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    Kompresory-Vzduchotechnika.cz
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    • Special offer
    • Compressors
      • Black Wind reciprocating compressors; cheap and simple design
      • ABAC reciprocating compressors; Base line - basic
      • Atmos reciprocating compressors; PERFECT cast iron series
      • Walter reciprocating compressors; GK cast iron robust machines
      • ABAC reciprocating compressors; Line series
        • Compressors with special design; SUITCASE-MULTIBOX-XPAND,
        • Portable compressors O10P/O15N; 8 bar to 102 l/min,
        • Mobile compressors L20N; 10 bar to 122 l/min,
        • L25P-L30PN oil compressors; 10 bar to 186 l/min,
        • Mobile compressors V30; 10 bar to 265 l/min,
        • Mobile compressors V36; 10 bar to 277 l/min,
        • Mobile compressors A29; 10 bar to 230 l/min,
        • Mobile compressors A39; 10 bar to 283 l/min
      • ABAC reciprocating compressors; Professional comfort series
        • BX Mobile Compressors; professional mainstream applications,
        • A29B single-stage compressors; 10 bar to 184 l/min,
        • A39B single-stage compressors; 10 bar to 350 l/min,
        • A49B two-stage compressors; 11 bar to 595 l/min,
        • Two-stage compressors B59-B70; 11 bar to 932 l/min,
        • Slow-speed compressors B60-B70; 11 bar to 870 l/min,
        • Compressors with dryer B59-B70; 11 bar to 932 l/min,
        • Vertical compressors A39-B70; 11 bar to 932 l/min,
        • Tandem compressors B59-B70; 11 bar to 1864 l/min,
        • Compressors 15 bar B60-B70; 15 bar up to 716 l/min,
        • CA reciprocating compressors; cast iron industrial design,
        • B series compressors; on frame without vessel
      • ABAC reciprocating compressors; Pro Zero oil-free series
      • ABAC reciprocating compressors; Pro Silent series
        • Single stage A29B-A39B; quiet mobile design,
        • Single-stage A29B-A39B; quiet stationary design,
        • Soundproof compressors A29B; with 27 L airbox cover,
        • SLN reciprocating compressors; without airbox,
        • Compressors soundproofed; covered on the airbox,
        • Compressors soundproof; covered with dryer,
        • Silent Mini; oil-free small airbrush
      • Super Silent compressors; super quiet oil-free design
      • CLR reciprocating compressors; oil-free dental design
      • CNR reciprocating compressors; oil-free medical according to ISO
      • Combustion compressors; petrol and diesel engines
      • Screw compressors; for continuous operation
        • ABAC compressors; compact screw compressors 2,2 - 22 kW,
        • SCR screw compressors; maximum savings 7.5 - 75 kW
      • Pressure vessels; self-contained and equipped
        • Pressure vessels up to 50 l; up to 16 bar according to SPVD directive,
        • Pressure vessels 100-720 l; up to 16 bar according to SPVD directive,
        • Pressure vessels up to 3000 l; up to 16 bar according to PED,
        • Pressure vessels equipped; fitted with TÜV certification,
        • Fittings sets; accessories for vessels,
        • Pressure vessels; low temperature and liquid 1,
        • Pressure vessels 100-3 000 l; for vacuum accumulation -1 bar
      • Compressor accessories; oil-drain-valves
        • Pressure switches; automatic machine switching,
        • Oils for compressors; oils for pneumatic tools,
        • Automatic dischargers; condensate discharge,
        • Drain valves; condensate removal,
        • Silent blocks; prevent machine vibrations,
        • Suction filters; complete and replacement liners,
        • Check valves; replacement relief valves,
        • Pressure regulators; with bottom connection,
        • Compressor units; separate design,
        • Service kits; basic and advanced machine maintenance,
        • Oil signs; for compressors,
        • Monitoring units; Mth monitoring,
        • Safety valves; spare accessories
    • Air conditioning
      • Treatment units; basic units for air
        • P2 treatment units; miniature version up to 12 bar,
        • Treatment units A2; basic design up to 10 bar,
        • B2 treatment units; metallic design up to 18 bar,
        • I3 treatment units; compact design up to 13 bar,
        • I8 treatment units; robust design up to 18 bar,
        • Futura treatment units; ATEX up to 16 bar,
        • Combibloc treatment units; compact up to 16 bar,
        • Standard treatment units; high flow design,
        • Treatment units A1X; stainless steel AISI316
      • Industrial filtration; ISO 8573 - ISO 12500
        • Omega air filters; 16 to 64 bar,
        • High pressure filters CHP/IHP; carbon and stainless steel up to 400 bar,
        • NGF air filtration; including clogging indication,
        • Stainless steel process filters; air and gas distribution,
        • Sterile stainless steel filters; SFS and SPF filtration,
        • Vacuum filters; filtration for vacuum,
        • PPA filter system; for painting equipment,
        • B-AIR filtration; for breathable air,
        • Filters in AFS design; silicone-free filtration,
        • Accessories for filters; inserts, indications,...
      • Air dryers; air moisture removal
        • RDP condensation dryers; pressure dew point +3 °C,
        • Condensation dryers WDF; dew point +3°C with filters,
        • HDI air dryers; pressure dew point +4°C,
        • RDL condensing dryers; pressure dew point +5°C,
        • Cool air dryers; pressure dew point +5°C,
        • MDX air dryers; pressure dew point +3°C,
        • ADRY air dryers; smaller adsorption -40°C,
        • BDRY air dryers; large adsorption -40°C,
        • MADRY air dryers; membrane -40°C,
        • Activated carbon columns; activated carbon separation
      • Pressure regulators; precision robust design
        • Pressure regulators 280; 25 bar secondary venting,
        • Pressure regulators 286; 40 bar secondary venting,
        • Pressure regulators 302; 60 bar secondary venting,
        • Pressure regulators 417; 40 bar high flow,
        • DRI pressure regulator; for remote control,
        • DRF pressure regulators; pilot control,
        • FDR pressure regulators; high precision design,
        • Pressure regulators 120; input up to 200 bar,
        • Proportional controllers; electric signal control
      • Cyclone separators; cyclone filtration principle
        • Cyclone separators AAFC; threaded up to 16 bar,
        • Cyclone separators CS; flanged angle separators up to 16 bar,
        • SFH cyclone separators; flanged up to 16 bar,
        • HFC cyclone separators; threaded up to 50 bar,
        • Cyclone separators CHP; carbon steel up to 400 bar,
        • Cyclone separators IHP; stainless steel up to 400 bar
      • Water-oil separators; separates water from oil
        • WOSM separators; compact up to 2 500 l/min,
        • WOS separators; robust up to 35,000 l/min
    • Hoses
      • Plastic hoses; PUJ - PA - PTF - PE
        • PUJ polyurethane hoses; the most used hoses,
        • Polyamide PA11 tubing; quality Rilsan design,
        • PE polyethylene tubing; soft impact resistant,
        • PA6 polyamide hoses; harder nylon hoses,
        • Tubing made of polyamide PA12; with Longlife life,
        • Polyamide hoses PA12; for air brakes,
        • Tubing made of polyurethane C98; elastollan flexible,
        • Polyurethane tubing U.V.; UV-resistant,
        • PU double tubing; polyurethane double,
        • TEF Teflon tubing; for high temperatures,
        • PVDF tubing; for aggressive media,
        • PFA tubing; Fluoropolymer design,
        • FEP tubing; fluoropolymer tubing,
        • Polyamide PA12 tubing; ATEX antistatic,
        • PA12 Extraflex tubing; with high flexibility,
        • Non-pressure PVC tubing; soft PVC,
        • SIL pressureless tubing; food grade silicone,
        • Protective spirals; for hose bundles
      • Pressure hoses with braid; air - oil - gases
        • RWG water hose; soft PVC hose,
        • RW water hose; reinforced PVC hoses,
        • HVX air hose; soft PVC hose 16 bar,
        • HV air hose; PVC hose up to 80 bar,
        • HVPU air hose; abrasion resistant PU/PVC,
        • PLE oil hose; abrasion resistant,
        • Flat air hoses; synthetic yarn braid,
        • Oxygen hose GOX; for oxygen distribution,
        • Acetylene hose GAC; for acetylene distribution,
        • GWPB hose; for propane-butane,
        • TWIN double hoses; welding hoses,
        • FKE water hose; for hot water,
        • Hose for petrol FUP; for petrol lines,
        • TU25 oil hose; for oil distribution,
        • HVSE air hose; flexible flexible design,
        • RWC cooling hoses; for the plastics industry,
        • Air Pro 10L/H hose; oil dispersion,
        • Air Pro 20L/H hose; oil dispersion,
        • Aqua Profi 10S Hose; Water Hose,
        • Hose Multi Profi 10L; Multi-purpose hoses,
        • Hose Multi Profi MP; 20 bar - 2 x braid,
        • Lock Profi hoses; Lock-On socket hoses,
        • Hose Heat Profi 120; for hot water,
        • Steam Hose Profi 165; for steam,
        • Fuel Profi PVC hose; for non-pressurised fuels
      • Suction and transport hoses; reinforced hoses
        • Suction hose for water AQUA; pool spiral design,
        • Vacuum Hose; Vacuum Profi Metal,
        • Fire Suction Cup; Fire Profi PVC Red,
        • Fecal hose; Fecal Profi PVC,
        • Fecal Hose Elastic; Fecal Profi PVC Elastic,
        • Food Hose; Drink Profi PVC SP,
        • Wine Hose; Wine Profi PVC SP,
        • Granulate hose; Grano Profi PVC SP,
        • Hose for vacuum cleaners; Vacuum Profi Eva,
        • Hose for vacuum cleaners; Vacuum Profi Lux,
        • Exhaust hose PVC; PVC reinforcement transparent,
        • Fabric hoses; impregnated PVC,
        • Ventilation hose PVCL; for heating and drying,
        • Suction hose PUR1; wall thickness 0,4 mm,
        • Suction hose FoxiBase PUR SL; wall thickness 0,4 mm,
        • Extraction hose FoxiBase SL-SE; wall thickness 0,55 mm,
        • Suction hose FoxiPro PUR L; wall thickness 0,75 mm,
        • Extraction hose FoxiPro PUR H; wall thickness 1.45 mm,
        • Extraction hose FoxiPro PUR XL; wall thickness 2.5 mm,
        • Extraction hose Foxipro PUR XXL; wall thickness 3,5 mm,
        • Extraction hose FoxiSpecial GSS-L; lightweight wall 0,75 mm,
        • Extraction hose FoxiSpecial GSS-H; lightweight wall 1,45 mm,
        • FoxiBase Santoprene extraction hose; for steam extraction,
        • FoxiSpecial Car-Memory exhaust hose; for exhaust fumes,
        • Extraction hose FoxiVulca Neo2; for high temperatures,
        • FoxiVulca Sil1 suction hose; silicone with fibreglass,
        • Extraction hose FoxiVulca, Sil2; silicone with glass fibre,
        • FoxiMulti PVC-Weld exhaust hose; spark resistant,
        • FoxiMulti Neoprene suction hose; for contact with chemicals,
        • FoxiMulti Silicon suction hose; with fibreglass,
        • FoxiMulti T450 extraction hose; withstands temperatures up to 450°C,
        • FoxiMulti T650 extraction hose; can withstand temperatures up to 650°C,
        • FoxiMulti T900 extraction hose; can withstand temperatures up to 900°C,
        • FoxiMulti T1100 extraction hose; can withstand temperatures up to 1100°C,
        • SAL1 exhaust duct; air conditioning and air handling,
        • METZ exhaust pipe; galvanized steel,
        • METN exhaust pipe; Stainless steel
      • Spiral hoses; for all tools
        • Cheap spiral hoses PUS; incl. quick couplers DN 7,2,
        • Spiral PU hoses; without end caps,
        • Spiral hoses PU; incl. quick couplings DN 7,2,
        • Spiral hoses PUBM; elastollan without end caps,
        • Spiral hoses PUBM; elastollan with quick couplings DN7,2,
        • Spiral hoses ASS; antistatic design,
        • FLAMEX spiral hoses; spark and water resistant,
        • Spiral hose ends; quick couplings, nipples, fittings
      • Eschbach fire hoses; flat hoses for firefighters
        • EL fire hose; standard hose,
        • ESPU fire hoses; abrasion resistant hoses,
        • ESL fire hoses; reflective fire hoses,
        • Fire hose X2000; lightweight hoses,
        • ESFS fire hoses; hydrant hoses,
        • POLR fire hoses; chemical resistant hoses,
        • ADR fire hoses; drinking water hoses,
        • AQF flat hoses; for irrigation and liquids,
        • HLA flat hoses; for connecting hammers,
        • Hadice pro vzduch MNA; pro vedení stlačeného vzduchu,
        • Hadice plochá DJ120; pro sněžná děla,
        • HLS flat hoses; for pumping various substances,
        • Ploché hadice HLPU; pro čerpání rozličných látek
      • Connecting hoses; for pressure assemblies
      • Hose clamps; various types and designs
        • Worm buckles W; with pressed strip,
        • HTW hose clamps; with high tightening torque,
        • DW hose clamps; with perforated band,
        • BW endless belts; for individual buckle production,
        • Hose clamps QLW; with snap-on house,
        • PMW hose clamps; miniature strength design,
        • Hose clamps PW; strength design,
        • Mounting brackets KW; version with rubber insert,
        • Hose clamps SW; wire version,
        • Hose clamps PUW; suction hose PUR1,
        • Hose clamps FXW;extraction hoses with 0.4 to 0.75 mm wall,
        • FXPW hose clamps; suction hoses with wall from 1.45 mm,
        • Hose clamps PWD2; strength version with two screws,
        • Hose clamps EW; deformation version with eyelets,
        • Hose clamps FW; spring design smooth inside,
        • EGW hose clamps; deformation version with insert,
        • Hose clamps CBW; deformation lock design,
        • FBW hose clamps; spring version,
        • LPH press rings; low pressure design,
        • Hose clamp stands; practical stands
      • Winding drums; open and closed construction
        • AM manual winding drums; portable version,
        • Winding drums HR-7001; made of polypropylene,
        • MP-MNP-MGP winding drums; with closed construction,
        • MC winding drums; made of galvanized steel,
        • AL winding drums; open design
      • V-belts; smooth, serrated, multiple
        • DCZ smooth V-belts; with Z-cut 10 × 6,
        • DCA smooth V-belts; with A 13 × 8 cut,
        • Smooth V-belts DCB; with cut B 17 × 11,
        • DCC smooth V-belts; with C 22 × 14 cut,
        • Serrated V-belts SHZ; with 10 × 8 SPZ cut,
        • Serrated V-belts SHB; with SPB 16 × 13 cut,
        • Serrated V-belts QD4Z; maintenance-free, with XPZ 10 × 8 cut,
        • Serrated V-belts QD4A; maintenance-free, with XPA 13 × 10 cut,
        • Serrated V-belts QD4B; maintenance-free, with XPB 16 × 13 cut,
        • Multiple MP V-belts; with PJ, PL and PM cuts
      • Hose accessories; pliers, holders, reels...
    • Valves and automation
      • Valves and accessories; pneumatic, electrical, manual
        • Solenoid valves; 1/8" thread up to 650 l/min,
        • Pneumatic valves 1/8"; 1/8" thread up to 650 l/min,
        • 1/8" valve accessories; spools, connectors and plates,
        • Solenoid valves; 1/4" thread up to 1,100 l/min,
        • Pneumatic valves; 1/4" thread up to 1,100 l/min,
        • 1/4" valve accessories; spools, connectors and plates,
        • Solenoid valves; 1/2" thread up to 2,900 l/min,
        • Pneumatic valves; 1/2" thread up to 2 900 l/min,
        • Valve accessories 1/2"; spools and connectors,
        • Solenoid valves; standard according to ISO 5599/1,
        • Pneumatic valves; standard according to ISO 5599/1,
        • ISO valve accessories; coils, connectors and plates,
        • Solenoid valves; NAMUR up to 1 000 l/min,
        • Foot valves; pedal valves,
        • Control attachments; for base valves,
        • Manually operated valves; 1/4" thread up to 1,100 l/min,
        • Manually operated valves; 1/4" thread up to 1,700 l/min,
        • Manual base valves; for 4 mm coupling extension
      • Cylinders and accessories; single-acting and double-acting
        • Circular pneumatic cylinders; ISO 6432,
        • Square cylinders; standard ISO 15 552,
        • RED circular cylinders; disassembled cylinders,
        • Profiled cylinders CX and CM; according to CNOMO,
        • Compact cylinders; according to ISO 21287, UNITOP,
        • Rodless cylinders; long strokes, acceleration,
        • Threaded cylinders MC,
        • Short lift cylinders,
        • Pneumatic grippers;angled, parallel, three-point,
        • Linear guides for cylinders,
        • ABS piston rod brakes,
        • V61 slow-running valves; slow ramp-up,
        • Vibrators; vibration control of production machines,
        • position sensors; connecting cables,
        • Sensor handles; for pneumatic cylinders,
        • Mounting accessories; cylinder handles and extensions,
        • Shock absorbers; for end positions
      • Solenoid valves; electromagnetic valves
        • Solenoid valves 2V; straight 2/2, thread 1/8", 1/4",
        • Solenoid valves PU220; straight 2/2, thread 3/8"- 1",
        • Solenoid valves PU225; straight 2/2, thread 3/8"- 2",
        • Solenoid valves G256; directly controlled 2/2, 1/8" thread,
        • Solenoid valves G356; directly controlled 3/2, 1/8" thread,
        • Solenoid valves E262; directly controlled 2/2, 1/4" thread,
        • Solenoid valves E314; directly controlled 3/2, 1/4" thread,
        • Solenoid valves G327; directly controlled 3/2, 1/4-1/2" thread,
        • Solenoid valves G238; directly controlled, 2/2 NC function, for water,
        • Solenoid valves E210; directly controlled, 2/2 NC and 2/2 NO functions,
        • Solenoid valves E238; indirectly controlled, 2/2 NC function,
        • Solenoid valves G238S; indirectly controlled, 2/2 NC and 2/2 NO function, stainless steel,
        • Solenoid valves E220; indirectly controlled, 2/2 NC function, for steam,
        • Seat valves E290; bronze version,
        • Seat valves E290; stainless steel version,
        • G353 pulse valves; diaphragm design for filter regeneration,
        • Pilot boxes C20;with integrated pilot valves
      • Safety valves; settings including certification
        • Safety valves 06C02; standard for compressed air,
        • Relief valves 6217; full lift for compressed air,
        • Safety valves 6370; for water, oil and diesel,
        • Relief valves 6380-95; for saturated steam and nitrogen,
        • Relief valves 6383-6012; in stainless steel with thread,
        • Relief valves 6121; flanged cast iron,
        • Safety valves 6127; flanged stainless steel
      • Suction cups and vacuum technology; switches-valves-screw
        • Suction cups SB; with 1.5 bellows,
        • Suction cups SBL; with 4.5 bellows,
        • Suction cups SF; flat reinforced design,
        • Suction cups SU; flat design,
        • Suction cups SBF; internal thread with 1.5 bellows,
        • Suction cups SBF; male thread with 1.5 bellows,
        • Connection fitting; for PU suction cups,
        • Spring extensions; for stroke compensation,
        • AVS vacuum switches; 3/2NC and 3/2NO converts signal,
        • Pneumatically controlled APS valves; 2/2 NC economical ejector control,
        • APL pneumatically controlled valves; 2/2 NC internal threads,
        • Electrically controlled solenoid valves APE; 2/2 NC remote control,
        • Digital pressure switches RL3; range -100kPa to 10 bar.,
        • Digital pressure switches RL6; range -100kPa to 10 bar,
        • Silencers; ZSA for vacuum,
        • Connection fitting; for suction cups SB-SBL-SF-SU
      • Ejectors and vacuum pumps; vacuum generators
        • AZH ejectors; external exhaust,
        • AZH ejectors; integrated exhaust,
        • ACV ejectors; integrated silencer,
        • Miniature vacuum; ABM pumps,
        • Combined vacuum; ABM pumps,
        • Miniature vacuum; ABX pumps,
        • Combined vacuum; ABX pumps,
        • Vacuum pumps AL AM AH; for porous materials,
        • Transport vacuum; ACP pumps,
        • Transport vacuum; ACPF pumps,
        • Ejectors AZU; miniature isolated systems,
        • ALF vacuum filters; compact vacuum filters,
        • AZFC vacuum filters; compact socket couplings,
        • ABF vacuum filters; vacuum dust removal
    • Fittings and faucets
      • Ball valves; water - air - gas
        • BW ball valves; for water up to 25 bar,
        • Ball valves BA; for air up to 25 bar,
        • Hexagon ball valves; maximum pressure 10 bar,
        • Lockable taps; stainless steel design,
        • Three-way ball valves; L and T ball drilling,
        • Stainless steel taps 009; two-piece lockable,
        • Ball valves degreased; with degreasing requirements,
        • Gas ball valves; for flammable gases,
        • Stainless steel taps 2501; food grade with/without flange
      • Ball valves; industrial design
        • Ball valves VL321; three-way stainless steel,
        • Ball valves VL451; stainless steel threaded,
        • Ball valves V; with flange for automation,
        • Ball valves VL001T; stainless steel threaded three-piece,
        • Ball valves VL001B; stainless steel three-piece,
        • Ball valves VL521FAS; stainless steel with flange,
        • Ball valves K809T; threaded high pressure,
        • Ball valves K809W; high pressure coupling,
        • Ball valves K806T; stainless steel thread high pressure,
        • Ball valves K806W; stainless steel high pressure sleeve,
        • Ball valves VL140F; stainless steel intermediate flange,
        • Ball valves VL851; stainless steel with flanges,
        • Ball valves 02TTT; cast iron with flange,
        • Ball valves 04TTT; steel with flange,
        • Ball valves 06TTT; stainless steel with flange,
        • Ball valves 84TTT; steel three-way flange,
        • Ball valves 86TTT; stainless steel three-way flange
      • Gate valves - valves - filters; shut-off of various lines
        • VIP axial valves; with pneumatic actuation,
        • QV hose valves; with pneumatic actuation,
        • Foot gate valves; manual and electric inter-flange valves,
        • Valves and gate valves; full flow shut-off,
        • VYC needle valves; high-pressure pipeline shut-off,
        • USL shut-off gate valves; shut-off of pipelines with contamination,
        • Shut-off valves; continuously shut-off valves,
        • Check valves and butterfly valves; threaded and screw-in,
        • Threaded filters; for piping,
        • Flange filters PF; for piping
      • Air-operated tappets; single-acting and double-acting versions
        • Straight taps V101; with pneumatic actuator,
        • Three-way taps V153; with pneumatic actuator,
        • Three-way taps VL321; with pneumatic actuation,
        • Ball valves K806; with pneumatic actuator,
        • Ball valves K809; with pneumatic actuator,
        • Ball valves VL140F; with pneumatic actuator,
        • Straight taps VL521; with pneumatic actuator,
        • Ball valves VL521F; with pneumatic actuator,
        • Ball valves VL851; with pneumatic actuator,
        • Ball valves 02TTT; with pneumatic actuator,
        • Ball valves 04TTT; with pneumatic actuator,
        • Ball valves 06TTT; with pneumatic actuator,
        • Three-way taps steel 84TTT; with DA air actuator,
        • Three-way taps steel 84TTT; with SR pneumatic actuator,
        • Three-way taps stainless steel 86TTT; with DA pneumatic actuator,
        • Three-way taps stainless steel 86TTT; with SR pneumatic actuator
      • Separate drives; pneumatic drives-electric drives
        • Double-acting actuators; DA double-acting version,
        • Single-acting actuators; SR single-acting version,
        • Electrical sensors; positioners,
        • VCQ electric drives; electrical design
    • Measuring technology
      • Manometers; for measuring the pressure of a medium
        • Manometers plastic; cheap plastic design,
        • Glycerine GS manometers; with glycerine damping,
        • MRS robust gauges; robust design,
        • MK low pressure gauges; measurement in millibars,
        • Stainless steel manometers; for aggressive media,
        • Man. stainless with glycerine; robust stainless with glycerine,
        • Manometers for gases; for welding technology,
        • Panel gauges; with caliper or flange,
        • MSF precision gauges; 160 mm gauge accuracy 0.6%,
        • Manometers MM; miniature indicator 23 mm,
        • Digital gauges; side and rear versions,
        • Gauge accessories; for installation and operation
      • Thermometers; for temperature measurement
        • TWAL thermometers; rear aluminium version,
        • TWSS thermometers; stainless steel back,
        • Thermometer sumps; thermometer accessories
      • Pressure sensors; pressure transducers and switches
        • Pressure switches; electromechanical 42V/5A,
        • Stainless steel pressure transducers; pressure to value converter
    • Fasteners
      • Plastic socket couplings; socket blue
        • Straight fitting; male thread R,
        • Straight fitting; male thread G,
        • Straight fitting; with internal hexagon,
        • Straight coupling; internal thread G,
        • L-couplings; external thread R,
        • L-couplings; external thread G,
        • L-couplings; internal thread G,
        • L-couplings; external extended thread R,
        • L-couplings; swivel male thread R,
        • T-couplings; external thread R,
        • T-couplings; external bottom thread G,
        • T-coupling; side thread R,
        • T-couplings; internal bottom thread G,
        • Y-coupling; external thread R,
        • Direct couplings,
        • Direct couplings; reduced,
        • Clutch reduction,
        • Plastic push-in L-couplings,
        • T-couplings,
        • T-couplings; lower larger reducer,
        • T-couplings; lower smaller reducer,
        • Y-connectors,
        • Y-connector; reduced,
        • Y-connector; with adapter,
        • Y-couplings; with adapter reduced,
        • X-couplings,
        • Distribution couplings,
        • Distribution couplings; reduced,
        • Scottish coupling; female thread G,
        • Bulkhead couplings,
        • Internal plugs,
        • External plugs,
        • Direct valves; with strangulation,
        • Shut-off valve; with ventilation,
        • Shut-off valve; without ventilation,
        • Shut-off valve; external side thread G,
        • L-couplings angled 45°; male thread R,
        • L-couplings through; male thread R,
        • L-couplings; external thread M,
        • Angle throttle valves on exhaust; male thread R,
        • Angle throttle valves on exhaust; male thread G,
        • Angle throttle valves on exhaust; male thread R,
        • Manifold couplings; side external thread R
      • Metal socket couplings; brass version
        • Straight fitting; male thread R,
        • Straight fitting; male thread G,
        • Straight fitting; internal thread G,
        • L-fittings; external thread G,
        • L-fittings; external thread R,
        • L-fittings extended; male thread G,
        • L-fittings; internal thread G,
        • T-fittings; external bottom thread G,
        • T-couplings swivel; bottom thread R,
        • T-fittings; side external thread G,
        • L-fitting swivel; external thread G,
        • Direct push-in couplings,
        • Straight socket couplings; reduced version,
        • Push-in L-couplings,
        • Push-in T-couplings,
        • T-couplings socket; lower reducer smaller,
        • Push-in Y-connectors,
        • X-connectors push-in,
        • Scottish couplings; male thread M,
        • External plug,
        • Reducing tubes,
        • Shut-off throttle valve; flow control,
        • Throttle valve on exhaust; male thread G,
        • Straight fitting; external tapered thread R,
        • Straight fitting; external pipe thread G,
        • Y-couplings swivel; external thread G,
        • Throttle valves swivel; with screwdriver slot
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    Home / Tools and guns / Spray guns; for paint shops and craftsmen

    Spray guns for painters and craftsmen

    Spray guns allow precise and uniform application of paints, varnishes or other surface treatments using compressed air. Compared to painting with a brush, they provide faster work and a smoother final surface, which will be appreciated by both hobbyists and professional painters. However, there are several types of spray gun technologies and designs - they differ in the way the paint is sprayed, the compressor requirements and the appropriate application. In this guide , we explain the different technologies (HVLP, LVLP, HTE, APS, RP, etc.), describe the types of storage tanks (gravity, suction, pressure), compare the use for hobby vs. professional paint shops and advise on what to look out for when choosing. Finally, we add practical tips from practice for a perfect paint result. (For detailed information on choosing a spray gun, see also our article How to choose a spray gun for paint application?(Spray guns and how to choose them correctly))

    °G0°

    Spraying technology: HVLP, LVLP, HTE, APS, RP

    There are different spray gun technologies differing in working pressure and air volume. Each acronym stands for a different paint spray system, with different advantages and demands on the compressor (especially pressure and air flow). Below is an overview of the most common types:

    SGH1000-strikaci-pistole-LVLP-lakovny-profi-naradi-barva-remeslo SGH501-2-strikaci-pistole-LVLP-lakovny-profi-naradi-barva-remeslo SGHX100-2-strikaci-pistole-LVLP-lakovny-profi-naradi-barva-remeslo SGH827-2-strikaci-pistole-LVLP-lakovny-profi-naradi-barva-remeslo SGM502-2-strikaci-pistole-LVLP-lakovny-profi-naradi-barva-remeslo
    • Conventional (high pressure) guns: Classic older design of spray guns operating with high air pressure. Inlet and outlet pressure is usually around 3-3.5 bar. The advantage is lower air consumption (approx. 150-200 l/min, even a smaller compressor is sufficient) and very fine atomization of the paint (particles ~3-5 µm). The disadvantage is the low spraying efficiency - at most ~45% of the paint ends up on the surface, the rest is dispersed as a mist. Due to high dust (waste) and material wastage, conventional guns today do not meet modern car painting requirements or strict VOC emission standards.
    • HVLP (High Volume Low Pressure): High Volume Low Pressure. HVLP guns use high air flow at relatively low pressure, which reduces evaporated paint loss. Typically, they require an inlet pressure of 2-3 bar and a larger air volume (approx. 400-500 l/min) - a more powerful compressor is required and a sufficiently wide hose (min. 8 mm inner diameter) is needed for a stable flow. The gun only operates at ~0.7 bar at the outlet, yet achieves a high spray efficiency of ~65% (meets the requirements of the standards, more paint adheres to the surface and less is dispersed). HVLP spraying is "soft" - it reduces fog formation (dustiness) and saves paint consumption. A weakness may be the slightly coarser atomization - larger droplets (~9-11 µm) can give the impression that the gun is "spitting" material with some cheaper HVLP guns, which is not ideal for fine clearcoats. However, quality HVLP guns can adjust a wide and fine spray beam, making them excellent for base paints and metallics that can be applied evenly and with minimal waste.
    • LVLP (Low Volume Low Pressure): Low volume air, low pressure. These guns require less air than HVLP and operate at lower pressure. The inlet pressure is usually around 2 bar, at the nozzle outlet ~1.5 bar. Due to the lower air consumption (~350 l/min) LVLP are also suitable for smaller compressors and for home workshops. The spray efficiency (~55%) is slightly lower than HVLP, but still better than conventional guns. LVLP technology is a kind of hybrid between HVLP and conventional gun - it combines decent spraying efficiency with fine atomization. The droplet size of ~6-9 µm already sufficiently eliminates the "spitting" effect seen with HVLP, so LVLP guns are ideal for acrylic topcoats and clearcoats (often preferred by the paint industry for vehicle painting). Some manufacturers also refer to this technology as RP (Reduced Pressure) or Trans-Tech - under various names, these are guns that operate at lower pressure than conventional systems, but at the same time do not require as huge a volume of air as pure HVLP.
    • HTE (High Transfer Efficiency): High Transfer Efficiency. Advanced spraying technology developed to maximize spraying efficiency (often over 70%) and exceed HVLP limits. These guns belong to the low pressure category (similar to LVLP/RP) and meet strict VOC standards due to minimal paint drift. HTE guns (also known as RP) can maintain both fine atomization and high application rates without requiring extreme amounts of air - typical flow rates are around 250-340 l/min (9-12 CFM), which is less than HVLP. They achieve a transfer efficiency of up to 70-80% depending on the type of paint, saving both material and energy (compressed air). The resulting spray is of very high quality - even and without "clouds" (mottling effect) even in metallics with high pigment content. HTE guns provide superior surface quality and outperform both HVLP and older high pressure systems in this regard. This technology is mainly used by professional paint shops that want to achieve perfect paint spread and at the same time reduce losses and air pollution.
    • APS (Advanced Pressure System): the latest type of spray guns that can work efficiently over a wide range of pressures. APS technology combines the advantages of both low pressure and high pressure systems - at lower pressures it reduces overspray similar to HVLP, but also allows increased pressure (e.g. 2-5 bar) for rapid application of larger areas or denser materials without compromising spray quality. The optimized APS system ensures even colour distribution and excellent atomization even with pressure changes. These guns typically have all parameters (air pressure, beam width, paint quantity) adjustable over a wide range, making them suitable for both coarse basic spraying and fine finish painting. A practical representative is e.g. the GAV Xtreme APS pistol, an Italian professional pistol operating at 2-5 bar. APS technology is suitable for the most demanding universal applications - allowing one gun to cover a variety of applications from small parts spraying to large-scale painting jobs, with maximum control and efficiency.

    Ukázka moderní APS pistole: Profesionální stříkací pistole s technologií APS (Advanced Pressure System)

    Example of a modern APS pistol: Professional spray gun with APS (Advanced Pressure System) technology. These guns can work at low and higher pressures (approx. 2-5 bar) and thanks to their advanced design they achieve uniform spraying of the paint. They allow you to adjust the pressure, beam width and paint volume as required, making them versatile - suitable for fine detail painting and quick spraying of larger areas. The APS system combines the advantages of HVLP (less haze, paint savings) with the power of high-pressure guns, which is especially appreciated by demanding professionals in industry and auto repair.

    Paint hopper: gravity, suction, pressure

    Spray guns are further subdivided according to the way the paint is dispensed (fed) into the nozzle. Each solution has its own advantages and is suitable for different purposes:

    • Gravity feed (upper container): the most common type in modern paint guns. The paint canister is on top of the gun and the paint flows by gravity into the body of the gun. The advantage is a simpler construction and less air pressure requirements (paint does not need to be sucked in). Gravity guns work well with smaller amounts of paint in the container and allow for easier cleaning. Most HVLP/LVLP guns for the auto repair industry are gravity fed - they provide excellent spray control and are comfortable to handle. A limitation may be the volume of the container (usually 125-600 ml) - when painting very large areas, it is necessary to refill the paint more often.
    • Suction hopper (lower container): traditional design, where the container is placed under the gun. The paint is sucked into the nozzle from below by the vacuum created by the air flow (Venturi effect). Suction guns used to have a metal container with a larger volume (often 500-1000 ml) and used to be standard. They often have the advantage of a better view of the painted surface (the container does not obstruct the top) and the possibility to preserve the paint in a closed container. However, they need slightly higher air pressure and enough paint in the canister to suck properly - a small volume of paint can cause the gun to "hiccup" as it sucks in air. Today, suction guns are used less, but they still find a place in workshops and hobby painters who are used to them (or for special applications, e.g. spraying from the underside of the surface).
    • Pressure tank (remote): here the paint is not directly in the gun, but is transported via a hose from an external tank under pressure. The external reservoir can be a pressure pot or a low-pressure pump that continuously feeds the paint into the gun. The advantage of the pressure system is the ability to spray large volumes of dense materials without constant refilling - ideal for industrial painting of larger areas, lines, spraying multiple parts at once, etc. Pressure fed paint guns are lighter (no canister on top) and allow a stable paint supply even in difficult positions (e.g. spraying ceilings, tank interiors, etc.). The disadvantage is a more complex system - in addition to the gun, you need a paint pressure tank, extra hoses, paint pressure regulation, etc. It is also the most expensive option, which is especially worthwhile if you consume a lot of paint. (If you don't spray paint by the litre, this more expensive option usually won't appeal to you(Spray guns and how to choose the right one)). For normal painting of smaller objects, there is no need for a pressure supply - a gravity or suction gun is sufficient.

    Tlakový zásobník (vzdálený) pro stříkací pistole

    Suitable use: hobby vs. professional paint shop vs. industry

    How to choose the right type of gun for who will use it and what they will use it for? Another model will be appreciated by the occasional handyman in the garage and another by the professional painter in the auto repair shop. Below are recommendations for different levels of use:

    • Hobby use (DIY workshop): for occasional painting of smaller projects (e.g. bike frames, furniture parts, motorcycle accessories) a simpler gun is sufficient. Low air consumption is important, so that a smaller compressor can handle it - LVLP guns (air efficient) or smaller HVLP detail guns are suitable. Focus on versatility: a medium nozzle (~1.4 mm) that handles both the base and the top is ideal. For hobby purposes, a cheaper aluminum alloy gun is often sufficient; however, be aware that it may not have as perfect a spray pattern as the pro models and the service life may be lower. Hobby users should opt for gravity guns - they are easier to maintain and easy to learn how to use. Tip: Don't forget to buy basic accessories such as a hose, quick coupler, filter with pressure regulator and possibly a moisture trap - without clean air and the right pressure, the paintwork will not be of good quality.
    • Professional paint shop (car painter): in a professional operation (car service, woodworking shop, etc.) top surface quality, reliability and efficiency are key. It is worth investing in a branded gun with appropriate technology - today HVLP and HTE/RP guns prevail due to meeting emission limits and material savings. Professionals usually use more guns: e.g. with a nozzle of 1.3 mm for base and metallics, 1.4-1.5 mm for clearcoat, 1.7 mm and more for fillers and basecoats. Emphasis is placed on ergonomics (lightweight and perfectly balanced guns minimize fatigue during all-day painting) and spray consistency - the gun must spray the same way every time to ensure that every paint repair goes well. The operation of a paint shop also requires a powerful compressor with a pressure vessel and quality air treatment (filtration, drying) - professional guns need a stable and clean air source. The investment in a more expensive gun pays off in saved paint and time (less defect repairs). In a paint shop, you definitely can't do without an air filtration unit and air separators - see the section on air quality below.
    • Industrial painting: includes e.g. painting of machines, structures, serial spraying of products, lines in furniture or metal production, etc. The emphasis is on productivity and durability of the equipment. For continuous use in industry, robust, high-quality guns are chosen, often in combination with a pressurised paint reservoir or directly automatic spraying systems (robot- or machine-controlled guns). The technologies used can be either air (HVLP/RP), airless or high pressure systems for thick coatings - depending on the application requirements. The advantage of air guns in industry is the superior surface quality (e.g. for painting automotive parts), the disadvantage is the lower speed compared to airless pumps when applying very thick layers. In the industry, systems are often combined - airless technology for the basic spraying of large areas, for example, and an air gun for the finishing coat. If you intend to use the gun for long shifts, pay attention to ergonomics and durability of materials - e.g. all-metal guns with a durable finish and easy availability of spare parts. Of course, a powerful compressor with adequate air reserve and perfect air treatment (industrial filters, dryers, oil separators) are essential to avoid the deterioration of expensive paints by dirt or water.

    What to look out for when choosing a spray gun

    When choosing a particular gun and its accessories, consider several important parameters and features:

    • Air consumption and compressor power: Make sure your compressor can supply the required amount of air for your chosen gun. Each model specifies consumption in l/min (at a given pressure) - for example, HVLP guns may require 300-500 l/min, while LVLP can get by with ~200-300 l/min. The compressor should have at least ~30% power reserve so that it does not have to run at full capacity all the time. For long painting runs, a compressor with a larger air reservoir is suitable to compensate for pressure fluctuations. The length and diameter of the hose will also affect the available pressure - remember that every 10 m of hose can cause a loss of up to ~1 bar. Therefore, use the shortest possible hose of the appropriate diameter (ideally 3/8″ or 9-10 mm for higher flow rates). If the gun isn't getting enough air, you'll notice this in the irregular spraying of the paint and fluctuating pressure (the compressor "not keeping up"). In this case, choose either a more economical gun or a more powerful compressor.
    • Nozzle diameter: the nozzle size has a major influence on the quality of the material that can be applied with the gun. In general, narrower nozzles (~1.0 mm) are for thin materials and fine work (model painting, lining, stains), medium nozzles (1.3-1.5 mm) universally cover common paints, varnishes and primers, and wider nozzles (1.7 mm and above) are suitable for thicker coatings (fillers, polyurethane paints, adhesives or gilding). If you select a nozzle that is too small for thick paint, the gun will not be able to spray the material (it will clog or "spit"). Conversely, too large a nozzle for thin paint can cause excessive run-off and make it difficult to set a weak beam. Therefore, consider what you will paint most often. The following nozzle diameters are most commonly used for automotive painting:
      • 1.2-1.3 mm - for primers, fillers and undercoats
      • 1.4-1.5 mm - for topcoats, acrylic paints, clearcoats (finishing coats)
      • 1.6-1.8 mm - for fillers with higher dry matter content, 2K base colours, thicker synthetic coatings

      Some universal guns allow you to change the entire nozzle and needle set - this allows you to adapt one gun to different applications. But to start with, it is best to choose a nozzle diameter according to 90% of your work (universally 1.4 mm for most paints). If special applications are needed (e.g. metallic vs. clear coat), a second gun with a different nozzle can be purchased over time, or a different nozzle size can be purchased if the model allows it.

    SGHX100-4-strikaci-pistole-LVLP-lakovny-profi-naradi-barva-remeslo SGH501-trysky-strikaci-pistole-LVLP-lakovny-profi-naradi-barva-remeslo SGH1000-t10-strikaci-pistole-LVLP-lakovny-profi-naradi-barva-remeslo
    • Ergonomics and build quality: when choosing a gun, ideally take it in your hand - it should fit well, not be too front-heavy and the controls (trigger, regulators) should be smooth and fine to adjust. If you will be spraying for a long time in a row, you will appreciate the light weight of the gun (modern models have a body made of light alloys or even composites). The shape of the grip and trigger resistance are also important - a hard trigger will tire your fingers and make it harder to dose. A quality gun also has a precision-machined nozzle and needle (stainless steel or hardened steel) that will last and not wear out quickly. With cheap guns, the spray deteriorates over time (as the nozzle wears out or the channels become clogged). Ergonomics will also affect the resulting quality - with a comfortable gun you will have more confident strokes and a more even spray. For professionals, there are also guns on the market with swivel joints on the air inlet or digital pressure gauges on the gun body, which further facilitate the work. Last but not least, consider the ease of maintenance - is the gun easy to disassemble and clean? Are spare parts (seals, nozzles, needles) available? With reputable brands it is not a problem to get a part later, with no-name guns it can be more difficult.
    • Air connection: Most spray guns have a standard threaded inlet for a quick coupler (usually G 1/4″ male thread). So you will need a matching quick coupler (ideally the same type as you use on the hoses and compressor to make everything compatible). We recommend choosing high flow couplings for air tools that do not choke the air flow. Install the coupling using sealing tape (Teflon) on the thread to prevent air leaks. Smaller guns (e.g. airbrush) tend to have different thread sizes, but 1/4″ is standard for regular paint guns. Some people like to use a swivel on the gun to allow the hose to rotate freely and prevent it from twisting - this is also a useful accessory, especially if you're moving the car around and the hose tends to get tangled. Next, look at how the filling of the paint is handled - for the top container it is good to have a standard cap (you can buy a spare) and it is possible to fit disposable inserts or the PPS system from 3M. These details will make the work easier and improve the reliability of the equipment.
    • Air quality and conditioning: an often overlooked but essential factor for perfect painting! The compressed air must be clean and dry. Moisture, oil microparticles or rust from the compressor result in paint defects (craters, maps, reduced gloss or poor adhesion). Therefore, the air from the compressor must be treated - at a minimum, a water separator and a particulate filter at the hose outlet. Ideally, use a filter pressure regulator (so-called. FRL unit) placed as close to the gun as possible to set the correct pressure while trapping water, oil and dirt. At the compressor outlet there should be a skimmer with a coarser filter and even automatic drainage. For professional work, also consider an air dryer (refrigeration or adsorption) - this removes moisture to a pressure dew point even below 3 °C, so that water no longer condenses even during long painting. Clean, dry air is the key to the success of any painting job. There are separate articles on this topic in our advice section(How to filter compressed air and Why and how to dry air) - we recommend reading them for detailed instructions on how to achieve ISO 8573-1 (air quality for painting). Remember that even the best gun will spray poorly if it is fed wet and dirty air. Therefore, include the necessary filters, oil separators and possibly a fine carbon filter in your paint kit to achieve absolutely clean air for the topcoat. Check out the category Air treatmentwhere we offer all the necessary equipment - from filters and regulators, to compressed air dryers and complete filtration stations.

    Air filtration and control: The use of appropriate filters and regulators is essential to achieve a good paint finish. The picture shows an example of a miniature pressure regulator with a water separator that is mounted directly on the inlet of the gun. This small combination filter captures both condensate and dirt and allows precise pressure adjustment right at the gun. This ensures stable pressure and clean, moisture-free air, which has a positive effect on the final spray quality (no defects caused by water or oil). For professional use, we recommend including main filtration and air drying at the compressor outlet - this prevents water build-up in the hoses and fluctuations in air quality during longer work.

    Recommendations and practical tips for perfect painting

    Finally, a few practical tips from our own practice, which will be appreciated by both beginners and advanced spray gun users. These tips will help you avoid common mistakes and achieve the best possible result:

    • Proper paint preparation and dilution: always follow the paint manufacturer's recommendations for spray viscosity (dilution). Paint that is too thick will clog the gun or create a rough surface, while paint that is too thin may run. Use a spout cup to check the viscosity - with most guns, the paint has the correct density if it flows out of the cup in about 20-30 seconds. Stir the paint well and strain through a fine sieve to prevent any lumps from clogging the nozzle.
    • Set up and test spray: before you start painting, do a test spray sideways on cardboard or sheet metal. Set the optimum air pressure (e.g. 2 bar for HVLP - measured on the gun with the trigger depressed), adjust the beam width and paint flow so that the gun sprays a continuous, fine and even spray. A test spray will help you detect too thin or thick paint, poor pressure or beam width before you ruin the final finish. Remember that different colours may require different settings - always fine-tune the gun for your current material.
    • Spraying technique: hold the gun approximately 15-20 cm from the surface, guide it at a steady speed and parallel to the substrate. Overlap 15-30% of the previous coat (wet-on-wet overlap) with each new coat to create a uniform layer. Release the trigger outside the object to be painted at the beginning and end of each stroke - this prevents a thicker layer from being applied at the edges. Keep the gun moving at all times, stopping in place will cause a run. It is also advisable to paint in a dust-free environment and ideally at a temperature of ~20 °C for an even gloss. Tip: If you are painting a larger area, divide it into sections and try to work systematically to keep the "wet edge" moving and avoid dull transitions.
    • Cleaning and maintenance of the gun: Clean the gun immediately with a suitable thinner after work. Unscrew the container, flush the channels, clean the needle and nozzle (or disassemble them for a thorough cleaning if recommended by the manufacturer). Dried paint residue inside the gun will cause irregular spraying and can completely clog the paint flow. Use cleaning brushes designed for spray guns and take care not to scratch the delicate parts of the nozzle. Occasionally, drip the moving parts (trigger pin, threads of adjustment screws) with a few drops of suitable oil if the manufacturer states so in the maintenance manual. A properly maintained gun will last for years in perfect condition and will still spray the same quality. Never leave paint residue inside to dry - it only takes a few minutes to clean and is an integral part of the paint job.
    • Health and Safety: Always wear appropriate personal protective equipment when spraying - especially a good quality respirator (ideally with filters for organic vapours), goggles or face shield and gloves. The fine particles of solvents and pigments are harmful to health and the painting process also produces a flammable aerosol. Ensure good ventilation of the area or use a spray box with extraction. Make sure there are no open sources of fire (sparks, cigarettes) in the vicinity - paint fumes are highly flammable. Work in a clean environment - dust and insects are the mortal enemies of freshly sprayed paint. If you follow these principles, your painting will not only be beautiful, but also safe.

    Conclusion: The right choice of spray gun and accessories can significantly affect the outcome of your work. Consider the type of application (from hobby project to industrial production), the compressor parameters, the characteristics of the material to be painted and your experience. If you are unsure, don't hesitate to ask for advice - for example, our article How to choose a spray gun for paint application? (Spray guns and how to choose them correctly) discusses the topic in detail and our customer support (helpline) will be happy to help you choose the optimal equipment. We wish you good luck with your painting and may your new spray gun serve you well!

    • HVLP SGH2000 small spray gun; smaller areas and decorative spraying
    • SG990H spray gun; for less demanding use
    • SG990S spray gun; for less demanding use
    • Spray Gun SGH827; HVLP professional spraying in the paint industry
    • Airbrush sets; with accessories in case
    • Minipaint SGMP; HVLP decorative spray gun
    • Smartpaint SGSP; HVLP decorative spray gun
    • Profipaint SGPP; HVLP decorative spray gun
    • Accessories for spray guns; controls, filters, cartridges
    • Stříkací pistole SGH1002 LVLP; extrémně úsporná stříkací pistole
    • Stříkací pistole SGH1000 HVLP
    • Stříkací pistole SGH501 HVLP
    • Stříkací pistole SG1002; APS pro nejnáročnější univerzální použití
    • Stříkací pistole SGM502 HVLP
    • SGH2007R spray gun; HVLP for high transfer efficiency

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    Pressure vessel system consisting of a 680 ml upper vessel equipped with compressed air connection, pressure regulator and throttle valve. Designed for spraying structural...

    Code: 250.02
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