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  • QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E
  • QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E
  • QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E
  • QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E
  • QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E
  • QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E
QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E
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QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E

  • 10 - 99 Pieces
    $3.50
  • 100 - 499 Pieces
    $2.60
  • >= 500 Pieces
    $2.40

Customization:

Customized packaging(Min.Order: 1000000 pieces)

QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Power Switching & Driving: Designed to efficiently manage power delivery and drive N-channel MOSFETs with a 1:1 ratio, enabling precise control in power management systems.
  • High-Density Assembly: Features a 20-pin LCC (Leadless Chip Carrier) package optimized for surface-mount technology (SMD), enabling compact integration into PCBs for space-constrained applications.

Key features

  • 1. Material Technology

  • With a corrosion-resistant silicon core and durable plastic LCC package, ensure long-term reliability in harsh operating conditions. The LCC design provides robust mechanical and thermal protection, ideal for high-stress environments.

  • 2. Interactive Design

  • The 20-pin LCC design enables seamless integration into compact PCB layouts, reducing assembly complexity compared to through-hole alternatives*. Its surface-mount configuration optimizes space utilization for high-density electronics.

  • 3. Performance Parameters

  • Achieve up to 95% efficiency in power switching, minimizing energy loss compared to traditional drivers*. The chip’s optimized architecture ensures stable performance across a wide voltage range, enhancing system reliability.

  • 4. Scenario Solutions

  • Optimized for space-constrained applications, this IC is ideal for automotive electronics, industrial control systems, and consumer devices requiring high-density mounting. Its design supports continuous operation in demanding environments.

  • 5. Certification Standards

  • Meets industry compliance standards, including RoHS and REACH regulations*, ensuring environmental safety and ease of adoption in global markets.

Product details

QZ VND5T016A Original IC PWR DRIVER N-CHAN 1:1 PWRSO16 VND5T016 Power Switch/Driver IC VND5T016ASPTR-E

The QZ VND5T0T16A is a high-performance N-channel power switch/driver IC designed for efficient power management in electronic systems. Its PWRSO16 package (16-pin) ensures compact integration, while its robust silicon-based construction delivers reliability in harsh environments. Ideal for applications requiring precise current control and thermal stability, this IC is widely used in automotive, industrial, and consumer electronics.

Technical specifications

FeatureSpecificationApplication Scenario
Package TypePWRSO16 (16-pin leadless carrier)Space-constrained PCB designs
Voltage Rating40V max (typical)Automotive power systems
Current Capacity10A continuousIndustrial motor control
Thermal Resistance1.2°C/W (junction-to-ambient)High-heat environments like server farms
ESD Protection±2kV HBMConsumer electronics with ESD risks

Customization guide

Adjustable parameters include voltage thresholds and thermal protection limits to meet specific power requirements (e.g., high-temperature industrial machinery or low-power IoT devices).

Get inspired

Optimize power efficiency in your design with the VND5T016A. Its low on-resistance minimizes energy loss, while its compact PWRSO16 package simplifies high-density PCB layouts.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Current10A15A (+50%)20A (+100%)
Thermal Resistance1.2°C/W0.9°C/W0.6°C/W
ESD Protection±2kV HBM±4kV HBM±6kV HBM
Operating Temp Range-40°C to +125°C-40°C to +150°C-55°C to +175°C

Supplier's note

  1. Technical Breakthroughs:

    • Low Rds(on) (as low as 0.05Ω): Reduces power loss in high-current paths.
    • Enhanced Thermal Dissipation: The Pro Model’s 0.6°C/W thermal resistance outperforms industry benchmarks by 50%.
    • Tripled ESD Protection: The Pro Model’s ±6kV HBM rating ensures reliability in electrostatic-heavy environments.
  2. Version Selection Guide:

    • Base Model: Suitable for standard consumer electronics (e.g., smartphones, LED drivers).
    • Advanced Model: Ideal for industrial applications needing 15A+ current handling (e.g., robotics, HVAC systems).
    • Pro Model: Best for extreme conditions like automotive engine control or aerospace systems, where thermal and ESD resilience are critical.

With the Pro Model’s 0.6°C/W thermal resistance, you can safely operate in high-temperature industrial setups. Pair its ±6kV ESD protection with ruggedized PCB designs to ensure longevity in harsh environments.

Frequently asked questions

  • Which power driver IC suits high-density PCB assemblies for consumer electronics?

  • Is the VND5T016A Power Switch/Driver IC RoHS-compliant?

  • What’s the difference between LCC and QFN packages for power ICs?

  • Can the VND5T016ASPTR-E handle automotive-grade temperature ranges?

  • How does the VND5T016A ensure efficient power management?

  • Is customization available for the VND5T016A’s pin configuration?

  • What applications are best suited for the VND5T016A’s 1:1 power ratio?

  • How long is the typical lifespan of the VND5T016A in continuous operation?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Package TypeSpace-constrained electronicsSOIC (Industry) vs PWRSO16 (Base ▲) vs PWRSO16+ (Advanced ▲▲) (ISO 9712 compliant)Compact design, enhanced thermal performance in Advanced tierRequires precise soldering for PWRSO16; Advanced tier may need heatsinks
Operating TemperatureIndustrial/harsh environments-40°C to 105°C (Industry) vs -40°C to 125°C (Base ▲) vs -55°C to 150°C (Advanced ▲▲)Wider operational range for extreme conditions in Advanced tierHigher cost for Advanced tier; Base may underperform in extreme cold/hot zones
Max Current RatingHigh-power applications (e.g., motors)8A (Industry) vs 10A (Base ▲) vs 12A (Advanced ▲▲) (IEC 60747-7 compliant)Handles heavier loads; Advanced tier supports 50% higher current than IndustryRisk of overheating if not properly cooled in Advanced tier
Switching FrequencyFast-switching systems (e.g., servers)250kHz (Industry) vs 500kHz (Base ▲) vs 1MHz (Advanced ▲▲) (JEDEC JESD22-A104)Faster response times; Advanced tier reduces lag by 75% vs IndustryHigher EMI in Advanced tier requires shielding; Base may limit high-frequency use
Thermal ResistanceHigh-heat environments (e.g., automotive)5°C/W (Industry) vs 3°C/W (Base ▲) vs 2°C/W (Advanced ▲▲) (ASTM E1461)Better heat dissipation; Advanced tier improves cooling efficiency by 60%Advanced tier may require external heatsinks for optimal performance
Compliance StandardsAutomotive/medical devicesRoHS (Industry) vs RoHS + ISO 9001 (Base ▲) vs RoHS + AEC-Q100 + ISO 13485 (Advanced ▲▲)Meets stricter automotive/medical regulations in Advanced tierAdvanced tier certifications add 15-20% to production costs

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