Adapter, Breakout Boards

Image Part Number Description / PDF Quantity Rfq
16-665000-00

16-665000-00

Aries Electronics, Inc.

SCK ADAPT 16P SOIC-W TO SOIC 0.6

14

DC1813T-10X

DC1813T-10X

Chip Quik, Inc.

10PC DISCRETE 1813 TO 300MIL TH

33

PA0073

PA0073

Chip Quik, Inc.

QFN-48 TO DIP-48 SMT ADAPTER

0

33505

33505

Capital Advanced Technologies, Inc.

PROTOBOARD SMT FOR .65MM ON SEMI

0

IPC0017

IPC0017

Chip Quik, Inc.

QFN-28 TO DIP-32 SMT ADAPTER

0

CN0036

CN0036

Chip Quik, Inc.

QSTRIP QTH-060-01-L-D-A ADAPTER

2

14-24-LOGIC-EVM

14-24-LOGIC-EVM

Texas Instruments

DEVELOPMENT SPECIALIZED

75

IPC0136

IPC0136

Chip Quik, Inc.

TQFP-48 TO DIP-48 SMT ADAPTER

0

IPC0014

IPC0014

Chip Quik, Inc.

QFN-24 TO DIP-28 SMT ADAPTER

94

DE02008

DE02008

Dreyer Electronics LLC

SOP-8/SSOP-8/SOIC-8 TO DIP-8

480

8100-SMT9

8100-SMT9

Twin Industries

ADAPTER BOARD SMT TSOP/PSOP/SSOP

0

LCQT-QFP0.5-32

LCQT-QFP0.5-32

Aries Electronics, Inc.

SOCKET ADAPTER MULT PKG TO 32QFP

0

PA0008C

PA0008C

Chip Quik, Inc.

SOIC-20 TO DIP-20 SMT ADAPTER (1

179

PA0012

PA0012

Chip Quik, Inc.

SOIC-32 TO DIP-32 SMT ADAPTER

0

2587

2587

Pololu Corporation

MICROSD BREAKOUT BOARD W/ VREG

64

IPC0029

IPC0029

Chip Quik, Inc.

QFN-48 TO DIP-52 SMT ADAPTER

0

33608

33608

Capital Advanced Technologies, Inc.

PROTOBOARD SMT FOR .65MM ON SEMI

0

IPC0132

IPC0132

Chip Quik, Inc.

HSOP-44 TO DIP-44 SMT ADAPTER

0

PA0223

PA0223

Chip Quik, Inc.

TQFP-100 TO DIP-100 SMT ADAPTER

17

IPC0080

IPC0080

Chip Quik, Inc.

QFN-28 TO DIP-32 SMT ADAPTER

0

Adapter, Breakout Boards

1. Overview

Adapter and breakout boards are essential components in electronic prototyping and fabrication. Adapters enable connectivity between incompatible interfaces, while breakout boards (BOBs) simplify the use of complex integrated circuits (ICs) by breaking down their pins into user-friendly layouts. These products accelerate development cycles, reduce design complexity, and facilitate testing in modern electronics, IoT, and embedded systems.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Level Shifter AdaptersConvert voltage levels between circuits (e.g., 3.3V 5V)Sensor interfacing with MCUs
Protocol ConvertersBridge different communication protocols (I2C/SPI/UART)Industrial automation systems
Power AdaptersRegulate and convert power supply voltagesEmbedded device power management
Module Breakout BoardsExpose IC/module pins with onboard passive componentsWiFi/Bluetooth module integration
Shield AdaptersStackable boards for Arduino/Raspberry Pi expansionRapid prototyping platforms

3. Structure and Components

Typical adapter/breakout board assemblies include: - PCB Substrate: FR4 or flexible materials with copper traces - Connectors: Headers, sockets, or wireless interfaces - Active Components: Voltage regulators, level shifters, or protocol ICs - Passive Components: Resistors, capacitors, and crystal oscillators - Mounting Hardware: Standoffs, screws, or adhesive pads

4. Key Technical Specifications

ParameterDescriptionImportance
Voltage RangeOperational voltage limits (e.g., 2.7V-5.5V)Ensures component compatibility
Current CapacityMaximum current handling (mA/mA)Prevents thermal damage
Signal IntegrityImpedance matching and noise reductionGuarantees reliable data transfer
Form FactorPhysical dimensions and mounting patternsDetermines system integration
Protocol SupportSupported communication standardsDefines interface compatibility

5. Application Fields

  • Consumer Electronics: Smart home devices, wearables
  • Industrial: PLCs, sensor networks
  • Automotive: CAN bus interfaces, ADAS prototyping
  • Medical: Diagnostic equipment, biosensors
  • Telecom: RF module integration, 5G testbeds

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Features
AdafruitFeather M4 ExpressARM Cortex-M4 with LiPo support
SparkFunThing Plus - RP2040Raspberry Pi Pico-based breakout
STMicroelectronicsSTEVAL-MKI109V3MEMS sensor adapter board
Seeed StudioXBee3 BreakoutZigbee/WiFi/BLE multi-protocol
TI InstrumentsBOOSTXL-PGA460Ultrasonic sensing adapter

7. Selection Guidelines

Key considerations include: - Electrical Compatibility: Match voltage/current requirements with host system - Interface Requirements: Verify pinouts and communication protocols - Thermal Management: Check power dissipation ratings - Scalability: Assess stackability and expandability options - Cost Efficiency: Balance performance vs. budget constraints

Example: For IoT sensor networks, prioritize low-power adapters with I2C/SPI interfaces and RoHS compliance.

8. Industry Trends

Emerging trends include: - Miniaturization for wearable and mobile applications - Integration of AI/ML accelerators on breakout boards - Development of high-speed adapters ( 10 Gbps) for 5G and edge computing - Adoption of eco-friendly materials and manufacturing processes - Growth of modular "click board" ecosystems for rapid prototyping

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