'

Output Rating VA/W

GXT2-6000RT230

176 - 276, 50 or 60 Hz, L-L-G

220, 230 or 240 L-L-G

6000/4200

GXT2-4500RT230

176 - 276, 50 or 60 Hz, L-L-G

220, 230 or 240 L-L-G

4500/3150

GXT2-10000R230

176 - 276, 50 or 60 Hz, L-L-G

220, 230 or 240 L-L-G

10000/7000

GXT2-10000T230

176 - 276, 50 or 60 Hz, L-L-G

220, 230 or 240 L-L-G

10000/7000

GXT2-10000T220

176 - 276, 50 or 60 Hz, L-L-G

220, 230 or 240 L-L-G

10000/7000

Note: Contact your Liebert representative or www.liebert.com for more details.

PARALLEL CAPABILITY

GXT2-PP20KRT208

Description

Paralleling POD maximum (3) GXT2-10000RT208 connection for 20kVA capacity plus 10kVA

 

redundancy (requires (1) paralleling cable p/n GXT2-20KPC-6 for connection to each

 

GXT2-10000RT208)

Rating

20,000VA / 16,000W at 120/208 or 120/240

Unit Dimensions

16.94”w x 9.85”d x 16.61”h [430mm (w) x 250mm (d) x 422mm (h)]

Shipping Dimensions

23.05”w x 16.74”d x 19.38”h [585mm (w) x 425mm (d) x 492mm (h)]

Unit Weight

41.89lb (19kg)

Shipping Weight

48.94lb (22.2kg)

PARALLEL CAPABILITY

 

GXT2-20KPC-6

 

 

 

 

 

Description

 

Paralleling cable, approximately 6 feet long

 

 

 

 

 

 

 

 

 

 

 

 

 

SYSTEM CONFIGURATION

 

 

 

 

 

 

 

 

Capacity / Redundancy

 

GXT2-10000RT208

 

GXT2-288RTBKIT

GXT2-PP20KRT208

GXT2-20KPC-6

PD-201

10kVA / 10kVA

 

2*

 

4*

 

1*

2*

1

20kVA / -

 

2*

 

4*

 

1*

2*

1

20kVA / 10kVA

 

3*

 

6*

 

1*

3*

1

* Required Paralleling Components

15

Page 15
Image 15
Emerson 10 kVA, 6 kVA manual Power Distribution

10 kVA, 6 kVA specifications

Emerson, a leader in power management solutions, offers a range of uninterruptible power supply (UPS) systems that ensure critical systems remain operational during power disturbances. Among their notable offerings are the Emerson 6 kVA and 10 kVA models, designed for reliability, efficiency, and innovation.

The Emerson 6 kVA and 10 kVA UPS systems are engineered to provide high-quality power protection. They deliver a rugged design suitable for various applications, including data centers, telecommunications, and industrial environments. These models boast a compact footprint, enabling them to fit within limited spaces while accommodating significant power needs.

One of the central features of these UPS systems is their advanced double-conversion technology. This method converts incoming AC power to DC and then back to AC, ensuring a continuous and clean power supply, free from surges, sags, or electrical noise. This technology is essential for sensitive electronic equipment that requires reliable power to function optimally.

Additionally, both the 6 kVA and 10 kVA models are equipped with a high-efficiency mode, which allows them to operate with lower energy consumption during periods of stable power. This feature not only reduces operational costs but also minimizes the environmental impact, making the systems more sustainable.

Emerson’s UPS systems also integrate adaptive battery management technology. This system extends battery life by intelligently monitoring and controlling the charging and discharging processes. Users can enjoy longer-lasting performance, minimizing the frequency and cost associated with battery replacements.

Moreover, the user-friendly interface of these UPS systems provides real-time monitoring and diagnostic capabilities. LED indicators and an intuitive display equip operators with crucial information about the system's status, ensuring they can respond quickly to any arising issues.

Scalability is another hallmark of Emerson’s 6 kVA and 10 kVA UPS models. They can be easily integrated into existing systems, enabling businesses to expand their operations without the need for complete overhauls of their power infrastructure.

In conclusion, Emerson's 6 kVA and 10 kVA UPS systems are designed for organizations that prioritize operational continuity and power quality. With their advanced technologies, robust features, and commitment to efficiency, these models stand out as reliable solutions for safeguarding critical electronic equipment against power disruptions.