Panasonic MA2J704 User Manual

Schottky Barrier Diodes (SBD)
This product complies with the RoHS Directive (EU 2002/95/EC).
MA2J704 (MA10704)
Silicon epitaxial planar type
For super high speed switching
Features
Small reverse current I products)
= 200 mA rectification is possible
F(AV)
(About 1/10 of IR of the ordinary
R
1.25
±0.1
0.35
±0.1
1
0 to 0.1
2
±0.1
0.5
0.16
0.7
+0.1 –0.06
±0.1
Unit: mm
±0.1
1.7
±0.1
0.4
Absolute Maximum Ratings Ta = 25°C
Parameter Symbol Rating Unit
Reverse voltage V
Repetitive peak reverse voltage V
Peak forward current I
Forward current (Average) I
Non-repetitive peak forward I surge current
*
Junction temperature T
Storage temperature T
R
RRM
FM
F(AV)
FSM
j
stg
20 V
20 V
300 mA
200 mA
1A
125 °C
55 to +125 °C
0 to 0.1
1 : Anode 2 : Cathode EIAJ : SC-76 SMini2-F1 Package
Marking Symbol: 2S
(0.15)
Note)*: The peak-to-peak value in one cycle of 50 Hz sine wave (non-repetitive)
Electrical Characteristics Ta = 25°C ± 3°C
Parameter Symbol Conditions Min Typ Max Unit
Forward voltage V
Reverse current I
F
R1
I
R2
Terminal capacitance C
Reverse recovery time
*
t
rr
Note) 1. Measuring methods are based on JAPANESE INDUSTRIAL STANDARD JIS C 7031 measuring methods for diodes.
2. This product is sensitive to electric shock (static electricity, etc.). Due attention must be paid on the charge of a human body
and the leakage of current from the operating equipment.
3. Absolute frequency of input and output is 1 GHz.
4.*:trr measurement circuit
Bias Application Unit (N-50BU)
A
Pulse Generator (PG-10N)
= 50
R
s
Wave Form Analyzer (SAS-8130) R
= 50
i
IF = 200 mA 0.55 V
VR = 10 V 2 µA
VR = 20 V 5
VR = 0 V, f = 1 MHz 30 pF
t
IF = IR = 100 mA 3.0 ns Irr = 0.1 IR , RL = 100
Input Pulse Output Pulse
t
t
p
r
10%
90%
V
R
= 2 µs
t
p
= 0.35 ns
t
r
δ = 0.05
t
I
F
I
= 100 mA
F
= 100 mA
I
R
= 100
R
L
t
rr
I
rr
Note) The part number in the parenthesis shows conventional part number.
= 0.1 I
t
R
±0.2
2.5
Publication date: April 2004 SKH00013BED
1
MA2J704
This product complies with the RoHS Directive (EU 2002/95/EC).
IF V
10
1
) A
(
F
1
10
2
10
Forward current I
3
10
4
10
T
a
0 0.2 0.4 0.6
F
= 125°C
Forward voltage VF (V
75°C
25°C
)
IR V
2
10
3
10
) A
(
R
4
10
5
10
R
Reverse current I
6
10
7
10
0 5 10 15 20 25 30
Reverse voltage VR (V
T
a
= 125°C
75°C
25°C
)
Ct V
40
) pF
30
(
t
20
10
Terminal capacitance C
0
0102030
Reverse voltage VR (V
R
)
2
SKH00013BED
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