EATON - PKZM0-0,4 - Electrical Buttons - ICDC-040920 - New
$85.5
$132.53
EATON – PKZM0-0,4 – Electrical Buttons – ICDC-040920 – New Main Category: Electrical | Sub-Category: Buttons | Status: New Original ComponentsEATON Part Number: PKZM00,4 | ICDC Internal Part Number: ICDC-040920 PKZM0-0,4 Description: PKZM0-0,4 – Motor-protective circuit-breaker, 0.09 kW, 0.25 – 0.4 A, Screw terminals DELIVERY PROGRAM Product range PKZM0 motor protective circuit-breakers up to 32 A Basic function Motor protection Notes Also suitable for motors with efficiency class IE3. Connection technique Screw terminals Max. motor rating AC-3 220 V 230 V 240 V [P] 0.06 kW AC-3 380 V 400 V 415 V [P] 0.09 kW AC-3 440 V [P] 0.12 kW AC-3 500 V [P] 0.12 kW AC-3 660 V 690 V [P] 0.18 kW Rated uninterrupted current [Iu] 0.4 A Setting range Overload releases [Ir ] 0.25 – 0.4 A short-circuit release [Irm ] max. [Irm ] 6.2 A Phase-failure sensitivity IEC/EN 60947-4-1, VDE 0660 Part 102 Explosion protection (according to ATEX 94/9/EC) PTB 10, ATEX 3013, Ex II(2) GD Observe manual MN03402003Z-DE/EN. Notes Overload trigger: tripping class 10 A Can be snapped on to IEC/EN 60715 top-hat rail with 7.5 or 15 mm height. TECHNICAL DATA General Standards IEC/EN 60947, VDE 0660,UL, CSA Climatic proofing Damp heat, constant, to IEC 60068-2-78 Damp heat, cyclic, to IEC 60068-2-30 Ambient temperature Storage – 40 – 80 °C Ambient temperature Open -25 – 55 °C Ambient temperature Enclosed – 25 – 40 °C Direction of incoming supply as required Degree of protection Device IP20 Degree of protection Terminations IP00 Protection against direct contact when actuated from front (EN 50274) Finger and back-of-hand proof Mechanical shock resistance half-sinusoidal shock 10 ms to IEC 60068-2-27 25 g Altitude Max. 2000 m Terminal capacity main cable Screw terminals Solid 1 x (1 – 6) 2 x (1 – 6) mm2 Terminal capacity main cable Screw terminals Flexible with ferrule to DIN 46228 1 x (1 – 6) 2 x (1 – 6) mm2 Terminal capacity main cable Screw terminals Solid or stranded 18 – 10 AWG Terminal capacity main cable Screw terminals Stripping length 10 mm Specified tightening torque for terminal screws Main cable 1.7 Nm Specified tightening torque for terminal screws Control circuit cables 1 Nm Main conducting paths Rated impulse withstand voltage [Uimp] 6000 V AC Overvoltage category/pollution degree III/3 Rated operational voltage [Ue ] 690 V AC Rated uninterrupted current = rated operational current [Iu = Ie ] 0.4 A Rated frequency [f] 40 – 60 Hz Current heat loss (3 pole at operating temperature) 5.22 W Impedance per pole 10500 mΩ Lifespan, mechanical [Operations] 0.1 x 106 Lifespan, electrical (AC-3 at 400 V) Lifespan, electrical [Operations] 0.1 x 106 Max. operating frequency 40 Ops/h Short-circuit rating DC Short-circuit rating 60 kA Short-circuit rating DC Notes up to 250 V Motor switching capacity AC-3 (up to 690V) 0.4 A Motor switching capacity DC-5 (up to 250V) 0.4 (3 contacts in series) A Trip blocks Temperature compensation to IEC/EN 60947, VDE 0660 – 5…40 °C Temperature compensation Operating range – 25…55 °C Temperature compensation residual error for T > 40 °C<br /> ≦ 0.25 %/K<br /> Setting range of overload releases<br /> 0.6 – 1 x Iu<br /> short-circuit release<br /> Basic device, fixed: 15.5 x Iu<br /> Short-circuit release tolerance<br /> ± 20%<br /> Phase-failure sensitivity<br /> IEC/EN 60947-4-1, VDE 0660 Part 102<br /> Rating data for approved types<br /> Switching capacity<br /> Maximum motor rating<br /> Three-phase<br /> 200 V<br /> 208 V<br /> Hinweis: Motorleistung in diesem Bereich nach Bemessungsstrom berechnen. Angegebene Werte nach NEC Table 430-150 HP<br /> Switching capacity<br /> Maximum motor rating<br /> Three-phase<br /> 230 V<br /> 240 V<br /> Hinweis: Motorleistung in diesem Bereich nach Bemessungsstrom berechnen. Angegebene Werte nach NEC Table 430-150 HP<br /> Switching capacity<br /> Maximum motor rating<br /> Three-phase<br /> 460 V<br /> 480 V<br /> Hinweis: Motorleistung in diesem Bereich nach Bemessungsstrom berechnen. Angegebene Werte nach NEC Table 430-150 HP<br /> Switching capacity<br /> Maximum motor rating<br /> Three-phase<br /> 575 V<br /> 600 V<br /> Hinweis: Motorleistung in diesem Bereich nach Bemessungsstrom berechnen. Angegebene Werte nach NEC Table 430-150 HP<br /> Short Circuit Current Rating, type E<br /> 240 V<br /> 65 kA<br /> Short Circuit Current Rating, type E<br /> 480 Y / 277 V<br /> 65 kA<br /> Short Circuit Current Rating, type E<br /> 600 Y / 347 V<br /> 50 kA<br /> Short Circuit Current Rating, type E<br /> Accessories required<br /> BK25/3-PKZ0-E<br /> Short Circuit Current Rating, group protection<br /> 600 V High Fault<br /> SCCR (fuse)<br /> 50 kA<br /> Short Circuit Current Rating, group protection<br /> 600 V High Fault<br /> max. Fuse<br /> 600 A<br /> Short Circuit Current Rating, group protection<br /> 600 V High Fault<br /> SCCR (CB)<br /> 50 kA<br /> Short Circuit Current Rating, group protection<br /> 600 V High Fault<br /> max. CB<br /> 600 A<br /> DESIGN VERIFICATION AS PER IEC/EN 61439<br /> Technical data for design verification<br /> Rated operational current for specified heat dissipation [In] 0.4 A<br /> Heat dissipation per pole, current-dependent [Pvid] 1.74 W<br /> Equipment heat dissipation, current-dependent [Pvid] 5.22 W<br /> Static heat dissipation, non-current-dependent [Pvs] 0 W<br /> Heat dissipation capacity [Pdiss] 0 W<br /> Operating ambient temperature min.<br /> -25 °C<br /> Operating ambient temperature max.<br /> 55 °C<br /> IEC/EN 61439 design verification<br /> 10.2 Strength of materials and parts<br /> 10.2.2 Corrosion resistance<br /> Meets the product standard’s requirements.<br /> 10.2 Strength of materials and parts<br /> 10.2.3.1 Verification of thermal stability of enclosures<br /> Meets the product standard’s requirements.<br /> 10.2 Strength of materials and parts<br /> 10.2.3.2 Verification of resistance of insulating materials to normal heat<br /> Meets the product standard’s requirements.<br /> 10.2 Strength of materials and parts<br /> 10.2.3.3 Verification of resistance of insulating materials to abnormal heat and fire due to internal electric effects<br /> Meets the product standard’s requirements.<br /> 10.2 Strength of materials and parts<br /> 10.2.4 Resistance to ultra-violet (UV) radiation<br /> Meets the product standard’s requirements.<br /> 10.2 Strength of materials and parts<br /> 10.2.5 Lifting<br /> Does not apply, since the entire switchgear needs to be evaluated.<br /> 10.2 Strength of materials and parts<br /> 10.2.6 Mechanical impact<br /> Does not apply, since the entire switchgear needs to be evaluated.<br /> 10.2 Strength of materials and parts<br /> 10.2.7 Inscriptions<br /> Meets the product standard’s requirements.<br /> 10.3 Degree of protection of ASSEMBLIES<br /> Does not apply, since the entire switchgear needs to be evaluated.<br /> 10.4 Clearances and creepage distances<br /> Meets the product standard’s requirements.<br /> 10.5 Protection against electric shock<br /> Does not apply, since the entire switchgear needs to be evaluated.<br /> 10.6 Incorporation of switching devices and components<br /> Does not apply, since the entire switchgear needs to be evaluated.<br /> 10.7 Internal electrical circuits and connections<br /> Is the panel builder’s responsibility.<br /> 10.8 Connections for external conductors<br /> Is the panel builder’s responsibility.<br /> 10.9 Insulation properties<br /> 10.9.2 Power-frequency electric strength<br /> Is the panel builder’s responsibility.<br /> 10.9 Insulation properties<br /> 10.9.3 Impulse withstand voltage<br /> Is the panel builder’s responsibility.<br /> 10.9 Insulation properties<br /> 10.9.4 Testing of enclosures made of insulating material<br /> Is the panel builder’s responsibility.<br /> 10.10 Temperature rise<br /> The panel builder is responsible for the temperature rise calculation. Eaton will provide heat dissipation data for the devices.<br /> 10.11 Short-circuit rating<br /> Is the panel builder’s responsibility. The specifications for the switchgear must be observed.<br /> 10.12 Electromagnetic compatibility<br /> Is the panel builder’s responsibility. The specifications for the switchgear must be observed.<br /> 10.13 Mechanical function<br /> The device meets the requirements, provided the information in the instruction leaflet (IL) is observed.<br /> TECHNICAL DATA ETIM 8.0<br /> Low-voltage industrial components (EG000017) / Motor protection circuit-breaker (EC000074)<br /> Electric engineering, automation, process control engineering / Low-voltage switch technology / Circuit breaker (LV < 1 kV) / Motor protection circuit-breaker ( 40 °C ≦ 0.25 %/K Setting range of overload releases 0.6 – 1 x Iu short-circuit release Basic device, fixed: 15.5 x Iu Short-circuit release tolerance ± 20% Phase-failure sensitivity IEC/EN 60947-4-1, VDE 0660 Part 102 Rating data for approved types Switching capacity Maximum motor rating Three-phase 200 V 208 V Hinweis: Motorleistung in diesem Bereich nach Bemessungsstrom berechnen. Angegebene Werte nach NEC Table 430-150 HP Switching capacity Maximum motor rating Three-phase 230 V 240 V Hinweis: Motorleistung in diesem Bereich nach Bemessungsstrom berechnen. Angegebene Werte nach NEC Table 430-150 HP Switching capacity Maximum motor rating Three-phase 460 V 480 V Hinweis: Motorleistung in diesem Bereich nach Bemessungsstrom berechnen. Angegebene Werte nach NEC Table 430-150 HP Switching capacity Maximum motor rating Three-phase 575 V 600 V Hinweis: Motorleistung in diesem Bereich nach Bemessungsstrom berechnen. Angegebene Werte nach NEC Table 430-150 HP Short Circuit Current Rating, type E 240 V 65 kA Short Circuit Current Rating, type E 480 Y / 277 V 65 kA Short Circuit Current Rating, type E 600 Y / 347 V 50 kA Short Circuit Current Rating, type E Accessories required BK25/3-PKZ0-E Short Circuit Current Rating, group protection 600 V High Fault SCCR (fuse) 50 kA Short Circuit Current Rating, group protection 600 V High Fault max. Fuse 600 A Short Circuit Current Rating, group protection 600 V High Fault SCCR (CB) 50 kA Short Circuit Current Rating, group protection 600 V High Fault max. CB 600 A DESIGN VERIFICATION AS PER IEC/EN 61439 Technical data for design verification Rated operational current for specified heat dissipation [In] 0.4 A Heat dissipation per pole, current-dependent [Pvid] 1.74 W Equipment heat dissipation, current-dependent [Pvid] 5.22 W Static heat dissipation, non-current-dependent [Pvs] 0 W Heat dissipation capacity [Pdiss] 0 W Operating ambient temperature min. -25 °C Operating ambient temperature max. 55 °C IEC/EN 61439 design verification 10.2 Strength of materials and parts 10.2.2 Corrosion resistance Meets the product standard’s requirements. 10.2 Strength of materials and parts 10.2.3.1 Verification of thermal stability of enclosures Meets the product standard’s requirements. 10.2 Strength of materials and parts 10.2.3.2 Verification of resistance of insulating materials to normal heat Meets the product standard’s requirements. 10.2 Strength of materials and parts 10.2.3.3 Verification of resistance of insulating materials to abnormal heat and fire due to internal electric effects Meets the product standard’s requirements. 10.2 Strength of materials and parts 10.2.4 Resistance to ultra-violet (UV) radiation Meets the product standard’s requirements. 10.2 Strength of materials and parts 10.2.5 Lifting Does not apply, since the entire switchgear needs to be evaluated. 10.2 Strength of materials and parts 10.2.6 Mechanical impact Does not apply, since the entire switchgear needs to be evaluated. 10.2 Strength of materials and parts 10.2.7 Inscriptions Meets the product standard’s requirements. 10.3 Degree of protection of ASSEMBLIES Does not apply, since the entire switchgear needs to be evaluated. 10.4 Clearances and creepage distances Meets the product standard’s requirements. 10.5 Protection against electric shock Does not apply, since the entire switchgear needs to be evaluated. 10.6 Incorporation of switching devices and components Does not apply, since the entire switchgear needs to be evaluated. 10.7 Internal electrical circuits and connections Is the panel builder’s responsibility. 10.8 Connections for external conductors Is the panel builder’s responsibility. 10.9 Insulation properties 10.9.2 Power-frequency electric strength Is the panel builder’s responsibility. 10.9 Insulation properties 10.9.3 Impulse withstand voltage Is the panel builder’s responsibility. 10.9 Insulation properties 10.9.4 Testing of enclosures made of insulating material Is the panel builder’s responsibility. 10.10 Temperature rise The panel builder is responsible for the temperature rise calculation. Eaton will provide heat dissipation data for the devices. 10.11 Short-circuit rating Is the panel builder’s responsibility. The specifications for the switchgear must be observed. 10.12 Electromagnetic compatibility Is the panel builder’s responsibility. The specifications for the switchgear must be observed. 10.13 Mechanical function The device meets the requirements, provided the information in the instruction leaflet (IL) is observed. TECHNICAL DATA ETIM 8.0 Low-voltage industrial components (EG000017) / Motor protection circuit-breaker (EC000074) Electric engineering, automation, process control engineering / Low-voltage switch technology / Circuit breaker (LV [email protected] [AGZ529016]) Overload release current setting 0.25 – 0.4 A Adjustment range undelayed short-circuit release 6.2 – 6.2 A With thermal protection No Phase failure sensitive Yes Switch off technique Thermomagnetic Rated operating voltage 690 – 690 V Rated permanent current Iu 0.4 A Rated operation power at AC-3, 230 V 0.06 kW Rated operation power at AC-3, 400 V 0.09 kW Type of electrical connection of main circuit Screw connection Type of control element Turn button Device construction Built-in device fixed built-in technique With integrated auxiliary switch No With integrated under voltage release No Number of poles 3 Rated short-circuit breaking capacity lcu at 400 V, AC 150 kA Degree of protection (IP) IP20 Height 92.4 mm Width 45 mm Depth 75.2 mm APPROVALS Product Standards IEC/EN 60947-4-1 Contact us to discover PKZM0-0,4. 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