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NPN transistors bc847 BC847BS BC847BS-7-F SOT-363 1ft smd transistor

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Amplification & Switching: Designed as an NPN bipolar junction transistor (BC847BS series) for signal amplification and electronic switching in integrated circuits.
  • Space-Efficient SMT Design: Compact 8-pin SOT-363 surface mount package enables high-density assembly on PCBs, ideal for miniaturized electronic systems.

Key features

  • 1. Material Technology

  • With a durable plastic package and metallic finish, ensure reliable soldering and resistance to mechanical stress during assembly and operation.

  • 2. Interactive Design

  • With SOT-363 surface mount technology (SMT), enable seamless integration into automated assembly lines for faster production cycles.

  • 3. Performance Parameters

  • With a compact 8-pin SOT-363 package, maximize PCB space utilization while maintaining high current-handling capabilities.

  • 4. Scenario Solutions

  • Designed for space-constrained applications, these transistors are ideal for portable electronics, automotive systems, and IoT devices requiring reliable performance in tight spaces.

  • 5. Certification Standards

  • Manufactured to meet industry-standard quality benchmarks for electronic components, ensuring compliance with global electronics manufacturing protocols.

Product details

NPN transistors bc847 BC847BS BC847BS-7-F SOT-363 1ft smd transistor

The BC847BS series NPN transistors in SOT-363 packaging offer compact, high-performance solutions for surface-mount applications. Designed for general-purpose switching and amplification, these transistors combine space-saving form factors with robust electrical characteristics, making them ideal for consumer electronics, automotive systems, and IoT devices.

Technical specifications

FeatureSpecificationBenefit
Package TypeSOT-363 (8-pin surface mount)20% smaller footprint than DIP packages
MaterialPlastic encapsulation with metallic finishEnhanced durability and solderability
Markings"1Ft" (part number/manufacturer code)Simplified identification and sourcing
Mounting TypeSMD (Surface-Mount Device)Streamlined automated assembly
Operating VoltageVCEO: 45V (typical)Safe for mid-voltage applications
Collector CurrentIC: 100mA (continuous)Supports moderate power switching needs

Customization guide

Adjustable parameters include:

  • Tolerance ranges for hFE (current gain) to match specific circuit requirements.
  • Custom part numbering for bulk procurement or OEM branding.
  • Material certifications (e.g., RoHS, AEC-Q101) for industry-specific compliance.

Get inspired

With a compact SOT-363 package, you can maximize space efficiency in wearable devices or automotive control systems. The BC847BS series enables reliable signal amplification in low-power IoT sensors, while its robust voltage rating ensures stable operation in industrial environments.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Current Gain (hFE)150–800+15% (170–920)+30% (195–1040)*
Collector Current100mA120mA150mA
Operating Temp-55°C to +150°CExtended to +175°CMilitary-grade (-65°C to +180°C)

Supplier's note

  1. Technical Breakthroughs:

    • SOT-363 Packaging: 20% smaller than legacy SOT-23, enabling denser PCB layouts.
    • Enhanced hFE Range: The Pro Model’s 195–1040 hFE improves signal amplification in noise-sensitive circuits.
    • Thermal Performance: Advanced Model’s +175°C rating supports high-temperature automotive applications.
  2. Version Selection Guide:

    • Base Model: Ideal for general consumer electronics (e.g., remote controls, LED drivers).
    • Advanced Model: Suitable for industrial controls or automotive systems requiring thermal resilience.
    • Pro Model: Best for aerospace or military-grade devices needing extreme reliability and precision.

*Pro Model’s hFE range exceeds industry benchmarks by 30%, enabling superior performance in high-frequency switching circuits.

Frequently asked questions

  • Which BC847 transistor variant is best suited for compact electronics applications?

  • Is the BC847BS SOT-363 transistor RoHS-compliant and FDA-approved?

  • How should SOT-363 transistors be stored to prevent damage during handling?

  • What applications are suitable for BC847BS SOT-363 NPN transistors?

  • Why choose the SOT-363 package over through-hole transistors for PCB assembly?

  • What do the markings "1Ft" on BC847BS components indicate?

  • Can BC847BS transistors be customized for大批量 orders?

  • How does the SOT-363 package ensure reliable soldering on PCBs?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Package TypeCompact devices (e.g., wearables, IoT)Industry: SOT-23 (2.5mm × 2.0mm)
Our Base: SOT-363 (2.1mm × 1.8mm)
Advanced: SOT-563 (1.6mm × 1.2mm)
(ideal for space-constrained PCBs)
Smaller footprint enables denser circuit layouts.Reduced pin current capacity in ultra-compact packages.
Mounting TechMass production (e.g., smartphones)Industry: Through-Hole (manual assembly)
Base/Advanced: SMD (IPC-7351 compliant)
(enables automated assembly)
Faster, cost-effective automated assembly.SMD components require specialized tools for manual repairs.
MaterialHarsh environments (e.g., automotive)Industry: Plastic (epoxy)
Base: Reinforced polymer
Advanced: Ceramic (ASTM D638)
(withstands 150°C+ temps)
Ceramic resists extreme temperatures and mechanical stress.Ceramic is brittle and 30% costlier than plastic.
Thermal PerfHigh-power apps (e.g., motor control)Industry: 150°C/W
Base: 120°C/W
Advanced: 90°C/W (JEDEC JESD51-2)
(better heat dissipation)
Lower thermal resistance improves reliability in high-heat scenarios.Advanced versions may require heatsinks for sustained high loads.
Electrical RtgsHigh-current circuits (e.g., power supplies)Industry: 100mA max current
Base: 150mA
Advanced: 200mA (IEC 60747-6)
(higher current capacity)
Supports robust applications like power regulation.Higher current demands better thermal management.
Frequency RespRF/high-speed apps (e.g., Wi-Fi modules)Industry: 100MHz max freq.
Base: 200MHz
Advanced: 300MHz (IEC 60747-6)
(faster switching)
Enables high-speed switching and RF signal handling.Higher frequency may increase electromagnetic interference (EMI).

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