CAP-XX Supercapacitors G-series
Product overview
CAP-XX Supercapacitors G-series operate at 2.5V nom / 2.75V peak for a single cell and 5.0V nom / 5.5V peak for dual cell modules (2 cells connected in series). The operating temperature range for the G-series is -40°C to +70°C & Tmax = 70°C. CAP-XX Supercapacitors G-series include product references starting with CAP-XX GA, CAP-XX GS and CAP-XX GW.
CAP-XX Supercapacitors G-series Key Features
- Product references starting with CAP-XX GA, CAP-XX GS and CAP-XX GW.
- Ultra-thin prismatic cells and modules: Ideal for use in space-constrained devices.
- Exceptional power density (up to 158 kW/litre), with best-in-class ESR (from 10 mΩ).
- High energy density (up to 2.2 Wh/litre), offering high Capacitance in small cells.
- True, continuous operating voltage of up to 2.75V/cell (H series; 2.9V peak).
- High temperature rating (H series; 85°C maximum).
- Excellent low temperature performance (G series; ~2x nominal ESR at -30°C).
- Very low leakage current (<1 µA) and ultra-low minimum charge current (<20 µA).
- Virtually unlimited charge-discharge cycle life.
- Excellent frequency response (CEFFECTIVE).
- RoHS and REACH compliant, Lead-free, Halogen-free and Conflict metal-free.
- UL-810 and ISO 9001-2008 certified.
Typical Applications
- Peak power for pulsed loads
✓ Isolate the source from fluctuations in the load (input smoothing).
✓ Extend battery life and run-time, especially when “old or cold”.
✓ Enable the use of cheaper, smaller, lower power batteries. - Ride-through power for mission-critical applications
✓ Isolate the load from fluctuations in the source (output smoothing).
✓ Remove the need for back-up batteries and impact-resistant connectors.
✓ Provide a low maintenance, uninterruptable on-board power supply. - Energy storage for energy harvesters and quick charge power supplies
✓ Environmentally friendly, low maintenance alternative to rechargeable batteries.
✓ Efficient charging, with minimal losses, from variable / low power sources.
✓ Ultra-quick charging via cable, cradle or induction to maximize operating time.
Product Range
Cells or Modules:
- Single cells, for ultra-thin designs & primary batteries/harvesters; or
- Dual cell modules, for rechargeable batteries & USB power supplies.
Series:
- CAP-XX Supercapacitors G-series devices operate at 2.5V/cell (2.75V peak) and have an operating temperature range of -40°C to +70°C.
- CAP-XX Supercapacitors H-series devices operate at 2.75V/cell (2.9V peak) and have a maximum operating temperature of +85°C.
Packages:
- “S” = 39.0mm x 17.0mm
- “W” = 28.5mm x 17.0mm
- “A” = 20.0mm x 18.0mm
CAP-XX Supercapacitors G-series Datasheets
GA109 & GA209 Datasheet v4.2 (Download PDF)
GA130 & GA230 Datasheet v4.1 (Download PDF)
GW101 & GW201 Datasheet v4.1 (Download PDF)
GW102 & GW202 Datasheet v4.1 (Download PDF)
GW103 & GW203 Datasheet v4.1 (Download PDF)
GW109 & GW209 Datasheet v4.1 (Download PDF)
GS103 & GS203 Datasheet v4.1 (Download PDF)
GS106 & GS206 Datasheet v4.2 (Download PDF)
GS108 & GS208 Datasheet v4.1 (Download PDF)
GS130 & GS230 Datasheet v4.2 (Download PDF)
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+44 (0)1744 762 929Technical Data
Dual Cell Modules (2 cells connected in series)
Voltage | Temperature | Product Name1 |
CAP2 (±20%)3 |
ESR2 (±20%)3 |
Body Size (mm) | Thickness4 (max) |
Minimum Order Quantity |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GZ215F | 75 mF | 150 mΩ | 20.0 x 15.0 | 2.5 mm | TBA |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GA209F | 90 mF | 85 mΩ | 20.0 x 18.0 | 2.0 mm | 2000 |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GA230F | 400 mF | 60 mΩ | 20.0 x 18.0 | 3.0 mm | 2000 |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GW209F | 160 mF | 45 mΩ | 28.5 x 17.0 | 2.0 mm | 300 |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GW201F | 400 mF | 45 mΩ | 28.5 x 17.0 | 2.5 mm | 300 |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GW203F | 520 mF | 36 mΩ | 28.5 x 17.0 | 3.0 mm | 2000 |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GS203F | 270 mF | 30 mΩ | 39.0 x 17.0 | 2.0 mm | 2000 |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GS206F | 680 mF | 30 mΩ | 39.0 x 17.0 | 2.5 mm | 2000 |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GS208F | 900 mF | 20 mΩ | 39.0 x 17.0 | 3.0 mm | 2000 |
5.0Vnominal 5.5Vpeak |
-40°C to +70°C Tmax = 70°C |
GS230F | 1200 mF | 20 mΩ | 39.0 x 17.0 | 3.5 mm | 200 |
Single Cell Devices
Voltage | Temperature | Product Name1 |
CAP2 (±20%)3 |
ESR2 (±20%)3 |
Body Size (mm) | Thickness4 (max) |
Minimum Order Quantity |
2.5Vnominal 2.75Vpeak- |
40°C to +70°C Tmax = 70°C |
GA109F | 180 mF | 40 mΩ | 20.0 x 18.0 | 1.0 mm | 3000 |
2.5Vnominal 2.75Vpeak- |
40°C to +70°C Tmax = 70°C |
GA130F | 800 mF | 30 mΩ | 20.0 x 18.0 | 1.7 mm | 3000 |
2.5Vnominal 2.75Vpeak- |
40°C to +70°C Tmax = 70°C |
GW109F | 320 mF | 22 mΩ | 28.5 x 17.0 | 1.0 mm | 3000 |
2.5Vnominal 2.75Vpeak- |
40°C to +70°C Tmax = 70°C |
GW103F | 1040 mF | 18 mΩ | 28.5 x 17.0 | 1.5 mm | 3000 |
2.5Vnominal 2.75Vpeak- |
40°C to +70°C Tmax = 70°C |
GS103F | 540 mF | 14 mΩ | 39.0 x 17.0 | 1.0 mm | 3000 |
2.5Vnominal 2.75Vpeak- |
40°C to +70°C Tmax = 70°C |
GS130F | 2400 mF | 10 mΩ | 39.0 x 17.0 | 1.7 mm | 3000 |
Name | Parameter | Condition | Minimum | Nominal | Maximum |
Leakage Current5 | IL | 23°C | - | 1μA/F (cell) | 2μA/F (cell) |
RMS Current | IRMS | 23°C | - | - | 4A - 8A |
Pulse Current6 | Ipeak | - | - | - | 30A |
ESR change with Temperature |
- | Min @ +70°C Max @ -40°C |
75% of Nominal | - | 200% of Nominal |
Notes:
1. Select products are available ex-stock (Standard products). The remainder are available to order.
2. Capacitance will decline and ESR will rise over time, at a rate which depends on temperature and voltage. Continuous operation at high temperature & voltage is not recommended. See Section 6 for more information on ageing and endurance.
3. DC capacitance and ESR tolerance are measured at 23°C.
4. Thickness is measured between two parallel plates with 140gm force applied.
5. Leakage current is measured after charging to nominal voltage for 120hrs at 23°C.
6. Single pulse, non-repetitive current (positive & negative terminal short-circuited).