-40%
Maxwell Technologies Supercapacitor / Ultracapacitor 160 Volt 6F 6 Farad 160V
$ 168.93
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Description
This is a new in the box Maxwell Technologies Supercapacitors / Ultracapacitors 160 Volt 6F, and in fact we'll include a Certificate of Compliance from Maxwell for each Supercapacitor purchased.Original retail over 00 ea.
Model # BMOD0006 E160 B02
Maxwell Technologies’ 160V module is designed to provide energy storage and power delivery for things like wind turbine pitch control, short-term uninterrupted power supply (UPS) and renewable energy systems. Primarily designed for pitch control systems for 1.5 to 3MW wind turbines, the 160V module provides a turnkey solution to simplify the installation process and reduce costs for all integration partners.
Ultracapacitors have been designed into an ever-expanding share of the electric pitch system portion of the market due to their longer operating lifetime, low maintenance requirements and superior cold weather performance when compared to batteries. The 160V module is a cost-effective and easy-to-install energy storage and power delivery solution for wind turbine pitch control systems.
Maxwell’s next-generation 160-volt module (C02 model) features an extended DC life.* The module is optimized for wind turbine emergency pitch control applications, for small UPS systems, heavy duty machinery and other industrial applications.
Termination Style: Screw
Capacitance:5.8 F
Voltage Rating DC:160 VDC
ESR:220 mOhms
Minimum Operating Temperature: - 40 C
Maximum Operating Temperature: + 65 C
Length:14.4 in
Width:9.3 in
Height:3.1 in
Current Rating:170 A
Operating Temperature Range: - 40 C to + 65 C
Voltage Rating:160 V
Brand: Maxwell Technologies
Leakage Current:25 mA
Product Type: Supercapacitors / Ultracapacitors
FEATURES AND BENEFITS
Up to 10 year DC life
160V DC working voltage
Resistive cell balancing
Compact and light weight
TYPICAL APPLICATIONS
Wind turbine pitch control
Small UPS systems
Small industrial systems
ELECTRICAL BMOD0006 E160 B02
Rated Capacitance1 5.8 F
Minimum Capacitance, initial1 5.8 F
Maximum Capacitance, initial1 7 F
Maximum ESRDC, initial1 240 mO
Test Current for Capacitance and ESRDC
1 35 A
Rated Voltage 160 V
Absolute Maximum Voltage2 170 V
Absolute Maximum Current 170 A
Leakage Current at 25°C, maximum3 25 mA
Maximum Series Voltage 750 V
Capacitance of Individual Cells9 350 F
Maximum Stored Energy, Individual Cell9 0.35 Wh
Number of Cells 60
TEMPERATURE
Operating Temperature (Cell Case Temperature)
Minimum -40°C
Maximum 65°C
Storage Temperature (Stored Uncharged)
Minimum -40°C
Maximum 70°C
THERMAL CHARACTERISTICS
Thermal Resistance (Rca, All Cell Cases to Ambient), typical8 1.1°C/W
Thermal Capacitance (Cth), typical 4,800 J/°C
Maximum Continuous Current (?T = 15 °C)8 7 ARMS
Maximum Continuous Current (?T = 40 °C)8 12 ARMS
LIFE
DC Life at High Temperature
(held continuously at Rated Voltage and Maximum Operating Temperature) 1,500 hours
Capacitance Change (% decrease from minimum initial value) 20%
ESR Change (% increase from maximum initial value) 100%
Projected DC Life at 25°C1
(held continuously at Rated Voltage) 10 years
Capacitance Change (% decrease from minimum initial value) 20%
ESR Change (% increase from maximum initial value) 100%
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