ZCC108S0YL60RR

ZCC108S0YL60RR

  • Description:Minimum discharge voltage 2.5V
  • Series:ZCC, Lithium Carbon Capacitor
  • Mfr:ANGA POW
  • Package:Bulk

SKU:1557d4dea81c Category: Brand:

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Product Detailed Parameters

  • Description:Minimum discharge voltage 2.5V
  • Series:ZCC, Lithium Carbon Capacitor
  • Mfr:ANGA POW
  • Package:Bulk
  • Capacitance:1000 F
  • Tolerance:-20%, +50%
  • Voltage - Rated:3.8 V
  • ESR (Equivalent Series Resistance):20mOhm
  • Lifetime @ Temp.:1000 Hrs @ 65°C
  • Grade:-
  • Qualification:-
  • Termination:-
  • Mounting Type:Through Hole
  • Package / Case:Radial, Can
  • Lead Spacing:0.295" (7.50mm)
  • Size / Dimension:0.709" Dia (18.00mm)
  • Height - Seated (Max):2.362" (60.00mm)
  • Operating Temperature:-30°C ~ 65°C

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ZCC108S0YL60RR

Buying Guide
Summary

ANGA POW ZCC108S0YL60RR is used in Electric Double Layer Capacitors (EDLC), Supercapacitors category where derating, temperature behavior, and mechanical fit affect long-term stability. Key specs include Description (Minimum discharge voltage 2.5V), Capacitance (1000 F), Rated voltage (3.8 V), Tolerance (-20%, +50%), and Temperature (-30°C ~ 65°C).

Selection Notes
  • For ZCC108S0YL60RR, verify the capacitance value (1000 F) under DC bias and temperature as applicable.
  • Validate the operating temperature range (-30°C ~ 65°C) for your environment and margin.
  • Confirm Size / Dimension (0.709" Dia (18.00mm)) and ensure it matches your integration requirements.
  • Ensure the package/case (Radial, Can) and land pattern match your PCB layout before procurement.
Alternates & Substitutions
  • In Electric Double Layer Capacitors (EDLC), Supercapacitors designs, define acceptance criteria up front so alternates can be qualified and repeated in production.
  • Confirm startup states and fault behavior are equivalent so the alternate does not change system behavior during brownouts or resets.
  • Keep the assembly and footprint constraints consistent (package/case Radial, Can, mounting Through Hole, packaging Bulk) to avoid a late PCB change.
  • For capacitor substitutions, match capacitance 1000 F, rated voltage 3.8 V, tolerance -20%, +50% and confirm DC-bias/temperature effects if applicable.
FAQ

How do I avoid common capacitor selection mistakes with ZCC108S0YL60RR?
Check DC bias/temperature effects, ripple heating, and mechanical constraints, then validate under worst-case load and temperature.

What is the rated voltage of ZCC108S0YL60RR?
3.8 V

Can you confirm the Tolerance for ZCC108S0YL60RR?
-20%, +50%

Which Height - Seated (Max) is specified for ZCC108S0YL60RR?
2.362" (60.00mm)

Application Scenarios

For ANGA POW ZCC108S0YL60RR used in Electric Double Layer Capacitors (EDLC), Supercapacitors designs, the shortlist is often driven by predictable margins and a straightforward validation plan. In real deployments, their placement and derating strategy often decide whether a design passes EMC and survives long-term thermal exposure. Correct capacitor choices improve stability, reduce noise, and increase product lifetime. That context is why these parts show up in the following real-world scenarios. Across industrial power supplies, lifetime and ripple performance determine reliability in hot enclosures. Across automotive electronics, capacitors support EMC filtering and transient resilience under vibration and thermal cycling. Within compute and networking boards, low-ESR decoupling maintains rail stability during fast load steps on CPUs and PHYs. In motor drives, capacitor selection reduces ripple and extends lifetime under repetitive current stress. In real deployments, for systems shipped at volume, predictable behavior is what keeps yield and field performance stable.

Compatibility Advice
  • For Electric Double Layer Capacitors (EDLC), Supercapacitors compatibility, confirm tolerance, derating, ESR or impedance versus frequency, and thermal rise on the assembled PCB. This keeps acceptance criteria measurable and repeatable.
Project Fit
  • Strongest fit when you can test and document ANGA POW ZCC108S0YL60RR for Electric Double Layer Capacitors (EDLC), Supercapacitors integration with the real wiring and cabling, especially if you can validate RF matching, shielding, and coexistence inside the final enclosure.
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