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PR03000201601JAC00

PR03000201601JAC00

PR03000201601JAC00

For Reference Only

Part Number PR03000201601JAC00
Manufacturer Vishay BC Components
Description RES 1.6K OHM 3W 5% AXIAL
Datasheet PR03000201601JAC00 Datasheet
Package Axial
In Stock 160 piece(s)
Unit Price $ 0.1445 *
Lead Time To be Confirmed
Estimated Delivery Time Oct 27 - Nov 1 (Choose Expedited Shipping)
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Part Number # PR03000201601JAC00 (Through Hole Resistors) is manufactured by Vishay BC Components and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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PR03000201601JAC00 Specifications

ManufacturerVishay BC Components
CategoryResistors - Through Hole Resistors
Datasheet PR03000201601JAC00Datasheet
PackageAxial
SeriesPR03
Resistance1.6 kOhms
Tolerance±5%
Power (Watts)3W
CompositionMetal Film
FeaturesFlame Retardant Coating, Safety
Temperature Coefficient±250ppm/°C
Operating Temperature-55°C ~ 155°C
Package / CaseAxial
Supplier Device PackageAxial
Size / Dimension0.205" Dia x 0.657" L (5.20mm x 16.70mm)
Height - Seated (Max)-
Number of Terminations2
Failure Rate-

PR03000201601JAC00 Datasheet

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PR01, PR02, PR03 www.vishay.com Vishay BCcomponents Revision: 11-Jul-2018 1 Document Number: 28729 For technical questions, contact: filmresistorsleaded@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Power Metal Film Leaded Resistors DESIGN SUPPORT TOOLS DESCRIPTION A homogeneous film of metal alloy is deposited on a high grade ceramic body. After a helical groove has been cut in the resistive layer, tinned connecting wires of electrolytic copper or copper-clad iron are welded to the end-caps. The resistors are coated with a red, non-flammable lacquer which provides electrical, mechanical and climatic protection. This coating is not resistant to aggressive fluxes and cleaning solvents. The encapsulation is resistant to all cleaning solvents in accordance with IEC 60068-2-45. FEATURES • High power in small packages (1 W / 0207 size to 3 W / 0617 size) • Defined fusing characteristics • Technology: metal film • Meets active and passive flammability requirements as defined in IEC 60115-1 • AEC-Q200 qualified (PR01 and PR02) • Material categorization: for definitions of compliance please see www.vishay.com/doc?99912 APPLICATIONS • All general purpose power applications • Automotive electronics • Lighting ballast Notes (1) R value is measured with probe distance of 24 mm ± 1 mm using 4-terminal method (2) 1 % tolerance is available for Rn-range from 1  upwards click logo to get started Available Models TECHNICAL SPECIFICATIONS DESCRIPTION PR01 PR02 Cu-lead PR02 FeCu-lead PR03 Cu-lead PR03 FeCu-lead DIN size 0207 0411 0411 0617 0617 Resistance range (1) 0.22  to 1 M 0.33  to 1 M 1  to 1 M 0.68  to 1 M 1  to 1 M Resistance tolerance (2) ± 1 %; ± 5 % ± 1 %; ± 5 % ± 1 %; ± 5 % ± 1 %; ± 5 % ± 1 %; ± 5 % Temperature coefficient ± 250 ppm/K ± 250 ppm/K ± 250 ppm/K ± 250 ppm/K ± 250 ppm/K Rated dissipation, P70 1  R 1 W 2 W 1.3 W 3 W 2.5 W R < 1  0.6 W 1.2 W - 1.6 W - Thermal resistance (Rth) 135 K/W 75 K/W 115 K/W 60 K/W 75 K/W Operating voltage, Umax. AC/DC 350 V 500 V 500 V 750 V 750 V E-series E24, E96 (± 1 %); E24 (± 5 %) Basic specification IEC 60115-1 Stability after: Endurance test (1000 h, P70) R max.: ± (5 % R + 0.1 ) Damp heat test (56 days) R max.: ± (3 % R + 0.1 ) Soldering (10 s, 260 °C) R max.: ± (1 % R + 0.05 )

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PR01, PR02, PR03 www.vishay.com Vishay BCcomponents Revision: 11-Jul-2018 2 Document Number: 28729 For technical questions, contact: filmresistorsleaded@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 APPLICATION INFORMATION The power dissipation on the resistor generates a temperature rise against the local ambient, depending on the heat flow support of the printed-circuit board (thermal resistance). The rated dissipation applies only if the permitted film temperature is not exceeded. Furthermore, a high level of ambient temperature or of power dissipation may raise the temperature of the solder joint, hence special solder alloys or board materials may be required to maintain the reliability of the assembly. These resistors do not feature a limited lifetime when operated within the permissible limits. However, resistance value drift increasing over operating time may result in exceeding a limit acceptable to the specific application, thereby establishing a functional lifetime. The designer may estimate the performance of the particular resistor application or set certain load and temperature limits in order to maintain a desired stability. TERMINATION WIRE TYPES PRODUCT TYPE PACKAGING CODE STYLE MATERIAL WIRE DIAMETER PITCH PR01 A1, A5, R5 Axial Cu 0.58 mm n/a N4 Radial Cu 0.58 mm 4.8 mm L1 Radial Cu 0.58 mm 17.8 mm L1 Radial FeCu 0.58 mm 17.8 mm K1 Radial FeCu 0.58 mm 12.5 mm PR02 A1, R5 Axial Cu 0.78 mm n/a A1 Axial FeCu 0.58 mm n/a N3, R2 Radial Cu 0.78 mm 4.8 mm L1 Radial Cu 0.78 mm 17.8 mm L1 Radial FeCu 0.58 mm 17.8 mm B1 Radial FeCu 0.78 mm 15 mm PR03 AC Axial Cu 0.78 mm n/a AC Axial FeCu 0.58 mm n/a DC Radial Cu 0.78 mm 25.4 mm DC Radial FeCu 0.58 mm 25.4 mm PC Radial FeCu 0.78 mm 20 mm OPERATION MODE POWER P70 Rated dissipation PR01 1 W PR02 2 W PR03 3 W Applied maximum film temperature, F max. 250 °C Max. resistance change at rated dissipation for resistance range: PR01 0.22  to 1 M PR02 0.33  to 1 M PR03 0.68  to 1 M |R/R|max. (at P70) after: 1000 h 5.0 % R + 0.1 

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PR01, PR02, PR03 www.vishay.com Vishay BCcomponents Revision: 11-Jul-2018 3 Document Number: 28729 For technical questions, contact: filmresistorsleaded@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Note • The products can be ordered using either the PRODUCT DESCRIPTION or the PART NUMBER PART NUMBER AND PRODUCT DESCRIPTION Part Number: PR02000201001JA100 TYPE/SIZE VARIANT WIRE TYPES TCR/MATERIAL RESISTANCE TOLERANCE PACKAGING SPECIAL PR0100 PR0200 PR0300 0 = neutral Z = value overflow (special) 1 = Cu 0.58 (PR01) 2 = Cu 0.78 (PR02, PR03) 3 = FeCu 0.58 (PR01, PR02, PR03) 4 = FeCu 0.78 (PR02, PR03) 0 = standard 3 digit value 1 digit multiplier Multiplier 7 = *10-3 8 = *10-2 9 = *10-1 0 = *100 1 = *101 2 = *102 3 = *103 4 = *104 F = ± 1 % J = ± 5 % N4 N3 A5 A1 AC R5 R2 L1 DC K1 B1 PC 00 = standard Product Description: PR02 5 % A1 1K0 PR02 5 % A1 1K0 TYPE TOLERANCE PACKAGING RESISTANCE VALUE PR01 PR02 PR03 1 % 5 % N4 N3 A5 A1 AC R5 R2 L1 DC K1 B1 PC 1K0 = 1 k 4K75 = 4.75 k PACKAGING PRODUCT TYPE CODE QUANTITY DESCRIPTION PITCH TAPE WIDTH DIMENSION PR01 A5 5000 Ammo pack acc. to IEC 60286-1 5 mm 52 mm 75 mm x 114 mm x 260 mm A1 1000 Ammo pack acc. to IEC 60286-1 5 mm 52 mm 78 mm x 31 mm x 260 mm N4 4000 Ammo pack acc. to IEC 60286-2 - - 45 mm x 262 mm x 330 mm L1 1000 Loose in bulk - - 105 mm x 70 mm x 205 mm K1 1000 Loose in bulk - - 105 mm x 70 mm x 205 mm R5 5000 Reel pack acc. to IEC 60286-1 5 mm 52 mm 93 mm x 300 mm x 298 mm PR02 A1 1000 Ammo pack acc. to IEC 60286-1 5 mm 52 mm 72 mm x 60 mm x 258 mm N3 3000 Ammo pack acc. to IEC 60286-2 - - 45 mm x 262 mm x 330 mm L1 1000 Loose in bulk - - 105 mm x 70 mm x 205 mm B1 1000 Loose in bulk - - 105 mm x 70 mm x 205 mm R5 5000 Reel pack acc. to IEC 60286-1 5 mm 52 mm 100 mm x 375 mm x 375 mm R2 2000 Reel pack acc. to IEC 60286-2 - - 90 mm x 375 mm x 375 mm PR03 AC 500 Ammo pack acc. to IEC 60286-1 10 mm 63 mm 83 mm x 58 mm x 256 mm DC 500 Loose in bulk - - 105 mm x 70 mm x 205 mm PC 500 Loose in bulk - - 105 mm x 70 mm x 205 mm R 0 2 0 0 0 2 0 1P 0 1 J A 1 0 00

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PR01, PR02, PR03 www.vishay.com Vishay BCcomponents Revision: 11-Jul-2018 4 Document Number: 28729 For technical questions, contact: filmresistorsleaded@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 DESCRIPTION Production is strictly controlled and follows an extensive set of instructions established for reproducibility. A homogeneous film of metal alloy is deposited on a high grade ceramic body and conditioned to achieve the desired temperature coefficient. Plated steel termination caps are firmly pressed on the metalized rods. Mostly, a special laser is used to achieve the target value by smoothly cutting a helical groove in the resistive layer without damaging the ceramics. Connecting wires of electrolytic copper plated with 100 % pure tin are welded to the termination caps. The resistor elements are covered by a red, non-flammable lacquer protective coating designed for electrical, mechanical, and climatic protection. Four or five color code rings designate the resistance value and tolerance in accordance with IEC 60062. The result of the determined production is verified by an extensive testing procedure performed on 100 % of the individual resistors. Only accepted products are stuck directly on the adhesive tapes in accordance with IEC 60286-1 or for the radial versions in accordance to IEC 60286-2. MATERIALS Vishay acknowledges the following systems for the regulation of hazardous substances: • IEC 62474, Material Declaration for Products of and for the Electrotechnical Industry, with the list of declarable substances given therein (1) • The Global Automotive Declarable Substance List (GADSL) (2) • The REACH regulation (1907/2006/EC) and the related list of substances with very high concern (SVHC) (3) for its supply chain The products do not contain any of the banned substances as per IEC 62474, GADSL, or the SVHC list, see www.vishay.com/how/leadfree. Hence the products fully comply with the following directives: • 2000/53/EC End-of-Life Vehicle Directive (ELV) and Annex II (ELV II) • 2011/65/EU Restriction of the Use of Hazardous Substances Directive (RoHS) with amendment 2015/863/EU • 2012/19/EU Waste Electrical and Electronic Equipment Directive (WEEE) Vishay pursues the elimination of conflict minerals from its supply chain, see the Conflict Minerals Policy at www.vishay.com/doc?49037. ASSEMBLY The resistors are suitable for processing on automatic insertion equipment and cutting and bending machines. Excellent solderability is proven, even after extended storage. They are suitable for automatic soldering using wave or dipping. The resistors are completely lead (Pb)-free, the pure tin plating provides compatibility with lead (Pb)-free and lead-containing soldering processes. The immunity of the plating against tin whisker growth, in compliance with IEC 60068-2-82, has been proven under extensive testing. The encapsulant is resistant to cleaning solvent specified in IEC 60115-1. The suitability of conformal coatings, if applied, shall be qualified by appropriate means to ensure the long-term stability of the whole system. RELATED PRODUCTS For a correlated range of Metal Film Resistors see the datasheet: “High Ohmic / High Voltage Metal Film Leaded Resistors”, www.vishay.com/doc?30260 For product that offers high power dissipation and metal oxide film technology see the datasheet: “High Power Metal Oxide Leaded Resistors”,  www.vishay.com/doc?20128                Notes (1) The IEC 62474 list of declarable substances is maintained in a dedicated database, which is available at http://std.iec.ch/iec62474 (2) The Global Automotive Declarable Substance List (GADSL) is maintained by the American Chemistry Council, and available at www.gadsl.org (3) The SVHC list is maintained by the European Chemical Agency (ECHA) and available at http://echa.europa.eu/candidate-list-table

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PR01, PR02, PR03 www.vishay.com Vishay BCcomponents Revision: 11-Jul-2018 5 Document Number: 28729 For technical questions, contact: filmresistorsleaded@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 FUNCTIONAL PERFORMANCE The power that the resistor can dissipate depends on the operating temperature. Maximum dissipation (Pmax.) in percentage of rated power as a function of the ambient temperature (Tamb) PR01 Temperature rise (T) at the lead end (soldering point) as a function of dissipated power at various lead lengths after mounting. PR02 Temperature rise (T) at the lead end (soldering point) as a function of dissipated power at various lead lengths after mounting. PR01 Temperature rise (T) at the lead end (soldering point) as a function of dissipated power at various lead lengths after mounting. PR02 Temperature rise (T) at the lead end (soldering point) as a function of dissipated power at various lead lengths after mounting. Ambient Temperature in °C P o w e r in % 0 50 70 100 200 Derating -55 150 20 0 40 60 80 100 50 0 0.4 1.2 0 0.8 10 20 30 40 Δ T (K) P (W) 20 mm 15 mm Ø 0.58 mm Cu-leads Minimum distance from resistor body to PCB = 1 mm Ø 0.58 mm FeCu-leads Minimum distance from resistor body to PCB = 1 mm 1 15 mm 20 mm Δ T (K) P (W) 20 70 0 10 20 30 60 50 40 Ø 0.58 mm FeCu-leads Minimum distance from resistor body to PCB = 1 mm 50 0 0.4 1.2 0 0.8 10 20 30 40 ΔT (K) P (W) 15 mm 20 mm Ø 0.78 mm Cu-leads Minimum distance from resistor body to PCB = 1 mm 100 0 20 40 60 80 1 15 mm 20 mm Δ T (K) P (W)0 2

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PR01, PR02, PR03 www.vishay.com Vishay BCcomponents Revision: 11-Jul-2018 6 Document Number: 28729 For technical questions, contact: filmresistorsleaded@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 PR02 Temperature rise (T) at the lead end (soldering point) as a function of dissipated power at various lead lengths after mounting. PR03 Temperature rise (T) at the lead end (soldering point) as a function of dissipated power at various lead lengths after mounting. PR03 Temperature rise (T) at the lead end (soldering point) as a function of dissipated power at various lead lengths after mounting. PR03 Temperature rise (T) at the lead end (soldering point) as a function of dissipated power at various lead lengths after mounting. ΔT (K) P (W) 15 mm 20 mm 80 0 20 40 60 0 1.8 2.20.60.2 0.4 0.8 1.2 1.6 2.01.41.0 Ø 0.78 mm FeCu-leads Minimum distance from resistor body to PCB = 1 mm Ø 0.78 mm Cu-leads Minimum distance from resistor body to PCB = 1 mm 100 0 1 3 0 2 20 40 60 80 Δ T (K) P (W) 15 mm 20 mm Ø 0.58 mm FeCu-leads Minimum distance from resistor body to PCB = 1 mm 0 1 32 Δ T (K) P (W) 15 mm 10 mm 20 mm 80 0 20 40 60 Ø 0.78 mm FeCu-leads Minimum distance from resistor body to PCB = 1 mm 0 1.6 3.22.40.8 ΔT (K) P (W) 15 mm 20 mm 80 0 20 40 60

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PR01, PR02, PR03 www.vishay.com Vishay BCcomponents Revision: 11-Jul-2018 7 Document Number: 28729 For technical questions, contact: filmresistorsleaded@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 PR01 Hot-spot temperature rise (T) as a function of dissipated power. PR01 Hot-spot temperature rise (T) as a function of dissipated power. PR02 Hot-spot temperature rise (T) as a function of dissipated power. PR02 Hot-spot temperature rise (T) as a function of dissipated power. PR02 Hot-spot temperature rise (T) as a function of dissipated power. PR03 Hot-spot temperature rise (T) as a function of dissipated power. P (W) 0 0.2 1.00.4 0.6 0.8 0 40 80 120 ΔT (K) Ø 0.58 mm Cu-leads 0 40 80 ΔT (K) P (W) 0 0.4 0.60.2 0.8 120 Ø 0.58 mm FeCu-leads 160 0 40 80 120 Δ T (K) P (W) 0 2.00.80.4 1.2 1.6 Ø 0.78 mm Cu-leads ΔT (K) P (W) 160 0 40 80 120 1.41.21.00.80.60.40.20 Ø 0.78 mm FeCu-leads Δ T (K) P (W) 0 0.40.2 0.8 1.41.0 1.20.6 160 0 40 80 120 Ø 0.58 mm FeCu-leads Δ T (K) P (W) 200 0 40 80 120 160 0 1 2 Ø 0.58 mm FeCu-leads

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PR01, PR02, PR03 www.vishay.com Vishay BCcomponents Revision: 11-Jul-2018 8 Document Number: 28729 For technical questions, contact: filmresistorsleaded@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 PR03 Hot-spot temperature rise (T) as a function of dissipated power. PR03 Hot-spot temperature rise (T) as a function of dissipated power. 200 0 1 3 0 2 40 80 120 160 ∆ T (K) P (W) Ø 0.78 mm Cu-leads ΔT (K) P (W) 0 1 2 200 0 40 80 120 160 Ø 0.78 mm FeCu-leads

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PR01, PR02, PR03 www.vishay.com Vishay BCcomponents Revision: 11-Jul-2018 9 Document Number: 28729 For technical questions, contact: filmresistorsleaded@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 The maximum permissible hot-spot temperature is 205 °C for PR01, 220 °C for PR02 and 250 °C for PR03. PR01 Drift nomogram PR02 Drift nomogram PR03 Drift nomogram 1.00 0.75 0.50 0.25 P (W) amb = 40 °C 70 °C 100 °C 125 °C 155 °C 205 °C m (°C) ΔR0.1 %0.20.51.02.05.010 10 0 00 0 h < 1 kΩ 10 0 00 h 10 00 h < 30 kΩ > 30 kΩ T T (W) 2.00 1.50 1.00 0.50 amb = 40 °C 70 °C 100 °C 125 °C 155 °C 220 °C ΔR 10 0 00 0 h < 1 kΩ 10 5.0 2.0 1.0 0.5 0.2 0.1 % m (°C) < 39 kΩ > 39 kΩ 10 0 00 h 10 00 h P T T m (°C) 3.00 2.25 1.50 0.75 amb = 40 °C 100 °C 125 °C 155 °C 250 °C ΔR 10 0 0 00 h > 51 kΩ 10 5.0 2.0 1.0 0.5 0.2 0.1 % (W) 70 °C ≤ 51 kΩ < 1 kΩ 10 00 0 h 10 00 h P T T

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