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quality 33uF 400V Plug-in Aluminum Electrolytic Capacitor HRK CD110224M1H0511VFL for Industrial Electronics factory
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quality 33uF 400V Plug-in Aluminum Electrolytic Capacitor HRK CD110224M1H0511VFL for Industrial Electronics factory
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Specifications
Operating Temperature:
-40℃~+105℃
Capacitance:
220nF
Height - Seated (Max):
11mm
Voltage Rating:
50V
Diameter:
5mm
Mfr. Part #:
CD110224M1H0511VFL
Package:
Through Hole,D5xL11mm
Key Attributes
Model Number: CD110224M1H0511VFL
Product Description

Product Overview

The CD110 series of plug-in aluminum electrolytic capacitors from Hongruikai Electronics Technology Co., Ltd. are designed for general-purpose applications. These capacitors feature a black sleeve with white marking, a rated capacitance of 33uF, and a rated voltage of 400V. They operate reliably within a temperature range of -40 to +105 and are suitable for applications requiring stable performance and long-term reliability. The product adheres to industry standards and is manufactured with quality materials for consistent performance.

Product Attributes

  • Brand: Hongruikai ()
  • Series: CD110
  • Type: Plug-in Aluminum Electrolytic Capacitor
  • Sleeve Color: BLACK ()
  • Marking Color: White ()
  • Origin: Shenzhen, China
  • Environmental Compliance: RoHS, REACH SVHC, 2006/22/EC (PFOA/PFOS), 2005/84/EC (16P), ZEK 01.2-08 (PAHs), Sony SS-00259 (18th Edition)

Technical Specifications

Hongruikai P/N Series Rated Capacitance (uF) Rated Voltage (V) Capacitance Tolerance (%) Dissipation Factor (max, %) Leakage Current (uA, max) Surge Voltage (V) Equivalent Impedance (, 20, 100KHz) Rated Ripple Current (mA rms) (105, 100KHz) Durability (Hrs, at 105) Diameter (mm) Height (mm) Lead Diameter (mm)
CD110 CD110 33 400 -20~+20 24 436 450 190 2,000 13 17 0.60

Key Features & Performance

Item Test Condition/Method Judgment Standard
Capacitance (CAP) Test Circuit: Series Equivalent Circuit, Test Frequency: 120Hz, Test Voltage: Rated Voltage Within the error range specified in Table-1
Dissipation Factor (DF) Less than or equal to the dissipation factor value in Table-1
Leakage Current (LC) Apply rated working voltage across the capacitor with a 100010 series resistor. Measure leakage current after 2 minutes. Less than or equal to the leakage current value in Table-1
Surge Voltage At 15~35, apply surge voltage through a protection resistor (10050)/CR (K). 1000 cycles of 305s charge and 5.50.5s discharge. Capacitance change rate: within 15% of initial value. Dissipation factor: not greater than specified value. Leakage current: not greater than specified value. Appearance: no visible abnormalities.
Temperature Characteristics Tests at 255, -253, -403, +1053 Impedance ratio (Stage 2, 3 vs Stage 1): not exceeding specified values. Capacitance change rate (vs Stage 1): not exceeding 25%. Dissipation factor: not exceeding 5x specified value. Leakage current: not exceeding specified value.
Lead Tensile Strength Apply specified tensile force to leads for 101 seconds. Refer to table for lead diameter and corresponding tensile strength (N/{kgf}).
Lead Bending Strength Apply specified bending force to leads. Refer to table for lead diameter and corresponding bending strength (N/{kgf}).
Vibration Test 10~55Hz, 1.5mm amplitude, 2 hours per direction for 3 directions (total 6 hours). Capacitance test: stable. Capacitance change: within 5% of initial value. Appearance: no defects.
Solderability Dip leads in rosin solution, then in solder at 2455. Approx. 90% of immersed lead surface should be covered with new tin.
Resistance to Soldering Heat Dip leads in solder at 2605 (101s) or 35010 (3~4s). Capacitance change rate: within 10% of initial value. Dissipation factor: not greater than specified value. Leakage current: not greater than specified value. Appearance: no significant abnormalities.
Stable Damp Heat 405, 90~95% RH for 2408 hours. Capacitance change rate: within 20% of initial value. Dissipation factor: not exceeding 1.2x specified value. Leakage current: not greater than specified value. Appearance: no significant abnormalities.
Rapid Temperature Change 5 cycles of temperature shock: +25 (3min) -40 (30min) +25 (3min) +105 (30min) +25 (3min). Capacitance change rate: within 10% of initial value. Dissipation factor: not greater than specified value. Leakage current: not greater than specified value. Appearance: no significant abnormalities.
Endurance Rated voltage and ripple current applied at maximum temperature for rated life. Capacitance change rate: within 20% of initial value. Dissipation factor: not exceeding 2x specified value. Leakage current: not greater than specified value. Appearance: no significant abnormalities.
High Temperature Storage 1052 without voltage for 1000+48/-0 hours. Capacitance change rate: within 20% of initial value. Dissipation factor: not exceeding 2x specified value. Leakage current: not greater than specified value. Appearance: no significant abnormalities.
Anti-explosion AC or DC voltage applied. Safety vent should open without flame. If vent does not open after 30 minutes, performance is considered satisfactory.

Usage Precautions

  • Electrolytic capacitors are polarized; ensure correct polarity. Reverse connection can cause short circuits or damage. Use non-polarized capacitors if polarity is uncertain.
  • Do not apply reverse voltage or DC voltage exceeding the rated voltage. Exceeding rated voltage significantly increases leakage current and can cause damage. Use at rated voltage for optimal lifespan. Surge voltage is the maximum voltage the capacitor can withstand for short periods.
  • Ripple current should be below the rated value. Exceeding the rated ripple current can cause overheating, capacitance decrease, and reduced lifespan. The sum of the peak ripple voltage and DC voltage should not exceed the rated working voltage.
  • Operate within the rated temperature range. Exceeding the upper limit can drastically shorten lifespan or activate the safety vent. Operating at room temperature ensures a longer lifespan. For every 10 decrease in ambient temperature, lifespan doubles.
  • Long-term storage can increase leakage current, especially at higher temperatures. Store in a suitable environment. Applying voltage will reduce leakage current. If high leakage current affects the circuit, pre-charge before use.
  • Not suitable for circuits with frequent charge/discharge cycles. Capacitance may decrease due to negative electrode oxidation, or damage may occur from heat generated during charge/discharge.
  • Improper installation or stress on leads can damage internal structure, leading to high leakage current or leakage. Ensure good soldering, correct PCB hole spacing, do not bend leads excessively, and avoid bending or twisting the capacitor body during soldering.
  • During tin dipping or soldering, the sleeve may crack or shrink due to excessive time or temperature.
  • Do not clean with halogenated organic solvents. If cleaning is necessary, use a cleaner that guarantees capacitor quality. After cleaning, do not store in the cleaning solution or sealed containers. Dry with hot air (not exceeding the capacitor's upper temperature limit) for at least 10 minutes.
  • Do not use fixing agents or coatings containing halogenated organic compounds. Avoid completely sealing the capacitor's sealing area with fixing or coating agents.
  • Recommended storage conditions: <35, <75% RH, away from direct sunlight. Shelf life is 12 months. If stored beyond 12 months, check electrical characteristics and solderability.
  • Dispose of capacitors according to local industrial waste regulations.
  • Refer to EIAJ RCR-2367B for more details.

Environmental Statement

Hongruikai Electronics Technology Co., Ltd. guarantees that all products, packaging, and materials delivered directly or indirectly comply with the following environmental regulations:

  • RoHS Directive (no exemptions)
  • REACH Annex XIV (SVHC substances)
  • 2006/22/EC (PFOA/PFOS)
  • 2005/84/EC (16P)
  • ZEK 01.2-08 (Polycyclic Aromatic Hydrocarbons)
  • Sony SS-00259 (18th Edition)

2508181355_HRK-CD110224M1H0511VFL_C7499915.pdf

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