HSMS-2820-TR1 Avago Technologies US Inc., HSMS-2820-TR1 Datasheet - Page 3

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HSMS-2820-TR1

Manufacturer Part Number
HSMS-2820-TR1
Description
RECTIFIER DIODE,SCHOTTKY,15V V(RRM),SOT-23
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HSMS-2820-TR1

Rohs Compliant
NO
Diode Type
Schottky - Single
Voltage - Peak Reverse (max)
15V
Current - Max
1A
Capacitance @ Vr, F
1pF @ 0V, 1MHz
Resistance @ If, F
12 Ohm @ 5mA, 1MHz
Package / Case
SOT-23-3, TO-236-3, Micro3™, SSD3, SST3
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Power Dissipation (max)
-
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
HSMS-2820-TR1
Quantity:
425
Part Number:
HSMS-2820-TR1G
Manufacturer:
Avago Technologies US Inc.
Quantity:
29 549
Part Number:
HSMS-2820-TR1G
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Quad Capacitance
Capacitance of Schottky diode quads is measured using
an HP4271 LCR meter. This instrument effectively isolates
individual diode branches from the others, allowing
accurate capacitance measurement of each branch or
each diode. The conditions are: 20 mV R.M.S. voltage at 1
MHz. Avago defines this measurement as “CM”, and it is
equivalent to the capacitance of the diode by itself. The
equivalent diagonal and adjacent capacitances can then
be calculated by the formulas given below.
In a quad, the diagonal capacitance is the capacitance
between points A and B as shown in the figure below.
The diagonal capacitance is calculated using the follow‑
ing formula
Linear Equivalent Circuit, Diode Chip
R
C
R
where
I
I
T = temperature, °K
n = ideality factor (see table of SPICE parameters)
Note:
To effectively model the packaged HSMS-280x product,
please refer to Application Note AN1124.
3
b
s
C
S
j
j
= externally applied bias current in amps
= saturation current (see table of SPICE parameters)
=
DIAGONAL
= junction capacitance (see Table of SPICE parameters)
= series resistance (see Table of SPICE parameters)
8.33 X 10
R
I
S
b
= _______ + _______
+ I
s
C
C
-5
1
1
nT
+ C
x C
2
2
R
C
j
C
j
C
3
3
+ C
x C
4
4
SPICE Parameters
The equivalent adjacent capacitance is the capacitance
between points A and C in the figure below. This capaci‑
tance is calculated using the following formula
This information does not apply to cross‑over quad
diodes.
Parameter
B
C
E
I
I
N
R
P
P
M
C
BV
S
V
G
S
B
T
J0
ADJACENT
C
= C
Units
V
pF
eV
A
A
V
1
+ ____________
–– + –– + ––
C
C
C
1
2
1
2
HSMS-280x
75
1.6
0.69
E‑5
3.00E‑08
1.08
30
0.65
2
0.5
C
1
1
3
C
1
4
C
C
3
4
A
B

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