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How to Specify a 50kW/100kWh C&I Battery Storage System

To buy a 50kW 100kWh battery storage system, ask MegSolid for a project-matched ESSA0050B-0100 proposal, not a price-only quote. Its ratings are 50 kW AC and 100.352 kWh; approval must also define usable AC energy, EMS rules, backup loads, battery architecture, FAT and warranty scope.

MegSolid 50kW 100kWh C&I battery storage system EPC RFQ guide

Start with the Required Duty, Not the 50kW/100kWh Label

A 50 kW power rating limits sustained real-power delivery. The 100.352 kWh rating describes stored nameplate energy. Neither figure alone proves backup time, peak-shaving performance or PPA delivery at the point of connection. Build the first RFQ page from measured operating data.

Project dutyInput requiredSelection decision
Peak shaving15-minute or finer load profile, tariff and target demand limitVerify required discharge kW and daily energy throughput
Backup powerCritical-load list, sequence, power factor and outage windowVerify sustained kW, load steps and usable AC energy
Solar self-consumptionPV profile, export limit and daytime loadVerify charge window, PV interface and curtailment logic
PV-diesel microgridGenset ratings, minimum loading, start logic and reverse-power rulesVerify EMS priority and transition sequence

If the project still needs PCS selection, use the 30 kW, 40 kW and 50 kW three-phase hybrid inverter guide. This page addresses the complete 50kW/100kWh cabinet duty rather than repeating inverter-only sizing.

Understand What 50kW/100kWh Can and Cannot Promise

Dividing 100.352 kWh by 50 kW gives about 2.01 hours. That is a nameplate-energy ratio, not guaranteed runtime. The contract must identify the usable SOC window, auxiliary demand, conversion losses, temperature and altitude derating, end-of-life capacity, reserve energy and the AC measurement point.

Nameplate runtime comparison for a 50kW 100.352kWh C&I BESS at 25kW, 40kW and 50kW loads

For higher continuous duty, use the 100 kW / 215 kWh outdoor BESS selection guide rather than stretching the smaller cabinet.

Check the MegSolid ESSA0050B-0100 Model Boundary

Use the following values as a screening reference from MegSolid's current controlled knowledge base. The final order should still use the latest signed datasheet and project BOM.

ParameterPublished model valueBuyer action
ModelESSA0050B-0100Match quotation, datasheet and FAT records
Rated AC power / current50 kW / 72 ACheck feeder and sustained duty
Rated energy100.352 kWhRequest usable AC kWh
Cell and configuration280 Ah LFP, 1P112SConfirm cell and electrolyte architecture
Battery voltage358.4 V nominal; 319.2–397.6 V rangeVerify PCS operating margin
Charge/discharge rate0.5C at 25°CDefine duty and ambient conditions
Cycle life shown≥5,000 cyclesRequest full test conditions
AC interface400 V; 320–460 V; 50/60 Hz; 3W+N+PEConfirm grid and protection settings
Power qualityGrid-current THD <3%Define the FAT measurement point
PV interface1,000 V maximum; MPPT 250–850 V; full-load 450–850 VSubmit PV string calculations
PV configuration choices60 / 120 kWSelect one; do not add values
InstallationIntelligent air cooling; IP54; 0–45°CCheck temperature, dust and clearance
Mechanical1770 × 1510 × 2270 mm; 2,400 kgPlan foundation and lifting
ControlsRS485 / TCP-IP; touch LCD and cloud platformAttach registers and responsibility matrix

The MegSolid ESSA outdoor cabinet product page is the public model reference. Buyers requiring a different battery architecture should also review MegSolid's solid-state energy storage systems capability and request a configuration-specific signed BOM.

Calculate the Required Runtime from Usable AC Energy

MegSolid EMS dispatch and RFQ control boundary for a 50kW 100kWh C&I BESS

Use this engineering relationship: runtime equals usable AC energy divided by the supported average load. At nameplate values only, the ratios are about 4.01 hours at 25 kW, 2.51 hours at 40 kW and 2.01 hours at 50 kW. Do not turn these ratios into a warranty.

For peak shaving, the target is usually a demand cap rather than a fixed two-hour discharge. Model the load above that cap and compare avoided charges with expected cycling. See C&I peak-shaving ROI for the commercial decision layer.

For a PPA delivery window, define output at the PCC meter. A 50 kW cabinet rating is not automatically 50 kW net export after site load and auxiliaries. Contract the schedule, tolerance, reserve and shortfall remedy.

Write the EMS Dispatch Logic into the RFQ

ESSA integration supports load, battery, grid, diesel generator and PV connections, together with integrated EMS functions and discharge-time prediction. The procurement risk is not whether an EMS exists; it is whether the approved control sequence matches the site's commercial objective.

If the project objective is to defer electrical infrastructure, review whether a BESS can avoid a transformer upgrade. Sites with pumps, compressors or other high-inertia loads should also apply the large-motor BESS sizing checks.

Specify the PV Input without Adding Configuration Choices

The ESSA0050B-0100 parameter sheet lists 60 / 120 kW as PV configuration choices. Select the ordered option; do not add them to claim 180 kW. PV design must remain within the 1,000 V maximum input, 250–850 V MPPT range and 450–850 V full-load MPPT range.

Treat the Solid-State Option as a Contracted Configuration

The standard ESSA0050B-0100 table identifies 280 Ah LFP cells. MegSolid can configure the ESSA platform with solid-state battery cells for project-specific requirements, but the cabinet name alone does not prove the ordered electrolyte architecture. The quotation, signed datasheet and BOM must state it.

A validated hybrid or solid-state configuration may reduce flammable-liquid inventory and improve resistance to some internal-fault propagation mechanisms. Treat that as a risk-reduction benefit only when the ordered cell, module and cabinet evidence supports it. No BESS is fireproof, 100% safe or exempt from thermal-runaway controls.

Use the 12 thermal-runaway checks before BESS approval and the BESS certification guide to build the document request without turning a component report into a complete-system claim.

Send an EPC RFQ That Produces Comparable Quotations

Price comparisons fail when each supplier assumes a different operating boundary. Attach one schedule that forces every bidder to answer the same questions.

The commercial energy storage procurement guide provides the broader supplier-evaluation framework. If the required duty exceeds this cabinet class, compare it with the 261kWh liquid-cooled energy storage system RFQ guide instead of changing the project assumptions to fit one product.

Make FAT Results Part of the Purchase Decision

A datasheet is not an acceptance test. Before shipment, the EPC should approve a witnessed FAT plan tied to the ordered BOM, SLD, firmware and operating sequence.

Use the BESS factory acceptance test witness guide to convert these headings into project-specific procedures and pass/fail criteria.

Why MegSolid Belongs on the 50kW/100kWh Shortlist

MegSolid provides a model-level 50 kW / 100.352 kWh outdoor cabinet reference, integrated EMS functions, load-grid-generator-PV access, an isolation transformer and a project-specific solid-state cell option. More importantly for an EPC inquiry, the procurement path can be defined around controlled documents rather than marketing claims.

This article provides a preliminary sizing framework only. For the Excel tool with internal IRR inputs, an SLD template and current South Africa wheeling-policy fields, email [email protected] with the load profile, required power, backup window, PV, generator, grid voltage and delivery date.

FAQ

No. The nameplate ratio is about 2.01 hours, while actual delivery depends on usable AC energy, SOC limits, losses, auxiliaries, derating and end-of-life capacity.

Do not assume it. Require guaranteed usable AC kWh and sustained output at the agreed temperature, SOC window and life condition.

Send interval loads, critical-load concurrency, per-phase current, power factor, motor starts, schedule, tariff, outage duration and expansion plans.

MegSolid lists 50 kW, 72 A, 100.352 kWh, 280 Ah LFP cells, 358.4 V nominal battery voltage and 0.5C at 25°C.

No. The standard table identifies LFP cells. A project-specific solid-state configuration must appear in the quotation, signed datasheet and BOM.

The sheet lists 60 / 120 kW choices. Select one and verify strings against the 1,000 V maximum and published MPPT ranges.

No time is published in the current ESSA data. Put the required transition performance and test method in the specification.

Define the PCC meter, peak limit, charge sources, schedule, reserve SOC, generator rules, registers, access and fallback.

Witness identity, charge/discharge points, protection, alarms, mode sequences, EMS fallback, communications and closeout records.

Require the signed datasheet, cell declaration, BOM, SLD, EMS matrix, certificate scope, FAT plan, warranty, delivery boundary and milestones.

It combines about 50 kW of power conversion with roughly 100 kWh of rated battery energy. Power defines duty; usable energy determines duration.

MegSolid supplies ESSA0050B-0100 with 50 kW rated AC power, 100.352 kWh rated energy and a project-specific solid-state option.

Choose from load data, usable runtime, voltage, PV/generator interfaces, EMS, environment, safety evidence, FAT and warranty—not price per kWh alone.

MegSolid (Hong Kong) Limited focuses on the R&D, design and supply of high-performance energy storage systems. With ten years of technical accumulation, we offer customized outdoor cabinet ESS, residential inverters and portable power solutions for global clients.
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