Vesta Home, founded in 2020, is a global home furnishing innovator.

product
Products
Home CP Series Horizontal Flat Plate Condenser
 CP Series Horizontal Flat Plate Condenser
 CP Series Horizontal Flat Plate Condenser
The CP Series Horizontal Flat Plate Condenser provides efficient heat transfer and reliable refrigerant condensation in a compact horizontal design. It is suitable for commercial refrigeration, industrial cooling, cold storage, food processing, and other refrigeration applications.
  • CP Series

  • KAIDELI

  • BITZER

  • Reciprocating Compressor

  • Air-Cooled / Water-Cooled

  • 380V / 3 Phase / 50Hz

Inquire

The CP Series Horizontal Flat Plate Condenser is designed for efficient heat rejection in commercial and industrial refrigeration systems. Its horizontal flat plate configuration provides an efficient heat transfer solution while maintaining a compact equipment structure.

CP Series Horizontal Flat Plate Condenser - Interactive Explorer
Series: CP Series Horizontal Flat Plate Condenser
Structure: Compact Horizontal Table-Top Dual-Fan Configuration
Application: Commercial Refrigeration, Process Chilling & Heat Pump Systems
CP Series Horizontal Flat Plate Condenser
1
2
3
4
5
6
7
8
9
COMPONENT 01
Heat Transfer Plates
Precision-corrugated plate pack facilitating high-efficiency counter-current thermal transfer.
AISI 316L / 304 stainless steel or titanium chevron-corrugated plates, vacuum brazed or gasketed to induce high shear turbulence, self-cleaning anti-fouling flow, and exceptional heat transfer coefficients with minimal refrigerant charge.

The CP series can be used in refrigeration systems, cold storage facilities, food processing applications, industrial cooling systems, and other projects requiring reliable condenser performance.

Key Features of the CP Horizontal Flat Plate Condenser

High-Efficiency Plate Heat Transfer

The flat plate heat exchanger design provides an efficient heat transfer surface for condensing refrigerant. The plate configuration supports effective heat exchange while maintaining a compact structure.

Horizontal Condenser Design

The horizontal configuration allows flexible installation in different refrigeration system layouts. It can be integrated into refrigeration equipment where space utilization and convenient piping connections are important.

Efficient Refrigerant Condensation

The CP condenser transfers heat from high-temperature refrigerant vapor to the cooling medium, allowing the refrigerant to condense efficiently before entering the next stage of the refrigeration cycle.

Compact Heat Exchanger Structure

The horizontal flat plate condenser offers a compact design compared with some conventional heat exchange configurations. This makes it suitable for refrigeration systems with limited installation space.

Reliable Refrigeration Heat Transfer

The plate heat exchanger structure is designed to provide stable heat transfer performance during continuous refrigeration operation.

Flexible Refrigeration System Integration

The CP Series can be integrated into different refrigeration and cooling systems according to the required heat transfer capacity, refrigerant type, cooling medium, and operating conditions.

CP Series Flat Plate Condenser Technical Specifications

The CP Series Horizontal Flat Plate Condenser can be configured according to different refrigeration and heat transfer requirements. Important selection parameters may include heat transfer capacity, refrigerant type, cooling medium, working pressure, operating temperature, connection size, and installation configuration.

CP 50 1 1 B 4 Product Series (CP Series Air Cooler / Unit Cooler) Fan specifications (CM) (e.g. 50cm / 500mm fan diameter) Number of fan rows, 1: single row, 2: double row Number of fans per row (e.g. 1 fan per row) Coil specification code (e.g. B) Number of motor poles: 4: 4 poles, 6: 6 poles
CP500 Fan Series Technical Specifications

CP500 Series Technical Specifications (Air-Cooled)

Air-cooled applications (Refrigerant R404A / Inlet air temp 25°C, Condensing temp 40°C, ΔT=15K)

Model Heat exchange capacity (KW) Area Pipe volume Fan Noise dB(A) Interface specifications (mm) Weight (kg)
ΔT=15K m² dm³ Air volume (m³/h) Power (W) Current (A) Intake Bleeding
● 4-pole motor: speed 1320 r/min
CP5011B4 20.6 24.6 3.1 6600 414 0.85 52 φ22 φ16 56
CP5011C4 23.6 36.9 4.7 6400 414 0.85 52 φ22 φ16 60
CP5011D4 25.4 49.3 6.2 6000 414 0.85 52 φ22 φ16 64
CP5012B4 41.4 49.3 6.0 13200 828 1.70 55 φ28 φ22 85
CP5012C4 47.3 73.9 9.0 12800 828 1.70 55 φ28 φ22 93
CP5012D4 50.7 98.5 12.1 12000 828 1.70 55 φ28 φ22 101
CP5013B4 62.1 73.9 8.9 19800 1242 2.55 56 φ35 φ22 115
CP5013C4 70.9 110.8 13.4 19200 1242 2.55 56 φ35 φ22 126
CP5013D4 76.1 147.8 17.9 18000 1242 2.55 56 φ35 φ28 137
CP5014B4 82.7 98.5 11.8 26400 1656 3.40 57 φ35 φ28 152
CP5014C4 94.6 147.8 17.8 25600 1656 3.40 57 φ35 φ28 167
CP5014D4 101.5 197.0 23.7 24000 1656 3.40 57 φ35 φ28 182
CP5015B4 103.4 123.1 14.7 33000 2070 4.25 58 φ35 φ28 181
CP5015C4 118.2 184.7 22.1 32000 2070 4.25 58 φ42 φ28 200
CP5015D4 126.8 246.3 29.5 30000 2070 4.25 58 φ42 φ28 219
CP5022B4 82.7 98.5 12.1 26400 1656 3.40 57 φ35 φ28 170
CP5022C4 94.6 147.8 18.1 25600 1656 3.40 57 φ35 φ28 186
CP5022D4 101.5 197.0 24.1 24000 1656 3.40 57 φ35 φ28 202
CP5023B4 124.2 147.8 17.9 39600 2484 5.10 59 φ42 φ35 230
CP5023C4 141.8 221.6 26.8 38400 2484 5.10 59 φ42 φ35 252
CP5023D4 152.2 295.5 35.7 36000 2484 5.10 59 φ54 φ35 274
CP5024B4 165.5 197.0 23.7 52800 3312 6.80 61 φ54 φ35 304
CP5024C4 189.1 295.5 35.5 51200 3312 6.80 61 φ54 φ35 334
CP5024D4 202.9 394.0 47.3 48000 3312 6.80 61 φ54 φ35 364
CP5025B4 206.9 246.3 29.5 66000 4140 8.50 63 φ54 φ42 362
CP5025C4 236.4 369.4 44.2 64000 4140 8.50 63 φ54 φ42 400
CP5025D4 253.6 492.5 58.9 60000 4140 8.50 63 φ54 φ42 438
● 6-pole motor: speed 900 r/min
CP5011B6 16.0 24.6 3.1 4700 210 0.54 46 φ22 φ16 56
CP5011C6 18.5 36.9 4.7 4400 210 0.54 46 φ22 φ16 60
CP5012B6 32.0 49.3 6.0 9400 420 1.08 49 φ28 φ22 85
CP5012C6 36.9 73.9 9.0 8800 420 1.08 49 φ28 φ22 93
CP5013B6 48.0 73.9 8.9 14100 630 1.62 50 φ35 φ28 115
CP5013C6 55.4 110.8 13.4 13200 630 1.62 50 φ35 φ28 126
CP5014B6 64.0 98.5 11.8 18800 840 2.16 51 φ35 φ28 152
CP5014C6 73.9 147.8 17.8 17600 840 2.16 51 φ35 φ28 167
CP5015B6 79.9 123.1 14.7 23500 1050 2.70 52 φ35 φ28 181
CP5015C6 92.3 184.7 22.1 22000 1050 2.70 52 φ42 φ28 200
CP5022B6 64.0 98.5 12.1 18800 840 2.16 51 φ35 φ28 170
CP5022C6 73.9 147.8 18.1 17600 840 2.16 51 φ35 φ28 186
CP5023B6 96.1 147.8 17.9 28200 1260 3.24 53 φ42 φ35 230
CP5023C6 110.8 221.6 26.8 26400 1260 3.24 53 φ42 φ35 252
CP5024B6 128.1 197.0 23.7 37600 1680 4.32 55 φ54 φ35 304
CP5024C6 147.7 295.5 35.5 35200 1680 4.32 55 φ54 φ35 334
CP5025B6 160.1 246.3 29.5 47000 2100 5.40 57 φ54 φ42 362
CP5025C6 184.7 369.4 44.2 44000 2100 5.40 57 φ54 φ42 400
CP630 Fan Series Technical Specifications

CP630 Series Technical Specifications (Air-Cooled)

Air-cooled applications (Refrigerant R404A / Inlet air temp 25°C, Condensing temp 40°C, ΔT=15K)

Model Heat exchange capacity (KW) Area Pipe volume Fan Noise dB(A) Interface specifications (mm) Weight (kg)
ΔT=15K m² dm³ Air volume (m³/h) Power (W) Current (A) Intake Bleeding
● 4-pole motor: speed 1320 r/min
CP6311B4 28.8 38.5 4.8 11750 800 1.60 57 φ28 φ22 72
CP6311C4 36.3 57.7 7.2 11500 800 1.60 57 φ28 φ22 78
CP6311D4 41.5 77.0 9.6 10750 800 1.60 57 φ28 φ22 84
CP6312B4 57.5 77.0 9.3 23500 1600 3.20 60 φ28 φ22 115
CP6312C4 72.7 115.4 14.0 23000 1600 3.20 60 φ35 φ28 127
CP6312D4 83.1 153.9 18.7 21500 1600 3.20 60 φ35 φ28 139
CP6313B4 86.3 115.4 13.9 35250 2400 4.80 61 φ35 φ28 156
CP6313C4 109.1 173.2 20.8 34500 2400 4.80 61 φ35 φ28 174
CP6313D4 124.5 230.9 27.8 32250 2400 4.80 61 φ42 φ28 194
CP6314B4 115.1 153.9 18.4 47000 3200 6.40 62 φ35 φ28 206
CP6314C4 145.4 230.9 27.6 46000 3200 6.40 62 φ42 φ35 230
CP6314D4 166.2 307.9 36.8 43000 3200 6.40 62 φ42 φ35 254
CP6315B4 143.9 192.4 23.0 58750 4000 8.00 63 φ42 φ35 247
CP6315C4 181.8 288.6 34.4 57500 4000 8.00 63 φ54 φ42 278
CP6315D4 207.7 384.8 45.9 53750 4000 8.00 63 φ54 φ42 308
CP6322B4 115.1 153.9 18.7 47000 3200 6.40 62 φ42 φ35 230
CP6322C4 145.4 230.9 28.0 46000 3200 6.40 62 φ42 φ35 254
CP6322D4 166.2 307.8 37.4 43000 3200 6.40 62 φ42 φ35 278
CP6323B4 172.7 230.9 27.8 70500 4800 9.60 64 φ42 φ35 312
CP6323C4 218.1 346.2 41.6 69000 4800 9.60 64 φ54 φ42 348
CP6323D4 249.3 461.8 55.5 64500 4800 9.60 64 φ54 φ42 388
CP6324B4 230.2 307.8 36.8 94000 6400 12.80 66 2-φ42 2-φ35 412
CP6324C4 290.0 461.8 55.3 92000 6400 12.80 66 2-φ42 2-φ35 460
CP6324D4 332.4 615.7 73.7 86000 6400 12.80 66 2-φ42 2-φ35 508
CP6325B4 287.8 384.8 45.9 117500 8000 16.00 68 2-φ42 2-φ35 494
CP6325C4 363.6 577.2 68.9 115000 8000 16.00 68 2-φ54 2-φ42 556
CP6325D4 415.5 769.6 91.8 107500 8000 16.00 68 2-φ54 2-φ42 616
● 6-pole motor: speed 900 r/min
CP6311B6 25.4 38.5 4.8 9375 550 1.45 52 φ28 φ22 72
CP6311C6 31.7 57.7 7.2 8850 550 1.45 52 φ28 φ22 78
CP6311D6 34.6 77.0 9.6 8150 550 1.45 52 φ28 φ22 84
CP6312B6 50.8 77.0 9.3 18750 1100 2.90 55 φ28 φ22 115
CP6312C6 63.4 115.4 14.0 17700 1100 2.90 55 φ35 φ28 127
CP6312D6 69.2 153.9 18.7 16300 1100 2.90 55 φ35 φ28 139
CP6313B6 76.2 115.4 13.9 28125 1650 4.35 56 φ35 φ28 156
CP6313C6 95.2 173.2 20.8 26550 1650 4.35 56 φ35 φ28 174
CP6313D6 103.9 230.9 27.8 24450 1650 4.35 56 φ35 φ28 194
CP6314B6 101.5 153.9 18.4 37500 2200 5.80 57 φ35 φ28 206
CP6314C6 127.0 230.9 27.6 35400 2200 5.80 57 φ42 φ35 230
CP6314D6 138.5 307.9 36.8 32600 2200 5.80 57 φ42 φ35 254
CP6315B6 127.0 192.4 23.0 46875 2750 7.25 58 φ42 φ35 247
CP6315C6 158.7 288.6 34.4 44250 2750 7.25 58 φ54 φ42 278
CP6315D6 173.2 384.8 45.9 40750 2750 7.25 58 φ54 φ42 308
CP6322B6 101.5 153.9 18.7 37500 2200 5.80 57 φ42 φ35 230
CP6322C6 127.0 230.9 28.0 35400 2200 5.80 57 φ42 φ35 254
CP6322D6 138.5 307.8 37.4 32600 2200 5.80 57 φ42 φ35 278
CP6323B6 152.3 230.9 27.8 56250 3300 8.70 59 φ42 φ35 312
CP6323C6 190.4 346.2 41.6 53100 3300 8.70 59 φ54 φ42 348
CP6323D6 207.8 461.8 55.5 48900 3300 8.70 59 φ54 φ42 388
CP6324B6 203.1 307.8 36.8 75000 4400 11.60 61 2-φ42 2-φ35 412
CP6324C6 254.0 461.8 55.3 70800 4400 11.60 61 2-φ42 2-φ35 460
CP6324D6 277.0 615.7 73.7 65200 4400 11.60 61 2-φ42 2-φ35 508
CP6325B6 254.0 384.8 45.9 93750 5500 14.50 63 2-φ42 2-φ35 494
CP6325C6 317.4 577.2 68.9 88500 5500 14.50 63 2-φ54 2-φ42 556
CP6325D6 346.3 769.6 91.8 81500 5500 14.50 63 2-φ54 2-φ42 616

The final condenser specification should be selected according to the refrigeration system design and required heat rejection capacity.

Horizontal Plate Condenser Heat Transfer Performance

Refrigerant Condensing Process

During refrigeration operation, high-temperature and high-pressure refrigerant vapor enters the condenser. Heat is transferred through the plate heat exchanger surface to the cooling medium, allowing the refrigerant to condense into a high-pressure liquid.

Efficient Cooling Medium Circulation

The cooling medium absorbs heat from the refrigerant through the plate heat transfer surface. Proper flow rate and temperature conditions help maintain stable condenser performance.

Stable Heat Rejection

Efficient heat rejection is essential for maintaining suitable condensing pressure and supporting reliable refrigeration system operation.

Flat Plate Heat Exchanger & Condenser Component Configuration

Heat Transfer Plates

The heat transfer plates provide the primary surface for transferring heat between the refrigerant and cooling medium.

Refrigerant Connections

Refrigerant inlet and outlet connections allow the CP condenser to be integrated into the refrigeration circuit.

Cooling Medium Connections

Cooling medium connections provide the flow path required to remove heat from the refrigerant.

Sealing & Connection Components

Sealing elements and connection components help maintain separation between the refrigerant and cooling medium while supporting reliable system operation.

Condenser Support Structure

The structural components maintain the plate assembly and provide a stable configuration for installation within the refrigeration system.

CP Horizontal Flat Plate Condenser Models & Selection Guide

Selecting the appropriate CP Series condenser requires consideration of refrigeration capacity, heat rejection requirements, refrigerant type, cooling medium, condensing temperature, operating pressure, flow rate, and installation conditions.

For accurate selection, the condenser should be matched with the refrigeration compressor and other system components.

Horizontal Flat Plate Condenser Dimensions & Installation Requirements

The CP Series should be installed according to the manufacturer's recommended installation requirements. Adequate space should be provided for piping connections, inspection, cleaning, and maintenance.

The installation position should also allow proper refrigerant and cooling-medium flow while minimizing unnecessary pressure drop within the system.

CP Series Condenser Applications for Refrigeration & Industrial Cooling

Cold Storage Refrigeration

The CP horizontal flat plate condenser can be integrated into refrigeration systems used for cold storage and temperature-controlled facilities.

Food Processing Refrigeration

Food processing facilities can use plate condenser technology for refrigeration and cooling systems used in production and storage areas.

Commercial Refrigeration

The CP Series can be used in commercial refrigeration systems where compact heat exchange equipment and stable condensation performance are required.

Industrial Refrigeration Systems

Industrial refrigeration systems can integrate the CP condenser into larger refrigeration circuits for efficient refrigerant heat rejection.

Process Cooling

The flat plate condenser can also be applied to industrial cooling systems requiring controlled heat transfer between refrigerant and cooling media.

Refrigeration Equipment

The CP Series can be integrated into refrigeration equipment and customized cooling systems according to system heat transfer requirements.

Flat Plate Condenser vs Conventional Condenser: Which Is Right for Your Project?

Flat plate condensers use a plate-based heat transfer structure to provide efficient heat exchange in a compact configuration. Conventional condenser designs may use different heat transfer structures depending on the refrigeration application.

The appropriate condenser type depends on required heat rejection capacity, available installation space, refrigerant type, cooling medium, operating pressure, and system configuration.

How to Select the Right Horizontal Flat Plate Condenser

When selecting a CP Series Horizontal Flat Plate Condenser, consider:

  • Required heat rejection capacity

  • Refrigeration capacity

  • Refrigerant type

  • Condensing temperature

  • Operating pressure

  • Cooling medium

  • Cooling medium inlet temperature

  • Refrigerant flow rate

  • Cooling medium flow rate

  • Connection size

  • Installation space

  • Refrigeration system configuration

Correct condenser selection helps maintain stable condensing conditions and efficient refrigeration system operation.

Why Choose Kaideli as Your Refrigeration Equipment Manufacturer?

Kaideli provides refrigeration equipment and heat transfer solutions for commercial and industrial refrigeration applications. The CP Series Horizontal Flat Plate Condenser is designed to provide efficient heat transfer and flexible integration into different refrigeration systems.

Kaideli refrigeration equipment can be applied to cold storage, food processing, commercial refrigeration, industrial refrigeration, and process cooling projects.

CP Series Horizontal Flat Plate Condenser FAQs

What is a CP Series Horizontal Flat Plate Condenser?

The CP Series Horizontal Flat Plate Condenser is a refrigeration heat exchanger designed to remove heat from refrigerant vapor and condense the refrigerant through plate-based heat transfer.

What is the function of a flat plate condenser?

A flat plate condenser transfers heat from high-temperature refrigerant vapor to a cooling medium, allowing the refrigerant to condense into a high-pressure liquid.

What applications are suitable for the CP Series?

The CP Series can be used in commercial refrigeration, industrial refrigeration, cold storage, food processing, process cooling, and other refrigeration applications.

What factors should be considered when selecting a CP condenser?

Important factors include heat rejection capacity, refrigerant type, condensing temperature, operating pressure, cooling medium, flow rate, connection size, and installation conditions.

Can the CP Series be integrated into industrial refrigeration systems?

Yes. The CP Series can be integrated into suitable industrial refrigeration and cooling systems according to the required heat transfer capacity and operating conditions.

Keep in touch with us

Looking for the right refrigeration equipment for your cold storage project? Contact our team for product information, technical support, and a suitable refrigeration solution for your application.

Mob:+86-159 6116 8909

E-mail:aaron@freezercold.com