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PolySwitchResettableDevices– Radial-leaded Devices 111 Tyco Electronics’ PolySwitch radial-leaded products represent the most comprehensive and complete set of PPTC products available in the industry today.

  • RGEF series for hold currents up to 14A
  • RHEF series for flatter thermal derating and operating temperatures up to 125°C
  • RUEF series for balance of voltage rating (30V) and hold current (up to 9A)
  • RUSBF series for fast time-to-trip and low-resistance computer applications
  • RTEF series for IEEE-1394 applications XEF series for low hold currents (down to 50mA) and high voltage rating (up to 72V)
  • RKEF series for balance of voltage rating (60V) and hold current (up to 5A)
  • BBRF series for cable telephone applications
  • Now offering RoHS versions of all products
  • Many product choices give engineers more design flexibility
  • Compatible with high-volume electronics assembly
  • Assists in meeting regulatory requirements
  • Higher voltage ratings allow use in new applications
  • RoHS compliant
  • B roadest range of radial-leaded resettable devices available in the industry
  • Current ratings from 50mA to 15A
  • Voltage ratings from 6V (computer and electronic applications) to 99V
  • Agency recognition : UL, CSA, TÜV
  • Fast time-to-trip
  • Low resistance
  • Satellite video receivers
  • Industrial controls
  • Transformers
  • Computer motherboards
  • Modems PolySwitchResettableDevices Radial-leaded Devices Benefits Features

Applications

  • USB hub, ports and peripherals
  • IEEE1394 ports
  • CD-ROMs
  • Game machines
  • Battery packs
  • Phones
  • Fax machines
  • Analog and digital line cards
  • Printers

112 RoHS Compliant, ELV Compliant

ApplicationSelectionGuideforRadial-leadedDevices Hold Current (A) Voltage Rating BBRF 99V RXEF 72V RXEF 60V RTEF 33V RUEF 30V RGEF 16V RHEF 16V RHEF 30V RUSBF 16V RUSBF RKEF 60V Electromagnetic loads RGEF (<16V), RUEF (<30V) RHEF (<16V) RXEF (<72V), RKEF(<60V) Halogen lighting RGEF (<16V), RUEF (<30V) RHEF (<16V) RXEF (<72V), RKEF(<60V) Lighting ballast RXEF (<72V), BBRF (<99V) Loudspeakers RXEF (<72V) RXEF (<72V), RKEF(<60V) Medical equipment RGEF (<16V), RUEF (<30V) RHEF (<16V) RXEF (<72V), RKEF(<60V) MOSFET devices RGEF (<16V), RUEF (<30V) RHEF (<16V) RXEF (<72V), RKEF(<60V) Motors, fans and blowers RXEF (<72V), RGEF (<16V) RHEF (<16V) POS equipment RXEF (<72V), RUEF (<30V) Process and industrial controls RXEF (<72V), RUEF (<30V) Satellite video receivers RGEF (<16V), RUEF (<30V) RHEF (<16V) RXEF (<72V), RKEF(<60V) Security and fire alarm systems RGEF (<16V), RUEF (<30V) RHEF (<16V) RXEF (<72V), RKEF(<60V) Test and measurement equipment RGEF (<16V), RUEF (<30V) RHEF (<16V) RXEF (<72V), RKEF(<60V) Transformers RGEF (<16V), RUEF (<30V) RHEF (<16V) RXEF (<72V), RKEF(<60V) DDC computer and consumer electronics RUEF (<30V) IEEE-1394 computer and consumer electronics RTEF (<33V) Mouse and keyboard RUEF (<30V) SCSI RUEF (<30V) USB RUSBF (<16V) Traces and printed circuit board protection RGEF (<16V), RUEF (<30V) RHEF (<16V) RXEF (<72V), RKEF(<60V) Note :This list is not exhaustive. Tyco Electronics welcomes customer's input for additional application ideas for PolySwitch resettable devices. Protection Application PolySwitch Resettable Devices — Key Selection Criteria Flatter Lower Current Small Size Derating Higher Voltage The guide below lists PolySwitch radial-leaded devices that are typically used in these applications. Specifications for the suggested device part numbers can be found in this section. Once a part number has been selected, the user should evaluate and test each product for its intended application. TableR1 ProductSeries-CurrentRating,VoltageRating/TypicalResistancefor Radial-leadedDevices

PolySwitchResettableDevices– Radial-leaded Devices 113RoHS Compliant, ELV Compliant Hold Current (A) Voltage Rating BBRF 99V RXEF 72V RXEF 60V RTEF 33V RUEF 30V RGEF 16V RHEF 16V RHEF 30V RUSBF 16V RUSBF RKEF 60V Maximum AmbientT emperature Part Number -40°C -20°C 0°C 20°C 25°C 40°C 50°C 60°C 70°C 85°C 125°C BBRF 99V RXEF 60V RXEF 72V TableR1 ProductSeries-CurrentRating,VoltageRating/TypicalResistancefor Radial-leadedDevices Cont’d TableR2 ThermalDeratingforRadial-leadedDevices [HoldCurrent(A)atAmbientTemperature(°C)]

114 RoHS Compliant, ELV Compliant

Maximum AmbientT emperature Part Number -40°C -20°C 0°C 20°C 25°C 40°C 50°C 60°C 70°C 85°C 125°C RKEF 60V RTEF 33V RUEF 30V RHEF 30V - HighT emperature RUSBF 16V RGEF 16V TableR2 ThermalDeratingforRadial-leadedDevices [HoldCurrent(A)atAmbientTemperature(°C)] Cont’d

PolySwitchResettableDevices– Radial-leaded Devices 115RoHS Compliant, ELV Compliant Maximum AmbientT emperature Part Number -40°C -20°C 0°C 20°C 25°C 40°C 50°C 60°C 70°C 85°C 125°C RGEF 16V RHEF 16V - HighT emperature RUSBF % of rated hold and trip current Ambient Temperature (˚C) 200 150 100 -40 -20 0 20 40 60 80 FigureR1RXEF and BBRF TableR2 ThermalDeratingforRadial-leadedDevices [HoldCurrent(A)atAmbientTemperature(°C)] Cont’d FigureR1-R5 ThermalDeratingCurveforRadial-leadedDevices

116 RoHS Compliant, ELV Compliant

% of rated hold and trip current Ambient Temperature (˚C) 200 150 100 -40 -20 0 20 40 60 80 FigureR2 RKEF -40 -20 0 604020 80 10 01 20 % of Rated Hold andT rip Current Ambient Temperature (˚C) 200 150 100 FigureR4 RHEF % of Rated Hold andT rip Current Ambient Temperature (˚C) 200 150 100 -40 -20 0 20 40 60 80 A A B B FigureR3A= RUSBF075, RUSBF120, RUSBF155 B= RUEF , RTEF , and all other RUSBF FigureR1-R5 ThermalDeratingCurveforRadial-leadedDevices Cont’d

PolySwitchResettableDevices– Radial-leaded Devices 117RoHS Compliant, ELV Compliant -40 -20 0 20 40 60 80 % of Rated Hold andT rip Current Ambient Temperature (˚C) 200 150 100 FigureR5 RGEF BBRF 99V RXEF 60V RXEF 72V RKEF 60V Part Number IH (A) IT (A) V MAX (V) IMAX (A) PDT yp (W) RMIN (Ω) R1MAX (Ω) Lead Size [mm 2 (AWG)] RMAX (Ω) Max.Time-to-trip (A) (s) TableR3ElectricalCharacteristicsforRadial-leadedDevices FigureR1-R5 ThermalDeratingCurveforRadial-leadedDevices Cont’d

118 RoHS Compliant, ELV Compliant

RHEF* 30V - HighT emperature RUSBF 16V RGEF* 16V Part Number IH (A) IT (A) V MAX (V) IMAX (A) PDT yp (W) RMIN (Ω) R1MAX (Ω) Lead Size [mm 2 (AWG)] RMAX (Ω) Max.Time-to-trip (A) (s) TableR3ElectricalCharacteristicsforRadial-leadedDevices Cont’d

PolySwitchResettableDevices– Radial-leaded Devices 119RoHS Compliant, ELV Compliant RHEF* 16V - HighT emperature RUSBF Part Number IH (A) IT (A) V MAX (V) IMAX (A) PDT yp (W) RMIN (Ω) R1MAX (Ω) Lead Size [mm 2 (AWG)] RMAX (Ω) Max.Time-to-trip (A) (s) Notes: IH : Hold current: maximum current device will pass without interruption in 20°C still air. IT : Trip current: minimum current that will switch the device from low resistance to high resistance in 20°C still air. V MAX : Maximum continuous voltage device can withstand without damage at rated current. IMAX : Maximum fault current device can withstand without damage at rated voltage. PD : Power dissipated from device when in the tripped state in 20°C s till air. R MIN : Minimum resistance of device as supplied at 20°C unless otherwise specified. R MAX : Maximum resistance of device as supplied at 20°C unless otherwise specified. R 1MAX :Maximum resistance of device when measured one hour post reflow (surface-mount device) or one hour post trip (radial-leaded device) at 20°C unless otherwise specified. * Electrical characteristics determined at 25°C. A B D C C toL CL CL CL E F FigureR6 A B D C C toL CL CL CL E F FigureR7 A B D CF C toL CL CL CL E FigureR8 A B D C C toL CL CL CL F E FigureR9 A B D C C toL CL CL CL E F FigureR10 B D CF C toL CL CL CL A E FigureR11 TableR3ElectricalCharacteristicsforRadial-leadedDevices Cont’d FigureR6-R14 DimensionFiguresforRadial-leadedDevices

120 RoHS Compliant, ELV Compliant

F B D C C toL CL CL CL A E FigureR12 J J FigureR13 A E C H FigureR14 BBRF 99V RXEF 60V RXEF 72V Part Number A Min. Max. J T yp. Figure B Min. Max. C Min. Max. D Min. Max. E Min. Max. F T yp. H T yp. TableR4 DimensionsforRadial-leadedDevicesinMillimeters(Inches) FigureR6-R14 DimensionFiguresforRadial-leadedDevices Cont’d

PolySwitchResettableDevices– Radial-leaded Devices 121RoHS Compliant, ELV Compliant RKEF 60V RTEF 33V RUEF 30V Part Number A Min. Max. J T yp. Figure B Min. Max. C Min. Max. D Min. Max. E Min. Max. F T yp. H T yp. TableR4 DimensionsforRadial-leadedDevicesinMillimeters(Inches) Cont’d

122 RoHS Compliant, ELV Compliant

A Min. Max. J T yp. Figure B Min. max. C Min. Max. D Min. Max. E Min. Max. F T yp. H T yp. TableR4 DimensionsforRadial-leadedDevicesinMillimeters(Inches) Cont’d

PolySwitchResettableDevices– Radial-leaded Devices 123RoHS Compliant, ELV Compliant RHEF 16V - HighT emperature RUSBF Part Number A Min. Max. J T yp. Figure B Min. Max. C Min. Max. D Min. Max. E Min. Max. F T yp. H T yp. Time-to-trip (s) Fault Current (A) 1000 100 0.1 0.01 0.1 1 10 100 A A B C D B CD FigureR15BBRF A= BBRF550 RTEF B= RTEF120 C= RTEF135 D= RTEF190 TableR4 DimensionsforRadial-leadedDevicesinMillimeters(Inches) Cont’d FigureR15-R21 TypicalTime-to-tripCurvesat20°CforRadial-leadedDevices

124 RoHS Compliant, ELV Compliant

Time-to-trip (s) Fault Current (A) 1000 100 0.1 0.01 0.001 0.1 101 100 A A B CD E F G B CDEF G H H I J K L M N O P Q R I J K L MNO P Q R FigureR16RXEF A= RXEF005 B= RXEF010 C= RXEF017 D= RXEF020 E= RXEF025 F= RXEF030 G= RXEF040 H= RXEF050 I= RXEF065 J= RXEF075 K= RXEF090 L= RXEF110 M= RXEF135 N= RXEF160 O= RXEF185 P= RXEF250 Q= RXEF300 R= RXEF375 Time-to-trip (s) Fault Current (A) 100 0.1 0.01 1 10 100 A A B C D E F G H I J K L M B C DE F G H I J K L M FigureR18RUEF A= RUEF090 B= RUEF110 C= RUEF135 D= RUEF160 E= RUEF185 F= RUEF250 G= RUEF300 H= RUEF400 I= RUEF500 J= RUEF600 K= RUEF700 L= RUEF800 M= RUEF900 Time-to-trip (s) Fault Current (A) 100 0.1 0.01 101 100 C C B B A A D D E E F F G G H H I I J J K K L L M M FigureR17RKEF A= RKEF050 B= RKEF065 C= RKEF075 D= RKEF090 E= RKEF110 F= RKEF135 G= RKEF160 H= RKEF185 I= RKEF250 J= RKEF300 K= RKEF375 L= RKEF400 M= RKEF500 FigureR15-R21 TypicalTime-to-tripCurvesat20°CforRadial-leadedDevices Cont’d

PolySwitchResettableDevices– Radial-leaded Devices 125RoHS Compliant, ELV Compliant Time-to-trip (s) Fault Current (A) 1000 100 0.1 0.01 0.001 1 10 100 A A B B C D E F G H I J K L C D E FGH I J K L FigureR19RGEF (data at 25°C) A= RGEF250 B= RGEF300 C= RGEF400 D= RGEF500 E= RGEF600 F= RGEF700 G= RGEF800 H= RGEF900 I= RGEF1000 J= RGEF1100 K= RGEF1200 L= RGEF1400 Time-to-trip (s) Fault Current (A) 100 0.1 0.01 0.001 101 100 A A B C D E F G H I B C D E FG H I FigureR21RUSBF A= RUSBF075 B= RUSBF090 C= RUSBF110 D= RUSBF120 E= RUSBF135 F= RUSBF155 G= RUSBF160 H= RUSBF185 I= RUSBF250 Time-to-trip (s) Fault Current (A) 1000 100 0.1 0.01 1 10 100A B C DE F G H I J K L M NO P QR S B C D E F G H I JKLM NO P QRS FigureR20RHEF (data at 25°C) A= RHEF050 B= RHEF070 C= RHEF100 D= RHEF200 E= RHEF300 F= RHEF400 G= RHEF450 H= RHEF550 I= RHEF600 J= RHEF650 K= RHEF700 L= RHEF750 M= RHEF800 N= RHEF900 O= RHEF1000 P= RHEF1100 Q= RHEF1300 R= RHEF1400 S= RHEF1500 FigureR15-R21 TypicalTime-to-tripCurvesat20°CforRadial-leadedDevices Cont’d

126 RoHS Compliant, ELV Compliant

T est Conditions Resistance Change Passive aging 70°C, 1000 hours ±5% 85°C, 1000 hours ±5% Humidity aging 85°C, 85%RH, 1000 hours ±5% Thermal shock 85°C, -40°C (10 times) ±5% Solvent resistance MIL-STD-202, Method 215F No change Lead material Tin-plated copper, 0.52mm2 (20AWG), ø0.81mm (0.032in.) Soldering characteristics Solderability per ANSI/J-STD-002 Category 3 Solder heat withstand per IEC-STD 68-2-20, Test Tb, Method 1A, Condition B, can withstand 10 seconds at 260°C ±5°C Insulating material Cured, flame-retardant epoxy polymer; meets UL 94V-0 Operation temperature -40°C~85°C Note:Devices are not designed to be placed through a reflow process. BBRF PhysicalCharacteristics EnvironmentalSpecifications T est Conditions Resistance Change Passive aging -40°C, 1000 hours ±5% 85°C, 1000 hours ±5% Humidity aging 85°C, 85%RH, 1000 hours ±10% Thermal shock 85°C, -40°C (10 times) ±10% Solvent resistance MIL-STD-202, Method 215F No change Lead material RXEF005 : Tin-plated nickel-copper alloy, 0.128mm 2 (26AWG), ø0.40mm (0.016in.) RXEF010 : Tin-plated nickel-copper alloy, 0.205mm 2 (24AWG), ø0.51mm (0.020in.) RXEF017 to 040 : Tin-plated copper-clad steel, 0.205mm2 (24AWG), ø0.51mm (0.020in.) RXEF050 to 090 : Tin-plated copper, 0.205mm2 (24AWG), ø0.51mm (0.020in.) RXEF110 to 375 : Tin-plated copper, 0.52mm 2 (20AWG), ø0.81mm (0.032in.) Soldering characteristics Solderability per ANSI/J-STD-002 Category 3 RXEF005, RXEF010 meet ANSI/J-STD-002 Category 1 Solder heat withstand RXEF017- RXEF025: per IEC-STD 68-2-20, Test Tb, Method 1a, condition a; can withstand 5 seconds at 260°C ±5°C All other sizes: per IEC-STD 68-2-20, Test Tb, Method 1a, condition b; can withstand 10 seconds at 260°C ±5°C Insulating material Cured, flame-retardant epoxy polymer; meets UL 94V-0 Operation temperature -40°C~85°C Note:Devices are not designed to be placed through a reflow process. RXEF PhysicalCharacteristics EnvironmentalSpecifications Lead material RKEF050 to 090 : Tin-plated copper, 0.205mm2 (24AWG), ø0.51mm (0.020in.) RKEF110 to 500 : Tin-plated copper, 0.52mm 2 (20AWG), ø0.81mm (0.032in.) Soldering characteristics Solderability per ANSI/J-STD-002 Category 3 Solder heat withstand RKEF050-RKEF185 : per IEC-STD 68-2-20, Test Tb, Method 1a, condition a; can withstand 5 seconds at 260°C ±5°C All other sizes: per IEC-STD 68-2-20, Test Tb, Method 1a, condition b; RKEF can withstand 10 seconds at 260°C ±5°C Insulating material Cured, flame-retardant epoxy polymer; meets UL 94V-0 Operation temperature -40°C~85°C Note:Devices are not designed to be placed through a reflow process. RKEF PhysicalCharacteristics TableR5 PhysicalCharacteristicsandEnvironmentalSpecificationsforRadial-leadedDevices

PolySwitchResettableDevices– Radial-leaded Devices 127RoHS Compliant, ELV Compliant T est Conditions Resistance Change Passive aging -40°C, 1000 hours ±5% 85°C, 1000 hours ±5% Humidity aging 85°C, 85%RH, 1000 hours ±10% Thermal shock 85°C, -40°C (10 times) ±10% Solvent resistance MIL-STD-202, Method 215F No change RKEF EnvironmentalSpecifications T est Conditions Resistance Change Passive aging 70°C, 1000 hours ±5% 85°C, 1000 hours ±5% Humidity aging 85°C, 85%RH, 1000 hours ±5% Thermal shock 85°C, -40°C (10 times) ±5% Solvent resistance MIL-STD-202, Method 215F No change Lead material Tin-plated copper-clad steel, 0.205mm2 (24AWG), ø0.51mm (0.020in.) Soldering characteristics Solderability per ANSI/J-STD-002 Category 3 Solder heat withstand per IEC-STD 68-2-20, Test Tb, Method 1A, Condition B; can withstand 10 seconds at 260°C ±5°C Insulating material Cured, flame-retardant epoxy polymer; meets UL 94V-0 Operation temperature -40°C~85°C Note:Devices are not designed to be placed through a reflow process. RTEF PhysicalCharacteristics EnvironmentalSpecifications T est Conditions Resistance Change Passive aging 70°C, 1000 hours ±5% 85°C, 1000 hours ±5% Humidity aging 85°C, 85%RH, 1000 hours ±5% Thermal shock 85°C, -40°C (10 times) ±5% Solvent resistance MIL-STD-202, Method 215F No change Lead material RUEF090 to RUEF250: Tin-plated copper-clad steel, 0.205mm2 (24AWG) RUEF300 to RUEF900: Tin-plated copper, 0.52mm 2 (20AWG), ø0.81mm (0.032in.) Soldering characteristics Solderability per ANSI/J-STD-002 Category 3 Solder heat withstand per IEC-STD 68-2-20, Test Tb, Method1A, Condition B, can withstand 10 seconds at 260°C ±5°C Insulating material Cured, flame-retardant epoxy polymer; meets UL 94V-0 Operation temperature -40°C~85°C Note:Devices are not designed to be placed through a reflow process. RUEF PhysicalCharacteristics EnvironmentalSpecifications Lead material RUSBF075: Tin-plated nickel-copper alloy, 0.205mm2 (24AWG), ø0.51mm/0.020in. RUSBF090 to RUSBF250: Tin-plated copper clad-steel, 0.205mm2 (24AWG), ø0.51mm/0.020in. Soldering characteristics Solderability per ANSI/J-STD-002 Category 3 except RUSBF075 meet ANSI/J-STD-002 Category 1 Solder heat withstand RUSBF120: per IEC-STD 68-2-20, Test Tb, Method 1A, Condition A; can withstand 5 seconds at 260°C ±5°C All others: per IEC-STD 68-2-20, Test Tb, Method 1A, Condition B; can withstand 10 seconds at 260°C ±5°C Insulating material Cured, flame-retardant epoxy polymer; meets UL 94V-0 Operation temperature -40°C~85°C Note:Devices are not designed to be placed through a reflow process. RUSBF PhysicalCharacteristics TableR5 PhysicalCharacteristicsandEnvironmentalSpecificationsforRadial-leadedDevicesCont’d

128 RoHS Compliant, ELV Compliant

T est Conditions Resistance Change Passive aging 70°C, 1000 hours ±5% 85°C, 1000 hours ±5% Humidity aging 85°C, 85%RH, 1000 hours ±5% Thermal shock 85°C, -40°C (10 times) ±5% Solvent resistance MIL-STD-202, Method 215F No change RUSBF EnvironmentalSpecifications T est Conditions Resistance Change Passive aging -40°C, 1000 hours ±5% 85°C, 1000 hours ±5% Humidity aging 85°C, 85%RH, 1000 hours ±5% Thermal shock 85°C, -40°C (10 times) ±5% Solvent resistance MIL-STD-202, Method 215F No change Lead material RGEF300 to RGEF1100 : Tin-plated copper, 0.52mm 2 (20AWG), ø0.81mm/0.032in. RGEF1200 to RGEF1400 : Tin-plated copper, 0.82mm 2 (18AWG), ø1.0mm/0.04in. Soldering characteristics Solderability per ANSI/J-STD-002 Category 3 Solder heat withstand RGEF300 and RGEF400: per IEC 68-2-20, Test Tb, Method 1a, condition a; can withstand 5 seconds at 260°C ±5°C RGEF500 to RGEF1400: per IEC 68-2-20, Test Tb, Method 1a, condition b; can withstand 10 seconds at 260°C ±5°C Insulating material Cured, flame-retardant epoxy polymer; meets UL 94V-0 Operation temperature -40°C~85°C Note:Devices are not designed to be placed through a reflow process. RGEF PhysicalCharacteristics EnvironmentalSpecifications T est Conditions Resistance Change Passive aging 70°C, 1000 hours ±5% 85°C, 1000 hours ±5% Humidity aging 85°C, 85%RH, 1000 hours ±5% Thermal shock 125°C, -40°C (10 times) ±5% Solvent resistance MIL-STD-202, Method 215F No change Lead material RHEF050 to RHEF200 : Tin-plated copper clad steel, 0.205mm 2 (24AWG), ø0.51mm/0.020in. RHEF300 to RHEF1100 : Tin-plated copper, 0.52mm 2 (20AWG), ø0.81mm/0.032in. RHEF1300 to RHEF1500 : Tin-plated copper, 0.82mm 2 (18AWG), ø1.0mm/0.04in. Soldering characteristics Solderability per ANSI/J-STD-002 Category 3 Solder heat withstand per IEC 68-2-20, Test Tb, Method 1A, Condition B; can withstand 10 seconds at 260°C ±5°C Insulating material Cured, flame-retardant epoxy polymer; meets UL 94V-0 Operation temperature -40°C~125°C Note:Devices are not designed to be placed through a reflow process. RHEF PhysicalCharacteristics EnvironmentalSpecifications StorageConditionsforRadial-leadedDevices Storage conditions 40°C max., 70% RH max.; devices should remain in original sealed bags prior to use. Devices may not meet specificed values if these storage conditions are exceeded. Note:For the TR devices series, see the telecommunications and networking devices section. TableR5 PhysicalCharacteristicsandEnvironmentalSpecificationsforRadial-leadedDevicesCont’d

PolySwitchResettableDevices– Radial-leaded Devices 129RoHS Compliant, ELV Compliant BBRF 99V BBRF550 500 — — 10,000 BF550 UL, CSA BBRF550-2 — 1,500 — 7,500 BF550 UL, CSA RXEF 60V RXEF005 500 —— 10,000 — UL, CSA, TÜV RXEF005-2 — 3,000 — 15,000 — UL, CSA, TÜV RXEF005-AP —— 2,000 10,000 — UL, CSA, TÜV RXEF010 500 —— 10,000 XF010 UL, CSA, TÜV RXEF010-2 — 3,000 — 15,000 XF010 UL, CSA, TÜV RXEF010-AP —— 2,000 10,000 XF010 UL, CSA, TÜV RXEF017 500 —— 10,000 XF017 UL, CSA, TÜV RXEF017-2 — 2,500 — 12,500 XF017 UL, CSA, TÜV RXEF017-AP —— 2,000 10,000 XF017 UL, CSA, TÜV RXEF 72V RXEF020 500 —— 10,000 XF020 UL, CSA, TÜV RXEF020-2 — 3,000 — 15,000 XF020 UL, CSA, TÜV RXEF020-AP —— 2,000 10,000 XF020 UL, CSA, TÜV RXEF025 500 —— 10,000 XF025 UL, CSA, TÜV RXEF025-2 — 3,000 — 15,000 XF025 UL, CSA, TÜV RXEF025-AP —— 2,000 10,000 XF025 UL, CSA, TÜV RXEF030 500 —— 10,000 XF030 UL, CSA, TÜV RXEF030-2 — 3,000 — 15,000 XF030 UL, CSA, TÜV RXEF030-AP —— 2,000 10,000 XF030 UL, CSA, TÜV RXEF040 500 —— 10,000 XF040 UL, CSA, TÜV RXEF040-2 — 3,000 — 15,000 XF040 UL, CSA, TÜV RXEF040-AP —— 2,000 10,000 XF040 UL, CSA, TÜV RXEF050 500 —— 10,000 XF050 UL, CSA, TÜV RXEF050-2 — 3,000 — 15,000 XF050 UL, CSA, TÜV RXEF050-AP —— 2,000 10,000 XF050 UL, CSA, TÜV RXEF065 500 —— 10,000 XF065 UL, CSA, TÜV RXEF065-2 — 3,000 — 15,000 XF065 UL, CSA, TÜV RXEF065-AP —— 2,000 10,000 XF065 UL, CSA, TÜV RXEF075 500 —— 10,000 XF075 UL, CSA, TÜV RXEF075-2 — 3,000 — 15,000 XF075 UL, CSA, TÜV RXEF075-AP —— 2,000 10,000 XF075 UL, CSA, TÜV RXEF090 500 —— 10,000 XF090 UL, CSA, TÜV RXEF090-2 — 3,000 — 15,000 XF090 UL, CSA, TÜV RXEF090-AP —— 2,000 10,000 XF090 UL, CSA, TÜV RXEF110 500 —— 10,000 XF110 UL, CSA, TÜV RXEF110-2 — 1,500 — 7,500 XF110 UL, CSA, TÜV RXEF110-AP —— 1,000 5,000 XF110 UL, CSA, TÜV RXEF135 500 —— 10,000 XF135 UL, CSA, TÜV RXEF135-2 — 1,500 — 7,500 XF135 UL, CSA, TÜV RXEF135-AP —— 1,000 5,000 XF135 UL, CSA, TÜV RXEF160 500 —— 10,000 XF160 UL, CSA, TÜV RXEF160-2 — 1,500 — 7,500 XF160 UL, CSA, TÜV RXEF160-AP —— 1,000 5,000 XF160 UL, CSA, TÜV RXEF185 500 —— 10,000 XF185 UL, CSA, TÜV RXEF185-2 — 1,500 — 7,500 XF185 UL, CSA, TÜV RXEF185-AP —— 1,000 5,000 XF185 UL, CSA, TÜV Part Number Bag Quantity T ape & Reel Quantity Ammo Pack Quantity Standard Package Quantity Part Marking Agency Recognition TableR6 PackagingandMarkingInformationforRadial-leadedDevices

130 RoHS Compliant, ELV Compliant

RXEF250 250 —— 5,000 XF250 UL, CSA, TÜV RXEF250-2 — 1,000 — 5,000 XF250 UL, CSA, TÜV RXEF250-AP —— 1,000 5,000 XF250 UL, CSA, TÜV RXEF300 250 —— 5,000 XF300 UL, CSA, TÜV RXEF300-2 — 1,000 — 5,000 XF300 UL, CSA, TÜV RXEF300-AP —— 1,000 5,000 XF300 UL, CSA, TÜV RXEF375 250 —— 5,000 XF375 UL, CSA, TÜV RKEF 60V RKEF050 500 —— 10,000 KF050 UL, CSA, TÜV RKEF065 500 —— 10,000 KF065 UL, CSA, TÜV RKEF075 500 —— 10,000 KF075 UL, CSA, TÜV RKEF090 500 —— 10,000 KF090 UL, CSA, TÜV RKEF110 500 —— 10,000 KF110 UL, CSA, TÜV RKEF135 500 —— 10,000 KF135 UL, CSA, TÜV RKEF160 500 —— 10,000 KF160 UL, CSA, TÜV RKEF185 500 —— 10,000 KF185 UL, CSA, TÜV RKEF250 500 —— 10,000 KF250 UL, CSA, TÜV RKEF300 250 —— 5,000 KF300 UL, CSA, TÜV RKEF375 250 —— 5,000 KF375 UL, CSA, TÜV RKEF400 250 —— 5,000 KF400 UL, CSA, TÜV RKEF500 250 —— 5,000 KF500 UL, CSA, TÜV RTEF 33V RTEF120 500 —— 10,000 TF120 UL, CSA, TÜV RTEF120-2 — 3,000 — 15,000 TF120 UL, CSA, TÜV RTEF120-AP —— 2,000 10,000 TF120 UL, CSA, TÜV RTEF135 500 —— 10,000 TF135 UL, CSA, TÜV RTEF135-2 — 3,000 — 15,000 TF135 UL, CSA, TÜV RTEF135-AP —— 2,000 10,000 TF135 UL, CSA, TÜV RTEF190 500 —— 10,000 TF190 UL, CSA, TÜV RTEF190-2 — 3,000 — 15,000 TF190 UL, CSA, TÜV RTEF190-AP —— 2,000 10,000 TF190 UL, CSA, TÜV RUEF 30V RUEF090 500 —— 10,000 UF090 UL, CSA, TÜV , CQC RUEF090-2 — 3,000 — 15,000 UF090 UL, CSA, TÜV , CQC RUEF090-AP —— 2,000 10,000 UF090 UL, CSA, TÜV , CQC RUEF110 500 —— 10,000 UF110 UL, CSA, TÜV , CQC RUEF110-2 — 3,000 — 15,000 UF110 UL, CSA, TÜV , CQC RUEF110-AP —— 2,000 10,000 UF110 UL, CSA, TÜV , CQC RUEF135 500 —— 10,000 UF135 UL, CSA, TÜV , CQC RUEF135-2 — 3,000 — 15,000 UF135 UL, CSA, TÜV , CQC RUEF135-AP —— 2,000 10,000 UF135 UL, CSA, TÜV , CQC RUEF160 500 —— 10,000 UF160 UL, CSA, TÜV , CQC RUEF160-2 — 3,000 — 15,000 UF160 UL, CSA, TÜV , CQC RUEF160-AP —— 2,000 10,000 UF160 UL, CSA, TÜV , CQC RUEF185 500 —— 10,000 UF185 UL, CSA, TÜV , CQC RUEF185-2 — 3,000 — 15,000 UF185 UL, CSA, TÜV , CQC RUEF185-AP —— 2,000 10,000 UF185 UL, CSA, TÜV , CQC RUEF250 500 —— 10,000 UF250 UL, CSA, TÜV , CQC RUEF250-2 — 3,000 — 15,000 UF250 UL, CSA, TÜV , CQC RUEF250-AP —— 2,000 10,000 UF250 UL, CSA, TÜV , CQC Part Number Bag Quantity T ape & Reel Quantity Ammo Pack Quantity Standard Package Quantity Part Marking Agency Recognition TableR6 PackagingandMarkingInformationforRadial-leadedDevices Cont’d

PolySwitchResettableDevices– Radial-leaded Devices 131RoHS Compliant, ELV Compliant RUEF 30V RUEF300 500 —— 10,000 UF300 UL, CSA, TÜV , CQC RUEF300-2 — 2,500 — 12,500 UF300 UL, CSA, TÜV , CQC RUEF300-AP —— 1,000 5,000 UF300 UL, CSA, TÜV , CQC RUEF400 500 —— 10,000 UF400 UL, CSA, TÜV , CQC RUEF400-2 — 1,500 — 7,500 UF400 UL, CSA, TÜV , CQC RUEF400-AP —— 1,000 5,000 UF400 UL, CSA, TÜV , CQC RUEF500 250 —— 5,000 UF500 UL, CSA, TÜV , CQC RUEF500-2 — 1,500 — 7,500 UF500 UL, CSA, TÜV , CQC RUEF500-AP —— 1,000 5,000 UF500 UL, CSA, TÜV , CQC RUEF600 250 —— 5,000 UF600 UL, CSA, TÜV , CQC RUEF600-2 — 1,000 — 5,000 UF600 UL, CSA, TÜV , CQC RUEF600-AP —— 1,000 5,000 UF600 UL, CSA, TÜV , CQC RUEF700 250 —— 5,000 UF700 UL, CSA, TÜV , CQC RUEF700-2 — 1,000 — 5,000 UF700 UL, CSA, TÜV , CQC RUEF700-AP —— 1,000 5,000 UF700 UL, CSA, TÜV , CQC RUEF800 250 —— 5,000 UF800 UL, CSA, TÜV , CQC RUEF800-2 — 1,000 — 5,000 UF800 UL, CSA, TÜV , CQC RUEF800-AP —— 1,000 5,000 UF800 UL, CSA, TÜV , CQC RUEF900 250 —— 5,000 UF900 UL, CSA, TÜV , CQC RUEF900-2 — 1,000 — 4,000 UF900 UL, CSA, TÜV , CQC RUEF900-AP —— 1,000 4,000 UF900 UL, CSA, TÜV , CQC RHEF 30V - HighT emperature RHEF050 500 —— 10,000 HF0.5 UL, CSA, TÜV RHEF050-2 — 2,500 — 12,500 HF0.7 UL, CSA, TÜV RHEF070 500 —— 10,000 HF0.7 UL, CSA, TÜV RHEF070-2 — 2,500 — 12,500 HF0.7 UL, CSA, TÜV RHEF100 500 —— 10,000 HF1.0 UL, CSA, TÜV RHEF100-2 — 2,500 — 12,500 HF1.0 UL, CSA, TÜV RUSBF 16V RUSBF090 500 —— 10,000 RF090 UL, CSA, TÜV RUSBF090-2 — 3,000 — 15,000 RF090 UL, CSA, TÜV RUSBF090-AP —— 2,000 10,000 RF090 UL, CSA, TÜV RUSBF110 500 —— 10,000 RF110 UL, CSA, TÜV RUSBF110-2 — 3,000 — 15,000 RF110 UL, CSA, TÜV RUSBF110-AP —— 2,000 10,000 RF110 UL, CSA, TÜV RUSBF135 500 —— 10,000 RF135 UL, CSA, TÜV RUSBF135-2 — 3,000 — 15,000 RF135 UL, CSA, TÜV RUSBF135-AP —— 2,000 10,000 RF135 UL, CSA, TÜV RUSBF160 500 —— 10,000 RF160 UL, CSA, TÜV RUSBF160-2 — 3,000 — 15,000 RF160 UL, CSA, TÜV RUSBF160-AP —— 2,000 10,000 RF160 UL, CSA, TÜV RUSBF185 500 —— 10,000 RF185 UL, CSA, TÜV RUSBF185-2 — 3,000 — 15,000 RF185 UL, CSA, TÜV RUSBF185-AP —— 2,000 10,000 RF185 UL, CSA, TÜV RUSBF250 500 —— 10,000 RF250 UL, CSA, TÜV RUSBF250-2 — 3,000 — 15,000 RF250 UL, CSA, TÜV RUSBF250-AP —— 2,000 10,000 RF250 UL, CSA, TÜV RGEF 16V RGEF250 500 —— 10,000 GF250 UL, CSA, TÜV RGEF250-2 — 3,000 — 15,000 GF250 UL, CSA, TÜV RGEF250-AP —— 2,000 10,000 GF250 UL, CSA, TÜV Part Number Bag Quantity T ape & Reel Quantity Ammo Pack Quantity Standard Package Quantity Part Marking Agency Recognition TableR6 PackagingandMarkingInformationforRadial-leadedDevices Cont’d

132 RoHS Compliant, ELV Compliant

RGEF300 500 —— 10,000 GF300 UL, CSA, TÜV RGEF300-2 — 2,500 — 12,500 GF300 UL, CSA, TÜV RGEF300-AP —— 2,000 10,000 GF300 UL, CSA, TÜV RGEF400 500 —— 10,000 GF400 UL, CSA, TÜV RGEF400-2 — 2,500 — 12,500 GF400 UL, CSA, TÜV RGEF400-AP —— 2,000 10,000 GF400 UL, CSA, TÜV RGEF500 500 —— 10,000 GF500 UL, CSA, TÜV RGEF500-2 — 2,000 — 10,000 GF500 UL, CSA, TÜV RGEF500-AP —— 2,000 10,000 GF500 UL, CSA, TÜV RGEF600 500 —— 10,000 GF600 UL, CSA, TÜV RGEF600-2 — 2,000 — 10,000 GF600 UL, CSA, TÜV RGEF600-AP —— 2,000 10,000 GF600 UL, CSA, TÜV RGEF700 500 —— 10,000 GF700 UL, CSA, TÜV RGEF700-2 — 1,500 — 7,500 GF700 UL, CSA, TÜV RGEF700-AP —— 1,500 7,500 GF700 UL, CSA, TÜV RGEF800 500 —— 10,000 GF800 UL, CSA, TÜV RGEF800-2 — 1,000 — 5,000 GF800 UL, CSA, TÜV RGEF800-AP —— 1,000 5,000 GF800 UL, CSA, TÜV RGEF900 500 —— 10,000 GF900 UL, CSA, TÜV RGEF900-2 — 1,000 — 5,000 GF900 UL, CSA, TÜV RGEF900-AP —— 1,000 5,000 GF900 UL, CSA, TÜV RGEF1000 250 —— 5,000 GF1000 UL, CSA, TÜV RGEF1000-2 — 1,000 — 5,000 GF1000 UL, CSA, TÜV RGEF1000-AP —— 1,000 5,000 GF1000 UL, CSA, TÜV RGEF1100 250 —— 5,000 GF1100 UL, CSA, TÜV RGEF1100-2 — 1,000 — 5,000 GF1100 UL, CSA, TÜV RGEF1100-AP —— 1,000 5,000 GF1100 UL, CSA, TÜV RGEF1200 250 —— 5,000 GF1200 UL, CSA, TÜV RGEF1200-2 — 1,000 — 5,000 GF1200 UL, CSA, TÜV RGEF1200-AP —— 1,000 5,000 GF1200 UL, CSA, TÜV RGEF1400 250 —— 5,000 GF1400 UL, CSA, TÜV RGEF1400-2 — 1,000 — 5,000 GF1400 UL, CSA, TÜV RGEF1400-AP —— 1,000 5,000 GF1400 UL, CSA, TÜV RHEF 16V - HighT emperature RHEF200 500 —— 10,000 HF2.0 UL, CSA, TÜV RHEF200-2 — 2,500 — 12,500 HF2.0 UL, CSA, TÜV RHEF200-AP —— 2,500 12,500 HF2.0 UL, CSA, TÜV RHEF300 500 —— 10,000 HF3 UL, CSA, TÜV RHEF300-2 — 2,000 — 10,000 HF3 UL, CSA, TÜV RHEF300-AP —— 2,000 10,000 HF3 UL, CSA, TÜV RHEF400 500 —— 10,000 HF4 UL, CSA, TÜV RHEF400-2 — 1,500 — 7,500 HF4 UL, CSA, TÜV RHEF400-AP —— 1,500 7,500 HF4 UL, CSA, TÜV RHEF450 500 —— 10,000 HF4.5 UL, CSA, TÜV RHEF450-2 — 1,500 — 7,500 HF4.5 UL, CSA, TÜV RHEF450-AP —— 1,500 7,500 HF4.5 UL, CSA, TÜV RHEF550 500 —— 10,000 HF5.5 UL, CSA, TÜV RHEF550-2 — 2,000 — 10,000 HF5.5 UL, CSA, TÜV RHEF550-AP —— 2,000 10,000 HF5.5 UL, CSA, TÜV RHEF600 500 —— 10,000 HF6 UL, CSA, TÜV RHEF600-2 — 1,500 — 7,500 HF6 UL, CSA, TÜV RHEF600-AP —— 1,500 7,500 HF6 UL, CSA, TÜV Part Number Bag Quantity T ape & Reel Quantity Ammo Pack Quantity Standard Package Quantity Part Marking Agency Recognition TableR6 PackagingandMarkingInformationforRadial-leadedDevices Cont’d

PolySwitchResettableDevices– Radial-leaded Devices 133RoHS Compliant, ELV Compliant AgencyRecognitionsforRadial-leadedDevices UL File # E74889 CSA File # CA78165 TÜV Certificate number available on request (per IEC 60730-1). RHEF 16V - HighT emperature RHEF650 500 —— 10,000 HF6.5 UL, CSA, TÜV RHEF650-2 — 1,500 — 7,500 HF6.5 UL, CSA, TÜV RHEF650-AP —— 1,500 7,500 HF6.5 UL, CSA, TÜV RHEF700 500 —— 10,000 HF7 UL, CSA, TÜV RHEF700-2 — 1,500 — 7,500 HF7 UL, CSA, TÜV RHEF700-AP —— 1,500 7,500 HF7 UL, CSA, TÜV RHEF750 500 —— 10,000 HF7.5 UL, CSA, TÜV RHEF750-2 — 1,000 — 5,000 HF7.5 UL, CSA, TÜV RHEF750-AP —— 1,000 5,000 HF7.5 UL, CSA, TÜV RHEF800 500 —— 10,000 HF8 UL, CSA, TÜV RHEF800-2 — 1,000 — 5,000 HF8 UL, CSA, TÜV RHEF800-AP —— 1,000 5,000 HF8 UL, CSA, TÜV RHEF900 250 —— 5,000 HF9 UL, CSA, TÜV RHEF900-2 — 1,000 — 5,000 HF9 UL, CSA, TÜV RHEF900-AP —— 1,000 5,000 HF9 UL, CSA, TÜV RHEF1000 250 —— 5,000 HF10 UL, CSA, TÜV RHEF1000-2 — 1,000 — 5,000 HF10 UL, CSA, TÜV RHEF1000-AP —— 1,000 5,000 HF10 UL, CSA, TÜV RHEF1100 250 —— 5,000 HF11 UL, CSA, TÜV RHEF1100-2 — 1,000 — 5,000 HF11 UL, CSA, TÜV RHEF1100-AP —— 1,000 5,000 HF11 UL, CSA, TÜV RHEF1300 250 —— 5,000 HF13 UL, CSA, TÜV RHEF1300-2 — 1,000 — 5,000 HF13 UL, CSA, TÜV RHEF1300-AP —— 1,000 5,000 HF13 UL, CSA, TÜV RHEF1400 250 —— 5,000 HF14 UL, CSA, TÜV RHEF1400-2 — 1,000 — 5,000 HF14 UL, CSA, TÜV RHEF1400-AP —— 1,000 5,000 HF14 UL, CSA, TÜV RHEF1500 250 —— 5,000 HF15 UL, CSA, TÜV RHEF1500-2 — 1,000 — 5,000 HF15 UL, CSA, TÜV RHEF1500-AP —— 1,000 5,000 HF15 UL, CSA, TÜV RUSBF RUSBF075 500 —— 10,000 RF075 UL, CSA, TÜV RUSBF075-2 — 3,000 — 15,000 RF075 UL, CSA, TÜV RUSBF075-AP —— 2,000 10,000 RF075 UL, CSA, TÜV RUSBF120 500 —— 10,000 RF120 UL, CSA, TÜV RUSBF120-2 — 3,000 — 15,000 RF120 UL, CSA, TÜV RUSBF120-AP —— 2,000 10,000 RF120 UL, CSA, TÜV RUSBF155 500 —— 10,000 RF155 UL, CSA, TÜV RUSBF155-2 — 3,000 — 15,000 RF155 UL, CSA, TÜV RUSBF155-AP —— 2,000 10,000 RF155 UL, CSA, TÜV Part Number Bag Quantity T ape & Reel Quantity Ammo Pack Quantity Standard Package Quantity Part Marking Agency Recognition TableR6 PackagingandMarkingInformationforRadial-leadedDevices Cont’d

134 RoHS Compliant, ELV Compliant

Description EIA Mark Dimension (mm) T olerance Carrier tape width W 18 -0.5/+1.0 Hold-down tape width W 4 11 Minimum Top distance between tape edges W 6 3 Maximum Sprocket hole position W 5 9 -0.5/+0.75 Sprocket hole diameter D0 4 ± 0.2 Abscissa to plane (straight lead) (RXEF110 to RXEF300, RKEF135 to RKEF500) H 18.5 ± 2.5 Abscissa to plane (kinked lead) (RXEF010 to RXEF090, BBRF550, RKEF050 to RKEF110) H 0 16.0 ± 0.5 Abscissa to top (RXEF010 to RXEF090, BBRF550, RKEF050 to RKEF185) H 1 32.2 Maximum Abscissa to top* (RXEF110 to RXEF300, RKEF250 to RKEF500) H 1 47.5 Maximum Overall width with lead protrusion (RXEF010 to RXEF090, BBRF550, RKEF050 to RKEF185) C1 43.2 Maximum Overall width with lead protrusion* (RXEF110 to RXEF300, RKEF250 to RKEF500) C1 58 Maximum Overall width without lead protrusion (RXEF010 to RXEF090, BBRF550, RKEF050 to RKEF185) C2 42.5 Maximum Overall width without lead protrusion* (RXEF110 to RXEF300, RKEF250 to RKEF500) C2 57 Maximum Lead protrusion L 1 1.0 Maximum Protrusion of cut-out L 11.0 Maximum Protrusion beyond hold-down tape I2 Not specified — Sprocket hole pitch P0 12.7 ± 0.3 Device pitch (RXEF010 to RXEF090, BBRF550, RKEF050 to RKEF185) — 12.7 ± 0.3 Device pitch (RXEF110 to RXEF300, RKEF250 to RKEF500) — 25.4 ± 0.61 Pitch tolerance — 20 consecutive ± 1 Tape thickness t 0.9 Maximum Overall tape and lead thickness (RXEF010 to RXEF090, RKEF050 to RKEF185) t1 1.5 Maximum Overall tape and lead thickness (RXEF110 to RXEF300, BBRF550, RKEF250 to RKEF500) t1 2.3 Maximum Splice sprocket hole alignment —0 ± 0.3 Body lateral deviation /H9004h0 ± 1.0 Body tape plane deviation /H9004p0 ± 1.3 Ordinate to adjacent component lead (RXEF010 to RXEF185, BBRF550, RKEF050 to RKEF300) P1 3.81 ± 0.7 Ordinate to adjacent component lead (RXEF250 to RXEF300, RKEF375 to RKEF500) P1 7.62 ± 0.7 Lead spacing* (RXEF010 to RXEF185, BBRF550, RKEF050 to RKEF300) F 5.05 ± 0.75 Lead spacing* (RXEF250 to RXEF300, RKEF375 to RKEF500) F 10.15 ± 0.75 Reel width (RXEF010 to RXEF090, RKEF050 to RKEF185) w 2 56.0 Maximum Reel width* (RXEF110 to RXEF300, RKEF250 to RKEF500) w 2 63.5 Maximum Reel diameter a 370.0 Maximum Space between flanges* (RXEF010 to RXEF090, RKEF050 to RKEF185) w 1 48.00 Maximum Space between flanges* (RXEF110 to RXEF300, RKEF250 to RKEF500) w 1 55.00 Maximum Arbor hold diameter c 26.0 ± 12.0 Core diameter* n 91.0 Maximum Box — 64/372/362 Maximum Consecutive missing places — None — Empty places per reel — 0.1% Maximum *Differs from EIA specification. RXEF , BBRF and RKEF devices are available in tape and reel packaging per EIA468-B/IEC60286-2 standards. See Figures R22 and R23 for details. TableR7 TapeandReelSpecificationsforRadial-leadedDevices

PolySwitchResettableDevices– Radial-leaded Devices 135RoHS Compliant, ELV Compliant Description EIA Mark Dimension (mm) T olerance Carrier tape width W 18 -0.5/+1.0 Hold-down tape width W 4 11 Minimum Top distance between tape edges W 6 3 Maximum Sprocket hole position W 5 9 -0.5/+0.75 Sprocket hole diameter D0 4 ± 0.2 Abscissa to plane (straight lead)* (RUEF300 to RUEF900) H 18.5 ± 2.5 Abscissa to plane (kinked lead) (RUSBF075 to RUSBF250, RUEF090 to RUEF250, RTEF120 to RTEF190) H 0 16.0 ± 0.5 Abscissa to top (RUSBF075 to RUSBF250, RUEF090 to RUEF300, RTEF120 to RTEF190) H 1 32.2 Maximum Abscissa to top* (RUEF400 to RUEF900) H 1 45.0 Maximum Overall width with lead protrusion (RUSBF075 to RUSBF250, RUEF090 to RUEF300, RTEF120 to RTEF190) C 1 43.2 Maximum Overall width with lead protrusion (RUEF400 to RUEF900) C1 56 Maximum Overall width without lead protrusion (RUSBF075 to RUSBF250, RUEF090 to RUEF300, RTEF120 to RTEF190) C 2 42.5 Maximum Overall width without lead protrusion (RUEF400 to RUEF900) C2 56 Maximum Lead protrusion L 1 1.0 Maximum Protrusion of cut-out L 11 Maximum Protrusion beyond hold-down tape I2 Not specified — Sprocket hole pitch P0 12.7 ± 0.3 Device pitch (RUSBF075 to RUSBF250, RUEF090 to RUEF300, RTEF120 to RTEF190) — 12.7 ± 0.3 Device pitch (RUEF400 to RUEF900) — 25.4 ± 0.6 Pitch tolerance — 20 consecutive ± 1 Tape thickness t 0.9 Maximum Overall tape and lead thickness (RUSBF075 to RUSBF250, RUEF090 to RUEF250, RTEF120 to RTEF190) t 1 1.5 Maximum Overall tape and lead thickness* (RUEF300 to RUEF900) t1 2.3 Maximum Splice sprocket hole alignment —0 ± 0.3 Body lateral deviation /H9004h0 ± 1.0 Body tape plane deviation /H9004p0 ± 1.3 Ordinate to adjacent component lead P1 3.81 ± 0.7 (RUSBF075 to RUSBF250, RUEF090 to RUEF300, RTEF120 to RTEF190) Ordinate to adjacent component lead (RUEF400 to RUEF900) P1 7.62 ± 0.7 Lead spacing* (RUSBF075 to RUSBF250, RUEF090 to RUEF400, RTEF120 to RTEF190) F 5.05 ± 0.75 Lead spacing* (RUEF500 to RUEF900) F 10.15 ± 0.75 Reel width (RUEF090 to RUEF400, RUSBF075 to RUSBF250, RTEF120 to RTEF190) w 2 56.0 Maximum Reel width (RUEF500* to RUEF900) w 2 63.5 Maximum Reel diameter a 370.0 Maximum Space between flanges* (RUEF090 to RUEF400, RUSBF075 to RUSBF250, RTEF120 to RTEF190) w 1 48.0 Maximum Space between flanges* (RUEF500 to RUEF900) w 1 55.0 Maximum Arbor hold diameter c 26.0 ± 12.0 Core diameter* n 91.0 Maximum Box — 64/372/362 Maximum Consecutive missing places — None — Empty places per reel — 0.1% Maximum *Differs from EIA specification. RUEF , RTEF and RUSBF devices are available in tape and reel packaging per EIA468–B/IEC60286–2 standards. See Figures R22 and R23 for details. TableR7 TapeandReelSpecificationsforRadial-leadedDevices Cont’d

136 RoHS Compliant, ELV Compliant

Description EIA Mark Dimension (mm) T olerance Carrier tape width W 18 -0.5/+1.0 Hold-down tape width W 4 11 Minimum Top distance between tape edges W 6 3 Maximum Sprocket hole position W 5 9 -0.5/+0.75 Sprocket hole diameter D0 4 ± 0.2 Abscissa to plane (straight lead) (RGEF250 to RGEF1400) H 18.5 ± 2.5 Abscissa to plane (kinked lead) (RHEF050 to RHEF1500) H 0 16.0 ± 0.5 Abscissa to top (RGEF250 to RGEF500, RHEF050 to RHEF450) H 1 32.2 Maximum Abscissa to top* (RGEF600 to RGEF1400, RHEF550 to RHEF1500) H 1 45.0 Maximum Overall width with lead protrusion (RGEF250 to RGEF600, RHEF050 to RHEF450) C1 43.2 Maximum Overall width with lead protrusion (RGEF700 to RGEF1400, RHEF550 to RHEF1500) C1 55 Maximum Overall width without lead protrusion (RGEF250 to RGEF600, RHEF050 to RHEF450) C2 42.5 Maximum Overall width without lead protrusion (RGEF700 to RGEF1400, RHEF550 to RHEF1500) C2 54 Maximum Lead protrusion L 1 1.0 Maximum Protrusion of cut-out L 11 Maximum Protrusion beyond hold-down tape I2 Not specified — Sprocket hole pitch P0 12.7 ± 0.3 Device pitch (RGEF250 to RGEF700, RHEF050 to RHEF600) — 25.4 ± 0.61 Device pitch (RGEF800 to RGEF1400, RHEF650 to RHEF1500) — 25.4 ± 0.6 Pitch tolerance — 20 consecutive ± 1 Tape thickness t 0.9 Maximum Overall tape and lead thickness* (RGEF250 to RGEF1100, RHEF050 to RHEF1100) t1 2.0 Maximum Overall tape and lead thickness* (RGEF1200 to RGEF1400, RHEF1300 to RHEF1500) t1 2.3 Maximum Splice sprocket hole alignment —0 ± 0.3 Body lateral deviation /H9004h0 ± 1.0 Body tape plane deviation /H9004p0 ± 1.3 Ordinate to adjacent component lead (RGEF250 to RGEF1100, RHEF050 to RHEF900) P1 3.81 ± 0.7 Ordinate to adjacent component lead (RGEF1200 to RGEF1400, RHEF1000 to RHEF1500) P1 7.62 ± 0.7 Lead spacing* (RGEF250 to RGEF1100, RHEF050 to RHEF900) F 5.05 ± 0.75 Lead spacing* (RGEF1200 to RGEF1400, RHEF1000 to RHEF1500) F 10.15 ± 0.75 Reel width (RGEF250 to RGEF600, RHEF050 to RHEF450) w 2 56.0 Maximum Reel width* (RGEF600 to RGEF1400 & RHEF550 to RHEF1500) w 2 63.5 Maximum Reel diameter a 370.0 Maximum Space between flanges* (RGEF250 to RGEF600, RHEF050 to RHEF450) w 1 48.0 Maximum Space between flanges* (RGEF600 to RGEF1400, RHEF550 to RHEF1500) w 1 55.0 Maximum Arbor hold diameter c 26.0 ± 12.0 Core diameter* n 91.0 Maximum Box — 64/372/362 Maximum Consecutive missing places — None — Empty places per reel — 0.1% Maximum *Differs from EIA specification. RGEF and RHEF devices are available in tape and reel packaging per EIA468–B/IEC60286–2 standards. See Figures R22 and R23 for details. TableR7 TapeandReelSpecificationsforRadial-leadedDevices Cont’d

PolySwitchResettableDevices– Radial-leaded Devices 137RoHS Compliant, ELV Compliant n a c Cross section Direction of unreeling Reel Type Upper side Lower side Optional shape: Circular or polygonal /H9004h H1 P1 F A B Reference plane Direction of unreeling Cross section A-B H W t P0 D0 L /H9004h /H9004p /H9004p PartNumberingSystemforRadial-leadedDevices RUEF 250 U 2 Packaging Blank = Packaged in bags -1 = 25.4mm (1 .0 inch) minimum lead length -2 = Tape and reel -AP = Ammo pack -X.X = Special lead cut length (inch) Modifier K = Standard kinked lead B = Special kinked lead S = Straight lead U = Uncoated device Hold Current Indicator Product Series An “F” at the end of product series indicates Pb-free version of product. Note:Kinked part is recommended to well control the height of part on the PCB in non-auto PCB application. FigureR22 EIAReferencedTapedComponentDimensionsforRadial-leadedDevices FigureR23 EIAReferencedReelDimensionsforRadial-leadedDevices

138 RoHS Compliant, ELV Compliant

Warning:

  • Users should independently evaluate the suitability of and test each product selected for their own application.
  • Operation beyond the maximum ratings or improper use may result in device damage and possible electrical arcing and flame.
  • These devices are intended for protection against damage caused by occasional overcurrent or overtemperature fault conditions and should not be used when repeated fault conditions or prolonged trip events are anticipated. Contamination of the PPTC material with certain silicone-based oils or some aggressive solvents can adversely impact the performance of the devices.
  • Device performance can be impacted negatively if devices are handled in a manner inconsistent with recommended electronic, thermal, and mechanical procedures for electronic components.
  • PPTC devices are not recommended for installation in applications where the device is constrained such that its PTC properties a re inhibited, for example in rigid potting materials or in rigid housings, which lack adequate clearance to accommodate device expansion.
  • Operation in circuits with a large inductance can generate a circuit voltage (Ldi/dt) above the rated voltage of the device.