— IC芯片 | 连接器 | 传感器 | 被动器件 —
Eaton - Electronics Division XVM-259R2635-R is selected in Electric Double Layer Capacitors (EDLC), Supercapacitors category when ripple, lifetime, and operating corners must remain inside budget. Key specs include Description (CAP MODULE 6.25F 259.2V), Capacitance (6.25 F), Rated voltage (259.2 V), Tolerance (-5%, +20%), and Temperature (-40°C ~ 65°C).
How do I avoid common capacitor selection mistakes with XVM-259R2635-R?
Check DC bias/temperature effects, ripple heating, and mechanical constraints, then validate under worst-case load and temperature.
Can you confirm the ESR (Equivalent Series Resistance) for XVM-259R2635-R?
250mOhm
Which Lifetime @ Temp. is specified for XVM-259R2635-R?
1500 Hrs @ 65°C
What voltage rating does XVM-259R2635-R have?
259.2 V
Eaton - Electronics Division XVM-259R2635-R is a common choice in Electric Double Layer Capacitors (EDLC), Supercapacitors applications where the goal is to keep validation repeatable and avoid edge-case surprises during bring-up. Selection depends on ESR/ESL, ripple current, temperature behavior, dielectric stability, and lifetime under stress. Their placement and derating strategy often decide whether a design passes EMC and survives long-term thermal exposure. In automotive electronics, capacitor choices are derated and validated for vibration, ripple current, and thermal cycling. Within variable-frequency drives, capacitor choices influence EMI, ripple, and thermal stress that can shorten lifetime if margins are thin. Within motor-control power stages, capacitors are qualified for ripple current and heat rise because stress is repetitive and cumulative. In practice, a few targeted measurements can quickly show whether the design is margin-driven or tuning-driven. Within practice, predictable margins and repeatable validation are what keep field behavior consistent.