AC500

Bluetti

AC500

AC200L

Bluetti

AC200L

PowerHouse 767

Anker

PowerHouse 767

EB3A

Bluetti

EB3A

AC60

Bluetti

AC60

Delta Pro

Ecoflow

Delta Pro

Delta 1300

Ecoflow

Delta 1300

Delta 1000

Ecoflow

Delta 1000

AC200MAX

Bluetti

AC200MAX

Delta 2

Ecoflow

Delta 2

Delta Max 1600

Ecoflow

Delta Max 1600

Delta Max 2000

Ecoflow

Delta Max 2000

Delta mini

Ecoflow

Delta mini

Delta 2 Max

Ecoflow

Delta 2 Max

AC180

Bluetti

AC180

EB70S

Bluetti

EB70S

AC200P

Bluetti

AC200P

PowerHouse 757

Anker

PowerHouse 757

River 2

Ecoflow

River 2

River Pro

Ecoflow

River Pro

River 2 Max

Ecoflow

River 2 Max

AC60P

Bluetti

AC60P

EB55

Bluetti

EB55

PS72

Bluetti

PS72

EP500

Bluetti

EP500

Explorer 300 Plus

Jackery

Explorer 300 Plus

Explorer 1000

Jackery

Explorer 1000

548

Anker

548

Delta Pro 3

Ecoflow

Delta Pro 3

18kPV-12LV

EG4

18kPV-12LV

Explorer 240

Jackery

Explorer 240

Delta 3

Ecoflow

Delta 3

Delta 3 Plus

Ecoflow

Delta 3 Plus

FlexBOSS21

EG4

FlexBOSS21

12kPV

EG4

12kPV

8K-2P-N

Sol-Ark

8K-2P-N

15K-2P

Sol-Ark

15K-2P

VOLIX P300

ALLPOWERS

VOLIX P300

S300 Plus

ALLPOWERS

S300 Plus

R1500 LITE

ALLPOWERS

R1500 LITE

R1500

ALLPOWERS

R1500

S2000 Pro

ALLPOWERS

S2000 Pro

R2500 V2

ALLPOWERS

R2500 V2

R4000

ALLPOWERS

R4000

SuperBase V4600

Zendure

SuperBase V4600

SuperBase V6400

Zendure

SuperBase V6400

VITA 550

Growatt

VITA 550

Jump 600X

VTOMAN

Jump 600X

FlashSpeed 1000

VTOMAN

FlashSpeed 1000

FlashSpeed 1500

VTOMAN

FlashSpeed 1500

EasySolar-II GX 48/5000

Victron Energy

EasySolar-II GX 48/5000

POW-HVM6.2K-48V

PowMr

POW-HVM6.2K-48V

POW-HVM11KP

PowMr

POW-HVM11KP

SunSmart LV12K

PowMr

SunSmart LV12K

Growatt SPF 5000 ES

Growatt

Growatt SPF 5000 ES

Growatt SPF 3000TL LVM

Growatt

Growatt SPF 3000TL LVM

Growatt SPH 10000TL-HU-US

Growatt

Growatt SPH 10000TL-HU-US

Growatt SPH 6000TL BL-UP

Growatt

Growatt SPH 6000TL BL-UP

Growatt MIN 7600TL-XH-US

Growatt

Growatt MIN 7600TL-XH-US

6000XP

EG4

6000XP

Growatt MIN 11400TL-XH-US

Growatt

Growatt MIN 11400TL-XH-US

Primo GEN24 3.8 Plus

Fronius

Primo GEN24 3.8 Plus

Primo GEN24 5.0 Plus

Fronius

Primo GEN24 5.0 Plus

Primo GEN24 6.0 Plus

Fronius

Primo GEN24 6.0 Plus

Primo GEN24 7.7 Plus

Fronius

Primo GEN24 7.7 Plus

Primo GEN24 10.0 Plus

Fronius

Primo GEN24 10.0 Plus

SUN-5K-SG01LP1-US

Deye

SUN-5K-SG01LP1-US

SUN-6K-SG04LP3-EU

Deye

SUN-6K-SG04LP3-EU

SUN-12K-SG04LP3-EU

Deye

SUN-12K-SG04LP3-EU

Hybrid Inverter Charger 9.6kW

AIMS Power

Hybrid Inverter Charger 9.6kW

FlexBOSS18

EG4

FlexBOSS18

Explorer 500

Jackery

Explorer 500

E2400LFP

PECRON

E2400LFP

E1500LFP

PECRON

E1500LFP

E3600LFP

PECRON

E3600LFP

F3000LFP

PECRON

F3000LFP

SUN-5K-SG04LP3-EU

Deye

SUN-5K-SG04LP3-EU

SUN-10K-SG04LP3-EU

Deye

SUN-10K-SG04LP3-EU

Hybrid Inverter Charger 4.6kW

AIMS Power

Hybrid Inverter Charger 4.6kW

SUN-7.6K-SG01LP1-US

Deye

SUN-7.6K-SG01LP1-US

Phoenix 200

Renogy

Phoenix 200

Phoenix 500

Renogy

Phoenix 500

Power Station 1000

Renogy

Power Station 1000

E1000LFP

PECRON

E1000LFP

SUN-8K-SG01LP1-US

Deye

SUN-8K-SG01LP1-US

SUN-8K-SG04LP3-EU

Deye

SUN-8K-SG04LP3-EU

Solix C1000

Anker

Solix C1000

Explorer 300

Jackery

Explorer 300

Mega 1

OUPES

Mega 1

1800

OUPES

1800

Exodus 2400

OUPES

Exodus 2400

Guardian 6000

OUPES

Guardian 6000

SolarEdge Energy Hub SE3800H-US

SolarEdge

SolarEdge Energy Hub SE3800H-US

SolarEdge Energy Hub SE5000H-US

SolarEdge

SolarEdge Energy Hub SE5000H-US

SolarEdge Energy Hub SE6000H-US

SolarEdge

SolarEdge Energy Hub SE6000H-US

Yeti 500

Goal Zero

Yeti 500

Yeti 700

Goal Zero

Yeti 700

Yeti 1500

Goal Zero

Yeti 1500

aPower S

FranklinWH

aPower S

RIVER 3

Ecoflow

RIVER 3

RIVER 3 Plus

Ecoflow

RIVER 3 Plus

RIVER 3 Max

Ecoflow

RIVER 3 Max

RIVER 3 Max Plus

Ecoflow

RIVER 3 Max Plus

DELTA 3 Classic

Ecoflow

DELTA 3 Classic

DELTA 3 Max

Ecoflow

DELTA 3 Max

DELTA 3 Max Plus

Ecoflow

DELTA 3 Max Plus

DELTA 3 Ultra Plus

Ecoflow

DELTA 3 Ultra Plus

DELTA Pro Ultra

Ecoflow

DELTA Pro Ultra

DELTA Pro Ultra X

Ecoflow

DELTA Pro Ultra X

SolarEdge Energy Hub SE7600H-US

SolarEdge

SolarEdge Energy Hub SE7600H-US

SolarEdge Energy Hub SE10000H-US

SolarEdge

SolarEdge Energy Hub SE10000H-US

SolarEdge Energy Hub SE11400H-US

SolarEdge

SolarEdge Energy Hub SE11400H-US

5K-1P-N

Sol-Ark

5K-1P-N

Solix F2000

Anker

Solix F2000

Elite 10

Bluetti

Elite 10

SUN-6K-SG01LP1-US

Deye

SUN-6K-SG01LP1-US

Elite 30 V2

Bluetti

Elite 30 V2

Elite 100 V2

Bluetti

Elite 100 V2

Elite 300

Bluetti

Elite 300

Elite 400

Bluetti

Elite 400

Pioneer Na

Bluetti

Pioneer Na

Apex 300

Bluetti

Apex 300

Solix C800 Plus

Anker

Solix C800 Plus

Solix C1000 Gen 2

Anker

Solix C1000 Gen 2

Solix C2000 Gen 2

Anker

Solix C2000 Gen 2

Solix F3800 Plus

Anker

Solix F3800 Plus

18K-2P-N

Sol-Ark

18K-2P-N

30K-3P-208V

Sol-Ark

30K-3P-208V

Sunny Boy Smart Energy 3.8-US

SMA

Sunny Boy Smart Energy 3.8-US

Sunny Boy Smart Energy 4.8-US

SMA

Sunny Boy Smart Energy 4.8-US

Sunny Boy Smart Energy 5.8-US

SMA

Sunny Boy Smart Energy 5.8-US

INFINITY 2000 PRO

Growatt

INFINITY 2000 PRO

HELIOS 3600

Growatt

HELIOS 3600

Power 1000

DJI

Power 1000

Power 2000

DJI

Power 2000

Jump 1500

VTOMAN

Jump 1500

Jump 1800

VTOMAN

Jump 1800

SuperBase 1000M

Zendure

SuperBase 1000M

SuperBase Pro 2000

Zendure

SuperBase Pro 2000

EasySolar-II GX 48/3000

Victron Energy

EasySolar-II GX 48/3000

12K-2P-N

Sol-Ark

12K-2P-N

3000 EHV-48

EG4

3000 EHV-48

Sunny Boy Smart Energy 7.7-US

SMA

Sunny Boy Smart Energy 7.7-US

Mega 2

OUPES

Mega 2

Sunny Boy Smart Energy 9.6-US

SMA

Sunny Boy Smart Energy 9.6-US

Sunny Boy Smart Energy 11.5-US

SMA

Sunny Boy Smart Energy 11.5-US

Yeti 300

Goal Zero

Yeti 300

48V 3500W Pure Sine Wave Solar Inverter Charger

Renogy

48V 3500W Pure Sine Wave Solar Inverter Charger

LVX6048

MPP Solar

LVX6048

Yeti 1000

Goal Zero

Yeti 1000

Yeti PRO 4000

Goal Zero

Yeti PRO 4000

LV6548V 500V

MPP Solar

LV6548V 500V

LVX6048WP

MPP Solar

LVX6048WP

277Wh Portable Power Station

BougeRV

277Wh Portable Power Station

LV6048

MPP Solar

LV6048

ROVER 2000

BougeRV

ROVER 2000

Elite 200 V2

Bluetti

Elite 200 V2

12000XP

EG4

12000XP

AC2A

Bluetti

AC2A

Choose a device to find compatible solar panels that will power it efficiently.
Last updated: December 26, 2025

How the Solar Panel Matcher Works

The Solar Panel Matcher checks each solar panel in our database against your device's electrical limits — maximum input voltage, maximum input current, and rated wattage. For every panel, the tool calculates valid wiring configurations including series strings, parallel connections, and series-parallel combinations.

Critically, the matcher accounts for temperature effects on voltage. Solar panel voltage increases as temperature drops, which means a panel that looks safe at room temperature could exceed your controller's voltage limit on a cold winter morning. By entering your local cold-temperature extreme, the tool calculates the worst-case open circuit voltage (Voc) for each panel and only recommends configurations that remain within safe limits.

Why Temperature Matters

Solar panel voltage increases as temperature drops. This is a fundamental property of silicon photovoltaic cells — lower temperatures reduce the thermal agitation of electrons, which raises the bandgap voltage. Every panel datasheet lists a Temperature Coefficient of Voc (beta), typically around -0.25% to -0.35% per degree Celsius.

For example, consider a panel with a Voc of 46.6V and a temperature coefficient of -0.27%/°C. At standard test conditions (25°C), the Voc is 46.6V. But at -25°C — a 50-degree drop — the voltage increases by about 13.5%, giving a cold-weather Voc of approximately 52.9V. Two of these panels wired in series would produce about 105.8V, which could exceed the 100V input limit on many charge controllers.

This cold-temperature voltage rise is the number one cause of charge controller damage in cold climates. The Solar Panel Matcher uses your local temperature data to calculate these worst-case voltages and prevent dangerous configurations.

Series vs. Parallel Wiring

Series Wiring

In a series connection, panel voltages add together while current stays the same. Two 40V / 10A panels wired in series produce 80V at 10A. Series wiring is best for MPPT charge controllers (which can step down high voltage efficiently), long wire runs (higher voltage means less current and lower wire losses), and installations with no shading issues.

Parallel Wiring

In a parallel connection, panel currents add together while voltage stays the same. Two 40V / 10A panels wired in parallel produce 40V at 20A. Parallel wiring is best for PWM charge controllers (which require panel voltage close to battery voltage), partially shaded installations (shade on one panel does not drag down the others), and short wire runs where higher current is acceptable.

Series-Parallel Wiring

Series-parallel combines both approaches: panels are wired into series strings, then the strings are connected in parallel. This balances voltage and current to stay within controller limits while maximizing total array power. It is the standard configuration for larger solar arrays with four or more panels.

Fusing Requirements

When wiring solar panels in parallel, fusing protects against reverse current flow that can damage panels in a fault condition. The National Electrical Code (NEC 690.9) governs fusing requirements for photovoltaic systems:

  • 2 parallel strings: Fuses are recommended but not always required, depending on the panel's series fuse rating.
  • 3 or more parallel strings: Fuses are mandatory per NEC 690.9. Each string must have its own overcurrent protection device.

Fuse sizing follows a standard formula: multiply the short-circuit current (Isc) of a single string by 1.56 (which accounts for the NEC 1.25 safety factor applied twice — once for continuous current and once for panel output tolerance). Always use DC-rated fuses or breakers, as AC-rated devices cannot safely interrupt direct current arcs.

For proper wire sizing between your panels and charge controller, use our Wire Size Calculator.

Frequently Asked Questions

What happens if my solar panel voltage exceeds my charge controller's max input voltage?

Exceeding the maximum input voltage of a charge controller can permanently damage the unit. Most controllers have some overvoltage tolerance, but sustained voltage above the rated maximum will destroy the internal MOSFET transistors. This typically happens in cold weather when panel Voc rises above the STC rating. Always calculate your worst-case cold-temperature Voc before connecting panels in series.

Do I need to derate my solar panels for temperature?

Yes. Solar panels produce higher voltage in cold conditions and lower voltage in hot conditions. The temperature coefficient of Voc (listed on every panel datasheet as a negative percentage per degree Celsius) tells you how much the voltage changes. For system design, you must calculate the maximum Voc at your coldest expected temperature to ensure you do not exceed your controller or inverter limits.

Can I connect more panels than my controller's wattage rating?

MPPT charge controllers can handle input wattage above their rated output wattage — the excess power is simply clipped (the controller limits its output current to its rating). This is called oversizing or overclipping and is commonly done at 10-30% to maximize production in suboptimal conditions. However, you must never exceed the controller's maximum input voltage or maximum input current ratings.

What is the difference between Voc and Vmp?

Voc (Open Circuit Voltage) is the maximum voltage a panel produces when no current is flowing — essentially when nothing is connected. Vmp (Maximum Power Voltage) is the voltage at which the panel produces peak power under load. Vmp is always lower than Voc, typically around 80-85% of Voc. Use Voc for safety calculations (max voltage limits) and Vmp for estimating actual operating voltage and power production.

Can I use a residential panel with a portable solar generator?

It depends on the generator's input specifications. Portable solar generators (like Jackery, EcoFlow, Bluetti) have maximum input voltage and current limits. A residential 400W panel may have a Voc around 46V, which could exceed the input limit on smaller generators rated for 11-22V portable panels. Always check both the voltage and current specifications before connecting. The Solar Panel Matcher tool checks exactly this compatibility.

Should I wire panels in series or parallel?

It depends on your charge controller type and conditions. Series wiring (voltages add up) is best for MPPT controllers, long wire runs, and unshaded installations. Parallel wiring (currents add up) is better for PWM controllers, partially shaded arrays, and short wire distances. Series-parallel combinations are used for larger arrays to balance voltage and current within controller limits.

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