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1000W Pure Sine Wave Inverter PCBA Board
1000W Pure Sine Wave Inverter PCBA Board
1000W Pure Sine Wave Inverter PCBA Board
1000W Pure Sine Wave Inverter PCBA Board
1000W Pure Sine Wave Inverter PCBA Board
1000W Pure Sine Wave Inverter PCBA Board

1000W Pure Sine Wave Inverter PCBA Board

ROGERELE P1000 1000W pure sine wave inverter PCBA for OEM energy storage and custom power equipment. Separate 12V, 24V and 48V versions; 175 × 170 × 55 mm listed size.

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ROGERELE P1000 pure sine wave inverter PCBA with heatsinks and power components
P1000 · Actual product photo
INVERTER PCBA / FOR ENERGY STORAGE SYSTEMS
 
1000W Pure Sine Wave
Inverter PCBA Board
 
ROGERELE is an OEM manufacturer of pure sine wave inverter PCBA boards for energy storage equipment. The P1000 delivers 1000W rated AC output and is supplied in separate 12V, 24V or 48V input configurations. For OEM projects, specify the AC output, battery operating range, cooling, mounting and accessory requirements, then validate the selected assembly with samples before bulk production.
 
1000W
Rated output · P1000
2000W
Listed peak output
 
DC input 12V / 24V / 48V configurations
AC output 100 / 110 / 120V or 220 / 230 / 240V
Frequency 50Hz or 60Hz
Dimensions 175 × 170 × 55 mm
 
 
Share your battery specification, AC load profile and order quantity.

Product Overview


The Rogerele P1000 is a 1000W pure sine wave inverter PCBA for OEM energy storage and custom battery-powered equipment. Separate 12V, 24V and 48V versions provide the DC-to-AC conversion stage. Listed maximum efficiency is 90%, 91% and 93% respectively, depending on version and operating conditions. Low no-load current supports efficient standby operation. Applications include off-grid battery systems and portable power equipment; RV integration requires evaluation of the battery, loads and installation. OEM/ODM requirements, including electrical configuration, mounting and accessory scope, are reviewed before sample approval and bulk production.
01 / ENERGY STORAGE INTEGRATION

Core Features & Protections

P1000 provides 1000W rated pure sine wave AC output, with listed THD below 3% under a linear load. The catalog lists low-voltage, over-voltage, overload and over-temperature protection, short-circuit indication and fuse operation for reverse polarity. Validate protection behavior and cooling in the complete system.
Match the inverter board to the battery and enclosure as one system. Specify charging and system-control functions separately.
01
Battery pack
Matched voltage and discharge capability
02 / P1000
Pure sine wave inverter
1000W rated AC output
03
Your AC loads
Continuous and startup requirements
Board dimensions
175 × 170 × 55 mm
P1000 inverter PCBA dimensions: 175 × 170 × 55 mm
Complete board · 175 × 170 × 55 mm · Click to enlarge
Connections & layout
Plan wiring and controls
P1000 PCBA connection diagram for DC input, AC output, cooling fan and switch board
Catalog connection reference · Click to enlarge
Confirm mounting-hole positions, clearance and the current board revision before enclosure design. Overall dimensions are 175 × 170 × 55 mm.
Integration item What to specify
Battery supply Pack operating-voltage range, continuous/peak discharge limits and cutoff coordination.
Charging architecture Separate solar charge controller or AC charger, charging limits and system controls.
Cooling & mounting Fan arrangement, airflow, mounting points, insulation and enclosure clearance.
System verification Actual-load startup, thermal performance, cutoff/recovery and complete-product tests.
02 / TECHNICAL DATA

Technical Specifications

Select one DC input and one AC output configuration. Voltage options are order variants, rather than selectable settings on every board.
Parameter P1000 specification
Rated / peak output 1000W / 2000W; peak duration not specified
Waveform / distortion Pure sine wave · THD <3% with linear load
AC output ±5% 100 / 110 / 120V or 220 / 230 / 240V
Output frequency 50Hz ±0.5Hz or 60Hz ±0.5Hz
Operating / storage temperature −10°C to +50°C / −30°C to +70°C
Listed dimensions 175 × 170 × 55 mm

Choose the battery-side configuration

DC input Operating range No-load current Max. efficiency
12V 10–15.5V <0.4A 90%
24V 20–31V <0.3A 91%
48V 40–61V <0.2A 93%
Maximum efficiency depends on load and conditions.

Voltage protection reference

Parameter 12V version 24V version 48V version
Low-voltage alarm 10.5 ±0.5V 21 ±0.5V 42 ±1V
Low-voltage cutoff 10 ±0.5V 20 ±0.5V 40 ±0.5V
Over-voltage cutoff 15.5 ±0.5V 31 ±0.5V 61 ±1V
Low-voltage recovery 12.3 ±0.5V 24 ±0.5V 48 ±1V
Over-voltage recovery 14.8 ±0.5V 29.5 ±0.5V 59 ±1V

Listed protection functions

Function Catalog behavior
Low voltage Alarm, followed by shutdown as voltage falls
Over voltage / overload Red indicator and shutdown
Over temperature Alarm, followed by shutdown as temperature rises
Short circuit Red indicator; confirm shutdown and reset behavior
Reverse polarity Fuse operation; confirm the required installation protection
04 / APPLICATIONS

Applications & Use Cases

Evaluate P1000 as the DC-to-AC stage in energy storage, RV auxiliary power and custom power equipment. Match the battery operating range and AC loads to the selected version, then validate the complete system.
Application What to evaluate
Portable energy storage Battery capacity, AC load mix, battery discharge limits, cooling and enclosure layout.
Off-grid battery and solar storage systems Battery operating range, separate solar/AC charging equipment and continuous AC demand.
Backup power for selected loads Required runtime, startup demand and any separately designed transfer function.
Custom power equipment For custom battery-powered equipment and mobile workstations, confirm control interfaces, mounting, cooling, accessory scope and complete-system validation.
RV auxiliary power systems
Evaluate battery-fed AC power for selected onboard electronics. Check continuous and startup loads, battery discharge capability, wiring, ventilation and the finished installation.
05 / BUSINESS SOURCING

OEM/ODM Services by Rogerele

01 / STORAGE SYSTEM BRANDS

Voltage configuration & OEM review

Select a separate 12V, 24V or 48V DC input version and specify the required AC output voltage and frequency. Submit other electrical or mechanical customization requirements for feasibility review and quotation.
02 / ASSEMBLY PARTNERS

PCBA & accessory matching

Define the PCBA revision, wiring, cooling fan, switch board and mounting requirements together. Confirm the supplied accessories and interfaces against your enclosure and system design.
03 / PURCHASING TEAMS

Sample development & bulk supply

Agree a sample configuration and acceptance criteria before bulk production. Test actual loads, thermal performance and cutoff/recovery behavior; confirm any revision scope, MOQ, lead time and required documentation.
06 / ENERGY STORAGE QUESTIONS

Answers for your system design.

How should I match this inverter PCBA with a battery BMS?


Check that the battery pack and BMS can support the inverter’s continuous input current and the load’s starting demand. Coordinate the battery operating range, discharge limits and cutoff/recovery settings with the selected 12V, 24V or 48V board. Validate startup and protection behavior in the complete system. Any communication interface between the PCBA and BMS must be confirmed separately.

What does this PCBA do in an energy storage system?


P1000 provides the DC-to-AC inverter stage: it converts energy from a matched battery pack into pure sine wave AC for connected loads. The finished storage product also needs charging equipment, controls, protection and an enclosure.

Can it be integrated with a lithium or LiFePO4 battery?


Evaluate the pack’s minimum and maximum voltage, discharge limits and cutoff/recovery settings against the selected board. Share the battery specification for review and validate the complete system with samples; battery chemistry alone does not determine compatibility.

How much energy storage does a 1000W inverter board require?


Size battery energy around the required AC load and runtime, then account for inverter losses and usable battery capacity. The 1000W rating describes AC output power, not stored energy. Check both the pack energy and its continuous discharge capability with the selected 12V, 24V or 48V board.

Can it start pumps, fans or compressor loads?


Evaluate the load’s starting demand as well as its continuous power. The listed 2000W peak has no published duration or startup test conditions. Confirm suitability by testing the selected board and battery together with the intended load.

What should an energy storage manufacturer validate before bulk purchasing?


Confirm input/output ratings, board revision, mounting, cooling, controls and supplied accessories. Test the assembled system across battery voltage and load conditions, including startup, cutoff/recovery and thermal performance. Agree sample acceptance criteria and required product documentation before the bulk order.
07 / CATALOG VIDEOS

See the P1000 product video.

Use the video as a visual reference and confirm the exact configuration and test conditions with your quotation.

Tell us about your energy storage project.

Battery pack · Discharge limits · AC loads · cooling · quantity · destination market

The P1000 assembly photos are collected in the Product Detail section, alongside the specifications and integration notes.

View P1000 assembly photos and board details

P1000 inverter PCBA product video



Watch the P1000 product video on YouTube