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MA2B190

Panasonic
Part Number MA2B190
Manufacturer Panasonic
Description Silicon epitaxial planar type
Published Apr 27, 2005
Detailed Description Switching Diodes MA2B190 Silicon epitaxial planar type φ 0.56 max. Unit : mm For switching circuits 1 I Features • L...
Datasheet PDF File MA2B190 PDF File

MA2B190
MA2B190


Overview
Switching Diodes MA2B190 Silicon epitaxial planar type φ 0.
56 max.
Unit : mm For switching circuits 1 I Features • Low forward dynamic resistance rf • Small terminal capacitance, Ct I Absolute Maximum Ratings Ta = 25°C Parameter Reverse voltage (DC) Repetitive peak reverse voltage Average forward current Repetitive peak forward current Non-repetitive peak forward surge current* Junction temperature Storage temperature Note) * : t = 1 s Symbol VR VRRM IF(AV) IFRM IFSM Tj Tstg Rating 35 35 100 225 500 200 −55 to +200 Unit V V mA mA mA °C °C 1st Band 2nd Band 2 φ 1.
95 max.
1: Cathode 2: Anode JEDEC: DO-35 I Electrical Characteristics Ta = 25°C Parameter Reverse current (DC) Symbol IR1 IR2 IR3 Forward voltage (DC) Reverse voltage (DC) Terminal capacitance Forward dynamic resistance Reverse recovery time*3 VF VR Ct rf*1 rf*2 trr VR = 15 V VR = 30 V VR = 35 V, Ta = 150°C IF = 100 mA IR = 100 µA VR = 0 V, f = 1 MHz IF = 3 mA, f = 30 MHZ IF = 3 mA, f = 30 MHZ IF = 10 mA, VR = 1 V Irr = 0.
1 · IR, RL = 100 Ω 35 4 2.
5 3.
6 0.
2 Conditions Min Typ Max 0.
005 0.
01 100 1.
2 Unit µA µA µA V V pF Ω Ω ms Note) 1.
Rated input/output frequency: 2.
5 MHz 2.
*1 : rf measuring instrument: Nihon Koshuha Model TDC-121A *2 : rf measuring instrument: YHP 4191A RF IMPEDANCE ANALYZER *3 : trr measuring circuit Bias Application Unit N-50BU Input Pulse tr 10% tp t IF trr t Irr = 0.
1 · IR IF = 10 mA VR = 1 V RL = 100 Ω Output Pulse I Cathode Indication Type No.
Color 1st Band 2nd Band MA2B190 White White A VR Pulse Generator (PG-10N) Rs = 50 Ω W.
F.
Analyzer (SAS-8130) Ri = 50 Ω 90% tp = 2 µs tr = 0.
35 ns δ = 0.
05 24 min.
4.
5 max.
24 min.
COLORED BAND INDICATES CATHODE 1 MA2B190 IF  V F 103 Switching Diodes VF  Ta 1.
0 103 IR  V R 102 Forward current IF (mA) 0.
8 102 Ta = 150°C Forward voltage VF (V) 10 0.
6 3 mA Reverse current IR (nA) IF = 10 mA 10 100°C 1 Ta = 150°C 100°C 25°C − 20°C 1 mA 0.
4 0.
1 mA 0.
2 1 10−1 10−1 25°C 10−2 0 0.
2 0.
4 0.
6 0.
8 1.
0 1.
2 ...



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