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quality Conductive Polymer Electrolyte Aluminum Capacitor AISHI SVZ1CM101E06E00RERR3 with Enhanced Load Life factory
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quality Conductive Polymer Electrolyte Aluminum Capacitor AISHI SVZ1CM101E06E00RERR3 with Enhanced Load Life factory
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Specifications
Voltage Rating:
16V
Capacitance:
100uF
Lifetime:
2000hrs@105℃
Tolerance:
±20%
Height - Seated (Max):
6.5mm
Equivalent Series Resistance(ESR):
30mΩ
Ripple Current:
2.4A@100kHz
Diameter:
6.3mm
Operating Temperature:
-55℃~+105℃
Mfr. Part #:
SVZ1CM101E06E00RERR3
Model Number:
SVZ1CM101E06E00RERR3
Package:
SMD,D6.3xL6mm
Key Attributes
Product Description

Product Overview

The Aishi AISHI P/N SVZ1CM101E06E00RERR3 is a VZ series Aluminum Solid Electrolytic Capacitor with Conductive Polymer Electrolyte. Designed for stable operation at rated voltage within an operating temperature range of -55C to 105C, these capacitors are suitable for various industrial applications. Key features include low impedance at high and low temperatures, high reliability through rigorous testing, and a construction utilizing conductive polymer as the electrolyte. They are designed for applications requiring stable electrical performance and long-term endurance.

Product Attributes

  • Brand: AISHI
  • Series: VZ
  • Type: Aluminum Solid Electrolytic Capacitors with Conductive Polymer Electrolyte
  • Origin: Made in China
  • Marking Ink Color: Red (for specific models)

Technical Specifications

AISHI P/N Rated Work Voltage (V.DC) Nominal Capacitance 120Hz, 20 (F) Capacitance Tolerance (%) Operating Temp () Nominal Case Size D*L (mm) ESR 100KHz, 20 (mmax) Max Leakage Current 20 (A max) Dissipation Factor 120Hz, 20 (%max) Ripple Current 100KHz, 105 (mA.rms) Load Life (Hours)
SVZ1CM101E06E00RERR3 6 100 -20+20 105 6.3*6 24 500 12 2490 2000

General Specifications

  • Operating Temperature Range: -55 to 105
  • Standard Measurement Conditions: Ambient temperature 15 to 35, Air pressure 86kpa to 106kpa
  • Strict Measurement Conditions: Ambient temperature 202, Air pressure 86kpa to 106kpa

Electrical Characteristics Summary

  • Impedance at High/Low Temperature: Z (-55) / Z (+20) 1.25; Z (105) / Z (+20) 1.25
  • Capacitance Measurement: 120Hz, 0.5Vrms or less, Series equivalent circuit
  • ESR Measurement: 100KHz, 20 2
  • Leakage Current Measurement: DC rated working voltage for 2 minutes at 20 with a 1000 resistor

Endurance Performance Summary

  • Load Life Test: 2000 hours at 1052, rated voltage. Capacitance change within 20%, tan 150% of initial, ESR 150% of initial, Leakage current 150% of (0.2CV or 500A, whichever is larger).
  • Resistance to Vibration: Complies with JIS C 5102 8.2 and JIS C 5025. Frequency 10-55Hz, Amplitude 0.75mm, 2 hours/axis (X, Y, Z). Capacitance change within 5% of initial.
  • Solder Ability: Temperature 235 5 C, Duration 2 0.5 seconds. At least 95% surface coverage with new solder.
  • Resistance to Soldering Heat: Solder bath: 260 5C for 101 seconds. Soldering iron: 400 10 C for 3+1/-0 seconds. Capacitance change within 5%, tan 130% of initial, ESR 130% of initial, Leakage current 150% of (0.2CV or 500A, whichever is larger).
  • Resistance to Damp Heat (Steady State): 602, 90% ~ 95% RH for 1000 hours, no load. Capacitance change within 20%, tan 150% of initial, ESR 150% of initial, Leakage current 150% of (0.2CV or 500A, whichever is larger).
  • Rapid Change of Temperature: 10 cycles, no load. Capacitance change within 10%, tan initial specified value, Leakage current 150% of (0.2CV or 500A, whichever is larger).
  • Surge Voltage: 1000 cycles of rated surge voltage applied for 30s and discharged for 5min30s. Leakage current 150% of (0.2CV or 500A, whichever is larger), Capacitance change within 20%, tan 150% of initial, ESR 150% of initial.
  • High Temperature Storage: 1000 hours at 1052. Capacitance change within 10%, tan 150% of initial, ESR 150% of initial, Leakage current 150% of (0.2CV or 500A, whichever is larger).

Part Number System (Example: SVZ1CM101E06E00RERR3)

  • Category Code: S (Solid Capacitor)
  • Series Code: VZ
  • Voltage Code: 1C (16V)
  • Capacitance Tolerance: M (-20% ~ +20%)
  • Capacitance Code: 101 (100F)
  • Size Code: E06 (6.3*6mm)
  • Terminal Code: E00 (SMD&Bulk)
  • Marking Code: R (Red)
  • Special Code: EX24 (ESR max is 24m)

Construction Details

  • Lead wires: Solid tinned copper weld steel wire
  • Al-boss: High pure aluminum
  • Electrolyte: Conductive polymer
  • Anode Foil: High pure aluminum
  • Cathode Foil: Carbon foil, High purity aluminum
  • Case: Coating AL-case (Aluminum+coating)

Dimensions

  • Size Code E06: D 6.3mm, H 6mm
  • Outer Dimensions (E06): D' 6.3mm, L' 6mm, A 6.6mm, B 6.6mm, C 7.2mm, P 1.9mm, W 0.650.15mm
  • Soldering Pad Dimensions (6.3): a 2.1mm, b 3.5mm, c 1.6mm

Marking

  • Format: Year Code, Week Code, Series (VZ), Rated Capacitance (100), Rated Voltage (16)
  • Ink Color: Red

Operating Precautions

  • Polarity: Do not reverse polarity.
  • Prohibited Circuits: High impedance, coupling, time constant, series connection for higher voltage, circuits sensitive to leakage current, frequent ON-OFF circuits (>10000 times/day).
  • Over voltage: Do not exceed rated voltage.
  • Rapid Charge/Discharge: Unsuitable if instantaneous current exceeds 10A or 10x ripple current. Protection circuit recommended.
  • Soldering: Adhere to specified conditions. Avoid reusing energized capacitors. Leakage current may increase after 1 year storage; pre-condition if necessary. Reflow soldering recommended for SMD types.
  • Handling: Do not tilt, bend, twist, or move by grasping the capacitor. Avoid stacking PCBs where capacitors touch other components.
  • Storage: Temperature 5-35 (or 35-85 for <3 months), RH 75%, no direct sunlight. Store in original packaging. Avoid water, brine, oil, condensation, toxic gases, UV, or radioactive rays. Shelf life: 1 year before unsealing, 1 month after unsealing. Products stored over 3 years should be discarded.
  • Cleaning: Refer to manufacturer's recommendations for HCFC and other solvents.
  • Circuit Design Notes: Operate within specified ranges. High temperature or overload ripple current reduces life. Leakage current can self-heal with applied DC voltage. Applied voltage (DC+AC peak) should be less than rated voltage. Failure mode is typically short circuit.

2510291127_AISHI-SVZ1CM101E06E00RERR3_C7325659.pdf

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