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quality capacitor Xunda RK6871VMF202RB designed for in electronic circuits of color televisions and computers factory
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quality capacitor Xunda RK6871VMF202RB designed for in electronic circuits of color televisions and computers factory
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Specifications
Lifetime:
2000hrs@105℃
Capacitance:
680uF
Height - Seated (Max):
20mm
Pin Spacing:
5mm
Voltage Rating:
35V
Diameter:
10mm
Tolerance:
±20%
Mfr. Part #:
RK6871VMF202RB
Package:
Through Hole,D10xL20mm
Key Attributes
Model Number: RK6871VMF202RB
Product Description

Product Overview

The RK series aluminum electrolytic capacitors from XUNDA are single-ended, reliable components suitable for electronic circuits in color televisions, computers, and communication equipment. They offer stable performance and are designed for direct insertion into mounting boards.

Product Attributes

  • Brand: XUNDA
  • Origin: Dongguan, China
  • Sleeve Color: Varies (refer to actual product)
  • Marking Color: White
  • Reference Standard: GB2693-88

Technical Specifications

Customer Part No.Capacitance (uF)Working Voltage (VDC)Size (mm)Tolerance (%)Leakage Current (uA)Max. Ripple Current (mA) @120Hz/105Impedance @100KHz ()Surge Voltage (SV)Remarks
C399560220166.3*112035.2213/20Sleeve to be based on actual product
C398978220256.3*122055.0248/32Sleeve to be based on actual product
C39955922002513*20205501176/32Sleeve to be based on actual product
C3989974703510*1620164.5547/44Sleeve to be based on actual product
C39900310505*11205.054/63Sleeve to be based on actual product
C3995586805013*2020340923/63Sleeve to be based on actual product
C39955711005*11203.016/125Sleeve to be based on actual product
C399027101006.3*112010.061/125Sleeve to be based on actual product
C3990422240013*2020304.0163/450Sleeve to be based on actual product

General Specifications

ParameterSpecification
Capacitance Range0.1~22000F
Capacitance Tolerance20% (at 120Hz10%, 255)
Rated Working Voltage (WVDC)6.3V~450V
Operating Temperature Range-40 to +105 (WV100V); -25 to +105 (WV>100V)
Dissipation Factor (TAN)Refer to datasheet for values based on voltage and capacitance
Leakage Current (I)Refer to datasheet for formulas based on voltage and capacitance
Ripple Current Coefficient (Temperature)Refer to datasheet for temperature coefficients
Ripple Current Coefficient (Frequency)Refer to datasheet for frequency coefficients
Surge Voltage (SV)Refer to datasheet for values based on voltage

Testing and Reliability

Test ItemTest ConditionRequirement
Appearance InspectionVisualClear marking, conforms to 2.3.8 requirements
Dimension CheckMeasuring toolsConforms to 2.2 requirements
Capacitance120Hz(10%), 255Conforms to 2.3.2 requirements
Dissipation Factor120Hz(10%), 255Conforms to 2.3.5 requirements
Leakage Current255, rated voltage for 2 minConforms to 2.3.6 requirements
Solderability2655, 51S immersion, 51mm depth95% tinned area, bright and smooth leads
Resistance to Soldering Heat1.5-2.0mm from lead root, 350 solder bath for 3 secC/C10%, TAN200% of 2.3.5 value, I2.3.6 value (rated voltage test), no electrolyte leakage or deformation
Lead StrengthApply specified pull force parallel to lead for 10 secNo lead breakage or looseness
Low Temperature CharacteristicsImpedance measured at 20 (Z1) and -40 (Z2)Z2/Z1 ratio within specified limits (see datasheet)
High Temperature Characteristics+105 for 10 min, rated voltage for 1 minI5 times of 2.3.6 value
High Temperature EnduranceRated voltage, +105 for 2000HRS, 16HRS recoveryC/C20%, TAN200% of 2.3.5 value, I2.3.6 value (rated voltage test), no electrolyte leakage or deformation
High Temperature Storage+105 for 1000HRS, 16HRS recoveryC/C20%, TAN200% of 2.3.5 value, I2 times of 2.3.6 value (rated voltage test), no electrolyte leakage or deformation
Surge Voltage Test1000 cycles, +15~35, specified charging/discharging timeC/C20%, TAN2.3.5 value, I2.3.6 value (rated voltage test), no electrolyte leakage or deformation
Solvent ResistanceDichlorodifluoromethane, alcohol, trichlorodifluoroethane (5 min exposure, 15 min recovery)Clear marking, no sleeve shrinkage

2304140030_Xunda-RK6871VMF202RB_C398998.pdf

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