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BAT54C,215 - DIODE SCHOTTKY 2*0.2A 30V SOT23 CATHODE PHILIPS

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HT Part No. HT299683

Mfr. Part No. BAT54C,215

Manufacturer: NXP (PHILIPS)

Technical Documents: Datasheet(datasheets)

50 - In Stock pcs
Price:
£ 0.023
Units Per Unit Price
20 - 99 £ 0.023
100 - 499 £ 0.022
500 + £ 0.020
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Product Specification

Product Attributes
Packaging TAPE&REEL
Manufacturer NXP (PHILIPS)
Average Rectified Current 200mA (2x200mA)
Polarity None
Rohs ROHS
Peak Repetitive Reverse Voltage (VRRM) 30V
Reverse Recovery Time (Trr) N/A
Operating Temperature -55°C~+150°C
Series Schottky Diode
Diode Configuration Dual Common Cathode
Mounting Type SMT
Package / Case SOT23-3
Applications General Purpose

More Information

The Nexperia BAT54C,215 is a compact, high-performance Schottky barrier diode array featuring two diodes with a common cathode in a SOT-23 (TO-236AB) surface-mount package. Engineered for precision and efficiency, it supports fast switching, low voltage drop, and high-temperature resilience, ideal for demanding B2B electronics and industrial applications. Furthermore, for engineers needing a reliable, high-speed, and low-loss dual Schottky diode, it sets a high standard, combining performance, compactness, and durability for global technical buyers.

Product Core Features and Benefits Include

  • Ultra-fast switching: 5 ns recovery time ensures minimal switching delay and is ideal for high-frequency or digital applications.
  • Low forward voltage drop: With a maximum of 0.8 V, it enhances power efficiency in rectification and clamp circuits.
  • Compact form factor: The SOT-23 package supports space-constrained PCB designs and facilitates automated assembly.
  • High reliability: Rugged temperature tolerance (up to 150°C) and optional AEC-Q101 variants ensure optimal performance in automotive and industrial environments.

Usage Recommendations

Perfect for power supply OR-ing, reverse polarity protection, voltage clamping, and signal routing in compact electronics such as wearables, automotive modules, and industrial instruments. The dual common‑cathode layout simplifies circuit design and reduces part count.

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