MA3XD14E PANASONIC | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 2

Technical content

Schottky Barrier Diodes (SBD) MA3XD14E Silicon epitaxial planar type (cathode common) For high-speed switching circuits I Features

  • Mini type 3-pin package
  • Low forward rise voltage V F (VF < 0.4 V)
  • Cathode common type I Absolute Maximum Ratings Ta = 25°C Unit : mm Parameter Symbol Rating Unit Reverse voltage (DC) V R 20 V Repetitive peak reverse voltage VRRM 20 V Non-repetitive peak forward I FSM 1A surge current*2 Forward current Single I F 100 mA (DC) Double*1 70 Peak forward Single I FM 300 mA current Double*1 200 Junction temperature T j 125 °C Storage temperature T stg −55 to +125 °C Parameter Symbol Conditions Min Typ Max Unit Reverse current (DC) I R VR = 10 V 20 µA Forward voltage (DC) V F1 IF = 5 mA 0.27 V VF2 IF = 100 mA 0.40 V Terminal capacitance C t VR = 0 V, f = 1 MHz 25 pF Reverse recovery time* trr IF = IR = 100 mA 3.0 ns Irr = 10 mA, RL = 100 Ω I Electrical Characteristics Ta = 25°C ± 3°C Note) 1. Schottky barrier diode is sensitive to electric shock (static electricity, etc.). Due attention must be paid on the char ge of a human body and the leakage of current from the operating equipment. ɹ 2. Rated input/output frequency: 250 MHz 3. * : t rr measuring circuit Note) * 1 : The value for operating one chip *2 : The peak-to-peak value in one cycle of 50 Hz sine-wave (non-repetitive) Internal Connection Marking Symbol: M5H 1 : Anode 1 2 : Anode 2 3 : Cathode 1 Cathode 2 Mini Type Package (3-pin) Bias Application Unit N-50BU 90% Pulse Generator (PG-10N) R s = 50 Ω W.F.Analyzer (SAS-8130) R i = 50 Ω tp = 2 µs tr = 0.35 ns δ = 0.05 IF = 100 mA IR = 100 mA RL = 100 Ω 10% Input Pulse Output Pulse Irr = 10 mA tr tp trr VR IF t t A 2.8 + 0.2 − 0.3 1.5 + 0.25 0.950.95 1.9 ± 0.2 0.4 + 0.1 − 0.05 1.1 + 0.2 − 0.1 0.8 0.4 ± 0.2 0 to 0.1 0.16 + 0.1 − 0.06 1.45 0.1 to 0.3 2.9 + 0.2 − 0.05

Schottky Barrier Diodes (SBD) MA3XD14E IF  VF IR  VR 10−5 10−6 10−4 10−3 10−2 10−1 Forward voltage VF (V) Forward current IF (A) Ta = 125°C 75°C 25°C 20°C 10−5 10−6 0 5 10 15 20 25 30 10−4 10−3 10−2 10−1 Reverse voltage VR (V) Reverse current IR (A) Ta = 125°C 25°C 75°C