Published systems

Complete machines published by their suppliers — each with a public spec page whose design-point performance is solved live from the actual model, not copied from a brochure. Open one in the builder to run it against your own climate, or request a quote right here.

Suppliers 26Systems 3346Components 10248
All categoriesCooling tower / heat rejection 3307VRF / multi-split 8Air handler 7Plant / central 5Fan coil / terminal 4Condensing unit 3Rooftop / packaged 3Split system 3Chiller 2Heat recovery / DOAS 2Evaporative air cooler 1Unit cooler / refrigeration 1
All manufacturersBaltimore Aircoil 1900EVAPCO 1408Midea 2Gree 1Hitachi 1Samsung 1
All seriesAT 992ATWB 416PFi 359PCC 214Series 3000 189Series 1500 173Series V closed circuit 173Vertex VRC 157VCA 151Series V 122CXVB 118FXV 100PT2 46CXVT 40Series V EC 26FXT 20Nexus 12DVM S 1GMV5 1Set Free FSXN 1V4+ 1V6 1
Any capacity500 kW and up 3088100–500 kW 39125–100 kW 76up to 25 kW 25
Any certificationCTI STD-201 (validation C13A-99R28) 822CTI STD-201 (validation C13F-09R12) 416CTI STD-201 (validation C11F-92R20) 362CTI STD-201 (validation C11K-00R03) 153CTI STD-201 (validation C11J-98R12) 100CTI STD-201 (validation C11B-92R07) 90CTI STD-201 (validation C11L-07R05) 46CTI STD-201 (validation C11Q-18R02) 2
All marketsEU 3346
All tagsexample 3346
All suppliersHVAC Builder 3345Aeronim Systems (fictional) 1
SortNewestName A–ZSupplier A–ZCapacity ↑Capacity ↓

Showing 3121–3144 of 3346

Baltimore Aircoil VRC-0771B-1036N-KA evaporative condenser (4.7 MW rejection) — modelled

Baltimore Aircoil's VRC-0771B-1036N-KA — a Vertex VRC evaporative condenser rejecting 4679 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 104.3 m³/s of the maker's own printed air, with a 44.7 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3509–5848 kW · EU

Baltimore Aircoil VRC-0724B-1036N-HA evaporative condenser (4.4 MW rejection) — modelled

Baltimore Aircoil's VRC-0724B-1036N-HA — a Vertex VRC evaporative condenser rejecting 4394 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 82.3 m³/s of the maker's own printed air, with a 22.4 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3296–5493 kW · EU

Baltimore Aircoil VRC-0796B-1036N-JA evaporative condenser (4.8 MW rejection) — modelled

Baltimore Aircoil's VRC-0796B-1036N-JA — a Vertex VRC evaporative condenser rejecting 4825 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 90.3 m³/s of the maker's own printed air, with a 33.6 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3619–6031 kW · EU

Baltimore Aircoil VRC-0853B-1036N-KA evaporative condenser (5.2 MW rejection) — modelled

Baltimore Aircoil's VRC-0853B-1036N-KA — a Vertex VRC evaporative condenser rejecting 5170 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 99.4 m³/s of the maker's own printed air, with a 44.7 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3877–6462 kW · EU

Baltimore Aircoil VRC-0865B-1036N-JA evaporative condenser (5.2 MW rejection) — modelled

Baltimore Aircoil's VRC-0865B-1036N-JA — a Vertex VRC evaporative condenser rejecting 5247 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 77.2 m³/s of the maker's own printed air, with a 33.6 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3935–6559 kW · EU

Baltimore Aircoil VRC-0927B-1036N-KA evaporative condenser (5.6 MW rejection) — modelled

Baltimore Aircoil's VRC-0927B-1036N-KA — a Vertex VRC evaporative condenser rejecting 5626 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 85.0 m³/s of the maker's own printed air, with a 44.7 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 4220–7033 kW · EU

Baltimore Aircoil VRC-1004B-1036N-KA evaporative condenser (6.1 MW rejection) — modelled

Baltimore Aircoil's VRC-1004B-1036N-KA — a Vertex VRC evaporative condenser rejecting 6092 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 88.9 m³/s of the maker's own printed air, with a 44.7 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 4569–7615 kW · EU

Baltimore Aircoil VRC-1106B-1036N-LA evaporative condenser (6.7 MW rejection) — modelled

Baltimore Aircoil's VRC-1106B-1036N-LA — a Vertex VRC evaporative condenser rejecting 6712 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 101.8 m³/s of the maker's own printed air, with a 67.1 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 5034–8390 kW · EU

Baltimore Aircoil VRC-0628B-1224N-HB evaporative condenser (3.8 MW rejection) — modelled

Baltimore Aircoil's VRC-0628B-1224N-HB — a Vertex VRC evaporative condenser rejecting 3810 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 80.4 m³/s of the maker's own printed air, with a 38.5 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 2857–4762 kW · EU

Baltimore Aircoil VRC-0695B-1224N-JB evaporative condenser (4.2 MW rejection) — modelled

Baltimore Aircoil's VRC-0695B-1224N-JB — a Vertex VRC evaporative condenser rejecting 4211 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 93.4 m³/s of the maker's own printed air, with a 60.0 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3158–5264 kW · EU

Baltimore Aircoil VRC-0694B-1224N-HB evaporative condenser (4.2 MW rejection) — modelled

Baltimore Aircoil's VRC-0694B-1224N-HB — a Vertex VRC evaporative condenser rejecting 4209 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 77.4 m³/s of the maker's own printed air, with a 38.5 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3157–5261 kW · EU

Baltimore Aircoil VRC-0767B-1224N-JB evaporative condenser (4.7 MW rejection) — modelled

Baltimore Aircoil's VRC-0767B-1224N-JB — a Vertex VRC evaporative condenser rejecting 4653 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 89.9 m³/s of the maker's own printed air, with a 60.0 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3490–5816 kW · EU

Baltimore Aircoil VRC-0755B-1224N-HB evaporative condenser (4.6 MW rejection) — modelled

Baltimore Aircoil's VRC-0755B-1224N-HB — a Vertex VRC evaporative condenser rejecting 4583 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 72.9 m³/s of the maker's own printed air, with a 38.5 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3437–5728 kW · EU

Baltimore Aircoil VRC-0835B-1224N-JB evaporative condenser (5.1 MW rejection) — modelled

Baltimore Aircoil's VRC-0835B-1224N-JB — a Vertex VRC evaporative condenser rejecting 5066 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 84.6 m³/s of the maker's own printed air, with a 60.0 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3800–6333 kW · EU

Baltimore Aircoil VRC-0810B-1224N-HB evaporative condenser (4.9 MW rejection) — modelled

Baltimore Aircoil's VRC-0810B-1224N-HB — a Vertex VRC evaporative condenser rejecting 4914 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 67.8 m³/s of the maker's own printed air, with a 38.5 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3686–6143 kW · EU

Baltimore Aircoil VRC-0895B-1224N-JB evaporative condenser (5.4 MW rejection) — modelled

Baltimore Aircoil's VRC-0895B-1224N-JB — a Vertex VRC evaporative condenser rejecting 5432 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 78.7 m³/s of the maker's own printed air, with a 60.0 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 4074–6790 kW · EU

Baltimore Aircoil VRC-0429B-1224N-GA evaporative condenser (2.6 MW rejection) — modelled

Baltimore Aircoil's VRC-0429B-1224N-GA — a Vertex VRC evaporative condenser rejecting 2602 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 47.6 m³/s of the maker's own printed air, with a 8.9 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 1951–3252 kW · EU

Baltimore Aircoil VRC-0486B-1224N-HA evaporative condenser (2.9 MW rejection) — modelled

Baltimore Aircoil's VRC-0486B-1224N-HA — a Vertex VRC evaporative condenser rejecting 2947 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 56.4 m³/s of the maker's own printed air, with a 14.9 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 2210–3683 kW · EU

Baltimore Aircoil VRC-0535B-1224N-JA evaporative condenser (3.2 MW rejection) — modelled

Baltimore Aircoil's VRC-0535B-1224N-JA — a Vertex VRC evaporative condenser rejecting 3248 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 64.6 m³/s of the maker's own printed air, with a 22.4 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 2436–4061 kW · EU

Baltimore Aircoil VRC-0574B-1224N-KA evaporative condenser (3.5 MW rejection) — modelled

Baltimore Aircoil's VRC-0574B-1224N-KA — a Vertex VRC evaporative condenser rejecting 3481 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 71.1 m³/s of the maker's own printed air, with a 29.8 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 2611–4351 kW · EU

Baltimore Aircoil VRC-0541B-1224N-HA evaporative condenser (3.3 MW rejection) — modelled

Baltimore Aircoil's VRC-0541B-1224N-HA — a Vertex VRC evaporative condenser rejecting 3283 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 56.4 m³/s of the maker's own printed air, with a 14.9 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 2462–4104 kW · EU

Baltimore Aircoil VRC-0597B-1224N-JA evaporative condenser (3.6 MW rejection) — modelled

Baltimore Aircoil's VRC-0597B-1224N-JA — a Vertex VRC evaporative condenser rejecting 3619 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 64.6 m³/s of the maker's own printed air, with a 22.4 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 2714–4524 kW · EU

Baltimore Aircoil VRC-0641B-1224N-KA evaporative condenser (3.9 MW rejection) — modelled

Baltimore Aircoil's VRC-0641B-1224N-KA — a Vertex VRC evaporative condenser rejecting 3886 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 69.0 m³/s of the maker's own printed air, with a 29.8 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 2915–4858 kW · EU

Baltimore Aircoil VRC-0697B-1224N-KA evaporative condenser (4.2 MW rejection) — modelled

Baltimore Aircoil's VRC-0697B-1224N-KA — a Vertex VRC evaporative condenser rejecting 4231 kW at a 40.6 °C condensing temperature and a 25.6 °C entering wet bulb, on 67.2 m³/s of the maker's own printed air, with a 29.8 kW fan. The heat comes from outside the drawing, because that is what this machine is: heat rejection, and the plant that sends it the heat is the customer's. Given exactly the rejection BAC certify, the model solves the condensing temperature the machine settles at — which is the reading, and the only figure here that is ours rather than theirs. The rating condition is an inference and the listing says so: BAC's sheets never define the condition of their Base Heat Rejection.

Examplemodelled from published data
Cooling tower / heat rejection · 3173–5288 kW · EU
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