HVLR Series, Through Hole Resistors

Results:
2,277
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Series
Resistance
Size / Dimension
Power (Watts)
Tolerance
Features
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Height - Seated (Max)
Temperature Coefficient
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Results remaining2,277
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HVLR
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ImageProduct DetailPriceAvailabilityECAD ModelHeight - Seated (Max)Operating TemperatureResistancePackage / CaseSupplier Device PackageNumber of TerminationsPower (Watts)ToleranceCompositionTemperature CoefficientFailure RateSeriesFeatures
HVLR3908F30K0K9
RES 30K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
30 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F1M20K9
RES 1.2M OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
1.2 MOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F18K0K9
RES 18K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
18 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F3K00K9
RES 3K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
3 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F15K0K9
RES 15K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
15 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F1K50K9
RES 1.5K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
1.5 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F390KK9
RES 390K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
390 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F6M80K9
RES 6.8M OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
6.8 mOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F750KK9
RES 750K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
750 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F6K80K9
RES 6.8K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
6.8 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F3K90K9
RES 3.9K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
3.9 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F2M40K9
RES 2.4M OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
2.4 mOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F1M80K9
RES 1.8M OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
1.8 mOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F120KK9
RES 120K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
120 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F560KK9
RES 560K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
560 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F2M70K9
RES 2.7M OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
2.7 mOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F56K0K9
RES 56K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
56 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F240KK9
RES 240K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
240 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F7K50K9
RES 7.5K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
7.5 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive
HVLR3908F110KK9
RES 110K OHM 1% 3W AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-55°C ~ 175°C
110 kOhms
Axial
Axial
2
3W
±1%
Thick Film
±100ppm/°C
-
HVLR
Automotive AEC-Q200, High Voltage, Non-Inductive

About  Through Hole Resistors

Through-hole resistors are electronic components that impede the flow of electric current. They are constructed with two wire terminals that are specifically designed to be inserted into holes on a printed circuit board (PCB) or used in a breadboard, and then soldered in place. These resistors are widely used in electronic circuits for their reliable performance and ease of installation. Through-hole resistors possess various characteristics that define their functionality. The first characteristic is resistance, which represents the opposition to current flow and can range from 0 ohms to 500 G ohms. The resistance value determines how effectively the resistor restricts the flow of current in a circuit. Tolerance is another important characteristic of through-hole resistors, indicating the permissible deviation from the specified resistance value. Tolerance values can vary from being virtually zero (jumper) to a range such as ±0.001% to ±5%. The tolerance specification ensures that the resistor's resistance remains within an acceptable range. Power rating is a crucial consideration when selecting through-hole resistors. It represents the maximum amount of power the resistor can safely dissipate without getting damaged. Power ratings are typically measured in watts and depend on the resistor's physical size, construction, and materials used. Through-hole resistors come in various compositions, each offering different performance characteristics. Common compositions include carbon composition, carbon film, ceramic, metal element, metal film, metal foil, metal oxide film, thick film, thin film, and wirewound. Each composition has its own advantages, such as stability, precision, durability, or suitability for high-power applications. In summary, through-hole resistors are electronic devices used to impede the flow of electric current. They have two wire terminals for insertion and soldering onto a PCB or breadboard. These resistors exhibit different characteristics, including resistance, tolerance, power rating, and composition, which determine their suitability for specific applications. By selecting the appropriate through-hole resistor, engineers can ensure reliable and efficient operation of electronic circuits.