Chip Resistors-Surface Mount

Image Part Number Description / PDF Quantity Rfq
RLC20-R110JTP

RLC20-R110JTP

Kamaya

RES 0.11 OHM 1/3W 5% 0805

0

RLC32KR750JTP

RLC32KR750JTP

Kamaya

RES 0.75 OHM 1/2W 5% 1206

0

RPC50915JTE

RPC50915JTE

Kamaya

RES 9.1M OHM 3/4W 5% 2010

0

RPC50220JTE

RPC50220JTE

Kamaya

RES 22 OHM 3/4W 5% 2010

0

RPC50221JTE

RPC50221JTE

Kamaya

RES 220 OHM 3/4W 5% 2010

0

RLC35K2R70JTE

RLC35K2R70JTE

Kamaya

RES 2.7 OHM 2/3W 5% 1210

0

RPC20474JTP

RPC20474JTP

Kamaya

RES 470K OHM 1/4W 5% 0805

0

RLC35K1R80JTE

RLC35K1R80JTE

Kamaya

RES 1.8 OHM 2/3W 5% 1210

0

RPC322R7JTP

RPC322R7JTP

Kamaya

RES 2.7 OHM 1/3W 5% 1206

0

RPC32513JTP

RPC32513JTP

Kamaya

RES 51K OHM 1/3W 5% 1206

0

RLC50-R091JTE

RLC50-R091JTE

Kamaya

RES 0.091 OHM 3/4W 5% 2010

0

RPC50R33JTE

RPC50R33JTE

Kamaya

RES 0.33 OHM 3/4W 5% 2010

0

RLC32-R080JTP

RLC32-R080JTP

Kamaya

RES 0.08 OHM 1/2W 5% 1206

0

RPC20335JTP

RPC20335JTP

Kamaya

RES 3.3M OHM 1/4W 5% 0805

0

RPC63163JTE

RPC63163JTE

Kamaya

RES 16K OHM 1W 5% 2512

0

RPC32130JTP

RPC32130JTP

Kamaya

RES 13 OHM 1/3W 5% 1206

0

RPC20562JTP

RPC20562JTP

Kamaya

RES 5.6K OHM 1/4W 5% 0805

0

RLC20-R240FTP

RLC20-R240FTP

Kamaya

RES 0.24 OHM 1/3W 1% 0805

0

RLC35KR910JTE

RLC35KR910JTE

Kamaya

RES 0.91 OHM 2/3W 5% 1210

0

RPC32390JTP

RPC32390JTP

Kamaya

RES 39 OHM 1/3W 5% 1206

0

Chip Resistors-Surface Mount

1. Overview

Surface Mount Chip Resistors (SMD Resistors) are passive electronic components designed to limit current flow and divide voltages in printed circuit boards (PCBs). As key elements in Surface Mount Technology (SMT), they enable high-density PCB layouts and automated manufacturing. Their miniaturized footprint and reliability make them essential for modern electronics, including smartphones, automotive systems, and industrial equipment.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Thick Film ResistorsCost-effective, standard tolerance ( 1%-5%), power ratings up to 1WConsumer electronics, power supplies
Thin Film ResistorsHigh precision ( 0.01%), low noise, stable temperature coefficientsMedical devices, precision instrumentation
Power ResistorsHigh power dissipation (up to 3W), robust thermal managementMotor drives, EV battery management systems
Network ResistorsMultiple resistors in single package, matched temperature coefficientsDigital circuits, memory modules
Wirewound ResistorsHigh inductance, precise low-resistance valuesAudio amplifiers, industrial control systems

3. Structure and Composition

Typical SMD resistors consist of: - Ceramic substrate (Alumina, 96% Al2O3) - Resistive layer (Ruthenium oxide for thick film, Nichrome for thin film) - Termination electrodes (Ni/Sn or Ag/Pd metallization) - Protective coating (Epoxy or glass encapsulation) Standard packages follow EIA dimensions (e.g., 0402, 0603, 0805).

4. Key Technical Specifications

ParameterDescriptionImportance
Resistance Range1 to 10M (film), 0.1 to 100k (power)Determines current control capability
Tolerance 0.01% (precision) to 5% (general)Impacts circuit accuracy
Power Rating0.05W to 3W @ 70 CDefines thermal dissipation limits
TCR 5ppm/ C (thin film) to 200ppm/ CAffects stability over temperature
Operating Temp-55 C to +155 CDefines environmental reliability
Voltage Coefficient<0.1ppm/VEnsures voltage stability

5. Application Fields

  • Consumer Electronics: Smartphones, wearables, IoT devices
  • Automotive: ADAS sensors, battery management systems, ECUs
  • Industrial: PLCs, motor drives, power converters
  • Telecom: 5G base stations, optical transceivers
  • Medical: Diagnostic equipment, implantable devices

6. Leading Manufacturers and Products

ManufacturerRepresentative SeriesKey Features
YageoCRCW Series0.05W-1W, 0.1% tolerance
VishayCRCWE SeriesThin film, TCR 25ppm/ C
ROHMMCR SeriesPower resistors up to 2W
OhmitePWR SeriesHigh-power 3W devices
BournsCRCU SeriesNetwork resistors with 8-element arrays

7. Selection Recommendations

Consider: - Required resistance tolerance and power rating - Operating temperature range (automotive needs -40 C to +125 C) - Package size constraints (e.g., 0402 for mobile devices) - Long-term stability requirements (medical applications prefer thin film) - Cost vs. performance trade-offs (consumer vs. industrial use) Example: For smartphone power management, select 0603 thick film resistors with 1% tolerance and 125 C rating.

8. Industry Trends

Key trends include: - Miniaturization: Development of 0201 and 01005 packages - Higher precision: Sub-0.01% tolerance thin film resistors - Enhanced thermal management: New materials for power densities >1W/mm - Automotive growth: AEC-Q200 qualified parts for EVs - Smart manufacturing: AI-driven resistor selection tools - Sustainability: Lead-free and halogen-free material adoption

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