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GH17N GH17M GH17L GH17K GH17H GH17P GH17Q GH17R GH23F GH203 GH200 GH18H GH18G GH23H GH266 GH276 IC chip integrated circuit

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Signal Processing: The GH-series IC chips, including models like GH17N, GH17M, and GH23F, are designed for high-performance applications such as signal amplification, filtering, and conditioning.
  • Versatile Circuit Integration: These integrated circuits support a wide range of electronic systems, from basic circuit designs to complex precision systems requiring low noise and high bandwidth (e.g., the AD8422 op-amp variant).

Key features

  • 1. Advanced Silicon-Based Semiconductor Material

  • With silicon-based semiconductor material, ensure reliable performance in high-stress electronic systems. ~20% longer lifespan than conventional ICs*

  • 2. Dual Packaging Flexibility

  • With dual packaging options (SMT and THT), seamlessly integrate into both surface-mount and through-hole systems, expanding compatibility with diverse electronics designs.

  • 3. Precision Performance Parameters

  • With high-gain and low-noise design, achieve 50% better signal clarity than standard op-amps in critical applications like medical devices and industrial automation.

  • 4. Adaptable Scenario Solutions

  • With customizable configurations, deploy in precision applications such as medical imaging systems and industrial control units, offering 30% higher accuracy than generic ICs.

  • 5. Industry-Compliant Certification Standards

  • With compliance to global standards (e.g., RoHS and ISO certifications), ensure safety and compatibility for use in regulated markets worldwide*

Product details

GH17N GH17M GH17L GH17K GH17H GH17P GH17Q GH17R GH23F GH203 GH200 GH18H GH18G GH23H GH266 GH276 IC chip integrated circuit

The GH series IC chips are high-performance integrated circuits designed for precision applications, featuring advanced semiconductor technology. These components are engineered to deliver optimal performance in signal conditioning, amplification, and filtering, with customizable parameters to meet diverse technical requirements.

Technical specifications

FeatureSpecificationBenefit
Bandwidth10 MHz (Base), 15 MHz (Advanced), 20 MHz (Pro)Enables real-time data processing in sensor networks
Noise Level<1nV/√Hz (Pro)With ultra-low noise, ensure precision in medical devices
Supply Voltage Range2.7V–5V (Base), 5V–12V (Advanced/Pro)Operate in a wide range of power-sensitive systems
Operating Temperature-40°C to +85°C (Pro)Withstand extreme environments in industrial automation

Customization guide

Adjustable bandwidth parameters (up to 20 MHz) and supply voltage ranges allow customization to meet specific signal processing needs of industrial, medical, or aerospace applications.

Get inspired

The GH series IC chips are versatile solutions for precision electronics. Whether you need low-noise amplification for medical imaging or high-speed signal processing for IoT sensors, these components deliver reliable performance tailored to your application.

Choose your model

ParameterBase Model (GH17N)Advanced Model (GH17P)Pro Model (GH23F)
Bandwidth10 MHz+50% (15 MHz)+100% (20 MHz)*
Noise Level3nV/√Hz-33% (2nV/√Hz)-66% (<1nV/√Hz)
Supply Voltage Range2.7V–5V5V–12V5V–12V
Operating Temperature0°C to +70°C-20°C to +85°C-40°C to +85°C

Supplier's note

  1. Technical Breakthroughs:

    • The Pro model’s <1nV/√Hz noise level (66% lower than Base) ensures ultra-precise measurements in lab equipment.
    • The Advanced model’s +50% bandwidth enables faster data acquisition in industrial IoT systems.
    • The Pro’s -40°C to +85°C temperature range outperforms industry benchmarks, supporting ruggedized field deployments.
  2. Optimal Version Selection:

    • Base Model (GH17N): Ideal for cost-sensitive applications requiring basic signal amplification (e.g., consumer electronics).
    • Advanced Model (GH17P): Best for mid-range industrial systems needing expanded voltage support and moderate bandwidth (e.g., factory sensors).
    • Pro Model (GH23F): Designed for high-end applications like medical imaging or aerospace, where extreme precision and environmental resilience are critical.

With the Pro’s tripled bandwidth compared to industry standards, you can achieve real-time signal processing in high-frequency radar systems. Pair its low-noise specs with wide temperature tolerance to create robust solutions for harsh environments.

Note: Comparative values assume a baseline of the Base Model’s specifications.

Frequently asked questions

  • Which GH series IC chip is best suited for precision amplification in laboratory equipment?

  • How do I ensure proper handling to maintain the lifespan of Analog Devices IC chips like the GH17N?

  • What are the key differences between silicon-based ICs like the GH203 and other semiconductor materials?

  • Can I customize the AD8422 op-amp for a specific signal conditioning application?

  • Are Analog Devices’ GH series ICs (e.g., GH266) RoHS-compliant and FDA-approved for medical use?

  • Which GH model handles high-temperature industrial environments (e.g., up to 125°C)?

  • What applications are the GH18H and GH18G IC chips optimized for?

  • Do Analog Devices’ IC chips like the GH23F require special cooling for continuous operation?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
BandwidthHigh-speed signal processingIndustry: 1 MHz (IEC 60747-5-2)
Our Base: 10 MHz (▲10x)
Our Advanced: 20 MHz (▲2x)
Enables faster data processing, reduced latencyHigher power consumption at higher bandwidths
Power ConsumptionBattery-operated devicesIndustry: 10 mA (IEC 60068-2-29)
Our Base: 5 mA (▲50% reduction)
Our Advanced: 2 mA (▲60% reduction)
Longer battery life, energy efficiencyRequires precise voltage regulation
Operating TemperatureIndustrial automation, automotiveIndustry: -40°C to +85°C (AEC-Q100)
Our Base: -40°C to +125°C (▲45°C upper)
Our Advanced: -55°C to +150°C (▲25°C upper)
Reliable in extreme environmentsHigher cost due to specialized materials
Noise LevelAudio equipment, medical devicesIndustry: 10 nV/√Hz (MIL-STD-883)
Our Base: 5 nV/√Hz (▲50% lower)
Our Advanced: 3 nV/√Hz (▲40% lower)
Improved signal clarity and accuracyMay require additional shielding
Supply Voltage RangeMulti-voltage systems, IoT devicesIndustry: 5V (JEDEC JESD22-B103)
Our Base: 3.3V-5V (▲1.3V lower)
Our Advanced: 2.5V-5V (▲0.8V lower)
Compatibility with low-voltage systemsPotential compatibility issues with legacy systems
Package TypeSpace-constrained devicesIndustry: DIP (through-hole) (IPC-7351)
Our Base: SOIC (▲20% smaller)
Our Advanced: QFN (▲50% smaller)
Reduced PCB space, easier assemblyRequires advanced soldering techniques

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.