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quality Conductive Polymer Aluminum Electrolytic Capacitor AISHI SPZ1AM681E11O00RAXXX for in Display Cards and System Boards factory
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quality Conductive Polymer Aluminum Electrolytic Capacitor AISHI SPZ1AM681E11O00RAXXX for in Display Cards and System Boards factory
>
Specifications
Voltage Rating:
10V
Capacitance:
680uF
Lifetime:
2000hrs@105℃
Tolerance:
±20%
Pin Spacing:
-
Equivalent Series Resistance(ESR):
-
Height - Seated (Max):
11mm
Operating Temperature:
-55℃~+105℃
Ripple Current:
-
Diameter:
6.3mm
Mfr. Part #:
SPZ1AM681E11O00RAXXX
Model Number:
SPZ1AM681E11O00RAXXX
Package:
Through Hole,D6.3xL11mm
Key Attributes
Product Description

Aishii PZ Series Conductive Polymer Aluminum Electrolytic Capacitors

Product Overview
The Aishii PZ series offers conductive polymer aluminum electrolytic capacitors designed for applications requiring high reliability and performance. These capacitors feature low ESR and are compliant with RoHS and lead-free standards. They are recommended for use in system boards, display cards, small chargers, and intelligent TVs, providing stable and efficient power solutions.

Product Attributes

  • Brand: Aishii
  • Series: PZ Series
  • Type: Conductive Polymer Aluminum Electrolytic Capacitor
  • Compliance: RoHS Compliant, Lead-free
  • Material: Aluminum Electrolytic with Conductive Polymer

Technical Specifications

Item Specification Details
Category Code E Electrolytic Capacitor
Series Code PZ PZ Series
Endurance +105C 2,000 hours
Key Feature Low ESR
Recommended Applications System Board, Display Card, Small Charger, Intelligent TV
Temperature Range -55C to +105C
Rated Working Voltage Range 6.3Vdc to 100Vdc
Nominal Capacitance Range 4.7F to 5600F
Capacitance Tolerance 20% (M)
DC Leakage Current 0.2CV or 500A, whichever is greater (at 20C, 120Hz) (Where I: Leakage current (A), C: Nominal capacitance (F), V: Rated voltage (V))
Dissipation Factor (tan) See table for values (at 20C, 120Hz) Max values: 0.08 (6.3V), 0.12 (10V), 0.15 (16V)
ESR See table for values (100kHz-300kHz, 20C) Max values vary by rating
Impedance Ratio at 100kHz Z(+105C)/Z(+20C) 1.25
Impedance Ratio at 100kHz Z(-55C)/Z(+20C) 1.25
Endurance Test Requirements Capacitance Change: 20% of initial value
D.F. (tan): 150% of initial specified value
ESR: 150% of initial specified value
Leakage Current: Initial specified value
After 2,000 hours at 105C with rated voltage applied
Humidity Test Requirements Meets Endurance characteristics After 2,000 hours at 60C, 90%-95% RH without voltage
Surge Test Requirements Capacitance Change: 20% of initial value
D.F. (tan): 150% of initial specified value
ESR: 150% of initial specified value
Leakage Current: Initial specified value
After 1,000 cycles of charge/discharge
Standard Ratings Table VDC (V) Cap (F) Size (DxL mm) ESR (m, 20C, 100kHz) (max.) Rated ripple current (mArms/105C, 100kHz) Leakage Current (A) (max.)
6.3 (7.2) 220, 270, 330, 390, 470, 560, 680 6.3x7.7 to 10x12 14 to 40 130 to 410 0.2 to 0.5
7.5 (8.6) 470, 560, 680, 820 8x9 to 10x12 18 to 25 210 to 310 0.5 to 0.5
10 (11.5) 470, 680, 820, 1000 8x9 to 10x12 18 to 25 210 to 310 0.5 to 0.6
12 (13.8) 470, 680, 820, 1000 8x9 to 10x12 18 to 25 210 to 310 0.5 to 0.6
16 (18.4) 220, 330, 470, 680, 820, 1000, 1200, 1500, 1800, 2200 6.3x7.7 to 12.5x20 14 to 60 130 to 500 0.2 to 0.8
20 (23) 1000, 1200, 1500, 1800, 2200, 2700, 3300, 3900, 4700, 5600 10x12 to 18x25 25 to 100 310 to 700 0.6 to 1.1
25 (29) 470, 680, 820, 1000, 1200, 1500, 1800, 2200, 2700, 3300 8x9 to 18x25 18 to 100 210 to 700 0.5 to 0.7
35 (41) 220, 330, 470, 680, 820, 1000, 1200, 1500, 1800, 2200 6.3x7.7 to 18x25 14 to 100 130 to 700 0.2 to 0.5
50 (58) 100, 150, 220, 330, 470, 680, 820, 1000, 1200, 1500 6.3x7.7 to 18x25 14 to 100 130 to 700 0.2 to 0.3
63 (73) 47, 68, 100, 150, 220, 330, 470, 680, 820, 1000 4x5.7 to 18x25 10 to 100 70 to 700 0.1 to 0.2
80 (92) 22, 33, 47, 68, 100, 150, 220, 330, 470, 680 4x5.7 to 18x25 10 to 100 70 to 700 0.2 to 0.2
100 (115) 10, 15, 22, 33, 47, 68, 100, 150, 220, 330 4x5.7 to 18x25 10 to 100 70 to 700 0.1 to 0.3

Part Numbering System

Format: [Category Code][Series Code][Size Code][Capacitance Code][Capacitance Tolerance Code][Voltage Code][Terminal Code][Sleeve Marking Code]

Position Description Example Codes
Category Code E (Electrolytic Capacitor)
Series Code PZ
Size Code See table for codes (e.g., D, E, F, G, H, J, K, L, M, N, P, Q, R, S, T, U, V, W, X, Y, Z)
Capacitance Code See table for codes (e.g., 0.10R, 0.22R, 0.33R, 0.47R, 0.68R, 1.0, 2.2, 3.3, 4.7, 6.8, 10, 22, 33, 47, 68, 100, 220, 330, 470, 680, 1000, 2200, 3300, 4700, 6800, 10000)
Capacitance Tolerance Code E (20%), M (20%), Q (-10%~+30%), V (-5%~+20%), G (-10%~-20%), B (-5%~+5%), D (-15%~+5%), N (-10%~+20%)
Voltage Code See table for codes (e.g., 0, D, G, J, C, E, V, A, T, C, E, G, T, W, H, J, K)
Terminal Code See table for codes (e.g., 0, 1, 2, 3, 4, 5, 6, A, B, C, D, F, J, K, L, M, N, P, R, T, Z)
Sleeve Marking Code C (PVC), T (PET)

Lead Forming & Taping Specifications

Various lead forming and taping options are available, including bulk packing, taping (SMD type), lead cut, lead forming & cut, kink & cut, and snap-in type. Detailed dimensions and specifications for different lead wire diameters, pitches, and tape widths are provided in the source document.

Soldering Recommendations

Flow Soldering (Radial Lead Type):

  • Preheating: 13020C, 30-90 sec.
  • Cooling: <1 sec.
  • Soldering Temperature: 260C max.
  • Soldering Time: <1 sec.

Reflow Soldering (Polymer SMD Type):

  • Recommended Reflow Profile: Specific temperature and time parameters (T1, T2, T3, t1, t2, t3) are detailed in the source document.
  • Preheating: 150C to 180C, within 90 sec.

Reflow Soldering (Liquid SMD Type):

  • Case Size: 6.3-10mm, 12.5-18mm
  • Preheat: 100C to 200C (max 180 sec for 6.3-10mm, max 150 sec for 12.5-18mm)
  • Peak Temperature (T_p): Specified values for different case sizes (e.g., 230C, 235C).
  • Duration over 200C (t): Specified maximum times (e.g., 90 sec, 60 sec).
  • Duration over T_c (t_c): Specified maximum times (e.g., 40 sec, 30 sec).

2410121342_AISHI-SPZ1AM681E11O00RAXXX_C2688254.pdf
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