LIC1840R3R8107 [TAIYO YUDEN]

Special Capacitor, Lithium Ion, 3.8V, 20% +Tol, 20% -Tol, 100000000uF, Through Hole Mount, RADIAL LEADED;
LIC1840R3R8107
型号: LIC1840R3R8107
厂家: TAIYO YUDEN (U.S.A.), INC    TAIYO YUDEN (U.S.A.), INC
描述:

Special Capacitor, Lithium Ion, 3.8V, 20% +Tol, 20% -Tol, 100000000uF, Through Hole Mount, RADIAL LEADED

电容器
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中文:  中文翻译
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Notice for TAIYO YUDEN productsꢀ  
Please read this notice before using the TAIYO YUDEN products.  
REMINDERS  
Product information in this catalog is as of October 2013. All of the contents specified herein are subject to change  
without notice due to technical improvements, etc. Therefore, please check for the latest information carefully be-  
fore practical application or usage of the Products.  
Please note that TAIYO YUDEN CO., LTD. shall not be responsible for any defects in products or equipment incor-  
porating such products, which are caused under the conditions other than those specified in this catalog or indi-  
vidual specification.  
Please contact TAIYO YUDEN CO., LTD. for further details of product specifications as the individual specification  
is available.  
Please conduct validation and verification of products in actual condition of mounting and operating environment  
before commercial shipment of the equipment.  
All electronic components or functional modules listed in this catalog are developed, designed and intended for  
use in general electronics equipment.(for AV, office automation, household, office supply, information service,  
telecommunications, (such as mobile phone or PC) etc.). Before incorporating the components or devices into any  
equipment in the field such as transportation,( automotive control, train control, ship control), transportation signal,  
disaster prevention, medical, public information network (telephone exchange, base station) etc. which may have  
direct influence to harm or injure a human body, please contact TAIYO YUDEN CO., LTD. for more detail in ad-  
vance.  
Do not incorporate the products into any equipment in fields such as aerospace, aviation, nuclear control, subma-  
rine system, military, etc. where higher safety and reliability are especially required.  
In addition, even electronic components or functional modules that are used for the general electronic equipment,  
if the equipment or the electric circuit require high safety or reliability function or performances, a sufficient reliabil-  
ity evaluation check for safety shall be performed before commercial shipment and moreover, due consideration to  
install a protective circuit is strongly recommended at customer's design stage.  
The contents of this catalog are applicable to the products which are purchased from our sales offices or distribu-  
tors (so calledTAIYO YUDENs official sales channel).  
It is only applicable to the products purchased from any of TAIYO YUDENs official sales channel.  
Please note that TAIYO YUDEN CO., LTD. shall have no responsibility for any controversies or disputes that may  
occur in connection with a third party's intellectual property rights and other related rights arising from your usage  
of products in this catalog. TAIYO YUDEN CO., LTD. grants no license for such rights.  
Caution for export  
Certain items in this catalog may require specific procedures for export according toForeign Exchange and For-  
eign Trade Control Lawof Japan,U.S. Export Administration Regulations, and other applicable regulations.  
Should you have any question or inquiry on this matter, please contact our sales staff.  
CYLINDER TYPE LITHIUM ION CAPACITORS  
Manual Soldering  
FEATURES  
Lithium Ion Capacitor (LIC) is one of the Hybrid Capacitors to which  
the reaction of EDLC and that of lithium-ion battery are adopted.  
LIC applies the reaction of lithium-ion battery with anode, therefore it  
has extremely large capacitance.  
The technique of doping lithium-ions to the anode previously (pre-  
doping) makes a cell voltage of 3.8V attainable.  
In spite of a high output voltage, damages to the electrodes can be  
repressed because of low electrode's potential due to pre-doping  
technique. Therefore LIC shows excellent performance of cycle life.  
LIC is environmentally friendly power source, which does not contain  
any heavy metals such as Cd, Hg and Pb. (RoHS compliant)  
(about twice as large as conventional EDLC)  
APPLICATIONS  
Storage power source combined with solar cell, fuel cell, generator, and so on.  
Main power source for small devices (machine tools, measuring equipments, toys, and so on).  
Load charge leveling (life lengthening of main power source such as dry battery, Lithium primary battery)  
ORDERING CODE  
L I C 2 5 4 0 R 3 R 8 2 0 7  
Type  
Dimensions/  
φD [mm]  
Dimensions/  
Shape  
Maximum Usable  
VoltageV〕  
Nominal Capacitance  
F〕  
L [mm]  
RCylinder type  
△=Blank space  
LIC  
Lithium Ion Capacitors  
12  
12.5  
35  
40  
35  
40  
406  
107  
207  
277  
40  
3R8  
3.8  
18  
25  
18  
R=decimal point  
100  
200  
270  
25  
EXTERNAL DIMENSIONS  
PART NUMBERS  
Nominal  
Capacitance  
(F)  
Internal  
Resistance  
(mΩ)  
Voltage Range Min. Voltage  
Part Number  
(V)  
(V)  
LIC1235R 3R8406  
LIC1840R 3R8107  
LIC2540R 3R8207  
LIC2540R 3R8277  
40  
150  
100  
50  
100  
200  
270  
3.8  
2.2  
50  
Part Number  
φD  
12.5  
18.0  
L
35.0  
40.0  
φd  
0.8  
0.8  
P
5.0  
8.0  
LIC1235R 3R8406  
LIC1840R 3R8107  
LIC2540R 3R8207  
LIC2540R 3R8277  
25.0  
40.0  
1.0  
13.0  
Unit : mm  
SPECIFICATIONS  
Operating  
Max.Usable Min.Operating  
Voltage  
Initial Internal  
Resistance  
mΩ)  
Under 150  
Under 100  
Under 50  
Under 50  
Initial Capacitance  
Part Number  
Temp. Range  
voltage  
V)  
High Temp. Load Test  
F)  
(℃)  
V)  
LIC1235R 3R8406  
LIC1840R 3R8107 25~+70(85)  
LIC2540R 3R8207  
40±20%  
100±20%  
200±20%  
270±20%  
Lowest temperature(ー25CapacitanceOver 60% of initial spec.  
Internal ResistanceWithin 10times of initial spec.  
3.8  
(3.5)  
2.2  
Highest temperature7085Capacitance,Internal ResistanceWithin initial spec.  
LIC2540R 3R8277  
25~+60  
RELIABILITY DATA  
Items  
Specifications  
Test Conditions, Remark  
1. Operating Temperature range  
2. Max. Usable Voltage  
3. Min. Operating Voltage  
25~+70(LIC2540R 3R8277 : 25~+60)  
3.8V  
2.2V  
Capacitance  
: Over 70% of initial spec.  
Apply a max.usable voltage to capacitor for 1000hours at max. operating temp. and  
measure the floating charge characteristics after returning to normal temperature  
and humidity.  
4. Floating Charge Characteristics Internal Resistance : Within 2times of initial spec.  
Appearance  
Capacitance  
Internal Resistance : Within 2times of initial spec.  
: No noticeable abnormality  
: Over 70% of initial spec.  
5. Charge/Discharge Cycle  
Characteristics  
Measure the charge/discharge cycle characteristics after 10000 charge/discharge  
cycle at 25±5with under mentioned charge/discharge cycle test condition.  
Appearance  
: No noticeable abnormality  
Capacitance  
Internal Resistance : Within 2times of initial spec.  
Appearance  
: Over 70% of initial spec.  
Leave the capacitor in an atmosphere of 70℃±2(LIC2540R 3R8277 : 25~+  
60 ) and 25±2 consecutively for 96 hours each, and return to normal tem-  
perature and humidity.  
6. Thermal Durability  
7. Humidity Durability  
: No noticeable abnormality  
Capacitance  
Internal Resistance : Within 2times of initial spec.  
Appearance : No noticeable abnormality  
: Over 70% of initial spec.  
Temperature : 40±2, Humidity : 9095%RH Leave the capacitor for 500 hours,  
and return to normal temperature and humidity.  
No exterior abnormality observed :  
initial spec. values retained  
8. Impact Durability  
According to JIS C 0041, Half-sine wave A=294  
No exterior abnormality observed :  
initial spec. values retained  
Apply a sine wave vibration with 1.5mm of amplitude and 1055Hz of frequency for 2  
hours per each of 3 directionsX, Y, Z,totally 6hours.  
Material:Sn-3Ag-0.5Cu  
9. Vibration Durability  
Capacitance  
: Within initial spec.  
Solder bath temperature : 235±5℃  
10. Soldering  
Internal Resistance : Within initial spec.  
Dipping time : 2±0.5 sec.  
Appearance  
: No noticeable abnormality  
Depth of Immersion : Up to 1.52.0mm from the lower end of cell body  
Charge/Discharge Cycle Test Condition  
Part Number  
Charging Voltage (V)  
Charging Time (s)  
LIC1235R 3R8406  
LIC1840R 3R8107  
LIC2540R 3R8207  
LIC2540R 3R8277  
3.8  
1
3.8  
1
3.8  
1
3.8  
1
Max. Charging Current (A)  
Discharging Current (A)  
Cut off Voltage (V)  
2
2
2.2  
2
2
2.2  
5
5
2.2  
5
5
2.2  
Thisꢀcatalogꢀcontainsꢀtheꢀtypicalꢀspecificationꢀonlyꢀdueꢀtoꢀtheꢀlimitationꢀofꢀspace.ꢀꢀWhenꢀyouꢀconsiderꢀtheꢀpurchaseꢀofꢀourꢀproducts,ꢀpleaseꢀcheckꢀourꢀspecification.ꢀ  
Forꢀdetailsꢀofꢀeachꢀproductꢀ(characteristicsꢀgraph,ꢀreliabilityꢀinformation,ꢀprecautionsꢀforꢀuse,ꢀandꢀsoꢀon),ꢀseeꢀourꢀWebꢀsiteꢀ(http://www.ty-top.com/)ꢀ.ꢀ  
148  
CYLINDER TYPE LITHIUM ION CAPACITOR  
RELIABILITY DATA  
1. Operating Temperature range  
Specified Value  
−25~+60℃  
2. Max. Usable Voltage  
Specified Value  
3.8V  
3. Min. Operating Voltage  
Specified Value  
2.2V  
4. Floating Charge Characteristics  
Capacitance  
: Over 70% of initial spec.  
: Within 2times of initial spec.  
: No noticeable abnormality  
Specified Value  
Internal Resistance  
Appearance  
Test Methods and Apply a max.usable voltage to capacitor for 1000hours at max. operating temp. and measure the floating charge characteristics after  
Remarks returning to normal temperature and humidity.  
5. Charge/Discharge Cycle Characteristics  
Capacitance  
: Over 70% of initial spec.  
: Within 2times of initial spec.  
: No noticeable abnormality  
Specified Value  
Internal Resistance  
Appearance  
Measure the charge/discharge cycle characteristics after 10000 charge/discharge cycle at 25 ± 5 ℃ with under mentioned  
charge/discharge cycle test condition.  
Charge/Discharge Cycle Test Condition  
Part Number  
Charging Voltage (V)  
LIC1235R 3R8406  
LIC1840R 3R8107  
LIC2540R 3R8207  
Test Methods and  
Remarks  
3.8  
1
3.8  
1
3.8  
1
Charging Time (s)  
Max. Charging Current (A)  
Discharging Current (A)  
Cut off Voltage (V)  
2
2
5
2
2
5
2.2  
2.2  
2.2  
6. Thermal Durability  
Specified Value  
Capacitance  
: Over 70% of initial spec.  
: Within 2times of initial spec.  
: No noticeable abnormality  
Internal Resistance  
Appearance  
Test Methods and Leave the capacitor in an atmosphere of 60℃±2℃ and -25±2℃ consecutively for 96 hours each, and return to normal temperature  
Remarks  
and humidity.  
7. Humidity Durability  
Specified Value  
Capacitance  
: Over 70% of initial spec.  
: Within 2times of initial spec.  
: No noticeable abnormality  
Internal Resistance  
Appearance  
Test Methods and  
Remarks  
Temperature : 40±2℃, Humidity : 90~95%RH Leave the capacitor for 500 hours, and return to normal temperature and humidity.  
8. Impact Durability  
Specified Value  
No exterior abnormality observed : initial spec. values retained  
Test Methods and According to JIS C 0041  
Remarks  
Half-sine wave A=294  
9. Vibration Durability  
Specified Value  
No exterior abnormality observed : initial spec. values retained  
Test Methods and Apply a sine wave vibration with 1.5mm of amplitude and 10ー55Hz of frequency for 2 hours per each of 3 directions (X, Y, Z), (totally  
Remarks 6hours).  
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.  
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .  
c_lic_cylinder_reli_e-E02R01  
10. Resistance to Soldering Heat  
Capacitance  
: Within initial spec.  
Specified Value  
Internal Resistance  
: Within initial spec.  
Appearance  
: No noticeable abnormality  
Material  
:Sn-3Ag-0.5Cu  
Test Methods and Solder bath temperature  
: 260±5℃  
Remarks  
Dipping time  
: 10±1 sec.  
Depth of Immersion  
: Up to 1.5ー2.0mm from the lower end of cell body  
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.  
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .  
c_lic_cylinder_reli_e-E02R01  
CYLINDER TYPE LITHIUM ION CAPACITOR  
PRECAUTIONS  
1. Use within the rated voltage (2.2-3.8V)  
If over rated voltage is applied, it might cause abnormal current flow, which shorten lifetime, cell heating, leakage and sometimes damage Lithium Ion  
Capacitor.  
2. Use under maximum operating temperature  
Not only shorter life time but also leakage and damage will happen by increasing internal pressure if Lithium ion Capacitor use in over max operating  
temperature.  
3. Limited life time  
Lifetime of Lithium Ion Capacitor is greatly affected by surrounding temperature.  
10℃ drop in temperature extend its expected lifetime approximately twice as much. Design a circuit under consideration of deterioration of electrical  
characteristics after long time usage, decreasing in capacitance and increasing in internal resistance.  
4. The electrical characteristics of capacitors vary with respect to temperature  
The electrical characteristics of Lithium Ion Capacitor temporarily vary with respect to temperature separately from secular change mentioned above.  
Design a circuit under consideration of temperature characteristics.  
5. Lithium Ion Capacitor has polarity  
Lithium Ion Capacitor has polarity. Please check the polarity before use. It will be damaged if it is reversely charged.  
6. Don’t short-circuit positive (+) and negative (-) terminals  
Direct contact with positive (+) and negative (-) terminals or connection with metal or other conductive materials may cause short-circuit and excessive  
current flow, which may cause heating and leakage.  
7. Mind with high ripple current or rapid charge / discharge  
In circuit with high ripple current or required rapid and very frequent charge / discharge, the lifetime of Lithium Ion Capacitors might be shortened by  
self-heating.  
8. Mind voltage drop when discharging  
When discharging start, the voltage drop that originates in internal resistance happens if discharging current is high  
9. Series connection  
In case of using Lithium Ion Capacitor in series connection, the voltage of each capacitor is not always equal and it may be occurred excessive voltage in a  
part of capacitor, which may lead to shortening lifetime and breakdown. Take a margin against a rated voltage or add a balancing resister  
10. Lithium Ion Capacitor has the pressure release vent  
In case of inside pressure of capacitor excessively rising, the pressure release vent will be opened in order to release inner gas. Following clearance  
(Diameter< φ18:over 2mm, Diameter≧φ18:over 3mm) should be made above the pressure release vent.  
Don’t set up wiring or a pattern in the upper part of the pressure release vent, so that the high temperature gas is gushed when the pressure release vent  
open.  
The product which open the pressure release vent can not use.  
11. The sleeve of the Lithium Ion Capacitor is not guaranteed insulation  
Short circuit might happen if circuit pattern is set underneath of Lithium Ion Capacitor or it fixed by a metal or it contact with other component.  
12. Environmental of usage  
In case Lithium Ion Capacitor is used in the high humidity, alkaline or acid air, it may cause deterioration of its performance, electrolyte leak and short circuit  
by corrosion of outer can or lead terminal.  
In addition, used in sudden temperature change or high humidity, it may cause deteriorating of its performance and electrolyte leak by dew condensation.  
13.Don’t apply shock and vibration or pressure  
Lithium Ion Capacitor is sensitive to shock.  
Don’t drop Lithium Ion Capacitor and not apply strong pressure to a body, terminals and lead. Soldering part or lead terminal might be damaged if applying  
vibration, shock and stress such as pinch, tip, push and twist after installed.  
14. Soldering  
If next each item is not minded, it may cause deteriorating of its performance, leakage, shortening lifetime.  
● Don’t contact solder iron to a cell body.  
● Don’t solder over solder conditions in the spec. sheet.  
15. Cleaning condition when cleaning circuit-board after soldering.  
Cleaning may affect Lithium Ion Capacitor. Consult us about cleaning conditions beforehand. Some cleaning conditions cause detrimental influence.  
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.  
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .  
c_lic_cylinder_prec_e-E02R01  
16. Storage of Lithium Ion Capacitor  
Keep the following cautions for storage of Lithium Ion Capacitor.  
● Don’t store in the high temperature, the high humidity condition and a place where receiving direct sunlight. Store in the room condition of 10℃ - 35℃  
and less than 65% relative humidity is recommended.  
● Sudden temperature change or high humidity may cause deteriorating of its characteristics and soldering.  
● Don’t store PAS capacitor near water, salt water or oil, and it the dew condensation, gasified oil or salinity filled place.  
● Don’t store it the hazardous gas (hydrogen sulfide, sulfurous, chlorine, ammonia, bromine, methyl bromine and etc).  
● Don’t fumigant by halogen fumigant  
● Don’t sore near acid or alkaline solvent.  
● Don’t store in a place where expose to ozone, ultraviolet or x-ray  
● Don’t store in a place where vibration and shock might occur in.  
17. Disposal  
To insulate a positive terminal and a negative terminal by covering such as a tape to avoid short circuit and dispose in accordance with local and country  
rules and regulations.  
18. Usage  
Lithium ion capacitor is produced for usage of information & communication equipment, home electronics, audio & visual equipment, office equipment and  
etc. Consult us about using reliability and safe required products such as medical equipment, transportation equipment, industrial equipment, flight/space  
equipment and emergency equipment.  
19. Failure mode  
Usage in following condition may cause deteriorating of characteristics or failure.  
1) Overcharging  
If applying load current continuously over rated upper limit voltage 3.8V, electrolyte will be degrade in accordance with rising voltage and its temperature  
may rise. At the same time, its internal pressure will rise due to gas evolve by electrolyte degradation.  
Lithium ion capacitor has a pressure vent to release gas from its body in case of abnormal internal pressure rising.  
Gas will be released by opening a pressure vent when internal pressure exceeds a certain value.  
(To be able to function effectively, it should be installed with 3mm interspaces above a pressure vent.)  
2) Over discharging  
If discharging under rated lower limit voltage, it will accelerate deterioration such as capacitance degradation, internal resistance rising and etc.  
3) External short circuit  
If a positive terminal and a negative terminal are contacted each other or connected by induction tools, Lithium ion capacitor will be short circuit and  
excessive current will be drained.  
As a result, internal temperature will rise, internal pressure will rise and in some case gas may be released by opening a pressure valve.  
Following actions will cause external short circuit  
● To trim two terminals by a nipper at once.  
● To measure a distance of two terminals by a metal slide gauge .  
● To mount on a circuit board by flow soldering.  
20. Other Notice  
● Don’t heat or throw into fire.  
● Don’t short.  
● Don’t solder directly to a cell body.  
● Don’t dismantle.  
● Don’t deform.  
● Don’t apply pressure.  
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.  
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .  
c_lic_cylinder_prec_e-E02R01  

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