Resistors-Through Hole

Image Part Number Description / PDF Quantity Rfq
RC1/2123JB

RC1/2123JB

Kamaya

RES 12K OHM 1/2W 5% AXIAL

0

RC1/43R3KB

RC1/43R3KB

Kamaya

RES 3.3 OHM 1/4W 10% AXIAL

0

RC1/41R5JTD

RC1/41R5JTD

Kamaya

RES 1.5 OHM 1/4W 5% AXIAL

0

RC1/2153JTB

RC1/2153JTB

Kamaya

RES 15K OHM 1/2W 5% AXIAL

0

RC1/4393JB

RC1/4393JB

Kamaya

RES 39K OHM 1/4W 5% AXIAL

0

RC1/2220KB

RC1/2220KB

Kamaya

RES 22 OHM 1/2W 10% AXIAL

0

RC1/4242JTD

RC1/4242JTD

Kamaya

RES 2.4K OHM 1/4W 5% AXIAL

0

RC1/2751JB

RC1/2751JB

Kamaya

RES 750 OHM 1/2W 5% AXIAL

0

RC1/2510JTD

RC1/2510JTD

Kamaya

RES 51 OHM 1/2W 5% AXIAL

0

RC1/4560KTB

RC1/4560KTB

Kamaya

RES 56 OHM 1/4W 10% AXIAL

0

RC1/4471JB

RC1/4471JB

Kamaya

RES 470 OHM 1/4W 5% AXIAL

0

RC1/2120JTB

RC1/2120JTB

Kamaya

RES 12 OHM 1/2W 5% AXIAL

0

RC1/2106MTB

RC1/2106MTB

Kamaya

RES 10M OHM 1/2W 20% AXIAL

0

RC1/2563JB

RC1/2563JB

Kamaya

RES 56K OHM 1/2W 5% AXIAL

0

RC1/4224KB

RC1/4224KB

Kamaya

RES 220K OHM 1/4W 10% AXIAL

0

RC1/4161JTD

RC1/4161JTD

Kamaya

RES 160 OHM 1/4W 5% AXIAL

0

RC1/2335MB

RC1/2335MB

Kamaya

RES 3.3M OHM 1/2W 20% AXIAL

0

RC1/2331MB

RC1/2331MB

Kamaya

RES 330 OHM 1/2W 20% AXIAL

0

RC1/4821KB

RC1/4821KB

Kamaya

RES 820 OHM 1/4W 10% AXIAL

0

RC1/2472MTB

RC1/2472MTB

Kamaya

RES 4.7K OHM 1/2W 20% AXIAL

0

Resistors-Through Hole

1. Overview

Through Hole Resistors (THRs) are axial-leaded electronic components designed to limit current flow and divide voltages in circuits. They are mounted by inserting leads into printed circuit board (PCB) holes and soldering on the reverse side. As foundational passive components, THRs maintain circuit stability and precision across industries. Despite the rise of surface-mount devices, THRs remain critical for high-power applications and prototyping due to their durability and ease of manual handling.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Carbon Film ResistorsLow noise, stable performance, cost-effectiveGeneral-purpose electronics, consumer devices
Metal Film ResistorsHigh precision ( 0.1% tolerance), low temperature coefficientMedical instruments, test equipment
Wirewound ResistorsHigh power handling (up to 50W), accurate resistance valuesPower supplies, industrial machinery
Ceramic Composition ResistorsHigh surge current resistancePower line filters, lighting ballasts
Fusible ResistorsActs as both resistor and fuseOvercurrent protection in power circuits

3. Structure and Composition

Typical THRs feature:

  • Lead Wires: Tin-plated copper or silver alloys for solderability
  • Resistive Element: Carbon/metal film or wound nichrome wire
  • Insulating Body: Ceramic or glass-epoxy coating
  • Marking: Color bands (EIA-438B standard) or printed text

Advanced designs incorporate flame-retardant coatings and precision laser-trimmed elements for 0.01% tolerance.

4. Key Technical Specifications

ParameterTypical RangeImportance
Resistance Value1 to 100M Determines current/voltage control
Power Rating1/8W to 50WDefines maximum power dissipation
Tolerance 0.01% to 5%Indicates resistance accuracy
Temperature Coefficient 5ppm/ C to 300ppm/ CMeasures stability over temperature
Voltage Rating200V to 1000VPrevents dielectric breakdown

5. Application Fields

  • Consumer Electronics: Power management in TVs, audio equipment
  • Industrial Control: Motor speed controllers, PLC systems
  • Telecommunications: Signal conditioning in base stations
  • Automotive: Engine control units, LED lighting systems
  • Medical Devices: Precision measurement in diagnostic equipment

Case Study: Metal film resistors in ECG machines provide 0.1% tolerance for accurate heart signal detection.

6. Leading Manufacturers and Products

ManufacturerKey Products
Vishay Precision GroupY1485 series ( 0.005% tolerance wirewound)
Yageo CorporationMF-RC series (metal film, 1/4W to 2W)
Panasonic Electronic ComponentsEVR series (ceramic composition, 250V rating)
Bourns Inc.CR2800 series (fusible resistors)

7. Selection Guidelines

Key considerations:

  1. Determine required power dissipation (select 2x calculated wattage)
  2. Match tolerance to application needs (e.g., 0.1% for audio amplifiers)
  3. Verify temperature coefficient for operating environment
  4. Consider voltage ratings for high-voltage circuits
  5. Check RoHS compliance for environmental regulations

Example: Selecting a 10 , 10W wirewound resistor for a 24V DC motor driver circuit.

8. Industry Trends

Current development directions:

  • Miniaturization while maintaining power ratings (e.g., 5W resistors in 1210 package)
  • Advancements in laser trimming for sub-ppm level precision
  • Adoption of eco-friendly materials meeting REACH/SVHC standards
  • Integration with smart manufacturing systems for automated placement
  • Development of high-temperature resistant models (up to 300 C operating)

Market growth projections indicate a CAGR of 4.2% through 2030, driven by automotive electronics demand.

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