Welcome to the Industrial Automation website!

NameDescriptionContent
HONG  KANG
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

Eaton XV Supercapacitors Complete Guide

来源: | 作者:FAN | 发布时间 :2026-03-02 | 301 次浏览: | 🔊 Click to read aloud ❚❚ | Share:

Eaton XV Series Supercapacitors: Full Technical Description of Cylindrical Plug in Double Layer Capacitors

Introduction: Breakthroughs and Applications of Supercapacitors Technology

Balancing power density and energy density has always been a challenge for engineers in modern power electronic systems. Traditional batteries provide high energy density but limited power output, while traditional capacitors can provide high power but have limited energy storage capacity. The Eaton XV series supercapacitor, also known as an electrochemical double layer capacitor (EDLC), is an innovative device designed to address this contradiction.

The XV series supercapacitor adopts a cylindrical plug-in packaging, combined with an electrochemical double-layer capacitor structure and high-performance materials, which can provide excellent performance in a wide range of application scenarios from microampere level lasting for several days to ampere level lasting for milliseconds. This article provides a comprehensive analysis of the technical characteristics, specification parameters, and application guidelines of XV series 300F to 600F capacitors based on Eaton's official data manual.


Chapter 1 Product Overview and Technical Features

1.1 What is a supercapacitor?

Supercapacitors are energy storage devices that fall between traditional electrolytic capacitors and rechargeable batteries. It stores energy by forming a double layer of electrolyte ions on the electrode surface, rather than relying on chemical reactions. This physical energy storage mechanism endows supercapacitors with a unique combination of performance:

Ultra high capacitance value: up to Farad level, far exceeding traditional capacitors

Extremely low equivalent series resistance: achieving high power density

Ultra long cycle life: up to hundreds of thousands of charge and discharge cycles

Wide working temperature range: suitable for harsh environments

1.2 Core Features of XV Series

The Eaton XV series supercapacitors have the following significant advantages:

Ultra long service life: working at room temperature for over 10 years

Ultra low ESR: Achieving high power density to meet the requirements of pulse current applications

Large capacitance value: provides high energy density and extends backup time

Long cycle life: minimal performance degradation after 500000 charge and discharge cycles

UL certification: compliant with safety standards, suitable for industrial applications

1.3 Main application areas

The XV series supercapacitors are widely used in the following scenarios:

Hybrid battery/fuel cell system: serving as a power buffer, providing peak power and extending the lifespan of the main battery

High pulse current applications: such as motor drives, industrial tools, communication equipment

UPS/Backup Power Supply: Provides brief maintenance power during power outages to ensure secure data storage


Chapter 2 Technical Specifications and Performance Parameters

2.1 Basic electrical parameters

The basic specifications of the XV series 300F to 600F models are as follows:

Parameter specification values

Capacitor range 300 F to 600 F

Working voltage 2.7 V

Surge voltage 2.85 V

Capacitor tolerance -5% to+10%

Working temperature range -40 ° C to+65 ° C

Expand the working temperature range from -40 ° C to+85 ° C (requires derating to 2.3 V @+85 ° C)

2.2 Standard Product Models and Parameters

Model: Capacitor (F) Maximum Initial ESR (m Ω) Maximum Continuous Current (A) Peak Current (A) Maximum Leakage Current (mA) Maximum Power (W) Storage Energy (Wh) Typical Mass (g)

XV3550-2R7307-R 300 4.5 20 160 0.6 100 0.30 60

XV3560-2R7407-R 400 3.2 26 220 0.8 570 0.41 72

XV3585-2R7607-R 600 2.6 33 320 1.3 790 0.60 108

Parameter definition explanation:

Capacitance, ESR, and leakage current: all measured according to IEC 62391-1 standard at+20 ° C

Maximum continuous current: based on a temperature rise of 15 ° C

Peak current: The formula for calculating the peak current in 1 second is: 1/2 x operating voltage x capacitor/(1+DC ESR x capacitor)

Leakage current: measured after being powered on for 72 hours at+20 ° C

Maximum power: Calculation formula=Operating voltage ²/(4 × DC ESR)

Energy storage: Calculation formula=189 × capacitance × operating voltage ²/3600

2.3 Performance Stability

XV series supercapacitors maintain excellent performance stability under various stress conditions:

Maximum variation of conditional parameters

Lifetime test (maximum operating voltage and temperature, 1500 hours): capacitance change ≤ 20%

ESR variation ≤ 200%

Charge discharge cycle ¹ (500000 times), capacitance change ≤ 20%

ESR variation ≤ 200%

Storage life (uncharged, -40 ° C to+65 ° C, 1500 hours), capacitance change ≤ 20%

ESR variation ≤ 200%

Storage life (uncharged, ≤ 30 ° C, 3 years), capacitance change ≤ 5%

ESR variation ≤ 10%

¹ Cycle condition: Cycle between the maximum operating voltage and 50% of the maximum operating voltage at room temperature

Chapter 3 Mechanical Dimensions and Installation Guidelines

3.1 Overall dimensions

The XV series supercapacitors adopt cylindrical plug-in packaging, with the following size parameters:

Model diameter D (mm) length L ± 1.0 (mm) pin spacing

  • ABB SACO16D1 1-Pole Digital Annunciator Unit
  • ABB UNITROL 1000 3BHE014557R0003 Static Excitation System
  • Woodward 8273-1011 Electro-Hydraulic Actuator
  • Eaton MC2-442-57CQB-1-2A Molded Case Circuit Breaker
  • Siemens 3AY1715-6L VS30029P VS30041 Auxiliary Contact Block
  • ABB PCD235B101 3BHE032025R0101 Digital I/O Control Module
  • Socapel PAM-R1R-H8F-AP-P V10800 Programmable Axis Manager
  • Rexroth VT-HNC100-1-23N-08-P-0 Digital Hydraulic Amplifier
  • Woodward 5448-890 SPM-D10 Digital Synchronizer
  • TDK-Lambda HWS1500-24 Industrial Power Supply
  • Land M2300/1100C-V Infrared Pyrometer
  • Lantronix 080-332-000-R Industrial Device Server
  • LED E14 3W Miniature LED Lamp
  • LEM LC100S/SP7 Hall Effect Current Sensor
  • Lenel LNL-1320 Dual Reader Interface Module
  • Lenze L5311 Industrial Control Module
  • Lenze EPZ-10203 Safety Controller
  • Lenze EPL10200 Industrial Drive Module
  • Lenze EPL-10200-XX Drive Controller
  • Lam Research 810-801237-021 Industrial Part
  • Lam Research 810-073479-215 Precision Part
  • Lam Research 853-001983-110 Assembly Data
  • Lam Research 810-017034-005 Semiconductor Part
  • Lambda LZS-A1500-3 AC-DC Power Module
  • Lambda LZS-1500-3 Industrial Power Supply
  • LAM 810-072907-005 Chamber Interface Control Module
  • LAM 810-068158-014 Semiconductor Process Control Module
  • LAM 810-800081-018 Vacuum System Interface Module
  • LAM 810-068158-013 Semiconductor Control Module
  • Leybold CM330 Vacuum Gauge Controller
  • Leybold 850-400-G1 Vacuum Pump Module
  • LIFTMASTER 71-1550B18LGH Electric Actuator
  • LKB Bromma 2211 Pressure Sensor
  • LLASERGAS AO2000 LS25 12944-E Gas Analyzer Module
  • Load Controls PH-3A Three-Phase Power Sensor
  • Ludlum 2401-P Pancake GM Survey Meter
  • LUST VF1410LHFS41 AC Servo Drive
  • LUTZE UBE-FL/34M Terminal Block Contact
  • Marposs E78 Dynamic Balancing Controller
  • LENZE E84AVSCE1534VX0 Servo Drive Controller
  • LENZE EVF8212-E Frequency Inverter Drive
  • LENZE EA-4/10 Drive Expansion Module
  • LENZE BG10 Brake Module
  • LEUZE DDLS 200/200.1-50-M12 Data Link Data
  • LEUZE DDLS 200/200.2-50-M12 Optical Data
  • LEYBOLD TURBOVAC 361 Turbomolecular Pump
  • LEYBOLD TR211 Vacuum Controller Data
  • LEYBOLD SV40BI Rotary Vane Pump Specifications
  • LEYBOLD PR25 Vacuum Pressure Sensor Data
  • MARPOSS E9066 Precision Measurement Control Unit
  • MATROX Y7116-04 REV A Industrial Vision Processing Board
  • MATROX Y7116-01 REV A Industrial Video Processing Board
  • MCS SA1000 Industrial Signal Amplifier Module
  • MECS CS-1000 Control System Hardware Data
  • MECS UTX1010 Industrial Control Module
  • MECS UTX-1000A Industrial Module
  • MECS UTV-F2500HA High-Power Thyristor Data
  • MECS EXT-2 Advanced Expansion Interface
  • MECS EXT-1 Interface Extension Module
  • MECS CPU-1000 Industrial PLC Controller
  • MEN A201SR04 Embedded Computer
  • MERAK 681H10078 681K10078 681K10079 Control Modules
  • Mercury Step C-663 Stepper Motor Controller
  • MERLIN GERIN MX+0F 26948 Shunt Trip Release
  • MERLIN GERIN 32570 Miniature Circuit Breaker
  • MERLIN GERIN 29329 High-Voltage Circuit Breaker
  • NEG2320-2 B5 Servo Drive Controller
  • METASYS NU-NCM350-8 Network Control Module
  • METRO MPS-4007 Signal Conditioning Module
  • METROSIL ZB9411015 Surge Protection Varistor Module
  • MEYER MEYER0909 1RR1337001 Industrial Control Module
  • MICRO MC2-440-10TVB-1-20 Industrial Switch Data
  • MICROSET 104988-E03 Control Card Data
  • MILLIPORE WGGB12S02 Water System Module
  • MILLIPORE CMHT-11S02 Chemical Process Sensor
  • MINI MAESTRO 60X7/14 Servo Drive Technical Data
  • MITRA PE3257/03 High Frequency Transformer
  • MEYER MEYER1009 1RR1337001 Industrial Control Component
  • MICRO MPB1-TP Industrial Interface Terminal Module
  • Mitsubishi GU-D04 GOT Serial Communication Board
  • Mitsubishi R28TB Robot Teaching Pendant
  • Mitsubishi A1S68DAV 8-Channel Analog Output Module
  • Mitsubishi A1S65B-S1 Expansion Base Unit
  • Mitsubishi A1SJ51T64 I/O Link Master Module
  • Mitsubishi HC-KFS23K-S49 AC Servo Motor
  • Mitsubishi ST1X4-DE1 4-Channel Digital Input Module
  • Mitsubishi QM100HY-H IGBT Power Module
  • Mitsubishi QM100HY-H IGBT Power Module
  • Mitsubishi QM100DY-H IGBT Power Module
  • Mitsubishi BN624A96IG52A MELSECNET/H Fiber Module
  • MITSUBISHI BN624A960H03B Control Module
  • MIYACHI MA-201C Welding Control Unit
  • MKS 223BD-00001AAB Pressure Transducer Data
  • Modicon AS-BADU-204 Analog Input Module Data
  • Modicon AS-S908-120 Remote I/O Processor
  • Modicon AS-J890-002 Remote I/O Interface
  • Modicon NW-BM85D002 Modbus Plus Bridge Manual
  • Modicon AS-B875-002 24VDC Input Module Data
  • MKS T3BIB-29916 Control Interface Board
  • MKS 683B-23795 Capacitance Manometer Pressure Sensor
  • Molex 85003-0567 DIN 41612 Connector
  • MOORE 750E1B2GNNNF Temperature Transmitter
  • MOORE 16147-51-2 ACM Transition Board
  • MOORE 16147-51-02 Signal Isolator
  • MOORE 16407-1-1 Industrial Power Module
  • MOORE 42-30 Smart Electro-Pneumatic Positioner
  • MOORE 16310-71-1 Industrial Control Module
  • MOTOMAN HW9381022 Welding Robot Arm
  • MOX MX603-2007-01 Industrial Control Module
  • MOXA EDS-408A-MM-SC Industrial Ethernet Switch
  • M-SYSTEM MD2202-D32-X-P Digital Input Module
  • MTL 8811-IO-DC Digital I/O Module
  • MTL 8604-FT-FU Field Terminal Specification
  • MTL 8104-AO-IP Analog Output Module
  • MTL 8103-AI-TX Analog Input Specifications
  • MTL 8505-BI-MB Bus Interface
  • MTL 8711-CA-NS Carrier Module Specification
  • MTL MTL5514D Intrinsically Safe Interface Module
  • MTL MTL4544AS Isolating Interface Module
  • MTL 8715-CA-BI HART Transparent Isolator
  • MTL831B Analog Multiplexer Transmitter
  • MTL 8502-BI-DP Profibus DP Interface Module
  • MTL838B-MBF Modbus Analog Multiplexer Receiver
  • MTL5053 Fieldbus Intrinsic Safety Barrier
  • MTL 8939-HN Fiber Optic Extender IOTA
  • MTL 8937-HN Dual-Channel Zener Barrier
  • MTL 5541 Repeater Power Supply Barrier
  • MTL 4073 Passive Intrinsic Safety Barrier