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PolySwitchResettableDevices– Automotive Devices 149 We have provided PPTC resettable devices for the automotiveindustryforover25years.Withtheadventof TS16949 and our continued involvement in the automotive industry, we developed automotive specific versions of our PolySwitch PPTC devices (AHS, ASMD, AHRF, AHEF, AGRF and BD). These products are qualified and sold under PS400 specification which is derived from AEC-Q200, the standard for electronic components used in the automotive industry. The key differencebetween these product families and other protection devices in our circuit protection product portfolioisthequalificationprocessfollowedaccording to a series of rigorous tests rela ted to the automotive environment. As a result, they are characterized by specific additional values determined post automotive related testing.
- Expertise from the world’s leading resettable overcurrent protection manufacturer
- High quality products from the world’s largestpass ive component manufacturer
- Worldwide team dedicated to support automotive
applications
- Wide range of dedicated automotive surface-mount and radial-leaded resettable overcurrent devices
- High performance transient voltage protection devices
- RoHS compliant
- Overcurrent and overvoltage circuit protection devices
- Resettable and single-use overcurrent devices
- Wide range of form factor and termination methods
- Products meet applicable automotive i ndustry standards
- Devices compatible with high-volume electronics assembly
- Motor and motor circuit protection including power door-locks, mirrors, lumbar pumps, seats, sunroofs and windows
- Electronic Control Unit (ECU) I/O protection
- Heating Ventilation and Cooling (HVAC) motor and I/O protection
- Telematics, infotainment and navigations systems
- Liquid Crystal Display (LCD) back-light heaters
- Power and cigarette lighter outlets, plugs and adapter/charg ers PolySwitchResettableDevices Automotive Devices Benefits Features
- Powered networks and busses
- Air-flow detection and overcurrent protection in HVAC and cooling fan systems
- Stall detection in express window and sunroof circuits
- Power distribution, electrical centers and junction box resettable overcurrent protection
- Wire downsizing
- Motor Electromagnetic Interference (EMI) suppression
- Electrostatic Discharge (ESD) damage protection
- Load dump and other transient voltage protection
150 RoHS Compliant, ELV Compliant
Hold Current (A) 8.00 0.0086 Ω 0.0104 Ω —— — —— — 0.0115 Ω 10.00 0.0056 Ω 0.0083 Ω — 0.0083 Ω — —— —— Voltage Rating AGRF 16V AHRF 16V AHRF 30V AHS 16V ASMD 16V ASMD 30V ASMD 60V Maximum AmbientTemperature Part Number -40°C -20°C 0°C 20°C 25°C 40°C 50°C 60°C 70°C 85°C 125°C AGRF 16V — Radial-leaded AHEF 32V BD 14V TableA1ProductSeries-CurrentRating,VoltageRating/TypicalResistancefor AutomotiveDevices TableA2 ThermalDeratingforAutomotiveDevices [HoldCurrent(A)atAmbientTemperature(°C)]
PolySwitchResettableDevices– Automotive Devices 151RoHS Compliant, ELV Compliant Maximum AmbientTemperature Part Number -40°C -20°C 0°C 20°C 25°C 40°C 50°C 60°C 70°C 85°C 125°C AHRF (HighTemperature) 30V — Radial-leaded AHRF (HighTemperature) 16V — Radial-leaded AHEF (HighTemperature) 32V — Radial-leaded AHS (HighTemperature) 16V — Surface-mount ASMD 16-60V — Surface-mount BD 14V— Bladed Device TableA2 ThermalDeratingforAutomotiveDevices [HoldCurrent(A)atAmbientTemperature(°C)] Cont’d NEW NEW NEW NEW NEW
A B % of Rated Hold andT rip Current AmbientT emperature (˚C) 200 150 100 -40 -20 0 20 40 60 80 100 120 FigureA3 A= ASMD B= AHS
152 RoHS Compliant, ELV Compliant
% of Rated Hold andT rip Current AmbientT emperature (˚C) 200 150 100 -40 -20 0 20 40 60 80 100 120 A B BA FigureA1A= AGRF B= AHRF % of Rated Hold andT rip Current AmbientT emperature (˚C) 200 150 100 -40 -20 0 20 40 60 80 100 120 FigureA2 AHEF FigureA1-A4ThermalDeratingCurvesforAutomotiveDevices
PolySwitchResettableDevices– Automotive Devices 153RoHS Compliant, ELV Compliant AGRF 16V — Radial-leaded AHRF (HighTemperature) 30V — Radial-leaded AHRF (HighTemperature) 16V — Radial-leaded Part Number IH(A)@ R1MAX IH(A)@ RaMAX IT (A) VMAX (VDC ) IMAX (A) PDTyp (W) RMIN (Ω) RaMAX (Ω) Figure for Dimensions R1MAX (Ω) Max.Time-to-trip (A) (s) % of Rated Hold andT rip Current AmbientT emperature (˚C) 200 180 160 140 120 100 -40 -20 -10-30 0 20 3010 40 50 60 70 80 90 100 110 120 FigureA4BD FigureA1-A4ThermalDeratingCurvesforAutomotiveDevices Cont’d TableA3 ElectricalCharacteristicsforAutomotiveDevices
154 RoHS Compliant, ELV Compliant
AHEF (HighTemperature) 32V — Radial-leaded AHS (HighTemperature) 16V — Surface-mount ASMD 16-60V — Surface-mount BD 14V — Bladed Device BD280-1130-10/16 88 13 14 100 4.4 40 8 0.0095 0.0185 0.0185 A13 BD280-1130-15/16 12 12 20 14 100 4.5 60 8 0.0050 0.0070 0.0070 A13 BD280-1130-20/16 16 16 26 14 100 5.2 80 10 0.0028 0.0064 0.0064 A13 BD280-1927-25/16-W 20 20 32 14 100 6.0 100 13 0.0024 0.0042 0.0042 A14 BD280-1927-30/16-W 21 21 38 14 100 6.2 120 13 0.0021 0.0043 0.0043 A14 Part Number IH(A)@ R1MAX IH(A)@ RaMAX IT (A) VMAX (VDC ) IMAX (A) PDTyp (W) RMIN (Ω) RaMAX (Ω) Figure for Dimensions R1MAX (Ω) Max.Time-to-trip (A) (s) Notes: IH : Hold current: maximum current device will pass without interruption in 25°C, unless otherwise specified (20°C for ASMD). IT : Trip current: minimum current that will switch the device from low resistance to high resistance in 25°C still air, unless otherwise specified. VMAX : Maximum voltage device can withstand without damage at rated current. IMAX : Maximum fault current device can withstand without damage at rated voltage. PD : Power di ssipated from device when in the tripped state in 25°C still air, unless otherwise specified. RMIN : Minimum resistance of device as supplied at 25°C, unless otherwise specified. R1MAX : Maximum resistance of device when measured one hour post reflow (surface-mount device) or one hour post trip (radial-leaded device) at 25°C unless otherwise specified. RaMAX : Maximum functional resistance of device after being subjected to the stresses described in PS400 at 25°C, unl ess otherwise specified. RaMIN : Minimum functional resistance of device after being subjected to the stresses described in PS400 at 25°C, unless otherwise specified. NEW NEW NEW NEW NEW TableA3 ElectricalCharacteristicsforAutomotiveDevices Cont’d
PolySwitchResettableDevices– Automotive Devices 155RoHS Compliant, ELV Compliant B D C G F CL CL CL CL A E FigureA5 BF A D E C FigureA6 B G C F A D H E FigureA7 J J FigureA8 A E C H FigureA9 A B D CF CL CL CL CL E FigureA10 A B D C C toL CL E F CL CL FigureA11 B D CF C toL CL A E CL CL FigureA12 DG C B F H A I E(x2) FigureA13 DG C B E(x2) F H A I FigureA14 FigureA5-A14DimensionFiguresforAutomotiveDevices
156 RoHS Compliant, ELV Compliant
16V — Radial-leaded AHRF (HighTemperature) 30V — Radial-leaded AHRF (HighTemperature) 16V — Radial-leaded Part Number A Min. Max. J Max. Figure H Typ. B Min. Max. C Min. Max. D Min. Max. E Min. Max. F Min. Max. G Min. Max. TableA4 DimensionsforAutomotiveDevicesinMillimeters(Inches)
PolySwitchResettableDevices– Automotive Devices 157RoHS Compliant, ELV Compliant AHRF (HighTemperature) 16V — Radial-leaded AHEF (HighTemperature) 32V — Radial-leaded Part Number A Min. Max. J Max. Figure H Typ. B Min. Max. C Min. Max. D Min. Max. E Min. Max. F Min. Max. G Min. Max. AHS (HighTemperature) 16V — Surface-mount ASMD 16-60V — Surface-mount Part Number A Min. Max. Figure B Min. Max. C Min. Max. D Min. Max. E Min. Max. F Min. Max. G Min. Max. H Min. Max. TableA4 DimensionsforAutomotiveDevicesinMillimeters(Inches) Cont’d
158 RoHS Compliant, ELV Compliant
Time-to-trip (s) Fault Current (A) 1000 100 0.10 0.01 1 10 100A A B C D E F G H I JKL M N OP QRS B C DE G F H I J KL M O P Q RS N FigureA16 AHRF A= AHRF050 B= AHRF070 C= AHRF100 D= AHRF200 E= AHRF300 F= AHRF400 G= AHRF450 H= AHRF550 I= AHRF600 J= AHRF650 Time-to-trip (s) Fault Current (A) 1000 100 0.10 0.01 0.001 1 10 100 A A B C D EF G H I J B C D E F G H J I FigureA15AGRF A= AGRF400 B= AGRF500 C= AGRF600 D= AGRF700 E= AGRF800 F= AGRF900 G= AGRF1000 H= AGRF1100 I= AGRF1200 J= AGRF1400 K= AHRF700 L= AHRF750 M= AHRF800 N= AHRF900 O= AHRF1000 P= AHRF1100 Q= AHRF1300 R= AHRF1400 S= AHRF1500 BD 14V — Bladed Device Part Number A Min. Max. Figure B Min. Max. NEW NEW C Min. Max. D Min. Max. E(x2) Min. Max. F Min. Max. G Min. Max. H Min. Max. I Min. Max. NEW NEW NEW TableA4 DimensionsforAutomotiveDevicesinMillimeters(Inches) Cont’d FigureA15-A20 TypicalTime-to-tripat25°CforAutomotiveDevices
PolySwitchResettableDevices– Automotive Devices 159RoHS Compliant, ELV Compliant Time-to-trip (s) Fault Current (A) 1000 100 0.1 0.01 1 10 100 A A B B C C D D E E F F G G FigureA17AHEF A= AHEF050 B= AHEF070 C= AHEF100 D= AHEF300 E= AHEF500 F= AHEF750 G= AHEF1000 Time-to-trip (s) Fault Current (A) 100 0.10 0.01 0.001 0.1 1 10 100 A A B C D E F G H B C D E FGH FigureA19ASMD A= ASMD030F B= ASMD050F C= ASMD075F D= ASMD100F E= ASMD125F F= ASMD150F G= ASMD200F H= ASMD250F Time-to-trip (s) Fault Current (A) 100 0.10 0.01 101 100BA A B C C D D FigureA18AHS A= AHS080-2018 B= AHS160 C= AHS200 D= AHS300 FigureA15-A20 TypicalTime-to-tripat25°CforAutomotiveDevices Cont’d
160 RoHS Compliant, ELV Compliant
Lead material AGRF400 to AGRF1100 : Tin Plated Copper, 0.52mm 2(20AWG) ø 0.8 mm/0.032in AGRF1200 to AGRF1400 : Tin Plated Copper, 0.82mm 2(18AWG) ø 1.0mm/0.040in Soldering characteristics Solderability per ANSI/J-STD-002 Category 3 Solder heat withstand AGRF400: per IEC68-2-20 Test Tb, Method 1A, Condition A: can withstand 5 seconds at 260°C ± 5°C AGRF500-AGRF1400: per IEC68-2-20 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:See PS400 for other physical characteristics. Devices are not designed to be placed through a reflow process. Test 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 Note:See PS400 for other environmental specifications. AGRF PhysicalCharacteristics EnvironmentalSpecifications Time-to-trip (s) Fault Current (A) 1000 100 0.1 0.01 0 20 40 60 80 100 120 140 160 180 200 A A B C D E B C DE FigureA20BD A= BD30A B= BD25A C= BD20A D= BD15A E= BD10A FigureA15-A20 TypicalTime-to-tripat25°CforAutomotiveDevices Cont’d TableA5 PhysicalCharacteristicsandEnvironmentalSpecificationsforAutomotiveDevices
PolySwitchResettableDevices– Automotive Devices 161RoHS Compliant, ELV Compliant Lead material AHRF050 to AHRF200 : Tin-plated Copper Clad Steel, 0.205mm 2(24 AWG), ø 0.51mm/0.020in AHRF300 to AHRF1100 : Tin-plated copper 0.52mm 2(20 AWG), ø 0.81mm/0.032 in AHRF1300 to AHRF1500 : Tin-plated copper 0.82mm 2(18 AWG), ø 1.0mm/0.04 in 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 requirements Operation temperature -40°C~125°C Note:See PS400 for other physical characteristics. Devices are not designed to be placed through a reflow process. Test 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 Note:See PS400 for other environmental specifications. AHRF PhysicalCharacteristics EnvironmentalSpecifications Lead material AHEF050 to AHEF100 : Tin-plated Copper Clad Steel, 0.205mm 2(24 AWG), ø 0.51mm/0.020in. AHEF300 to AHEF750 : Tin-plated Copper 0.52mm 2(20 AWG), ø 0.81mm/0.032in AHEF1000 : Tin-plated copper 0.82mm2(18 AWG), ø 1.0mm/0.04 in 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 requirements Operation temperature -40°C~125°C Note:See PS400 for other physical characteristics. Devices are not designed to be placed through a reflow process. Test 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 Note:See PS400 for other environmental specifications. AHEF PhysicalCharacteristics EnvironmentalSpecifications Lead material Tin-plated brass to MIL-T -10727B Soldering characteristics Solderability per ANSI-J-STD-002 Category 1 Solder heat withstand per IEC-STD 68-2-20, Test Tb, Section 5, Method 1A Flammability per IEC 695-2-2 Needle flame test for 20 seconds Operation temperature -40°C~125°C Note:See PS400 for other physical characteristics. Test Conditions Resistance Change Passive aging 70°C, 1000 hours ±3% Typical 85°C, 1000 hours ±5% Typical Humidity aging 85°C, 85% RH, 1000 hours ±1.2% Typical Thermal shock 125°C, -40°C (20 times) -33% Typical Solvent resistance Freon No change Trichloroethane No change Hydrocarbons No change Note:See PS400 for other environmental specifications. AHS PhysicalCharacteristics EnvironmentalSpecifications TableA5 PhysicalCharacteristicsandEnvironmentalSpecificationsforAutomotiveDevicesCont’d
162 RoHS Compliant, ELV Compliant
Terminal pad material 98%+ Tin-plated Brass Soldering characteristics Solderability per ANSI-J-STD-002 Category 1 Solder heat withstand per IEC-STD 68-2-20, Test Tb, Section 5, Method 1A Flammability resistance per IEC 695-2-2 Needle flame test for 20 seconds Recommended storage conditions 40°C max, 70% RH max; devices may not meet specified ratings if storage conditions are exceeded Operation temperature -40°C~85°C Note:See PS400 for other physical characteristics. Test Conditions Resistance Change Passive aging 60°C, 1000 hours ±3% typical 85°C, 1000 hours ±5% typical Humidity aging 85°C, 85% RH, 100 hours ±1.2% typical Thermal shock 85°C, -40°C (20 times) -33% typical 125°C, -55°C (10 times) -33% typical Solvent resistance Freon No change Trichloroethane No change Hydrocarbons No change Note:See PS400 for other environmental specifications. ASMD PhysicalCharacteristics EnvironmentalSpecifications Lead material Brass H65, thickness: 0.8mm , tin plating thickness: 5µm Soldering characteristics NA Solder heat withstand NA Insulating material Colored PBT , meets UL94V-0 requirements Operation temperature -40°C~125°C Note:See PS400 for other physical characteristics. Test Conditions Resistance Change Passive aging 85°C, 1000 hours ±5% Humidity aging 85°C, 85% RH,1000 hours ±5% 85°C, 85% RH (with 10% I HOLD ), 500 hours ±5% Thermal shock 85°C to -40°C (5 times) meet SCD Solvent resistance MIL-STD-202, Method 215F No change Note:See PS400 for other environmental specifications. BD PhysicalCharacteristics EnvironmentalSpecifications TableA5 PhysicalCharacteristicsandEnvironmentalSpecificationsforAutomotiveDevicesCont’d
PolySwitchResettableDevices– Automotive Devices 163RoHS Compliant, ELV Compliant AGRF Radial-leaded AGRF400 500 —— 10,000 GF4 * AGRF400-2 — 2,500 — 12,500 GF4 * AGRF400-AP —— 2,000 10,000 GF4 * AGRF500 500 —— 10,000 GF5 * AGRF500-2 — 2,000 — 10,000 GF5 * AGRF500-AP —— 2,000 10,000 GF5 * AGRF600 500 —— 10,000 GF6 * AGRF600-2 — 2,000 — 10,000 GF6 * AGRF600-AP —— 2,000 10,000 GF6 * AGRF700 500 —— 10,000 GF7 * AGRF700-2 — 1,500 — 7,500 GF7 * AGRF700-AP —— 1,500 7,500 GF7 * AGRF800 500 — — 10,000 GF8 * AGRF800-2 — 1,000 — 5,000 GF8 * AGRF800-AP —— 1,000 5,000 GF8 * AGRF900 500 —— 10,000 GF9 * AGRF900-2 — 1,000 — 5,000 GF9 * AGRF900-AP —— 1,000 5,000 GF9 * AGRF1000 250 —— 5,000 GF10 * AGRF1000-2 — 1,000 — 5,000 GF10 * AGRF1000-AP —— 1,000 5,000 GF10 * AGRF1100 250 —— 5,000 GF11 * AGRF1100-2 — 1,000 — 5,000 GF11 * AGRF1100-AP —— 1,000 5,000 GF11 * AGRF1200 250 —— 5,000 GF12 * AGRF1200-2 — 1,000 — 5,000 GF12 * AGRF1200-AP —— 1,000 5,000 GF12 * AGRF1400 250 —— 5,000 GF14 * AGRF1400-2 — 1,000 — 5,000 GF14 * AGRF1400-AP —— 1,000 5,000 GF14 * AHRF (HighTemperature) Radial-leaded AHRF050 500 —— 10,000 HF0.5 * AHRF050-2 — 2,500 — 12,500 HF0.7 * AHRF050-AP —— 2,500 12,500 HF0.7 * AHRF070 500 —— 10,000 HF0.7 * AHRF070-2 — 2,500 — 12,500 HF0.7 * AHRF070-AP —— 2,500 12,500 HF0.7 * AHRF100 500 —— 10,000 HF1.0 * AHRF100-2 — 2,500 — 12,500 HF1.0 * AHRF100-AP —— 2,500 12,500 HF1.0 * AHRF200 500 —— 10,000 HF2 * AHRF200-2 — 2,500 — 12,500 HF2 * AHRF200-AP —— 2,500 12,500 HF2 * AHRF300 500 —— 10,000 HF3 * AHRF300-2 — 2,000 — 10,000 HF3 * AHRF300-AP —— 2,000 10,000 HF3 * AHRF400 500 —— 10,000 HF4 * AHRF400-2 — 1,500 — 7,500 HF4 * AHRF400-AP —— 1,500 7,500 HF4 * * These devices have been designed for use in automotive applications. For commercial alternatives to these product series please see the radial-leaded devices section or surface-mount devices section. Part Number Bag Quantity Tape & Reel Quantity Ammo Pack Quantity Standard Package Quantity Part Marking Agency Recognition TableA6 PackagingandMarkingInformationforAutomotiveDevices
164 RoHS Compliant, ELV Compliant
AHRF (HighTemperature) Radial-leaded AHRF450 500 —— 10,000 HF4.5 * AHRF450-2 — 1,500 — 7,500 HF4.5 * AHRF450-AP —— 1,500 7,500 HF4.5 * AHRF550 500 —— 10,000 HF5.5 * AHRF550-2 — 2,000 — 10,000 HF5.5 * AHRF550-AP —— 2,000 10,000 HF5.5 * AHRF600 500 —— 10,000 HF6 * AHRF600-2 — 2,000 — 10,000 HF6 * AHRF600-AP —— 2,000 10,000 HF6 * AHRF650 500 —— 10,000 HF6.5 * AHRF650-2 — 1,500 — 7,500 HF6.5 * AHRF650-AP —— 1,500 7,500 HF6.5 * AHRF700 500 —— 10,000 HF7 * AHRF700-2 — 1,500 — 7,500 HF7 * AHRF700-AP —— 1,500 7,500 HF7 * AHRF750 500 —— 10,000 HF7.5 * AHRF750-2 — 1,000 — 5,000 HF7.5 * AHRF750-AP —— 1,000 5,000 HF7.5 * AHRF800 500 —— 10,000 HF8 * AHRF800-2 — 1,000 — 5,000 HF8 * AHRF800-AP —— 1,000 5,000 HF8 * AHRF900 250 —— 5,000 HF9 * AHRF900-2 — 1,000 — 5,000 HF9 * AHRF900-AP —— 1,000 5,000 HF9 * AHRF1000 250 —— 5,000 HF10 * AHRF1000-2 — 1,000 — 5,000 HF10 * AHRF1000-AP —— 1,000 5,000 HF10 * AHRF1100 250 —— 5,000 HF11 * AHRF1100-2 — 1,000 — 5,000 HF11 * AHRF1100-AP —— 1,000 5,000 HF11 * AHRF1300 250 —— 5,000 HF13 * AHRF1300-2 — 1,000 — 5,000 HF13 * AHRF1300-AP —— 1,000 5,000 HF13 * AHRF1400 250 —— 5,000 HF14 * AHRF1400-2 — 1,000 — 5,000 HF14 * AHRF1400-AP —— 1,000 5,000 HF14 * AHRF1500 250 —— 5,000 HF15 * AHRF1500-2 — 1,000 — 5,000 HF15 * AHRF1500-AP —— 1,000 5,000 HF15 * AHEF (HighTemperature) Radial-leaded AHEF050 500 —— 10,000 EF0.5 * AHEF070 500 —— 10,000 EF0.7 * AHEF100 500 —— 10,000 EF1.0 * AHEF300 500 —— 10,000 EF3 * AHEF500 250 —— 5,000 EF5 * AHEF750 250 —— 5,000 EF7.5 * AHEF1000 250 —— 5,000 EF10 * * These devices have been designed for use in automotive applications. For commercial alternatives to these product series please see the radial-leaded devices section or surface-mount devices section. Part Number Bag Quantity Tape & Reel Quantity Ammo Pack Quantity Standard Package Quantity Part Marking Agency Recognition TableA6 PackagingandMarkingInformationforAutomotiveDevices Cont’d
PolySwitchResettableDevices– Automotive Devices 165RoHS Compliant, ELV Compliant AHS (HighTemperature) Surface-mount ASMD Surface-mount * These devices have been designed for use in automotive applications. For commercial alternatives to these product series please see the radial-leaded devices section or surface-mount devices section. Part Number Tape & Reel Quantity Standard Package Quantity Part Marking Agency Recognition Dimension A (Min.*/Nom.) Dimension B (Nom.) Dimension C (Nom.) Recommended Pad Layouts [mm(in) See Figure A21] BD Bladed Device BD280-1130-10/16 200 1600 BD280-1130-10 * BD280-1130-15/16 200 1600 BD280-1130-15 * BD280-1130-20/16 200 1600 BD280-1130-20 * BD280-1927-25/16-W 200 1600 BD280-1927-25 * BD280-1927-30/16-W 200 1600 BD280-1927-30 * * These devices have been designed for use in automotive applications. For commercial alternatives to these product series please see the radial-leaded devices section or surface-mount devices section. Part Number Bag Quantity Standard Package Quantity Part Marking Agency Recognition B B A C NEW NEW NEW NEW NEW TableA6 PackagingandMarkingInformationforAutomotiveDevices Cont’d FigureA21RecommendedPadLayoutforAutomotiveDevices
166 RoHS Compliant, ELV Compliant
Description EIA Mark Dimension (mm) Tolerance Carrier tape width W 18.0 -0.5/+1.0 Hold down tape width W 4 11.0 Minimum Top distance between tape edges W 6 3.0 Maximum Sprocket hole position W 5 9.0 -0.5/+0.75 Sprocket hole diameter D 0 4.0 ±0.2 Abscissa to plane H 0 16.0 ±0.5 Abscissa to top H 1 32.2 Maximum (AGRF400 to AGRF600, AHRF050 to AHRF450, AHEF050 to AHEF300) Abscissa to top H 1 45.0 Maximum (AGRF700 to AGRF1400, AHRF550 to AHRF1500*, AHEF500 to AHEF1000) Overall width with lead protrusion C 1 43.2 Maximum (AGRF400 to AGRF600 & AHRF050 to AHRF450, AHEF050 to AHEF300) Overall width with lead protrusion C 1 55.0 Maximum (AGRF700 to AGRF1400, AHRF550 to AHRF1500, AHEF500 to AHEF1000) Overall width without lead protrusion C 2 42.5 Maximum (AGRF400 to AGRF600, AHRF050 to AHRF450, AHEF050 to AHEF300) Overall width without lead protrusion C 2 54.0 Maximum (AGRF700 to AGRF1400, AHRF550 to AHRF1500, AHEF500 to AHEF1000) Lead protrusion L1 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 (AGRF400 to AGRF700, AHRF050 to AHRF600, AHEF050 to AHEF300) — 12.7 ± 0.3 Device pitch (AGRF800 to AGRF1400, AHRF650 to AHRF1500, AHEF500 to AHEF1000) — 25.4 ± 0.6 Pitch tolerance — 20 consec. ± 0.1 Tape thickness t 0.9 Maximum Overall tape and lead thickness t1 2.0 Maximum (AGRF400 to AGRF1100, AHRF050 to AHRF1100*, AHEF050 to AHEF750) Overall tape and lead thickness t 1 2.3 Maximum (AGRF1200 to AGRF1400, AHRF1300 to AHRF1500*, AHEF1000) 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 (AGRF400 to AGRF1100, AHRF050 to AHRF900, AHEF050 to AHEF500) Ordinate to adjacent component lead P 1 7.62 ± 0.7 (AGRF1200 to AGRF1400, AHRF1000 to AHRF1500, AHEF750 to AHEF1000) Lead spacing (AGRF400 to AGRF1100, AHRF050 to AHRF900*, AHEF050 to AHEF500) F 5.05 ± 0.75 Lead spacing (AGRF1200 to AGRF1400, AHRF1000 to AHRF1500*, AHEF750 to AHEF1000) F 10.15 ± 0.75 Reel width (AGRF400 to AGRF600 & AHRF050 to AHRF450, AHEF050 to AHEF300) w 2 56.0 Maximum Reel width (AGRF700 to AGRF1400, AHRF550 to AHRF1500*, AHEF500 to AHEF1000) w 2 63.5 Maximum Reel diameter a 370.0 Maximum Space between flanges* (AHEF050 to AHEF300) w 1 48.0 Maximum Space between flanges* (AHEF500 to AHEF1000) 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. AGRF , AHRF and AHEF devices are available in tape and reel packaging per EIA468-B/IEC286-2 and EIA 481-2 standards. See Figures A22 and A23 for details. TableA7 TapeandReelSpecificationsforAGRF/AHRF/AHEFAutomotiveDevices
PolySwitchResettableDevices– Automotive Devices 167RoHS 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 AB Reference plane Direction of unreeling Cross section A-B H W t P0 D0 L /H9004h /H9004p /H9004p Description EIA Mark Dimension (mm) Tolerance Carrier tape width W 16.0 ± 0.3 Sprocket hole pitch P0 4.0 ± 0.10 Embossed cavity pitch (ASMD030F to ASMD125F & AHS080-2018) P1 8.0 ± 0.10 Embossed cavity pitch (ASMD150F to ASMD250F & AHS160 to AHS300) P1 12.0 ± 0.10 Ordinate to embossed cavity center P2 2.0 ± 0.10 Embossed cavity length (inside) (AHS080-2018) A 0 5.11 ± 0.15 Embossed cavity length (inside) (ASMD030F to ASMD125F) A 0 5.6 ± 0.23 Embossed cavity length (inside) (ASMD150F to ASMD250F & AHS160 to AHS300) A 0 6.9 ± 0.23 Embossed cavity width (inside) (AHS080-2018) B 0 5.6 ± 0.23 Embossed cavity width (inside) (ASMD030F to ASMD125F) B 0 8.1 ± 0.15 Embossed cavity width (inside) (ASMD150F to ASMD250F & AHS160 to AHS300) B 0 9.6 ± 0.15 Embossed cavity length (outside) B 1 max. 12.1 — Sprocket hole diameter D 0 1.5 + 0.1, -0 Abscissa to embossed cavity center F 7.5 ± 0.10 Sprocket hole location E1 1.75 ± 0.10 Sprocket hole location (across embossed cavity) E2min. 14.25 — AHS and ASMD devices are available in tape and reel packaging per EIA 468-2 standards. See Figures A24 and A25 for details. FigureA22 EIAReferencedTapedComponentDimensionsforAGRF/AHRF/AHEFAutomotiveDe vices FigureA23 EIAReferencedReelDimensionsforAGRF/AHRF/AHEFAutomotiveDevices TableA8 TapeandReelSpecificationsforAHS/ASMDAutomotiveDevices
168 RoHS Compliant, ELV Compliant
Description EIA Mark Dimension (mm) Tolerance Carrier tape thickness T max. 0.6 — Cover tape thickness T1 max. 0.1 — (AHS080-2018) K0 1.8 ± 0.15 (ASMD030F to ASMD125F) K0 3.2 ± 0.15 (ASMD150F to ASMD250F & AHS160 to AHS300) K0 3.4 ± 0.15 Embossed cavity depth (inside) K0 — ± 0.15 Leader min. — 400 — Trailer min. — 160 — Reel diameter A max. 330 — Core diameter N min. 50 — Reel width measured at inside hub W 1 16.4 + 2.0, -0 Reel width measured at outside hub W 2max. 22.4 — F W P2D0 T Cover tape Embossment Center lines of cavity ACover tape Embossed cavity Carrier tape N (hub dia.) W2 (measured at hub) W1 (measured at hub) TableA8 TapeandReelSpecificationsforAHS/ASMDAutomotiveDevices Cont’d FigureA24 EIAReferencedTapedComponentDimensionsforAHS/ASMDDevices FigureA25 EIAReferencedReelDimensionsforAHS/ASMDDevices
PolySwitchResettableDevices– Automotive Devices 169RoHS Compliant, ELV Compliant Warning: PartNumberingSystemforAutomotiveDevices AGRF 800 -2 Packaging option (Blank) = Bulk 2 = Tape and reel packaging AP = Ammo pack Hold Current Indicator Product Series An “F” at the end of the series indicates Pb-free version of product AHS 080 -2 Packaging 2 = Tape and reel Hold Current Indicator Product Series BD280 -1130 -10/16 Rating Current / Maximum Operating Voltage 10 = Rating current (hold current of BD device is 70%~80% of rating current) 16 = Max operating voltage is 16V (nominal operating voltage of BD device is 14V) T ypical Cap’s Size Product Series
- 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 are inhi bited, 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.