295421-YTG-B-0707

EXTENDED AIR FLOW DATA1 FOR 208 VOLT - HEAT PUMP MODELS

 

Blower Motor

 

 

 

 

208 Volt

 

 

 

 

Models

 

 

 

CFM @ External Static Pressure - IWC

 

 

 

Speed

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

0.10

0.20

0.30

0.40

0.50

0.60

0.70

0.80

0.90

1.00

 

High

855

819

779

752

698

657

596

531

452

360

F4FP024H06T2*

Med.

760

733

706

670

634

589

535

472

395

310

 

Low

585

567

545

518

486

457

405

344

257

142

 

High

1143

1089

1035

977

914

851

776

692

581

451

F4FP030H06T2*

Med.

941

936

895

837

770

724

643

562

445

328

 

Low

770

738

702

662

612

561

495

402

300

171

 

High

1235

1179

1125

1058

1008

947

885

804

701

580

F4FP036H06T2*

Med.

1080

1035

990

936

887

840

791

716

640

528

 

Low

954

914

873

833

774

728

666

595

515

408

 

High

1143

1089

1035

977

914

851

776

692

581

451

F4FP040H06T2*

Med.

941

936

895

837

770

724

643

562

445

328

 

Low

770

738

702

662

612

561

495

402

300

171

 

High

1400

1418

1350

1278

1215

1145

1073

991

897

784

F4FP042H06T2*

Med.

1314

1266

1197

1135

1071

1012

947

864

758

625

 

Low

1125

1080

1040

990

945

901

838

766

676

568

 

High

1418

1382

1328

1251

1179

1120

1032

927

807

661

F4FP045H06T2*

Med-high

1238

1184

1130

1067

999

936

850

763

659

545

Med-low

1089

1044

999

945

882

829

760

663

576

480

 

 

Low

932

891

846

801

743

693

628

554

472

389

 

High

2209

2140

2093

2000

1939

1864

1746

1724

1655

1587

 

Med High

1945

1906

1871

1819

1784

1741

1667

1640

1595

1550

F5FP048H06T2*

Med

1739

1690

1640

1602

1559

1516

1470

1431

1387

1343

 

Med Low

1506

1464

1415

1369

1325

1283

1238

1193

1139

1100

 

Low

1301

1248

1197

1151

1095

1054

1005

958

909

860

 

High

2134

2124

2052

1979

1861

1756

1639

1597

1512

1427

 

Med High

1916

1875

1838

1777

1744

1671

1594

1584

1537

1490

F5FP060H06T2*

Med

1716

1671

1613

1569

1523

1475

1429

1384

1337

1290

 

Med Low

1494

1435

1390

1341

1284

1241

1194

1139

1087

1036

 

Low

1276

1223

1168

1115

1068

1009

965

902

847

792

 

High

2057

1976

1895

1814

1728

1661

1593

1517

1431

1337

F4FV060H06T2*

Med.

1913

1818

1719

1625

1535

1437

1342

1247

1152

1057

 

Low

1490

1445

1395

1350

1305

1258

1194

1120

1038

946

 

 

 

 

 

 

 

 

 

 

 

 

NOTE: Air flow data shown above 0.50” W.C. external static pressure is for REFERENCE ONLY. Maximum allowable external static when electric heat is used is limited to 0.50” W.C. Maximum allowable external static pressure may also be limited by minimum CFM requirements for proper Heat Pump operation.

1. Includes Return Air Filter and Largest Electric Heater.

All F*FP series air handler units are UL Listed up to 0.50" w.c. external static pressure, including air filter, wet coil, and largest KW size heater.

APPLICATION FACTORS-RELATED CFM VS. ACTUAL CFM

% Of Rated Airflow

80%

90%

RATED CFM

110%

120%

 

 

 

 

 

 

Capacity Factor

0.96

0.98

1.00

1.02

1.03

 

 

 

 

 

 

Unitary Products Group

5

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Image 5
York F*FV, F*FP Extended AIR Flow DATA1 for 208 Volt Heat Pump Models, Application FACTORS-RELATED CFM VS. Actual CFM

F*FV, F*FP specifications

York F*FV and F*FP are two advanced HVAC systems designed for commercial and industrial applications, delivering optimized performance and energy efficiency. These models are part of York's commitment to innovative climate control solutions that meet the diverse needs of modern buildings.

The F*FV series is known for its flexible configurations, catering to various indoor environments. This series is engineered with powerful variable-speed fans that adjust airflow according to real-time demand, ensuring not only comfort but also significant energy savings. The integration of advanced inverter technology allows for precise control of compressor speed, which results in lower energy consumption while maintaining stable temperature conditions.

On the other hand, the F*FP series is distinguished by its high cooling and heating capacities, making it suitable for larger facilities such as manufacturing plants and data centers. These systems utilize scroll compressors, which are recognized for their reliability and quiet operation. The F*FP's design prioritizes easy maintenance, with service access points strategically placed to minimize downtime.

Both series utilize advanced refrigerants that comply with environmental regulations, ensuring that users can expect eco-friendly operation. The systems are equipped with intelligent control features, including Wi-Fi connectivity and remote monitoring capabilities. This allows facility managers to oversee operations and make adjustments in real time, leading to enhanced energy management and operational efficiency.

York has equipped both F*FV and F*FP systems with comprehensive diagnostic tools. These features aid technicians in troubleshooting and maintaining the systems, thereby extending their lifespan and ensuring optimal performance. The user-friendly interfaces make it simple for operators to navigate system settings, monitor performance metrics, and receive alerts for maintenance needs.

Notably, both series are designed with robust construction to withstand harsh operating conditions while providing low noise levels, an essential characteristic for environments where minimal disturbance is critical. The systems are also versatile, supporting various installation types, including rooftop, split, and packaged configurations.

In summary, York’s F*FV and F*FP series stand out in the HVAC market, offering a combination of energy efficiency, cutting-edge technology, and ease of use. These systems provide reliable climate control to meet the evolving needs of commercial and industrial spaces, ensuring comfort while promoting sustainability. Whether it’s the versatility of the F*FV or the high capacity of the F*FP, York delivers solutions that enhance productivity and operational effectiveness.