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韩国LSmtron超级电容器.pdf

1、Leading Solution LS Mtron, LS Cable & System, LSIS, LS-Nikko Copper, Gaon Cable, E1 and Y esco 01Vision Statement In order to become a leader in the competitive global market LG has been divided into three business groups based upon their core competencies, Industrial Electric-Electronic Energy & Ma

2、terials(LS), Electronic & Chemical(LG), and Energy & Retail(GS). INNOVA TIVE TECHNOLOGY PARTNER - LS Mtron LS Mtrons mission is to grow into a company that provides mar- ket leading solutions while devloping a workplace where its em- ployee can achieve their dreams. All employees of LS Mtron stand b

3、ehind the vision of becoming an Innovative Technology Partner and work tirelessly to make LS Mtron a world-class company LS Mtron will secure world-class core technologies to find and im- plement the most efficient solutions based on a market knowl- edge that can meet the challanges of our todays ma

4、rkets We will work hand-in-hand with our customers in order to grow into a global leader. Business of LS MtronComponent Ultracapacitor Electronic PartsConnectors / Antennas Circuit MaterialCopper Foils / FCCL Vehicle PartsAutomotive Rubber HoseMachinery Tractor Injection Molding Machine Track Shoes

5、Industrial ElectricElectronic, Energy & Material Electronic & Chemical Energy & Retail 02Overview LS Ultracapacitor energy storage devices are positioned between conventional electrolytic capacitors and rechargeable batteries. LS Ultra capacitors feature high power, high energy, reliability and long

6、 life which enables use in a variety of applications such as back-up power, auxiliary power, instantaneous power compensation and peak power compensation. Rated voltage : up to 3.0V High power performance (vs. Battery) High energy performance (vs. Conventional electrolytic capacitor) Environmentally

7、 friendly Maintenance-free Wide operating temperature range (-40 o C +65 o C) 03 New-generation Energy Storage Devices with Low Resistance and Great Reliability LS Ultracapacitor04 New-generation Energy Storage Devices with Low Resistance and Great ReliabilityIntroduction to LS Ultracapacitor Techno

8、logy Operating Principle Ultracapacitors store energy based on electrostatic charges on opposite electrode surface of the electric double layer which is formed between the electrodes and the electrolyte. Randomly distributed ions in the electrolyte move toward the electrode sur- face of opposite pol

9、arity under electric field when charged. It is a purely physical phenomenon rather than a chemical reaction and is a highly reversible process. This results in a high power, high cycle life, long shelf life and maintenance-free product. LS Mtron provides optimal package design to provide the best in

10、 performance and reliability. Structure An Ultracapacitor consists of two electrodes immersed in an electrolyte and a separator which prevents the charge from moving between two electrodes of opposite polarity. 05Formulas for calculating energy in a capacitor The different units used between Ultraca

11、pacitors (Farad) and batteries (Ampere hour) can be confusing to users when adopting Ultracapacitors in their system. The amount of energy stored in an Ultracapacitor can be easily calculated by using following equation.Energy (Joule) = 1/2 x Capacitance (Farad) x Voltage 2(Volt) This can be convert

12、ed from Farad for Ultracapacitors to Watt hour unit which is normally used for conventional rechargeable batteries. Energy (Watt hour) = Energy (Joule) / 3600 (sec) LS Mtron recommends discharging Ultracapacitors from 100% of their rated voltage to 50% of their rated voltage in order to deliver 75%

13、of their total energy. Differences Between LS Ultracapacitor & Other Energy Storage Devices High Energy & High Power Ultracapacitors are unique energy storage devices offering high power and high energy simultaneously, compared with conventional electrolytic capacitors and batteries. The high en- er

14、gy stored by Ultracapacitors in comparison to conventional electrolytic capacitors is derived from activated carbon elec- trode material having the extremely high surface area and the short distance of charge separation created by the opposite charges in the interface between electrode and electroly

15、te. High power, long shelf and cycle life performance of Ultracapac- itors originate in the energy storage mechanism differing from batteries. With batteries, energy is stored and released via chem- ical reaction inside electrode material that causes degradation of the entire system. On the other ha

16、nd, Ultracapacitors use physical charge separation phenomena between the charge on an electrode and ions in electrolyte at the interface. Since the charge and discharge processes are purely physical and highly reversible, Ultracapacitors can release energy much faster and with more power compared to

17、 batteries which rely on slow chemical reactions and can be cycled hundreds of thousands of times without significant effect on performance. Hybrid capacitors Charge & Discharge Ultracapacitors possess different charge and discharge characteristics compared with rechargeable batteries. Batteries hav

18、e a voltage plateau region but Ultracapacitors have a linear relationship with voltage during charge and discharge. This linear relationship with voltage can change to constant voltage by simply utilizing a DC-DC converter. The amount of energy stored in an Ultracapacitor can be easily calculated by

19、 measuring voltage. 06Specifications Products Terminal Type Prismatic Type Cell 2.8/3.0V Lug & Snap-in Type Cell Snap-in (100F/ 120F) Lug (350F 480F) Snap-in (4pin, 350F 480F) Series Part No. Capaci- tance Weight Type Dimension Rated Voltage ESR (DC) Max. Current Leakage Current Operating T emperatu

20、re Range Max. Stored Energy LSUC 002R8S 0100F EA 100F 2.8V 9m 74A 0.3mA 0.11Wh 0.023kg -4065 o C Snap-in 22 X L46mm LSUC 003R0L 0380F EA 380F 3.0V 3.2m 257A 1mA 0.48Wh 0.072kg -4065 o C Lug/Snap-in 35 X L61mm LSUC 002R8S 0120F EA 120F 2.8V 9m 81A 0.4mA 0.13Wh 0.023kg -4065 o C Snap-in 22 X L46mm LSU

21、C 003R0L 0430F EA 430F 3.0V 3m 282A 1mA 0.54Wh 0.080kg -4065 o C Lug/Snap-in 35 X L66mm LSUC 002R8L 0350F EA 350F 2.8V 3.2m 231A 1mA 0.38Wh 0.072kg -4065 o C Lug/Snap-in 35 X L61mm LSUC 003R0L 0480F EA 480F 3.0V 3m 295A 1mA 0.60Wh 0.088kg -4065 o C Lug/Snap-in 35 X L71mm LSUC 002R8L 0400F EA 400F 2.

22、8V 3m 255A 1mA 0.44Wh 0.080kg -4065 o C Lug/Snap-in 35 X L66mm LSUC 002R8L 0450F EA 450F 2.8V 3m 268A 1mA 0.49Wh 0.088kg -4065 o C Lug/Snap-in 35 X L71mm Snap-in & Lug Type Endurance time (65 o C, VR) : 1500 hours for 2.8V / 1000 hours for 3.0V (C20% decrease, ESR100% increase of initial specified v

23、alue) Life time (25 o C, VR) : 10 years (C20% decrease, ESR100% increase of initial specified value) Cycle life time (25 o C, VR) : 500,000 cycles (C20% decrease, ESR100% increase of initial specified value) Endurance time (65 o C, VR) : 1500 hours (C20% decrease, ESR100% increase of initial specifi

24、ed value) Life time (25 o C, VR) : 10 years (C20% decrease, ESR100% increase of initial specified value) Cycle life time (25 o C, VR) : 500,000 cycles (C20% decrease, ESR100% increase of initial specified value) LSUC 002R8P 3000F EA 3000F 2.8V 0.36m 2019A 5mA 3.27Wh 0.650kg -4065 o C Prismatic Prism

25、atic Type W55 X D55 X L155mm LS Ultracapacitor Cells 07Cell/Module Part No. Rule ) LS R F ( Series(AN Series, PC Series)- Code U Series(Hybrid Series)- Code H Product(Cell)- Code C Product(Module)- Code M Cell Type(Prismatic)- Code P Cell Type(Radial)- Code R Cell Type(Snap-in)- Code S Cell Type(Lug

26、)- Code L Cell Type (Cylindrical)- Code C Electrolyte(AN)- Code EA Electrolyte(PC)- Code EP Voltage Capacitance Internally Control Code Endurance time (65 o C, VR) : 1500 hours (C20% decrease, ESR100% increase of initial specified value) Life time (25 o C, VR) : 10 years (C20% decrease, ESR100% incr

27、ease of initial specified value) Cycle life time (25 o C, VR) : 1,000,000 cycles (C20% decrease, ESR100% increase of initial specified value) Specifications Products Cylindrical Type Cell Short Screw Weldable Long Screw (L T01) M16 T erminal Long Screw (L T02) M12 T erminal Terminal Type Part No. Ca

28、paci- tance Weight Type Dimension Rated Voltage ESR (DC) Max. Current Leakage Current Operating T emperature Range Max. Stored Energy LSUC 002R7C 3000F EA 3000F 2.7V 0.23m 2396A 5.0mA 3.04Wh 0.515kg -4065 o C Cylindrical 60 X L138mm LSUC 02R85C 3400F EA 3400F 2.85V 0.23m 2719A 8.0mA 3.84Wh 0.515kg -

29、4065 o C Cylindrical 60 X L138mm LSUC 002R7C 1200F EA 1200F 2.7V 0.33m 1160A 2.7mA 1.22Wh 0.280kg -4065 o C Cylindrical 60 X L74mm LSUC 002R7C 1500F EA 1500F 2.7V 0.28m 1426A 3.0mA 1.52Wh 0.320kg -4065 o C Cylindrical 60 X L85mm LSUC 002R7C 2000F EA 2000F 2.7V 0.27m 1753A 4.0mA 2.03Wh 0.380kg -4065

30、o C Cylindrical 60 X L102mm Cylindrical Type 650F 2.7V 0.57m 640A 1.5mA 0.66Wh 0.200kg -4065 o C Cylindrical 60 X L51.5mm LSUC 002R7C 0650F EA 08LS Ultracapacitor Modules provide the optimal solution for high voltage and current requirements by connecting Ultracapacitor unit cells in series. Higher

31、voltage and capacitance modules can be built simply by connecting the modules. Low internal resistance and high working voltage features of LS Mtron modules maximize the available energy while keeping maintenance free, high reliability and wide operating temperature features of LS Ultracapacitor uni

32、t cell. Features Low Internal Resistance Balancing and Overvoltage Protection Easy Build-up Design for High Voltage Module Efficient Heat Transfer to Outside Pressure / Moisture Control LS Ultracapacitor modules are suitable energy storage systems for a wide variety of applications. New-generation E

33、nergy Storage Devices with Low Resistance and Great Reliability LS Ultracapacitor Leakage Current (1) can be changed by Balancing method NTC Thermistor & Group voltage monitoring via CAN2.0B Customized module can be supplied under the customers requirement Specifications LSUM 016R8L 0058F EA 58F 16.

34、8V 22m 20A 11mA 3.2Wh/kg 0.7kg Active or Passive - -40 65 o C L245 x W47 x H76.6mm Part No. Weight Balancing Monitoring Dimension Rated Voltage ESR (DC) Max. Continuous Current ( T = 40 o C) Operating T emperature Range Energy Density Leakage Current (1) Capaci- tance LSUM 016R2C 0500F EA LSUM 016R2

35、C 0500F EA AG LSUM 016R2C 0250F EA AG 500F 16.2V 1.7m 200A 5mA 3.3Wh/kg 5.6kg Active or Passive 500F 16.2V 1.7m 200A 5mA 3.3Wh/kg 5.4kg Active or Passive 250F 16.2V 2m 150A 3mA 2.3Wh/kg 3.9kg Active or Passive-40 65 o C L67.2 x W416.2 x H175.9mm-40 65 o C L470 x W166 x H70mm-40 65 o C L311 x W166 x

36、H70mm LSUM 048R6C 0166F EA DC LSUM 032R4C 0250F EA 166F 48.6V 5m 130A 5mA 3.9Wh/kg 14kg Active or Passive 250F 32.4V 3.3m 150A 120mA 3.6Wh/kg 10kg Passive-40 65 o C-40 65 o C L194.5 x W419.5 x H175.4mm L137.1 x W426.6 x H184mm LSUM 048R6C 0166F EA YJ 166F 48.6V 5m 200A 5mA 3.2Wh/kg 17.2kg Active or

37、Passive -40 65 o C L471 x W418 x H71mm LSUM 086R4C 0093F EA 93F 86.4V 11.3m 80A 120mA 3.6Wh/kg 27kg Passive -40 65 o C L517 x W265 x H210.5mm LSUM 129R6C 0062F EA 62F 129.6V 13.2m 260A 5mA 2.6Wh/kg 55kg Active or Passive -40 65 o C L720 x W405 x H226mm T emperature (NTC) T emperature (NTC) T emperat

38、ure (NTC) - T emperature (NTC) T emperature (NTC) T emperature (PT100) T emperature & Voltage (CAN2.0B) LSUM 0380R8L 0002F EA 2.5F 380V 650m 12A 12mA 2.6Wh/kg 19kg Passive -40 65 o C L191 x W750 x H163mm T emperature (PTC) / Over Voltage LSUM 168R0L 0005F EA 5.8F 168V 240m 12A 25mA 3.5Wh/kg 6.5kg Passive -40 65 o C L235 x W367 x H79mm T emperature (NTC) Half Voltage T erminal LS Ultracapacitor Modules 09

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