HMPP-3865-TR1 Avago Technologies US Inc., HMPP-3865-TR1 Datasheet - Page 6

DIODE PIN GP 50V 1A MINIPAK

HMPP-3865-TR1

Manufacturer Part Number
HMPP-3865-TR1
Description
DIODE PIN GP 50V 1A MINIPAK
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HMPP-3865-TR1

Diode Type
PIN - 2 Independant
Voltage - Peak Reverse (max)
50V
Current - Max
1A
Capacitance @ Vr, F
0.2pF @ 50V, 1MHz
Resistance @ If, F
22 Ohm @ 1mA, 100MHz
Package / Case
4-MiniPak (1412)
Capacitance Cd Max @ Vr F
0.2pF
Resistance @ If
22ohm
Forward Current If(av)
50mA
No. Of Pins
4
Series Resistance @ If
1.5ohm
Peak Reflow Compatible (260 C)
No
Capacitance Ct
0.2pF
Breakdown Voltage
50V
Rohs Compliant
Yes
Forward Current If
1A
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Power Dissipation (max)
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HMPP-3865-TR1
Manufacturer:
AVAGO
Quantity:
360
Company:
Part Number:
HMPP-3865-TR1
Quantity:
38 988
Linear Equivalent Circuit
In order to predict the performance of the HMPP-386x
as a switch or an attenuator, it is necessary to construct a
model which can then be used in one of the several linear
analysis programs presently on the market. Such a model
is given in Figure 16, where R
C
will reveal the fact that the package parasitics (inductance
and capacitance) are much lower for the MiniPak than they
are for leaded plastic packages such as the SOT-23, SOT-
323 or others. This will permit the HMPP-386x family to be
used at higher frequencies than its conventional leaded
counterparts.
2
2
Figure 11. Linear Equivalent Circuit of the MiniPak 141 PIN Diode.
3
3
6
j
is provided in Figure 1. Careful examination of Figure 16
0.05 nH
0.05 nH
0.05 nH
0.05 nH
30 fF
30 fF
3
30 fF
2
Anti-parallel diode package (HMPP-3862)
Single diode package (HMPP-3860)
Parallel diode package (HMPP-3865)
0.5 nH
0.5 nH
0.5 nH
0.5 nH
20 fF
20 fF
20 fF
20 fF
20 fF
20 fF
1.1 nH
0.5 nH
0.5 nH
0.5 nH
0.5 nH
12 fF
12 fF
S
+ R
j
is given in Figure 2 and
30 fF
0.05 nH
0.05 nH
0.05 nH
0.05 nH
30 fF
30 fF
4
1
4
1
4
1

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