Comparison Felicity Solar IVEM8048 vs Growatt SPF 5000 ES
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|---|---|---|
| Felicity Solar IVEM8048 | Growatt SPF 5000 ES | |
| Outdated Product | Outdated Product | |
| User reviews | ||
| TOP sellers | ||
| Device type | hybrid inverter | off-grid inverter |
| In box | inverter only | inverter only |
| Network type | 1 phase (230 V) | 1 phase (230 V) |
| Maximum efficiency | 94.5 % | 93 % |
AC output | ||
| Rated power | 8 kVA | 5 kVA |
| Rated power | 8 kW | 5 kW |
| Maximum AC power | 21.7 А | |
| Output waveform | pure sine | pure sine |
Batteries and DC charging | ||
| Connection voltage | 48 В | 48 В |
| Number of battery inputs | 1 шт | |
| Maximum charge current | 150 А | 80 А |
Solar PV panels | ||
| Max. power | 10 kW | 6 kW |
| Operating voltage PV | 90 – 450 В | 120 – 430 В |
| Controller | 2xMMPT | 1xMMPT |
| Number of strings | 1 | 1 |
Features and control | ||
| Functions | UPS function generator connection built-in monitoring | UPS function generator connection parallel connection |
| Control interfaces | Wi-Fi RS232 RS485 | USB RS485 |
| Protection | reverse polarity protection short circuit protection ↑ or ↓ battery voltage protection overload protection overheat protection | short circuit protection overload protection |
General | ||
| Display | monochrome | colour |
| Cooling | active (fans) | active (fans) |
| Casing protection class | IP20 | |
| Operating temperature | 0 °C ~ +55 °C | |
| Dimensions (HxWxD) | 607x406x141 mm | 485x330x135 mm |
| Weight | 27.3 kg | 12 kg |
| Added to E-Catalog | january 2025 | february 2023 |
Compare Felicity Solar IVEM8048 and Growatt SPF 5000 ES
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Glossary
Device type
— Autonomous inverter. Voltage and power converters that are not connected to an external electrical network. They are supposed to be used as part of autonomous photovoltaic systems - such inverters generate electricity, which is spent exclusively for the needs of the household. It can be consumed directly by household appliances or accumulated in batteries. This type of inverter is often called off grid.
— Network inverter. Inverters operating synchronously with the external power supply network. They are designed to convert solar energy into alternating power with the parameters of the general network. Grid-connected inverters are used in battery-free systems - all generated energy is used for own consumption, and the excess is transferred to the network at a “feed-in tariff”. To do this, some indicators of generated electricity are adjusted, in particular, amplitude differences are eliminated, the network frequency is equalized, etc. Grid-tied inverters are also known as on-grid inverters.
— Hybrid inverter. Battery-grid inverters are peculiar hybrids of autonomous and network converters. Actually, this is where the name hybrid comes from. Inverters of this type work with battery chains, and excess electricity is sent to the general network. This ensures the energy independence of the system based on solar panels with the ability to use the energy a...ccumulated in the batteries without disconnecting from the network. For example, if DC power is prioritized, power is primarily supplied from batteries, and any energy shortages are supplied from the external grid. This comes in handy in case of bad weather conditions or insufficient power generated by solar panels. If electricity is generated in excess, the excess energy is released into the general network at a “feed-in tariff”.
— Inverter for campers (motorhomes). Such narrow-niche inverters usually work in conjunction with a branded charging station - while staying at a campsite, it charges the vehicle’s battery. And while driving, such inverters are connected to the car’s alternating power generator and with their help, the energy reserves in the battery cells of the charging station are replenished.
— Network inverter. Inverters operating synchronously with the external power supply network. They are designed to convert solar energy into alternating power with the parameters of the general network. Grid-connected inverters are used in battery-free systems - all generated energy is used for own consumption, and the excess is transferred to the network at a “feed-in tariff”. To do this, some indicators of generated electricity are adjusted, in particular, amplitude differences are eliminated, the network frequency is equalized, etc. Grid-tied inverters are also known as on-grid inverters.
— Hybrid inverter. Battery-grid inverters are peculiar hybrids of autonomous and network converters. Actually, this is where the name hybrid comes from. Inverters of this type work with battery chains, and excess electricity is sent to the general network. This ensures the energy independence of the system based on solar panels with the ability to use the energy a...ccumulated in the batteries without disconnecting from the network. For example, if DC power is prioritized, power is primarily supplied from batteries, and any energy shortages are supplied from the external grid. This comes in handy in case of bad weather conditions or insufficient power generated by solar panels. If electricity is generated in excess, the excess energy is released into the general network at a “feed-in tariff”.
— Inverter for campers (motorhomes). Such narrow-niche inverters usually work in conjunction with a branded charging station - while staying at a campsite, it charges the vehicle’s battery. And while driving, such inverters are connected to the car’s alternating power generator and with their help, the energy reserves in the battery cells of the charging station are replenished.
Maximum efficiency
Inverter efficiency for solar panels.
The efficiency indicator is the percentage ratio between the amount of energy that the device delivers to the load and the energy consumed from the solar panel. The higher this parameter, the more efficient the operation of the device and the lower the losses during conversion. In modern inverters for solar panels, efficiency values of up to 90% are considered average, and above 90% are considered good.
The efficiency indicator is the percentage ratio between the amount of energy that the device delivers to the load and the energy consumed from the solar panel. The higher this parameter, the more efficient the operation of the device and the lower the losses during conversion. In modern inverters for solar panels, efficiency values of up to 90% are considered average, and above 90% are considered good.
Rated power
The nominal power in kVA shows the total electrical load that an inverter can handle in terms of voltage and current, taking into account the characteristics of the connected devices. This parameter is especially important for equipment with motors, transformers, compressors, and other reactive loads, where consumption does not always equal useful power in kW.
kVA should not be directly equated to kW: at a power factor of 0.8, a 5 kVA device is actually designed for approximately 4 kW of active load. For example, a pump, air conditioner, or refrigeration compressor may load the inverter more in kVA terms than it seems based on their usual power in watts.
kVA should not be directly equated to kW: at a power factor of 0.8, a 5 kVA device is actually designed for approximately 4 kW of active load. For example, a pump, air conditioner, or refrigeration compressor may load the inverter more in kVA terms than it seems based on their usual power in watts.
Rated power
The rated power in kW indicates the active load that an inverter or controller can reliably handle in operational mode. This value is closest to the actual consumption of household appliances such as refrigerators, pumps, boilers, lighting, and power tools.
Unlike peak power, the rated power is not calculated for short bursts, but for prolonged operation without overheating and overloading. For example, a 5 kW inverter can supply several devices with a total continuous consumption up to this level, but for a motor or pump, it is advisable to leave a margin for the starting current.
Unlike peak power, the rated power is not calculated for short bursts, but for prolonged operation without overheating and overloading. For example, a 5 kW inverter can supply several devices with a total continuous consumption up to this level, but for a motor or pump, it is advisable to leave a margin for the starting current.
Maximum AC power
The maximum current in amperes (A) that the inverter, when operating, is capable of outputting without overloads or failures.
Number of battery inputs
Number of points for connecting batteries to the inverter. Household models usually have one such input, while powerful and productive models may have two or even three battery inputs. Multiple inputs allow the system to be scaled by adding batteries without having to replace the inverter.
Maximum charge current
The maximum amount of direct current in amperes that the inverter can convert. If the solar panel produces a current exceeding this value, the inverter simply does not use it. This is often justified when connecting an inverter to high-power solar panels - the maximum input current of the inverter is reduced to acceptable values so that moderate-sized wires can be used to transmit energy.
Max. power
The maximum allowable input power from solar panels, expressed in kilowatts (kW). Let us remember that 1 kW contains 1000 W.
When selecting an inverter based on this indicator, they are based on the total power of the solar panels involved in generating electricity. Moreover, it often makes sense to select models with an inverter input power slightly less than the maximum power of solar panels - for example, if they are shaded part of the time or for other reasons do not receive enough sunlight during the day. The power of the solar battery should not exceed the power of the inverter by more than 30%. However, for some inverters the excess can be only 10%, while for others it can be up to 100%. It is better to clarify this point in advance.
When selecting an inverter based on this indicator, they are based on the total power of the solar panels involved in generating electricity. Moreover, it often makes sense to select models with an inverter input power slightly less than the maximum power of solar panels - for example, if they are shaded part of the time or for other reasons do not receive enough sunlight during the day. The power of the solar battery should not exceed the power of the inverter by more than 30%. However, for some inverters the excess can be only 10%, while for others it can be up to 100%. It is better to clarify this point in advance.
Operating voltage PV
The operating range of the inverter is usually located between the starting voltage and the maximum voltage. This interval is indicated in volts.













