Panasonic TPF Series Conductive Capacitors User Manual
Features
- Super low ESR (5 mΩ max.)
- Large capacitance (1000 μF max.)
- RoHS compliance, Halogen free
Specifications
Size code | D2E | D3L | D4 | |
Category temp. range | –55 ℃ to +105 ℃ | |||
Rated volt. range | 2.0 V | 2.5 V to 10 V | 2.5 V to 6.3 V | |
Category volt. range | 2.0 V | 2.5 V to 10 V | 2.5 V to 6.3 V | |
Rated cap. range | 220 μF to 330 μF | 150 μF to 680 μF | 470 μF to 1000 μF | |
Capacitance tolerance | ±20 % (120 Hz / +20 ℃) | |||
Leakage current | Please see the attached characteristics list | |||
Dissipation factor(tan δ) | Please see the attached characteristics list | |||
Surge voltage (V) | Rated voltage × 1.15 | |||
Endurance | +105 ℃ 2000 h rated voltage applied | |||
Capacitance change | Within ±20 % of the initial value | |||
Dissipation factor(tan δ) | ≦ 1.5 times of the initial limit | |||
Leakage current | Within the initial limit | |||
Damp heat (Steady State) | +60 ℃, 90 % to 95 % RH, 500 h, No-applied voltage | |||
Capacitance change | Within +50 %, −20 % of the initial value (2TPF220M6, 2TPF330M6, ETPF1000M6H (5H)) | |||
Within +40 %, −20 % of the initial value (Except for above model) | ||||
Dissipation factor(tan δ) | ≦ 1.5 times of the initial limit | |||
Leakage current | ≦ 3 times of the initial limit |
Marking
R.voltage code
d | 2.0 |
e | 2.5 |
g | 4.0 |
j | 6.3 |
Dimensions (not to scale)
Size code | L±0.3 | W±0.2 | H | S±0.2 | W1±0.1 |
D2E | 7.3 | 4.3 | 1.8±0.1 | 1.3 | 2.4 |
D3L | 7.3 | 4.3 | 2.8±0.2 | 1.3 | 2.4 |
D4 | 7.3 | 4.3 | 3.8±0.2 | 1.3 | 2.4 |
- If you want to use our products described in this online catalog for applications requiring special
qualities or reliability, or for applications where the failure or malfunction of the products may directly
traffic and transportation equipment, combustion equipment, medical equipment, accident prevention,
anti-crime equipment, and/or safety equipment), it is necessary to verify whether the specifications of
our products fit to such applications. - Please ensure the safety by means of protection circuit, redundant circuit etc. in your system design products.
- The products and product specifications described in this online catalog are subject to change for improvement without prior notice.
- The technical information in this online catalog provides examples of our products’ typical operations and application circuits. We do not guarantee the non-infringement of third party’s intellectual property rights and we do not grant any license, right, or interest in our intellectual property.
Notices
- This product complies with the RoHS Directive (Restriction of the use of certain hazardous substances in electrical and electronic equipment (DIRECTIVE 2011/65/EU and(EU)2015/863)).
- We do not use PBBs or PBDEs as brominated flame retardants.
- These products are not dangerous goods on the transportation as identified by UN(United Nations) numbers or UN classification.
Items to be observed
For specification
- This specification guarantees the quality and performance of the product as individual components. The durability differs depending on the environment and the conditions of usage.
- Do not use the products beyond the specifications described in this document.
Upon application to products where safety is regarded as important
- The system is equipped with a protection circuit and protection device.
- The system is equipped with a redundant circuit or other system to prevent an unsafe status in the event of a single fault.
Conditions of use
- In direct sunlight, outdoors, or in dust.
- In an environment where strong static electricity or electromagnetic waves exist.
- Using resolvent, water or water-soluble cleaner for flux cleaning agent after soldering.
- Using in the atmosphere where strays acid or alkaline.
- Using in the atmosphere where there are excessive vibration and shock.
- Using in the atmosphere where there are low pressure or decompression.Please arrange circuit design for preventing impulse or transitional voltage.
Application Guidelines (POSCAP)
Circuit design
Prohibited circuits
- High impedance voltage retention circuits
- Coupling circuit
- Time constant circuits
- Circuits greatly affected by leakage current
Contingency failure
The main causes of failure are thermal stresses cause by the soldering or thermal use environment, along with heat
stresses, electrical stresses or mechanical stresses. The most common failure mode is a short circuit.
- If POSCAP emit smoke, turn off the main power of the equipment.
- If the smoke comes into eyes, rinse immediately. If the smoke is inhaled, gargle immediately.
Reduction of failure stress
The time to reach the failure mode can be extended by using POSCAP with reduced environment temperature, ripple current and applied voltage.Failure rate
- In the case of the endurance which is 105 °C 2000 h. 0.5 %/1000 h (Environment temp. : 105 °C, Rated voltage or Category voltage applied)
- In the case of the endurance which is 85 °C 1000 h. 1.0 %/1000 h (Environment temp. : 85 °C, Rated voltage applied)
Operating temperature and ripple current
- Do not apply current that exceeds the allowable ripple current.
- The ESR values specified in the characteristics list are factory default values. ESR values may change (increase) beyond the specified values depending on the customer’s use conditions.
Mounting
The soldering conditions are to be within the range prescribed in this delivery specification.
Others
POSCAP’s Electrical characteristics are affected by temperature and frequency fluctuations. Design circuits after checking the amount of fluctuation.
Storage
It is necessary to set an environment to prevent a trouble at the time of soldering by the degradation of solder
Floor life | |||||||||||||||||
Level | Time | Conditions | |||||||||||||||
2a | 4 weeks | ≦ 30 ℃ / 60 %RH | |||||||||||||||
3 | 168 hours | ≦ 30 ℃ / 60 %RH | |||||||||||||||
5 | 48 hours | ≦ 30 ℃ / 60 %RH
|
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Panasonic TPF Series Conductive Capacitors User Manual