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Mitsubishi Electric LNB53FCAMC (R410A inverter twin rotary)

Compressor — R410A compressor — 26.3 kW cooling, 8.82 kW input, COP 2.99 at the AHRI 7.2/54.4 °C rating point.

A Mitsubishi Electric listing, from the manufacturer's published data.

Units: SI · US customary

Published specification

ModelMitsubishi Electric LNB53FCAMC (R410A inverter twin rotary)
RefrigerantR410A
Performance dataAHRI 540 / EN 12900 10-coefficient map
Reference superheat / subcool11.1 / 8.3 K
Cooling capacity @ 7.2/54.4 °C26.32 kW
Input power @ 7.2/54.4 °C8.82 kW
COP @ 7.2/54.4 °C2.99

The map across its envelope

AHRI 540 / EN 12900 ten-coefficient polynomials in evaporating and condensing temperature, rated at 11.1 K superheat and 8.3 K subcooling; the solver corrects them to the operating superheat and subcooling. Envelope: evaporating -10 to 15 °C, condensing 30 to 65 °C (a rectangle). It publishes 3 part-load steps (AHRI 540 §5.3.3), which the solver interpolates between. The mass-flow coefficient set is published too, and the solver checks it against the capacity set.

te / tc °CCapacity kWPower kWCOP
7 / 5426.328.822.99
-5 / 5017.887.602.35
5 / 5026.037.993.26
10 / 5031.108.013.88

The rating point and three conditions across the published envelope. The whole map — every condition, the envelope and the curves — is in the builder: open this machine in the app. It solves any point inside the envelope, and warns past it.

Open this compressor in the app — the compressor-map tab, with its rating at any condition, its envelope, capacity and power lines and curves plotted, and the refrigerant's pressure–temperature chart a click away; or open the builder and pick it from the catalog picker — the solver runs it with the catalog's own figures, at your design point or across a year of weather.

Same family

compressorsMitsubishi Electric LNB65FAGMC (R410A inverter twin rotary, scaled from the LNB53FCAMC)R410A

All 2 Mitsubishi Electric ELECTRIC models

How the model reads against this maker's data

Heat-pump frost/defrost derate43, from five makersRMS 0.023, where the makers stand 0.029 from each other at the forty temperatures they share — the one generic curve is closer to each of them than they are to one another, and none is served much worse than any other (0.019–0.028 apiece). The EnergyPlus model this replaced had the shape inverted (deepest just below its 5 °C cutoff, then a 29-point step across it) and read up to 0.15 low
A maker's inverter rotary read off its scanned specification book: the Mitsubishi Electric LNB53FCAMC702 digitised points (26 evaporating temperatures × 3 condensing × 3 quantities × 3 speeds), each curve read at about half a pixel; the rating point; the speed curve at 30–90 rps; a grid over the envelopethe fitted sets land on every digitised point — capacity and flow within 1.4 %, input within 0.5 % — and the 60 rps step reads the rating point within the sheet's own ±5 %. The book's two charts agree on capacity and disagree on input by up to 8 % at the lower speeds, which the sheet itself allows ('performance is varied by driver characteristics'); between the printed speeds the three-step interpolation stays within four points of that disagreement. Capacity over flow sits a constant 2.5–3.7 % above the cycle's refrigerating effect, identical at every speed to 0.2 points — a basis the drawing carries and the sheet does not state, not a reading error — and the flow implies 0.76–0.96 volumetric efficiency on 53.7 cm³. Recorded, not corrected: the maker puts the same capacity at 27.8 K return-gas superheat as at 11 K, where AHRI 540's density correction would add several per cent

From the validation page; every row is held by a test.

Listed from published data; a listing's figures are the manufacturer's, the model that runs them is ours. Solver results never depend on who has claimed what.