“Solar generator” usually just means a power station sold with solar panels. Any panel can work in principle, but only if it stays inside the station’s published input limits. Exceeding the voltage limit is the mistake that can damage equipment, so this guide starts there.
The four numbers that decide compatibility
- Maximum input voltage. The panels’ combined open-circuit voltage (Voc) must stay under the station’s limit, including on cold days (see below). Many portable stations top out at 60 V.
- Current limit (amps). Each input has a maximum current. Some brands list different limits at different voltages. Anker, for example, lists 8.2 A at 11–28 V and 14.5 A at 28–60 V for the C1000 Gen 2 (Anker user guide).
- Maximum solar watts. The station won’t charge faster than its rated solar input, even if you connect more panel watts.
- Connector. The station’s input plug (XT60i, DC8020/“DC 8mm,” or a cable to MC4) has to match your panel’s cable, sometimes through an adapter.
The published limits, side by side
| Model | Solar input (as published) | Max voltage | Current limit | Connector | Source |
|---|---|---|---|---|---|
| EcoFlow DELTA 3 Plus | 2 ports, 11-60V, 500W max each (1,000W total) | 60 V | Not listed on the spec page | Not listed on the spec page (check the user manual) | Official, 2026-10-07 |
| EcoFlow DELTA Pro 3 | High-PV 30-150V, 15A, 1,600W max + Low-PV 11-60V, 20A, 1,000W max (2,600W total) | 150 V | 15A (High-PV) / 20A (Low-PV) | Not listed on the spec page (check the user manual) | Official, 2026-10-07 |
| Jackery Explorer 1000 v2 | 2 DC 8mm ports: 12-16V 8A max; 16-60V 10.5A max, doubled to 21A / 400W max | 60 V | 10.5A per port (21A combined) | DC 8mm | Official, 2026-10-07 |
| Jackery Explorer 2000 v2 | 2 DC 8mm ports: 11-16V 8A max; 16-60V 12A, doubled to 21A / 400W max | 60 V | 12A per port (21A combined) | DC 8mm | Official, 2026-10-07 |
| Jackery HomePower 3600 Plus | 2 DC8020 ports: 16-60V, 12A each; 24A / 1,000W max combined | 60 V | 12A per port (24A combined) | DC8020 | Official, 2026-10-07 |
| BLUETTI AC180 | 500W max, Voc 12-60V DC, 10A | 60 V | 10A | Panels must have MC4 connectors (to BLUETTI's solar charging cable) | Official, 2026-10-07 |
| Anker SOLIX C1000 Gen 2 | XT60i input: 11-28V 8.2A; 28-60V 14.5A (600W max) | 60 V | 8.2A (11-28V) / 14.5A (28-60V) | XT60i | Official, 2026-10-07 |
| Anker SOLIX F3800 Plus | 2 solar inputs: 11-165V, 17A max, 1,600W max each (3,200W total) | 165 V | 17A per input | Not listed on the spec page (check the user manual) | Official, 2026-10-07 |
“Not listed on the spec page” means we couldn’t find that detail on the official product page on October 7, 2026. Check the user manual before buying adapters.
Series vs parallel, in one minute
- Series (positive to negative): voltages add, current stays the same as one panel. Two panels with a 22 V Voc in series give about 44 V.
- Parallel: currents add, voltage stays the same as one panel. This needs a parallel (Y) connector.
Series wiring is the usual way to reach a station’s efficient voltage range, and it’s the one that can push you over the voltage limit.
The cold-weather trap: Voc rises when it’s cold
A panel’s Voc is rated at 25°C (77°F). As cells get colder, voltage goes up. Panel makers publish this as a voltage temperature coefficient. Two real examples from Jackery’s own spec listings:
- Jackery SolarSaga 200W: Voc 22 V, voltage temperature coefficient about −0.27%/°C (Jackery Explorer 1000 v2 page, panel specs section)
- Jackery SolarSaga 100 Air: Voc 29.7 V, voltage temperature coefficient −0.25%/°C (Jackery Explorer 2000 v2 page, panel specs section)
Here’s the math for a 14°F (−10°C) morning, which is 35°C below the rating temperature:
| Setup | Voc at 25°C | Est. Voc at −10°C | vs a 60 V input |
|---|---|---|---|
| 2 × SolarSaga 200W in series | 44.0 V | ≈ 48.2 V (+9.5%) | Under the limit |
| 3 × SolarSaga 200W in series | 66.0 V | ≈ 72.2 V | Over, even at 25°C |
| 2 × SolarSaga 100 Air in series | 59.4 V | ≈ 64.6 V (+8.75%) | Over on a cold morning |
The last row is the sneaky one: it fits on paper at 25°C but exceeds a 60 V input on a cold, sunny winter morning, which is exactly when you’d be using solar during a winter outage. Each panel’s ±5% Voc tolerance adds more uncertainty. Leave voltage headroom, or wire such panels in parallel instead. Jackery’s HomePower 3600 Plus documentation also says to keep panel open-circuit voltage within the 16–60 V input range and recommends Jackery panels (Jackery FAQ).
Current and wattage: what happens above the limit
- Wattage above the cap: extra panel watts won’t raise peak charging above the station’s rated solar input. Some people over-panel slightly so they get closer to the cap in weaker light. That’s only reasonable if voltage and current stay within the manual’s limits.
- Current above the cap: stay within the published current unless the manual explicitly allows higher-current panels. BLUETTI, for example, lists 10 A for the AC180 and requires MC4-equipped panels with a total Voc of 12–60 V (BLUETTI AC180).
- Anker’s guidance for the C1000 Gen 2: for the full 600 W, use 6 × 100 W, 3 × 200 W, or 400 W + 200 W panels, and keep input voltage at or below 60 V when connecting panels in parallel (Anker C1000 Gen 2 page, user guide).
Bigger stations accept much higher voltage
Home-backup-class units often add a high-voltage input, which lets you run longer series strings:
- EcoFlow DELTA Pro 3: High-PV input 30–150 V, 15 A, 1,600 W max, plus a Low-PV input of 11–60 V, 20 A, 1,000 W max, for 2,600 W total (EcoFlow).
- Anker SOLIX F3800 Plus: two inputs at 11–165 V, 17 A max, 1,600 W each, for 3,200 W total (Anker).
The cold-weather rule still applies, just with a higher ceiling.
How long does solar charging take?
Manufacturers publish best-case figures. Treat them as ideal conditions, not a forecast for your roof in December:
- BLUETTI AC180: about 2.8–3.3 hours with 500 W of panels, “with prime sunshine, ideal orientation and low temperature” (BLUETTI).
- Anker SOLIX C1000 Gen 2: “recharge fully in just 1.8 hours” with 600 W of solar (Anker).
- EcoFlow DELTA 3 Plus: full charge in 70 minutes with 500 W × 2 inputs (EcoFlow).
- Jackery HomePower 3600 Plus: the product page advertises 4-hour charging with two SolarSaga 500 X panels, while Jackery’s own FAQ lists around 6 hours with 2 panels (around 12 with 1) (product page, FAQ). When a brand’s own numbers disagree, plan around the slower one.
Real-world solar output depends on season, latitude, weather, panel angle, shading, and heat. Size your expectations conservatively and check your local sun data.
Quick compatibility checklist
- Find the station’s input voltage range, current limit, and max watts (table above, then confirm in the manual).
- Find each panel’s Voc, Isc/Imp, and voltage temperature coefficient on its spec label.
- Series: add Voc values, then add a cold-weather margin. Parallel: add currents.
- Confirm the connector and any adapter or extension cable you need.
- When in doubt, use the brand’s own panels or a combination the brand lists as compatible.
Sources
- EcoFlow, DELTA 3 Plus and DELTA Pro 3 spec pages (checked Oct 7, 2026)
- Jackery, Explorer 1000 v2, Explorer 2000 v2, HomePower 3600 Plus pages and HomePower 3600 Plus FAQ (checked Oct 7, 2026)
- BLUETTI, AC180 (checked Oct 7, 2026)
- Anker SOLIX, C1000 Gen 2, C1000 Gen 2 overview, C1000 Gen 2 user guide, F3800 Plus (checked Oct 7, 2026)