Eaton Electronics HS/HSL Hybrid Cylindrical Cell Supercapacitors

Eaton Electronics HS/HSL Hybrid Cylindrical Cell Supercapacitors offer high reliability, high power, low ESR, and ultra-high capacitance energy storage utilizing proprietary, environmentally friendly materials and processes. These maintenance-free supercapacitors can be applied as the sole energy storage or with batteries to optimize cost, lifespan, and run time. Eaton Electronics HS/HSL Hybrid Cylindrical Cell Supercapacitors are tailored for backup, pulse, and hybrid power systems applications.

Features

  • 3.8V operating voltage for high-energy
  • Up to 8 times energy density compared to standard supercapacitors
  • Low ESR for high power density
  • Low self-discharge is ideal for use with batteries
  • UL-recognized, lead-free, and RoHS-compliant

Applications

  • Industrial backup/ride-through
  • Backup for storage servers
  • Water and gas smart meters
  • IoT energy storage

Specifications

  • 30F to 220F capacitance range
  • 3.8V (2.2V minimum) working voltage rating
  • 4V surge voltage rating
  • -20% to +20% (+20°C) capacitance tolerance
  • 1000-hour lifetime
  • 0.15A to 1.1A continuous current range
  • Operating temperature ranges
    • -25°C to +60°C for HSL components
    • -15°C to +70°C for HS components
    • -15°C to +85°C (with linear voltage derating to 3.5V at +85°C) for the HS series extended operating temperature range

Videos

Dimensions (mm)

Mechanical Drawing - Eaton Electronics HS/HSL Hybrid Cylindrical Cell Supercapacitors
View Results ( 18 ) Page
Part Number Series Capacitance ESR Voltage Rating DC
HS0820-3R8256-R HS 25 F 650 mOhms 3.8 VDC
HSL1625-3R8227-R HSL 220 F 100 mOhms 3.8 VDC
HS1016-3R8306-R HS 30 F 550 mOhms 3.8 VDC
HS1040-3R8157-R HS 150 F 140 mOhms 3.8 VDC
HS0814-3R8106-R HS 10 F 1.5 Ohms 3.8 VDC
HSL0814-3R8106-R HSL 10 F 1.5 Ohms 3.8 VDC
HSL0820-3R8256-R HSL 25 F 70 mOhms 3.8 VDC
HS1020-3R8506-R HS 50 F 450 mOhms 3.8 VDC
HS1025-3R8706-R HS 70 F 250 mOhms 3.8 VDC
HS1225-3R8127-R HS 120 F 200 mOhms 3.8 VDC
Published: 2020-05-15 | Updated: 2024-10-10