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Specifications
Voltage Rating:
10V
Capacitance:
470uF
Lifetime:
-
Tolerance:
±20%
Pin Spacing:
-
Equivalent Series Resistance(ESR):
-
Height - Seated (Max):
8mm
Operating Temperature:
-55℃~+105℃
Ripple Current:
-
Diameter:
6.3mm
Mfr. Part #:
PCR1AEL471MF08LL25WP
Package:
Through Hole,D6.3xL8mm
Key Attributes
Model Number:
PCR1AEL471MF08LL25WP
Product Description
Product Overview
The HEL Series by Nantong Jianghai Capacitor Co., Ltd. features conductive polymer solid aluminum electrolytic capacitors. Designed for reliability and performance, these capacitors are suitable for a wide range of electronic applications.
Product Attributes
- Brand: Nantong Jianghai Capacitor Co., Ltd.
- Product Type: Aluminium electrolytic capacitors with conductive polymer solid electrolyte
- Series: HEL Series
- Origin: China
- Color (Marking): Red (default, adjustable per customer request)
Technical Specifications
| Item | Specification | Test Method |
| Rated voltage | 2.5~16 V | |
| Rated capacitance | 100~1200 F (20,120Hz) | |
| Tolerance on rated capacitance | 20 % | |
| Surge voltage | UR 1.15 | |
| Leakage current | See specifications list (20, After 2 minutes) | Series resistor: 1,000 Applied rated voltage 2 minutes. If this value is doubtful, performed the voltage treatment. Voltage treatment: The capacitor should be serially attached to a protective 1,000 resistor and d.c. voltage equivalent to the rated voltage should be applied for 2h at 105 2. Next, after letting the capacitor cool to room temperature, it should be discharged through a resistor of approximately 1 /V and then stored at standard atmospheric conditions for 12 h to 24 h. |
| Tangent of loss angle (tan) | See specifications list (20,120Hz) | Measuring temperature: 202 |
| Equivalent Series Resistance (ESR) | See specifications list (100 kHz) | Frequency: 100 kHz10% Measuring voltage: 0.5Vrms, Measuring temperature: 202 |
| Rated ripple current | See specifications list (105, 100 kHz) | |
| Category temperature range | -55 to 105 | |
| Lifespan | 105 , 2000 h | |
| Solderability | At least 95% of circumferential surface of the dipped portion of termination shall be covered with new solder. Flux: Rosin // Ethanol, About 25 wt% Sn-Ag-Cu solder. Temperature: 2453, Duration: 20.3 seconds | Solder bath method |
| Robustness of terminations (Tensile) | See table | With the body of a capacitor fixed, the load shall be applied to the lead wire termination in its draw out direction, gradually up to the specified value. |
| Robustness of terminations (Bending) | See table | Suspend a weight corresponding to bending strength, bend the body through 90and return it to the original position. Carry out these operations during 2 to 3 seconds and count it as one cycle. Carry out similar operations in the opposite direction and count it as two cycles. |
| Resistance to soldering heat (Capacitance change) | Within 5% of the initial value | A) Solder bath method Temperature: 2605C, Duration: 10 1 seconds B) Soldering iron method Temperature: 40010C Duration: 3+1/0 seconds Heat protector: t=1.6 mm glass-epoxy board. |
| Resistance to soldering heat (tan) | Within the value of item 2. | |
| Resistance to soldering heat (Leakage current) | Within the value of item 2. | |
| Vibration (Capacitance) | Shall not show drastic change compared to the initial capacitance when measured within 30 minutes. | Frequency: 10 to 55 Hz (1 minute interval / 10 55 10 Hz) Amplitude: 0.75 mm (Total excursion 1.5 mm) Direction: X, Y, Z (3 axes) Duration: 2 hours / axial (Total 6 hour) |
| Vibration (Capacitance change) | Within 5% of the initial value | |
| Vibration (tan) | Within the value of item 2. | |
| Vibration (Leakage current) | Within the value of item 2. | |
| Rapid change of temperature (Capacitance change) | Within 10% of the initial value | Applied voltage: Without load Cycle number: 5 cycles |
| Rapid change of temperature (tan) | Within the value of item 2. | |
| Rapid change of temperature (Leakage current) | Within the value of item 2. |
2201121230_Nantong-Jianghai-Capacitor-PCR1AEL471MF08LL25WP_C2918270.pdf
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