Eaton Best Power Ferrups UPS/AVR
500VA - 18kVA
APPLICATIONS: Controls, Motors, Drives, Robotics, Medical, Lab, Extrusion, 3d Printing, CNC, All Plant and Process Equipment Affected by unstable voltage
SOLVES: Undervoltage, Overvoltage, Voltage Sags, Surges, unreliable utility voltage and internally-derived Voltage Issues.

Technology Choice: BEST IN CLASS - Pulse Width Modulated IGBT Insulated Gate BI Polar Transistor Converter. Internal Surge Suppression. Overload Capacity 150% for 10 minutes.
Why?
Converter measures incoming voltage, corrects by adding or subtracting (Buck/Boosts) voltage to within +/- 0-3% output voltage range.

Power Correction Level 1: +/- 0-3% Variation on Output Power
Input Voltage Tolerance: +15% / -20%
Sizes: 500VA, 700VA, 850VA, 1.4kVA, 1.8kVA, 3.1kVA, 4.3kVA, 5.3kVA, 7kVA, 5kVA, 6kVA, 10kVA, 12.5kVA, 15kVA, 18kVA
Input Voltage: 120V / 208V, 240V, 208V Single Phase
Output Voltage Regulation: +/- 0=3%
Battery Runtimes: Voltage Regulation only - no battery storage
OPTIONS: Maintenance Bypass
CLASS: Active Voltage Correction, Type VRP
CORRECTS: Voltage Sags to 20% of nominal. Holds output voltage constant within +/- 3% output.
APPLICATIONS: Sensitive Instruments, Labs, Robotics, Plant and Process, Semiconductors, All Processes and Controls.
ROI: Reduced PCB and Board Failures, Reduced Downtime, Reduced Maintenance Costs. Typically 3-5 Years.
How a High Speed Pulse Width Modulated Regulator System Works
Highest Efficiency Design in AVR Technology Compared to Tap Switch, Servo and Dual Conversion

Technology
The TSI VRP Model Active Voltage Regulator provides a significant improvement on the slow traditional, electromechanical AVR, the electronic tap-switching AVR, and the dual-conversion AVR. It provides many of the attractive features of these technologies without trading off performance and efficiency. Today's Sensitive Controls Environment requires a responsive, efficient, and consistent voltage sterilization source.
Pulse Width Modulated with Intergate BI Polar Transistor Converter
The PWM topology is a buck-boost transformer with a primary to secondary ratio of 5:1 for a voltage correction of +/-20% (Figure Above). The input phase is connected to one end of the secondary, while the critical load is connected to the other end of the secondary with the current returning to the source via the neutral wire. The control voltage is imposed on the primary winding by connecting one end of the primary to the incoming phase, while the other end of the primary is connected to the neutral. In this manner, 20% of the input voltage will be added to the secondary winding. If the connections are reversed, the voltage will drop 20% as the magnetic flux imposed by the primary winding is bucking the secondary winding. Input Circuit breakers provide for component and load overcurrent protection.
BENEFITS of TSI DESIGN
- Precision Voltage Regulation
- No Switching of Power Path
- Automatic Bypass
- Over 96% Efficiency
- Meets UL 60950 Requirements.
- Overcurrent Protection
- Compact Design
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INSTALLATION: Ferrups Model UPS Systems
120V Single Phase
FE500 - 500VA - 120V in/out
Eaton FERRUPS FE500VA UPS
6’ Input Power cord with Nema 5-15P
Output Receptacles: (4) NEMA 5-15R
Battery Runtime: 9 min 100% load / 25 min 50% load.
FE700 - 700VA - 120V in/out
Eaton FERRUPS FE700VA UPS
6’ Input Power cord with Nema 5-15P
Output Receptacles: (4) NEMA 5-15R
Battery Runtime: 14 min 100% load / 35 min 50% load.
FE850 - 850VA - 120V in/out
Eaton FERRUPS FE850VA UPS
6’ Input Power cord with Nema 5-15P
Output Receptacles: (4) NEMA 5-15R
Battery Runtime: 11 min 100% load / 28 min 50% load.
FE1.4 - 1400VA - 1.4kVA - 120V
Eaton FERRUPS FE1.4KVA UPS
Model - 120V Unit
Battery Runtime: 14 min 100% load / 37 min 50% load
- System capacity 1.4KVA / 1KW
- 120V single phase input - 6' Line Cord Receptacle Required Nema 5-15P
- Input Circuit Breaker 15A Required
- Output Receptacles: (6) NEMA 5-15R
- Dimensions 21.2"H x 15.25"W x 22.9"D
- Weight 154 lb
FE1.8 - 1800VA - 1.8kVA - 120V
Eaton FERRUPS FE1.8KVA UPS
Model - FF010CC3A0A0A0B 120V Unit
Battery Runtime: 11 min 100% load / 30 min 50% load
- System capacity 1.8KVA / 1.25KW
- 120V single phase input - 6' Line Cord Receptacle Required Nema 5-20P
- Input Circuit Breaker 20A Required
- Output Receptacles: (6) NEMA 5-15R
- Dimensions 21.2"H x 15.25"W x 22.9"D
- Weight 183 lb
FE2.1 - 2,100VA - 2.1kVA - 120V
Eaton FERRUPS FE2.1KVA UPS
Model - 120V Unit
Battery Runtime: 9 min 100% load / 25 min 50% load
- System capacity 2.1KVA / 1.5KW
- 120V single phase input - 6' Line Cord Receptacle Required Nema 5-20P
- Input Circuit Breaker 20A Required
- Output Receptacles: (6) NEMA 5-15R
- Dimensions 21.2"H x 15.25"W x 22.9"D
- Weight 196 lb
FE3.1 - 3,100VA - 3.1kVA - 120V
Eaton FERRUPS FE3.1KVA UPS
Model - 120V Unit
Battery Runtime: 14 min 100% load / 35 min 50% load
- System capacity 3.1KVA / 2.2KW
- 120V single phase input - 6' Line Cord Receptacle Required Nema 5-30P
- Input Circuit Breaker 30A Required
- Output Receptacles: (6) NEMA 5-15R
- Dimensions 21.2"H x 15.25"W x 22.9"D
- Weight 256 lb
FE4.3 - 4,300VA - 4.3kVA - 120V
Hardwired Connection input/output
Eaton FERRUPS FE4.3KVA UPS
Model FI000AA0A0A0A0B - 120V Unit
Battery Runtime: 10 min 100% load / 24 min 50% load
- System capacity 4.3KVA / 3.0KW
- 120V single phase input and output, hardwired - Input Circuit Breaker 40A Required
- Dimensions 29.5 "H x 15.5"W x 25"D
- Weight 359 lb
FE5.3 - 5,300VA - 5.3kVA - 120V
Hardwired Connection input/output
Eaton FERRUPS FE5.3KVA UPS
Model FJ000AA0A0A0A0B - 120V Unit
Battery Runtime: 20 min 100% load / 50 min 50% load
- System capacity 5.3KVA / 3.7KW
- 120V single phase input and output, hardwired - Input Circuit Breaker 40A Required
- Dimensions 29.5 "H x 15.5"W x 25"D
- Weight 505 lb
FE7 - 7,000VA - 7kVA - 120V in/out
Hardwired Connection input/output
Eaton FERRUPS FE7KVA UPS
Model FK000AA0A0A0A0B - 120V Unit
Battery Runtime: 12 min 100% load / 33 min 50% load
- System capacity 7KVA / 5KW
- 120V single phase input and output, hardwired - Input Circuit Breaker 40A Required
- Dimensions 36.5”H x 19.0”W x 32.0"D
- Weight 604 lb
208V / 240 Single Phase
FE4.3 - 4,300VA - 4.3kVA - 120/208V/240 in/out
Hardwired Connection input/output
Eaton FERRUPS FE4.3KVA UPS
Model FI100AA0A0A0A0B - 208V Unit
Model FI300AA0A0A0A0B - 240V Unit
Battery Runtime: 10 min 100% load / 24 min 50% load
- System capacity 4.3KVA / 3.0KW
- 208V single phase input and output, hardwired - Input Circuit Breaker 25A Required
- 240V single phase input and output, hardwired - Input Circuit Breaker 20A Required
- Dimensions 29.5 "H x 15.5"W x 25"D
- Weight 359 lb
FE5.3 - 5,300VA - 5.3kVA - 120/208V/240 in/out
Hardwired Connection input/output
Eaton FERRUPS FE5.3KVA UPS
Model FJ100AA0A0A0A0B - 208V Unit
Model FJ300AA0A0A0A0B - 240V Unit
Battery Runtime: 20 min 100% load / 50 min 50% load
- System capacity 5.3KVA / 3.7KW
- 208V single phase input and output, hardwired - Input Circuit Breaker 30A Required
- 240V single phase input and output, hardwired - Input Circuit Breaker 25A Required
- Dimensions 29.5 "H x 15.5"W x 25"D
- Weight 505 lb
FE7 - 7,000VA - 7kVA - 120/208V/240 in/out
Hardwired Connection input/output
Eaton FERRUPS FE7KVA UPS
Model FK100AA0A0A0A0B - 208V Unit
Model FK300AA0A0A0A0B- 240V Unit
Battery Runtime: 12 min 100% load / 33 min 50% load
- System capacity 10KVA / 7.5KW
- 208-208/120V single phase input and output, hardwired - Input Circuit Breaker 40A Required
- 240V single phase input and output, hardwired - Input Circuit Breaker 35A Required
- Dimensions 36.5”H x 19.0”W x 32.0"D
- Weight 604 lb
FE10 - 10,000VA - 10kVA - 120V/208V/240 in/out
Hardwired Connection input/output
Eaton FERRUPS FE10KVA UPS
Model FL340AA0A0A0A0B - 208V Unit
Model FL340AA0A0A0A0B - 240V Unit
Battery Runtime: 11 min 100% load / 26 min 50% load
- System capacity 10KVA / 7.5KW
- 208-208/120V single phase input and output, hardwired - Input Circuit Breaker 60A Required
- 240V single phase input and output, hardwired - Input Circuit Breaker 50A Required
- Dimensions 36.5”H x 19.0”W x 32.0"D
- Weight 875 lb
FE12.5 - 12,500VA - 12.5kVA - 120V/208V/240 in/out
Hardwired Connection input/output
Eaton FERRUPS FE12.5KVA UPS
Model FM140AA0A0A0A0B - 208V Unit
Model FM340AA0A0A0A0B - 240V Unit
Battery Runtime: 18 min 100% load / 48 min 50% load
- System capacity 12.5KVA / 10KW
- 208-208/120V single phase input and output, hardwired - Input Circuit Breaker 75A Required
- 240V single phase input and output, hardwired - Input Circuit Breaker 65A Required
- Dimensions 36.5”H x 19.0”W x 32.0"D
- Weight 1089 lb
FE18 - 18,000VA - 18kVA - 120V/208V/240 in/out
Hardwired Connection input/output
Eaton FERRUPS FE18KVA UPS
Model FN140AA0A0A0A0B
Battery Runtime: 10 min 100% load / 26 min 50% load
- System capacity 18KVA / 15KW
- 208-208/120V single phase input and output, hardwired - Input Circuit Breaker 115A Required
- 240V single phase input and output, hardwired - Input Circuit Breaker 100A Required
- Dimensions 36.5”H x 19.0”W x 32.0"D
- Weight 1362 lb
Ferrups FX Comparison
FE3.1 - 3,100VA - 3.1kVA - 120V
Hardwired Connection input/output
Eaton FERRUPS FE3.1KVA UPS
Model FX310001AAA1 - 120V Unit
Battery Runtime: 24 min 100%load / 55 min 50% load
- System capacity 3.1KVA / 2.2KW
- Input Circuit Breaker 30A Required
- Dimensions 23.2"H x 15.4"W x 26.4"D
- Weight 280 lb
New Ferrups FX Series Eaton UPS
Reliability of the legacy Ferrups Model with new options and look. New Ferrups FX Series is designed for harsh environments and can be configured for long runtime scenarios.
Runtime Options
189 min 100% load / 405 min 50% load
FXEBM01 - Ferrups FX 48VDC EBM - 70Ah
282 min 100% load / 601 min 50% load
FXEBM03 - Ferrups FX 48VDC EBM - 70Ah
359 min 100% load / 780 min 50% load
FXEBM04 - Ferrups FX 48VDC EBM - 100Ah
562 min 100% load / 1186 min 50% load
FXEBM05 - Ferrups FX 48VDC EBM - 140Ah
565 min 100% load / 1209 min 50% load
FXEBM06 - Ferrups FX 48VDC EBM - 140Ah
Predict Pulse Remote Monitoring
Ferrups FX Series New Sleek Look
INSTALLATION: Three Phase AVR Systems
120/208V 3-Phase
6kVA - 120V/208V in/out
Hardwired Connection input/output
(Input circuit breaker Required 20 Amp)
9kVA - 120V/208V in/out
Hardwired Connection input/output
Option: NEMA L21-30P in and out
(Input circuit breaker Required 30 Amp)
14kVA - 120V/208V in/out
Hardwired Connection input/output
(Input circuit breaker Required 50 Amp)
23kVA - 120V/208V in/out
Hardwired Connection input/output
(Input circuit breaker Required 80 Amp)
29kVA - 120V/208V in/out
Hardwired Connection input/output
(Input circuit breaker Required 100 Amp)
50kVA - 120V/208V in/out
Hardwired Connection input/output
(Input circuit breaker Required 150 Amp)
400V 3-Phase
6kVA - 400V/415V in/out
Hardwired Connection input/output
(Input circuit breaker Required 20 Amp)
8kVA - 400V/415V in/out
Hardwired Connection input/output
Option: NEMA L21-30P in and out
(Input circuit breaker Required 30 Amp)
17kVA - 400V/415V in/out
Hardwired Connection input/output
(Input circuit breaker Required 50 Amp)
24kVA - 400V/415V in/out
Hardwired Connection input/output
(Input circuit breaker Required 100 Amp)
28kVA - 400V/415V in/out
Hardwired Connection input/output
(28kVA Input circuit breaker Required 50 Amp)
44kVA - 400V/415V in/out
Hardwired Connection input/output
(44kVA Input circuit breaker Required 80 Amp)
55kVA, - 400V/415V in/out
Hardwired Connection input/output
(55kVA Input circuit breaker Required 100 Amp)
83kVA - 400V/415V in/out
Hardwired Connection input/output
(83kVA Input circuit breaker Required 150 Amp)
104kVA - 400V/415V in/out
Hardwired Connection input/output
(104kVA Input circuit breaker Required 175 Amp)
480V 3-Phase
10kVA - 480V in/out
Hardwired Connection input/output
(Input circuit breaker Required 15 Amp)
20kVA - 480V in/out
Hardwired Connection input/output
(Input circuit breaker Required 30 Amp)
27kVA - 480V in/out
Hardwired Connection input/output
(Input circuit breaker Required 100 Amp)
33kVA - 480V in/out
Hardwired Connection input/output
(Input circuit breaker Required 50 Amp)
53kVA - 480V in/out
Hardwired Connection input/output
(Input circuit breaker Required 80 Amp)
66kVA - 480V in/out
Hardwired Connection input/output
(Input circuit breaker Required 100 Amp)
125kVA - 480V in/out
Hardwired Connection input/output
(Input circuit breaker Required 175 Amp)
150kVA - 480V in/out
Hardwired Connection input/output
(Input circuit breaker Required 200 Amp)
166kVA - 480V in/out
Hardwired Connection input/output
(Input circuit breaker Required 220 Amp)
AVR Model Voltage Performance
120V Power Correction
- Input Voltage Swings of 95~145 VAC
- Critical Input Voltage Range: 79% lagging to +120%
- Corrects to: 97%/103% Voltage Output
- Corrects 20% Swing in Voltage from nominal 120V.
Response Time
- 10MS> (1/2 Line Cycle)

230V Power Correction
- Input Voltage Swings of 184~276 VAC
- Critical Input Voltage Range: 79% lagging to +120%
- Corrects to: 97%/103% Voltage Output
- Corrects 20% Swing in Voltage from nominal 230V.
Response Time
- 10MS> (1/2 Line Cycle)

240V Power Correction
- 240V Input Voltage Swings of 192~288 VAC
- Critical Input Voltage Range: 79% lagging to +120%
- Corrects to: 97%/103% Voltage Output
- Can Correct 20% Swing in Voltage from nominal 240V.
Response Time
- 10MS> (1/2 Line Cycle)

Snapshot, Tech Specs, PDFs
Download our brochure and user guides to learn more about our products.
FGC Customer Advantage
Comprehensive Lifetime Service Support for your AVR Equipment
7 x 24 Emergency Service Response
24x7 emergency service Services through FGC Services and Response Platform
Preventative Maintenance Plans Provided by FGC Services
Keep all your systems free of downtime with Preventative Maintenance Programs.
Plans include Full Service, Preventative Maintenance Plus Emergency Response, and PM Only.
100% parts coverage
Parts coverage inside your warranty period, extended plans available for Annual or Multi-Year Programs
Asset Management Program
Roll all your Critical Assets and Maintenance Programs into one location - Facility Keys Preferred Platform
7x24 Emergency Response

National Service Coverage for Emergency Calls, On-Site Response, and Remediation.

Voltage Regulator vs. UPS: What are my Choices?
There are many differences between the choice of an AVR, AVC, UPS. Much of it depends on the issue you are trying to correct.
Correcting Voltage Not Outages
Most Data Center Designed UPS Systems are built to withstand minutes if not longer of complete power absence. Being designed to make almost perfect power until it is not there, systems are designed with highly efficient inverter systems and other components. Loads on these systems are often constant, non-reactive loads, and low in-rush. These systems, however, does not perform well in an active load environment, high in-rush current environment, and take in large input windows of voltage to repair.
New Title
Remote Diagnostic Services for Rapid Response
Uptime assurance
- Continuous monitoring for early detection of trends and operating anomalies
- Analysis and interpretation of alarm and status messages
Rapid incident response
- Automatic transmission of data for analysis
- Concurrent diagnosis and dispatch of engineer to site
- Shipment of parts for corrective maintenance
Increased insight and ease of management
- Notification of operating conditions that may impact system health
- Periodic trend and analysis reports
- Integration of remote and on-site services to ensure business continuity

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