RF Evaluation and Development Kits, Boards

Image Part Number Description / PDF Quantity Rfq
EK4250-01

EK4250-01

pSemi

KIT EVAL FOR 4250 RF SWITCH

0

4245-00

4245-00

pSemi

KIT EVAL FOR 4245 RF SWITCH

0

EK42451-01

EK42451-01

pSemi

KIT EVAL FOR 42451 RF SWITCH

0

EK42750-01

EK42750-01

pSemi

KIT EVAL FOR 42750 RF SWITCH

0

4257-00

4257-00

pSemi

KIT EVAL FOR 4257 RF SWITCH

0

EK43502-01

EK43502-01

pSemi

KIT EVAL FOR PE43502 RF SWITCH

0

EK42552-02

EK42552-02

pSemi

BOARD EVAL FOR 42552 REV 02

0

EK64101-11

EK64101-11

pSemi

BOARD EVAL DTC PE64101

0

EK43703-01

EK43703-01

pSemi

KIT EVAL FOR PE43703 DSA

0

EK4314-01

EK4314-01

pSemi

EVAL BOARD RF DGITAL STEP ATTEN

0

4304-00

4304-00

pSemi

KIT EVAL FOR PE4304 RF DSA

0

EK41901-01

EK41901-01

pSemi

EVAL BOARD FOR PE41901

0

EK33241-13

EK33241-13

pSemi

EVAL KIT FOR PE33241

0

EK42540-03

EK42540-03

pSemi

BOARD EVAL SP4T SW FOR PE42540

0

EK43602-01

EK43602-01

pSemi

KIT EVAL FOR PE43602 RF DSA

0

EK64908-11

EK64908-11

pSemi

KIT EVAL FOR PE64908

0

EK42420-02

EK42420-02

pSemi

BOARD EVAL FOR EV42420

0

EK42720-02

EK42720-02

pSemi

KIT EVAL FOR PE42720

0

EK43702-01

EK43702-01

pSemi

KIT EVAL FOR PE43702 RF DSA

0

4302-00

4302-00

pSemi

KIT EVAL FOR 4302 RF DSA

0

RF Evaluation and Development Kits, Boards

1. Overview

RF/IF (Radio Frequency/Intermediate Frequency) and RFID (Radio Frequency Identification) evaluation and development kits are hardware platforms designed to facilitate the testing, prototyping, and optimization of wireless communication systems. These kits enable engineers to validate circuit performance, debug protocols, and accelerate product development. They play a critical role in modern technologies such as IoT, 5G, smart logistics, and industrial automation by bridging theoretical design and real-world deployment.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
RF Evaluation BoardsFocus on RF signal generation, modulation/demodulation, and impedance matching testing5G base station prototyping, Wi-Fi 6 module testing
RFID Development KitsSupport NFC, UHF/HF RFID tag/reader development with protocol analysisSmart retail payment systems, asset tracking solutions
Multifunctional Development BoardsIntegrate RF, microcontroller, and sensor interfaces for system-level testingIndustrial IoT gateway development, drone communication modules

3. Structure and Components

Typical products consist of: - Base PCB: Multilayer board with RF shielding compartments - RF Front-End: Includes LNA (Low Noise Amplifier), PA (Power Amplifier), and frequency synthesizers - Processing Unit: Embedded FPGA or MCU for real-time signal processing - Interface Ports: USB-C, SMA connectors, GPIO headers for peripheral expansion - Power Management: Regulated voltage supplies for different RF components

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeOperational bandwidth (e.g., 300 MHz - 6 GHz)Determines application compatibility
Output PowerTransmit power level (e.g., -20 to +20 dBm)Impacts communication distance and FCC compliance
Receiver SensitivityMinimum detectable signal level (e.g., -120 dBm)Affects signal reliability in noisy environments
Impedance MatchingVSWR (Voltage Standing Wave Ratio) 2:1Ensures minimal signal reflection
Power Supply RequirementsVoltage/current specifications (e.g., 3.3V 5%)Critical for system integration

5. Application Areas

  • Telecommunications: 5G NR network testing, satellite communication simulation
  • Healthcare: Wireless patient monitoring device development
  • Retail: NFC-based payment terminal prototyping
  • Industrial: RFID-enabled supply chain automation

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Texas InstrumentsAFE7444EVMQuad-channel RF-sampling transceiver evaluation
STMicroelectronicsST25RU3993-DISCOUHF RFID reader IC development kit
Nordic SemiconductornRF52840-DKBluetooth 5.2 and Thread protocol testing
Impinj Speedway R420UHF Gen2 RFID reader for logistics automation

7. Selection Guidelines

Key considerations include: - Frequency Compatibility: Match kit range with target application (e.g., Sub-1GHz vs 2.4GHz) - Development Ecosystem: Availability of SDKs, simulation software, and community support - Scalability: Modular design for future hardware expansion - Compliance Certifications: Pre-tested for FCC/CE regulatory standards - Cost-Performance Ratio: Balance between feature set and project budget

8. Industry Trends

Emerging trends include: - Millimeter-wave Integration: Development kits supporting 24GHz+ for automotive radar - AI-Driven Testing: Embedded machine learning algorithms for signal optimization - Energy Harvesting Support: Ultra-low power RF modules for battery-free IoT devices - Cloud Integration: Over-the-air firmware updates and remote diagnostics - Standardization: Unified platform architectures across multiple vendors

RFQ BOM Call Skype Email
Top