Camfil Filters for HVAC Systems | AHU, Bag, Compact & Panel Filters | VIETPHAT
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Camfil Filters for HVAC Systems – AHU, Bag, Compact & Panel Air Filters
Camfil Filters for HVAC Systems provide air filtration solutions for Air Handling Units, commercial ventilation, industrial HVAC, supply-air systems, return-air systems and recirculation applications.
Camfil's General Ventilation portfolio includes multiple filter configurations designed to protect people, HVAC equipment, processes and products from airborne particulate contamination. Depending on the application, an HVAC filtration system can use Panel Filters, Bag Filters, Compact Filters, Box Filters, Media Pads and Air Intake Screens.
For applications requiring control of selected odors, gases, VOCs or corrosive contaminants, Camfil also provides Molecular Filters using adsorption-based filtration technology.
VIETPHAT supports customers requiring Camfil Filters for HVAC Systems with product identification, technical selection, replacement matching and quotation according to filter model, article number, dimensions, ISO 16890 efficiency, airflow, pressure drop, frame, quantity and application.
What Are Camfil Filters for HVAC Systems?
Camfil HVAC Filters are filtration products designed for Heating, Ventilation and Air Conditioning systems in commercial, institutional and industrial applications.
Depending on the filter type and system design, they can perform several functions:
- Capture outdoor particulate contamination before it enters a building.
- Protect cooling and heating coils.
- Reduce contamination on fans and internal AHU surfaces.
- Improve supply-air particulate filtration.
- Protect downstream Fine Filters.
- Protect HEPA Filters in critical systems.
- Filter recirculated air.
- Support indoor air quality objectives.
- Control selected gaseous contaminants when molecular filtration is used.
The correct filtration configuration depends on outdoor-air quality, target contaminants, indoor-air-quality objectives, application requirements, available fan static pressure and HVAC operating conditions.
Camfil HVAC Filter Product Range
Camfil's current General Ventilation portfolio includes several major filter configurations suitable for HVAC systems.
| Filter Type | Main HVAC Function | Typical Installation |
|---|---|---|
| Panel Filter | Pre-filtration / General filtration | AHU first stage |
| Bag / Pocket Filter | Medium to fine particulate filtration | AHU first or second stage |
| Compact V-Shaped Filter | Fine particulate filtration | AHU second / final stage |
| Compact Box Filter | Fine filtration | HVAC / Clean-process pre-filtration |
| Media Pad | Pre-filtration | AHU / Ventilation equipment |
| Air Intake Screen | Large contaminant protection | Outdoor-air intake |
| Molecular Filter | Selected gases / VOC / odor control | Supply or recirculation air |
| HEPA Filter | Critical particulate filtration | Selected critical HVAC applications |
Camfil Filters for Air Handling Units
Air Handling Units frequently use several filtration stages because a single filter does not necessarily provide the best balance between coarse-particle removal, fine-particle filtration, equipment protection, pressure drop and service life.
A general HVAC configuration may be:
Outdoor Air → Pre Filter → Fine Filter → Cooling Coil → Fan → Supply Air
A more contamination-sensitive application may use:
Outdoor Air → Pre Filter → Fine Filter → HEPA Filter → Supply Air
Where gaseous contaminants must also be controlled:
Outdoor Air → Pre Filter → Fine Filter → Molecular Filter → Supply Air
The actual filter sequence should always follow the HVAC design and target contaminants.
Why Use Multiple Filtration Stages in HVAC?
Multi-stage filtration allows different filters to perform different functions.
A Pre Filter can capture larger particles before they reach the higher-efficiency downstream stage.
This can help:
- Reduce loading on Fine Filters.
- Extend downstream filter service life.
- Protect cooling coils.
- Protect heating coils.
- Keep fans cleaner.
- Reduce contamination inside AHUs.
- Protect HEPA Filters where installed.
- Support more stable HVAC performance.
Camfil Panel Filters for HVAC Systems
Panel Filters are commonly used as Pre Filters or General Ventilation Filters.
Camfil's Panel Filter portfolio includes products designed to capture larger particulate contamination and protect secondary filters and HVAC components.
Applications can include:
- AHU Pre Filters.
- Commercial HVAC.
- Industrial HVAC.
- Outdoor-air filtration.
- Return-air filtration.
- Protection of Fine Filters.
The exact Panel Filter should be selected according to dimensions, efficiency, media, airflow and pressure drop.
Camfil Pre Filters for HVAC Systems
Pre Filters are installed upstream of Fine Filters and other sensitive components.
Their role can include protection of:
- Cooling coils.
- Heating coils.
- Fans.
- Heat exchangers.
- Bag Filters.
- Compact Filters.
- HEPA Filters.
A correctly selected Pre Filter can help reduce the particulate loading reaching downstream filtration stages.
However, the Pre Filter also contributes to total HVAC system resistance, so pressure drop should be included in selection.
Camfil Bag Filters for HVAC Systems
Camfil identifies Bag Filters, also called Pocket Filters, as among the most common Air Filters used in HVAC applications.
They can be used as:
- First-stage supply-air filters.
- Second-stage supply-air filters.
- Final filters for selected comfort HVAC systems.
- Prefilters for HEPA installations.
- Exhaust-air filters.
- Recirculation-air filters.
Compared with many shallow filter configurations, Bag Filters provide a relatively large media area and can offer high dust-holding capacity.
Camfil Hi-Flo Filters for HVAC Systems
Hi-Flo is one of Camfil's established Bag Filter families for HVAC and industrial air filtration.
Camfil currently describes Hi-Flo as a glass-fiber Bag Filter range with a robust metal header frame, flexible dimensions and different bag configurations.
Depending on the selected product, Hi-Flo provides:
- ISO 16890 filtration performance.
- Low initial pressure drop.
- High dust-holding capacity.
- Long operating life.
- Multiple pocket configurations.
- Different dimensions for HVAC applications.
Why Hi-Flo Is Used in HVAC Systems
Bag-filter performance depends not only on filtration efficiency but also on how air is distributed through the filter pockets.
Camfil's Hi-Flo design uses multiple pockets to provide a large filtration area.
This can support:
- Fine particulate filtration.
- High dust-holding capacity.
- Reduced filter-change frequency.
- Relatively low resistance.
- Energy-efficient HVAC operation when correctly selected.
Camfil Hi-Flo Filter Selection
When selecting or replacing Hi-Flo Filters, identify:
- Exact Hi-Flo model.
- Camfil article number.
- ISO 16890 classification.
- Width.
- Height.
- Pocket depth.
- Number of pockets.
- Rated airflow.
- Initial pressure drop.
Two Hi-Flo Filters with similar face dimensions can have different pocket configurations, efficiencies, airflow ratings and pressure drops.
Camfil Compact Filters for HVAC Systems
Compact Filters provide a large filtration surface within a rigid and relatively space-efficient construction.
Camfil's General Ventilation portfolio includes:
- Compact Filters with header frames.
- Compact box-type filters.
Compact Filters can be used as high-efficiency General Ventilation Filters in commercial and industrial HVAC systems and as preparatory filtration for cleaner processes.
Camfil Opakfil Filters for HVAC Systems
Opakfil belongs to Camfil's compact V-shaped header-frame filter range.
Camfil describes these V-shaped filters as commonly used as a second filtration stage in supply air.
Depending on the application, they can function as:
- Final General Ventilation Filters.
- Second-stage HVAC Filters.
- Fine supply-air filters.
- Second-stage Pre Filters for cleanroom applications.
Selected Opakfil products provide filtration efficiency up to ISO ePM1.
Advantages of V-Shaped Compact Filters
V-shaped filter construction allows multiple pleated media packs to be installed within a compact frame.
Depending on the exact product, this design can provide:
- Large filtration area.
- High airflow capability.
- Compact installation depth.
- Fine particulate filtration.
- Relatively low pressure drop.
V-shaped construction should not be confused with HEPA classification. A V-Bank filter describes a physical configuration, while HEPA describes tested filtration performance.
Camfil Compact Box Filters for HVAC Systems
Camfil Compact Box Filters use deep-pleated filtration media and are available in different configurations.
Camfil identifies box-type filters for applications including:
- Air-conditioning systems.
- Commercial HVAC.
- Industrial HVAC.
- Preparatory cleanroom filtration.
Selection should consider efficiency, airflow, pressure drop, installation depth and available filter-bank configuration.
Camfil Filters for HVAC Systems and ISO 16890
ISO 16890 is the principal modern classification framework for General Ventilation Air Filters.
Its main particulate categories include:
- ISO Coarse.
- ePM10.
- ePM2.5.
- ePM1.
Camfil's current General Ventilation portfolio includes products covering efficiency levels from ePM10 through ePM1.
The complete tested efficiency of the finished filter should be reviewed rather than judging performance from filter media or construction alone.
Camfil ePM10 Filters for HVAC Systems
ePM10 filtration targets particulate matter within the PM10 size fraction according to ISO 16890 testing.
Depending on the application, these filters can be used for General Ventilation and as part of a multi-stage HVAC filtration system.
Camfil ePM2.5 Filters for HVAC Systems
Where control of finer particulate matter is required, selected Camfil HVAC Filters can provide performance within the ePM2.5 category.
Selection should consider the complete tested efficiency, airflow and pressure drop rather than only the category name.
Camfil ePM1 Filters for HVAC Systems
Camfil offers selected General Ventilation Filters with performance up to ISO ePM1.
These can be useful where fine particulate control is an important HVAC objective.
Applications can include:
- Commercial buildings.
- Healthcare ventilation.
- Urban buildings.
- Industrial facilities.
- Clean-process pre-filtration.
Is Camfil ePM1 the Same as HEPA?
No.
ISO ePM1 is a classification for General Ventilation Filters under ISO 16890.
HEPA Filters belong to a separate high-efficiency particulate filtration category tested according to standards such as EN 1822 and ISO 29463.
An ePM1 Filter should therefore not be described as HEPA unless the actual finished filter has been independently classified as HEPA under the applicable standard.
Camfil Filters and Former EN 779 Classes
Existing HVAC systems may still contain Camfil Filters specified using former EN 779 classifications such as:
- G4.
- M5.
- M6.
- F7.
- F8.
- F9.
These classifications remain useful for identifying older filters and historical specifications.
For current General Ventilation Filter selection, ISO 16890 data should be reviewed where applicable.
There is no universal exact one-to-one conversion between former EN 779 classes and ISO 16890.
Camfil HEPA Filters for HVAC Systems
Some critical HVAC applications require particulate filtration beyond conventional General Ventilation Filter performance.
Camfil provides EPA, HEPA and ULPA Filters tested according to EN 1822 and ISO 29463.
Potential HVAC applications can include selected areas in:
- Hospitals.
- Pharmaceutical facilities.
- Cleanrooms.
- Laboratories.
- Food manufacturing.
- Electronics manufacturing.
- Semiconductor facilities.
HEPA filtration is application-specific and should not automatically be added to every HVAC system.
General HVAC Filter vs HEPA Filter
| Parameter | General HVAC Filter | HEPA Filter |
|---|---|---|
| Typical Standard | ISO 16890 | EN 1822 / ISO 29463 |
| Typical Classes | ISO Coarse, ePM10, ePM2.5, ePM1 | H13, H14 etc. |
| Main Application | General ventilation | Critical particulate control |
| Pressure Drop | Product dependent | Product dependent; system review required |
| Installation | Standard HVAC filter banks | Compatible sealed housing required |
Can HEPA Be Added to an Existing HVAC System?
Potentially, but an engineering review should be completed first.
Important considerations include:
- Available fan static pressure.
- Required system airflow.
- HEPA pressure drop.
- Filter housing.
- Seal integrity.
- Bypass leakage.
- Space availability.
- Required integrity testing.
Simply placing a HEPA Filter into an existing HVAC filter bank does not guarantee HEPA-level system performance.
Camfil Molecular Filters for HVAC Systems
Particulate Filters capture airborne particles but are generally not designed to remove gaseous contamination.
Camfil provides Molecular Filters for selected:
- Odors.
- VOCs.
- Ozone.
- Acid gases.
- Basic gases.
- Corrosive gases.
- Airborne Molecular Contamination.
Camfil's Molecular Filters use adsorption technology and commonly use activated carbon, activated alumina or specialty adsorbents according to the target contaminant.
Camfil Molecular Filters and HVAC Air Quality
Molecular filtration may be appropriate where the HVAC system must address both particulate and gaseous contaminants.
A potential configuration is:
Pre Filter → Fine Particulate Filter → Molecular Filter
Upstream particulate filtration can help protect molecular media from unnecessary particulate loading.
Standard activated carbon should not be assumed to remove every gaseous contaminant. The adsorbent should be selected according to the target gas or vapor.
Camfil City-Flo for HVAC Systems
City-Flo combines particulate and molecular filtration in a Bag Filter configuration.
Selected current products provide ISO ePM1 particulate filtration together with tested performance for selected ozone and VOC applications.
This 2-in-1 configuration can be useful where outdoor air contains both particulate matter and selected gaseous pollutants.
Camfil CityCarb for HVAC Systems
CityCarb combines particulate and molecular filtration in a compact V-shaped configuration.
Camfil currently identifies selected CityCarb products with filtration performance up to ISO ePM1 and testing for selected:
- Ozone.
- VOCs.
- SO2.
- NO2.
- Organic acids.
CityCarb is intended for recirculation and outdoor-air applications.
Actual suitability should be confirmed for the target contaminant and operating conditions.
Camfil CamCarb for HVAC Systems
CamCarb belongs to Camfil's Molecular Filter portfolio.
Camfil provides CamCarb configurations for AHUs and housings, with different adsorbents available according to the target contaminant.
Potential applications include:
- Commercial HVAC.
- Industrial HVAC.
- Corrosion control.
- Outdoor-air treatment.
- Recirculation-air treatment.
Particulate Filters vs Molecular Filters
| Parameter | Particulate HVAC Filter | Molecular Filter |
|---|---|---|
| Main Target | Particles | Gases / Vapors / Molecules |
| Typical Technology | Fibrous filtration | Adsorption / Chemisorption |
| PM1 / PM2.5 | Depending on tested efficiency | Not primary function |
| VOC Control | Generally no | Target-specific |
| Odor Control | Generally no | Target-specific |
| Pressure Drop for Replacement | Useful loading indicator | Not sufficient to determine media saturation |
Camfil Filters for Commercial HVAC Systems
Camfil HVAC Filters can be used in commercial buildings such as:
- Office buildings.
- Shopping centers.
- Hotels.
- Schools.
- Public buildings.
- Mixed-use developments.
- Institutional facilities.
Filter selection should consider outdoor-air quality, occupancy, ventilation rates, indoor-air-quality objectives and HVAC fan capability.
Filtration should be considered together with adequate ventilation, source control, humidity management and system maintenance.
Camfil Filters for Industrial HVAC Systems
Industrial facilities can use Camfil General Ventilation Filters for:
- Factory comfort HVAC.
- Production-area ventilation.
- Equipment rooms.
- Make-Up Air Units.
- Air Handling Units.
- Clean-process pre-filtration.
General HVAC Filters should not be confused with dedicated industrial dust-collection systems.
Processes generating high dust concentrations, fumes or mist may require dedicated cartridge collectors, baghouses, scrubbers or other source-capture equipment.
Camfil Filters for Hospital HVAC Systems
Healthcare facilities can require different filtration levels according to room function and infection-control requirements.
A hospital HVAC system may use:
- Pre Filters.
- Fine General Ventilation Filters.
- High Efficiency Filters.
- HEPA Filters in selected critical areas.
HEPA filtration is not universally required throughout every hospital. Filter selection should follow the ventilation and infection-control requirements applicable to each area.
Camfil Filters for Pharmaceutical HVAC Systems
Pharmaceutical facilities can use multiple HVAC filtration stages, including:
- Outdoor-air Pre Filters.
- Fine Filters.
- HEPA Filters.
- Molecular Filters where process contamination requires them.
Filter class alone does not establish GMP compliance.
The complete contamination-control strategy also includes room classification, airflow, pressure cascade, temperature, humidity, process requirements, qualification and maintenance.
Camfil Filters for Food Factory HVAC Systems
Food and beverage manufacturing can require different filtration strategies according to hygiene zoning and process exposure.
Potential applications include:
- General production HVAC.
- Packaging areas.
- High-care production areas.
- Warehouse ventilation.
- Clean processing environments.
HEPA filtration can be appropriate for selected critical processes but is not automatically required throughout every food-production facility.
Camfil Filters for Semiconductor HVAC Systems
Semiconductor manufacturing requires careful distinction between particulate contamination and Airborne Molecular Contamination.
A system may use:
Pre Filter → Fine Filter → HEPA / ULPA
and, where required:
Target-Specific Molecular Filtration
HEPA and ULPA Filters control particles but generally do not provide the target-specific gaseous AMC control performed by Molecular Filters.
Camfil Filters for Data Center HVAC Systems
Data-center filtration requirements depend on outdoor-air use, recirculation strategy and environmental contamination.
Important factors include:
- Outdoor particulate concentration.
- Economizer operation.
- PM1 and PM2.5 exposure.
- Corrosive gas risk.
- Airflow.
- Filter pressure drop.
- Continuous operating hours.
- Energy consumption.
HEPA should not automatically be specified for every data center. Where corrosive gases are a concern, target-specific molecular filtration may also need evaluation.
How to Select Camfil Filters for HVAC Systems
1. Define the Application
Identify whether the system is commercial HVAC, industrial HVAC, AHU, FAHU, MAU, clean-process ventilation or another application.
2. Identify the Target Contaminants
Determine whether the system needs to control coarse dust, PM10, PM2.5, PM1, critical fine particles, gases, VOCs or a combination.
3. Select the Required Efficiency
For General Ventilation Filters, review ISO 16890 performance.
4. Confirm Filter Dimensions
Measure:
Width × Height × Depth (W × H × D)
5. Confirm Airflow
Verify the rated airflow through each filter and filter bank.
6. Review Pressure Drop
Check that the selected filters are compatible with available fan static pressure.
7. Review Operating Conditions
Consider temperature, humidity, dust loading, operating hours and outdoor-air conditions.
8. Evaluate Lifecycle Cost
Consider purchase cost together with pressure drop, energy use, service life, maintenance and replacement frequency.
Camfil HVAC Filter Size
Camfil HVAC Filters are available in multiple sizes and configurations.
When requesting a filter, specify actual dimensions in millimeters:
W × H × D
For Bag Filters, also provide:
- Pocket length.
- Number of pockets.
For Compact Filters, identify the header configuration and complete filter depth.
Why Dimensions Alone Are Not Enough
Two Air Filters with the same external dimensions can differ substantially in:
- Filtration efficiency.
- Media type.
- Media area.
- Rated airflow.
- Initial pressure drop.
- Dust-holding capacity.
- Frame construction.
- Energy characteristics.
A replacement should therefore be selected using the complete technical specification.
Camfil HVAC Filter Pressure Drop
Pressure drop is the airflow resistance created by the filter.
It can influence:
- System airflow.
- Fan static pressure.
- Fan energy consumption.
- Room pressure.
- Heating and cooling performance.
- Overall HVAC operation.
Pressure drop should therefore be reviewed whenever filter efficiency or filter type is changed.
Camfil HVAC Filters and Energy Consumption
Air Filters operate whenever the HVAC fan is running, so filter resistance can contribute to long-term fan energy consumption.
A lifecycle evaluation can include:
- Initial purchase price.
- Initial pressure drop.
- Average operating pressure drop.
- Rated airflow.
- Filtration efficiency.
- Service life.
- Replacement frequency.
- Maintenance labor.
The cheapest filter to purchase is therefore not necessarily the lowest-cost filter to operate.
Camfil HVAC Filter Replacement
When replacing an existing Camfil HVAC Filter, check the original filter label for:
- Product family.
- Article number.
- Dimensions.
- Efficiency.
- Rated airflow.
- Initial pressure drop.
- Frame construction.
A clear photograph of the original Camfil label can help identify the correct replacement.
Can Another Brand Replace a Camfil HVAC Filter?
A technically compatible alternative may be possible where equivalent products are permitted.
Compare:
- Actual dimensions.
- ISO 16890 performance.
- Rated airflow.
- Initial pressure drop.
- Media area.
- Frame construction.
- Operating conditions.
Equal dimensions alone do not establish technical equivalence.
For validated or critical systems, changing filter manufacturer or type may require additional technical review, testing or requalification.
Can a Higher Efficiency Filter Replace the Existing HVAC Filter?
Potentially, but higher efficiency is not automatically a drop-in upgrade.
Before changing filters, review:
- New filtration efficiency.
- Initial pressure drop.
- Expected loaded pressure drop.
- Available fan static pressure.
- Required system airflow.
- Filter-bank dimensions.
- HVAC operating requirements.
A filter that creates excessive resistance can reduce system airflow even if it provides higher particulate efficiency.
When Should Camfil HVAC Filters Be Replaced?
There is no universal replacement interval for every Camfil HVAC Filter.
Service life depends on:
- Outdoor-air quality.
- Dust concentration.
- Operating hours.
- Airflow.
- Filter-media area.
- Upstream filtration.
- Environmental conditions.
- Allowable final pressure drop.
Where practical, differential-pressure monitoring provides useful information about particulate-filter loading.
Can Camfil HVAC Filters Be Washed?
Only filters specifically designed for cleaning and reuse should be washed.
Conventional Bag Filters, Fine Filters and Compact Filters should generally be replaced rather than washed unless the exact Camfil product documentation explicitly identifies the filter as washable or reusable.
When Should Camfil Molecular HVAC Filters Be Replaced?
Molecular Filter replacement should not normally be determined from differential pressure alone.
Adsorbent saturation can occur without a major increase in filter resistance.
Service life can depend on:
- Target contaminant.
- Contaminant concentration.
- Adsorbent type.
- Adsorbent quantity.
- Temperature.
- Relative humidity.
- Air velocity.
- Operating hours.
For critical applications, appropriate gas monitoring or media-life analysis may be required.
Camfil Filters for HVAC Systems Price
Camfil HVAC Filter prices depend on the exact technical specification.
Important factors include:
- Camfil product family.
- Article number.
- Dimensions.
- Efficiency.
- Media.
- Rated airflow.
- Pressure drop.
- Frame construction.
- Quantity.
- Current availability.
- Delivery requirements.
For accurate pricing, the exact Camfil article number or complete technical specification should be provided.
Camfil Filters for HVAC Systems Quotation
For quotation, provide:
| Parameter | Required Information |
|---|---|
| Brand | Camfil |
| Product Family | Hi-Flo / Opakfil / Panel / Compact / Molecular / Other |
| Article Number | Exact Camfil code where available |
| Dimensions | W × H × D mm |
| Efficiency | ISO Coarse / ePM10 / ePM2.5 / ePM1 / Other |
| Airflow | m³/h |
| Initial Pressure Drop | Pa |
| Application | AHU / FAHU / MAU / Commercial / Industrial HVAC |
| Quantity | Required number of filters |
Frequently Asked Questions About Camfil Filters for HVAC Systems
Which Camfil Filters Are Used in HVAC Systems?
Camfil's General Ventilation portfolio includes Panel Filters, Bag Filters, Compact Filters, Compact Box Filters, Media Pads and Air Intake Screens. Molecular Filters can be added where selected gaseous contaminants must also be controlled.
What Is Camfil Hi-Flo?
Hi-Flo is a Camfil Bag Filter family designed for HVAC and industrial air filtration. Different models are available with different ISO 16890 efficiencies, dimensions and pocket configurations.
What Is Camfil Opakfil?
Opakfil is a Camfil V-shaped Compact Filter family commonly used as a second-stage supply-air filter. Selected products provide performance up to ISO ePM1.
Is Camfil Opakfil a HEPA Filter?
V-shaped construction alone does not indicate HEPA efficiency. The actual filtration class of the selected product must be verified.
What Is the Difference Between a Panel Filter and Bag Filter?
Panel Filters are commonly used for pre-filtration and equipment protection, while Bag Filters generally provide a larger filtration area and can be used for finer General Ventilation filtration.
Is ePM1 the Same as HEPA?
No. ePM1 is an ISO 16890 General Ventilation classification. HEPA is a separate high-efficiency particulate filtration category.
Can Camfil Filters Remove PM2.5?
Selected Camfil General Ventilation Filters have tested ISO 16890 performance for particulate fractions including ePM2.5 and ePM1. Actual removal performance should be based on the selected filter's tested classification.
Do Camfil HVAC Filters Remove VOCs?
Conventional particulate filters are not primarily designed for VOC removal. Camfil Molecular or combination particulate/molecular products should be evaluated for selected VOC and gas-control applications.
Can I Add a HEPA Filter to My AHU?
Potentially, but fan static pressure, airflow, housing, sealing and integrity-testing requirements should be reviewed before adding HEPA filtration.
How Often Should Camfil HVAC Filters Be Replaced?
There is no universal replacement interval. Actual service life depends on contaminant loading, operating hours, airflow, filter configuration and allowable final pressure drop.
Can Camfil HVAC Filters Be Washed?
Only products specifically designed as washable or reusable should be cleaned for reuse. Conventional Bag, Fine and Compact Filters are generally replaced.
How Do I Identify My Existing Camfil HVAC Filter?
Check the filter label for the Camfil product family, article number, dimensions, efficiency, rated airflow and pressure drop. A clear photograph of the label is useful for replacement identification.
How Do I Request Camfil HVAC Filter Pricing?
Provide the product family or article number, dimensions, ISO 16890 efficiency, airflow, pressure drop where available, application and required quantity.
Contact VIETPHAT for Camfil Filters for HVAC Systems
For consultation or quotation for Camfil Filters for HVAC Systems, AHU, FAHU, MAU, commercial buildings and industrial ventilation, please contact VIETPHAT:
- Zalo / Hotline: 0971 344 344
- Sales: 0827 077 078
- Sales: 0829 077 078
- Email: sales@vietphat.com
- Website: www.vietphat.com