Evaluation Boards - Op Amps

Image Part Number Description / PDF Quantity Rfq
AD847AR-EBZ

AD847AR-EBZ

Analog Devices, Inc.

BOARD EVAL AD847AR FUNNEL AMP

0

AD8018AR-EBZ

AD8018AR-EBZ

Analog Devices, Inc.

BOARD EVALUATION FOR AD8018AR

0

MAX40016LABS-2#

MAX40016LABS-2#

Maxim Integrated

EVAL BOARD FOR MAX40016

0

AD8042AR-EBZ

AD8042AR-EBZ

Analog Devices, Inc.

BOARD EVAL FOR AD8042AR

0

MAX44262EVKIT+

MAX44262EVKIT+

Maxim Integrated

EVAL BOARD FOR MAX44262

0

LMV921EVAL

LMV921EVAL

Texas Instruments

EVALUATION BOARD FOR LMV921

0

MAX4470EVKIT+

MAX4470EVKIT+

Maxim Integrated

EVAL KIT MAX4470 (SINGLE/DUAL/QU

0

AD8027AR-EBZ

AD8027AR-EBZ

Analog Devices, Inc.

BOARD EVAL FOR AD8027AR

0

TS1109-20DB

TS1109-20DB

Silicon Labs

DEMO BOARD TS1109-20 OPAMP

0

AD8052ARM-EBZ

AD8052ARM-EBZ

Analog Devices, Inc.

BOARD EVAL FOR AD8052ARM

0

MAX3747AEVKIT

MAX3747AEVKIT

Maxim Integrated

EVALUATION KIT FOR THE MAX3747 M

0

CLC4011ISO14EVB

CLC4011ISO14EVB

MaxLinear

EVAL BOARD QUAD, LOW POWER, LOW

0

CLC1605IST5EVB

CLC1605IST5EVB

MaxLinear

EVAL BOARD CURRENT FEEDBACK AMP

0

TS1110-20DB

TS1110-20DB

Silicon Labs

DEMO BOARD TS1110-20 OPAMP

0

CLC1007ISO8EVB

CLC1007ISO8EVB

MaxLinear

EVAL BOARD RRO AMP SINGLE, LOW C

0

MAX4383EVKIT

MAX4383EVKIT

Maxim Integrated

EVAL KIT FOR MAX4383

0

AD8033AR-EBZ

AD8033AR-EBZ

Analog Devices, Inc.

BOARD EVAL FOR AD8033AR

0

AD8397AR-EBZ

AD8397AR-EBZ

Analog Devices, Inc.

BOARD EVAL FOR AD8397AR

0

THS4304DGKEVM

THS4304DGKEVM

Texas Instruments

EVAL MODULE FOR THS4304DGK

0

ISL28617SM10EV1Z

ISL28617SM10EV1Z

Intersil (Renesas Electronics America)

BOARD EVAL FOR ISL28617

0

Evaluation Boards - Op Amps

1. Overview

Evaluation boards for operational amplifiers (op-amps) are specialized hardware platforms designed to test and validate the performance of op-amp integrated circuits (ICs) in various circuit configurations. These boards provide a controlled environment for engineers to assess key parameters such as gain stability, noise performance, and power efficiency. In modern electronics development, op-amp evaluation boards are critical for accelerating design cycles, reducing time-to-market, and ensuring compliance with industry standards.

2. Main Types and Functional Classification

Type Functional Features Application Examples
General-Purpose Op-Amp Evaluation Boards Basic configuration support, wide supply voltage range, adjustable gain settings Consumer electronics prototyping
High-Speed Op-Amp Evaluation Boards Supports GHz-range signal processing, low parasitic capacitance design Communication infrastructure testing
Low-Noise Precision Evaluation Boards Ultra-low input-referred noise, laser-trimmed resistors Medical imaging equipment development
Power Op-Amp Evaluation Boards High current output capability, thermal management features Industrial motor control systems

3. Structure and Components

Typical evaluation boards consist of:

  • PCB substrate with controlled impedance traces
  • Socketed op-amp IC for easy replacement
  • Onboard power management (LDO regulators, voltage references)
  • Standardized interface connectors (SMB, SMA, or header pins)
  • Adjustable compensation networks (trim pots, discrete component footprints)
  • Thermal vias and heatsinking structures
  • Calibration-grade passive components (0.1% tolerance resistors, NP0 capacitors)

4. Key Technical Specifications

Parameter Importance
Gain Bandwidth Product (GBWP) Determines maximum operating frequency
Slew Rate Impacts transient response performance
Power Supply Rejection Ratio (PSRR) Measures immunity to supply voltage variations
Input Offset Voltage Affects DC precision accuracy
Quiescent Current Key factor in low-power designs
Operating Temperature Range Determines environmental robustness

5. Application Areas

Major industry applications include:

  • Industrial automation (sensor signal conditioning)
  • Telecommunications (RF front-end amplification)
  • Medical devices (ECG signal amplification)
  • Automotive (lidar sensor interfaces)
  • Consumer electronics (audio preamplifiers)
  • Aerospace (precision measurement systems)

6. Leading Manufacturers and Representative Products

Manufacturer Product Example Key Features
Texas Instruments OPA847EVM 3.6GHz GBWP, voltage feedback architecture
Analog Devices AD8021-EB 24-bit audio precision, low distortion
STMicroelectronics STEVAL-OPA354 Low-voltage operation, rail-to-rail output
NXP Semiconductors LM7171EVM High-speed buffer applications

7. Selection Guidelines

Key considerations for selection:

  1. Match board specifications to target application requirements
  2. Verify compatibility with existing development tools (oscilloscopes, signal generators)
  3. Evaluate available onboard calibration features
  4. Assess documentation quality and reference designs
  5. Consider ecosystem support (accessory boards, software tools)
  6. Check component availability and lifecycle status

8. Industry Trends Analysis

Current trends shaping op-amp evaluation board development:

  • Integration of digital control interfaces (I2C, SPI)
  • Increased focus on energy-efficient designs for IoT applications
  • Development of modular evaluation systems with plug-and-play capability
  • Adoption of machine learning algorithms for automated performance optimization
  • Miniaturization for portable test equipment applications
  • Enhanced EMI/RFI shielding for automotive test environments

RFQ BOM Call Skype Email
Top