CHIP-TYPE EDLC Surface Mount Type Product Catalog

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1 CHIP-TYPE EDLC Surface Mount Type Product Catalog

2 Reflowable Super Capacitor (Chip-type EDLC) CLC Factory is a global leading power parts and materials company of the super capacitor(edlc) sector. We meet market trend about high capacity, ultra-small, ultra-thin super capacitor and also meet the global enterprise requirements about chip-type supercapacitor that optimized for reflow(smt) automation processes. Features Charge-discharge through physical adsorption-desorption Semi-permanent life (more than half a million times) Short charging time (30 seconds to 30 minutes) Wide temperature range (-30 ~ +70 ) Use eco-friendly material (activated carbon electrode) : RoHS Explosion Probability Zero Relatively low manufacturing costs High Density and no periodic replacement (AS unnecessary) Applications Capacity Applications Small Less than 1F Medium 1F ~ 100F Large 100F ~ 1,000F or more Backup power for memory and clock function of various devices. Smartphone, Tablet, Digital Camera, various kinds of small appliance etc. SSD, Smart Meter, ESL(Electro Shelf Label), Medical & Healthcare devices, Car Black Box, Power window, Solar Block, Industrial equipments etc. UPS, Renewable energy system, Car & Hybrid Car etc. Internet of Things(IoT) Smart Devices Medical & Healthcare Transportation Energy

3 Electric Double Layer Capacitors / CLC CAP Part Numbering System EX CLC H 106 B SERIES (Simplified form of CLC Factory) Width Length Rated Voltage Capacitance (F) Terminal Type 21.0mm mm mm mm mm mm 25 S 2.6V N 3.3V H 5.5V F (3.5x10 6 μf ) F (1.0x10 6 μf ) F (3.0x10 5 μf ) F (1.3x10 3 μf ) A Other type B Bottom insert Product Line-up Classification Max. Operating Voltage (V.DC) Capacitance (F) Max. Initial Resistance(Ω) Size (mm) L x W x H Operating Temp. range Part Number CHIP-TYPE mΩ 21.0x14.0x to 70 CLC210140H356B mΩ 21.0x14.0x to 70 CLC210140H106B mΩ 21.0x14.0x to 90 CLC210140H305B mΩ 10.0x8.0x to 70 CLC10080N305B Ω 3.2x2.5x to 70 CLC3225N133B Reflow Soldering Conditions Reflow Profile : As per shown in Fig. 1. The times of repeated reflow soldering must be three times or less. The temperature must be measured at top of the capacitor Temperature Pre Heat Region Above 200 Region Fig. -1. Reflow soldering profile(for reference only) *1:Time above 200 must be max. 80 seconds. Peak Temperature Time Time second Max. 260 Applicable(within 5 seconds)

4 Surface Mount Type Features Reflow soldering type (peak 260 ) High Density / Compact Size RoHS directive compliant Series : CLC2114 Long charge-discharge cycle life High Reliability Low ESR Recommended Applications Power backup for SSD, Smart Meter, Car Black Box and Medical Devices etc. Specifications Category Temp. range at Low Temp. Endurance Shelf Life CLC210140H356B : -30 to +70 for Normal Temp. Capacitance Change 50% (or more) of initial measured value at +25 Less than 4 times of initial measured value at +25 After 1,000 hours application of 4.2V DC at 70, the capacitor shall meet the following limits. Capacitance Change 70% (or more) of initial measured value at +25 2Ω or less After 500 hours storage at 70 without load, the capacitor shall meet the specified limits for endurance. Capacitance Change 70% or more (at 25 ) 2Ω or less Dimensions in mm(not to scales) Part Number Max. Operating Voltage (V.DC) Capacitance (F) Max. Initial Resistance(Ω) Size (mm) L x W x H Operating Temp. range (mm) CLC210140H356B mΩ 21.0x14.0x to 70 CLC210140H106B mΩ 21.0x14.0x to 70 CLC210140H305B mΩ 21.0x14.0x to 90 Weight (g)

5 Electric Double Layer Capacitors / CLC CAP Surface Mount Type Features Reflow soldering type (peak 260 ) High Density / Compact Size RoHS directive compliant Series : CLC1008 Long charge-discharge cycle life High Reliability Low ESR Recommended Applications Power backup for SSD, IoT Devices, Healthcare Devices etc. Specifications Category Temp. range at Low Temp. Endurance Shelf Life CLC10080N305B : -30 to +70 for Normal Temp. Capacitance Change 50% (or more) of initial measured value at +25 Less than 4 times of initial measured value at +25 After 1,000 hours application of 3.0V DC at 70, the capacitor shall meet the following limits. Capacitance Change 70% (or more) of initial measured value at +25 2Ω or less After 500 hours storage at 70 without load, the capacitor shall meet the specified limits for endurance. Capacitance Change 70% or more (at 25 ) 2Ω or less Dimensions in mm(not to scales) R Part Number Max. Operating Voltage (V) Capacitance (F) Max. Initial Resistance(Ω) Size (mm) L x W x H Operating Temp. range (mm) CLC10080N305B 3.3 DC mΩ 10.0x8.0x to 70 Weight (g)

6 Surface Mount Type Features Reflow soldering type (peak 260 ) High Density / Compact Size RoHS directive compliant Series : CLC3225 Long charge-discharge cycle life High Reliability Low ESR Recommended Applications Power backup for the various digital handheld devices. Specifications Category Temp. range at Low Temp. Endurance Shelf Life CLC3225N133B : -30 to +70 for Normal Temp. Capacitance Change 50% (or more) of initial measured value at +25 Less than 10 times of initial measured value at +25 After 1,000 hours application of 3.0V DC at 70, the capacitor shall meet the following limits. Capacitance Change 70% (or more) of initial measured value at +25 2kΩ or less After 500 hours storage at 70 without load, the capacitor shall meet the specified limits for endurance. Capacitance Change 70% or more (at 25 ) 2kΩ or less Dimensions in mm(not to scales) R Part Number Max. Operating Voltage (V) Capacitance (F) Max. Initial Resistance(Ω) Size (mm) L x W x H Operating Temp. range (mm) CLC3225N133B 3.3 DC x2.5x to 70 Weight (g)

7 Electric Double Layer Capacitors / CLC CAP Precautions for your safety Please take every precaution in order for optimal use of the CLC Cap. Failure to use in proper manner may cause rapid characteristic damage or fire of set from leakage of electrolyte on a PCB. WARNING! 1. Do not charge by high current or high voltage. Doing so may generate gas inside the capacitor, resulting swelling, catching fire, heat generation or bursting. 2. Do not solder directly to the capacitor If soldering is performed directly to the capacitor, the capacitor is heated up, consequently cause leakage, explosion or fire due to overheating from internal short-circuiting. 3. Keep capacitors out of children s reach. If leaked liquid is ingested or a capacitor is swallowed, consult a physician immediately. 4. Do not heat, disassemble nor dispose of in fire. Doing so damages the insulation materials and may cause catching fire, heat generation, leakage or bursting. 5. Do not discharge by force. If the capacitor is discharged by direct connection to an external power supply etc., voltage of the capacitor will decline lower than 0 volts (electrical reversal) and will cause the capacitor case to expand, overheat, leak, explode or burn. 6. In case of leakage or a strange-smell; keep away from fire to prevent ignition of any leaked electrolyte. CAUTION! 1. If leaked liquids gets in the eyes, wash them with clean water, and consult a physician immediately. 2. Do not use nor leave the capacitors neither in direct sunlight nor in high-temperature areas. It may cause catching fire, heat generation, leakage or bursting. 3. Do not use new and used capacitors together. Do not use different types of capacitors together. It may cause catching fire, heat generation, leakage or bursting. 4. If you connect two or more capacitors in series or parallel, please consult us in advance. It may cause bursting or catching fire due to unbalanced load or voltage. 5. Keep capacitors away from direct sunlight, high temperature and humidity. It may cause heat generation or performance deterioration. For Prevention Quality Trouble In CAPACITOR 1. Do not conduct reflow soldering after charging the capacitor. The deterioration of the capacitor shall be caused. In serious case, the capacitor may start swell and explode or leakage. 2. Pay attention to soldering by tips. Do no touch the capacitor by solder chips, in case of soldering another components after equipping capacitor. In basically, keep any high temperature process away from capacitor. (Except for reflow soldering and underfilling) 3. Pay attention to the operating temperature. The ambient temperature greatly affects the lifetime of the capacitor. By reducing the temperature by 10deg.-C, the lifetime can be approximately doubled. 4. Do not welding the tab to the capacitor. The tab welding by inappropriate conditions will lead to damage or breakage of the capacitor. In serious case, the capacitor may start swell and leakage or catch fire and explode. If needs capacitor with tabs, please consult us. 5. Pay attention to washing and drying. Some detergent or high temperature drying cause deteriorates of capacitor. If you need to wash capacitors, consult us. * Note : This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.

8 CLC Factory Co.,Ltd. Add : #C-702 Digital Empire, 16, 1556 Beon-Gil, Deoyeong-Daero, Yeongtong-Gu, Suwon-Si, Korea Tel : Fax : Copyright 2016 CLC Factory Co., Ltd. all rights reserved.

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