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HSMP-389C-TR1

Part # HSMP-389C-TR1
Description DIODE PIN SWITCH 100V 1A SOT-323
Category WAFER DIE
Availability Out of Stock
Qty 0
Qty Price
1 + $0.45023



Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

Surface Mount RF PIN
Switch Diodes
Technical Data
Features
Unique Configurations in
Surface Mount Packages
Add Flexibility
Save Board Space
Reduce Cost
Switching
Low Capacitance
Low Resistance at Low
Current
Low Failure in Time (FIT)
Rate
[1]
Matched Diodes for
Consistent Performance
Better Thermal
Conductivity for Higher
Power Dissipation
Lead-free Option Available
Note:
1. For more information see the
Surface Mount PIN Reliability Data
Sheet.
HSMP-389x Series
HSMP-489x Series
Description/Applications
The HSMP-389x series is
optimized for switching applica-
tions where low resistance at low
current and low capacitance are
required. The HSMP-489x series
products feature ultra low
parasitic inductance. These
products are specifically
designed for use at frequencies
which are much higher than the
upper limit for conventional PIN
diodes.
GUx
1
2
3
6
5
4
Notes:
1. Package marking provides
orientation, identification, and
date code.
2. See “Electrical Specifications” for
appropriate package marking.
Pin Connections and
Package Marking
2
Package Lead Code
Identification, SOT-23/143
(Top View)
Package Lead Code
Identification, SOT-323
(Top View)
Package Lead Code
Identification, SOT-363
(Top View)
Absolute Maximum Ratings
[1]
T
C
= +25°C
Symbol Parameter Unit SOT-23/143 SOT-323/363
I
f
Forward Current (1 µs Pulse) Amp 1 1
P
IV
Peak Inverse Voltage V 100 100
T
j
Junction Temperature °C 150 150
T
stg
Storage Temperature °C -65 to 150 -65 to 150
θ
jc
Thermal Resistance
[2]
°C/W 500 150
Notes:
1. Operation in excess of any one of these conditions may result in permanent damage to
the device.
2. T
C
= +25°C, where T
C
is defined to be the temperature at the package pins where
contact is made to the circuit board.
ESD WARNING:
Handling Precautions Should Be
Taken To Avoid Static Discharge.
COMMON
CATHODE
#4
COMMON
ANODE
#3
SERIES
#2
SINGLE
#0
UNCONNECTED
PAIR
#5
DUAL ANODE
4890
COMMON
CATHODE
F
COMMON
ANODE
E
SERIES
C
SINGLE
B
DUAL ANODE
489B
SERIES–
SHUNT PAIR
LOW
INDUCTANCE
SINGLE
T
UNCONNECTED
TRIO
L
123
654
123
654
123
654
U
HIGH
FREQUENCY
SERIES
V
123
654
DUAL SWITCH
MODEL
R
123
654
3
Electrical Specifications, T
C
= 25°C, each diode
Package Minimum Maximum Maximum
Part Number Marking Lead Breakdown Series Resistance Total Capacitance
HSMP- Code Code Configuration Voltage V
BR
(V) R
S
()C
T
(pF)
3890 G0
[1]
0 Single 100 2.5 0.30
3892 G2
[1]
2 Series
3893 G3
[1]
3 Common Anode
3894 G4
[1]
4 Common Cathode
3895 G5
[1]
5 Unconnected Pair
389B G0
[2]
B Single
389C G2
[2]
C Series
389E G3
[2]
E Common Anode
389F G4
[2]
F Common Cathode
389L GL
[2]
L Unconnected Trio
389R S
[2]
R Dual Switch Mode
389T Z
[2]
T Low Inductance Single
389U GU
[2]
U Series-Shunt Pair
389V GV
[2]
V High Frequency Series Pair
Test Conditions V
R
= V
BR
I
F
= 5 mA V
R
= 5 V
Measure f = 100 MHz f = 1 MHz
I
R
10 µA
Notes:
1. Package marking code is white.
2. Package is laser marked.
High Frequency (Low Inductance, 500 MHz 3 GHz) PIN Diodes
Minimum Maximum Typical Maximum Typical
Part Package Breakdown Series Total Total Total
Number Marking Voltage Resistance Capacitance Capacitance Inductance
HSMP- Code
[1]
Configuration V
BR
(V) R
S
()C
T
(pF) C
T
(pF) L
T
(nH)
489x GA Dual Anode 100 2.5 0.33 0.375 1.0
Test Conditions V
R
= V
BR
I
F
= 5 mA f = 1 MHz V
R
= 5 V f = 500 MHz
Measure V
R
= 5 V f = 1 MHz 3 GHz
I
R
10 µA
Note:
1. SOT-23 package marking code is white; SOT-323 is laser marked.
Typical Parameters at T
C
= 25°C
Part Number Series Resistance Carrier Lifetime Total Capacitance
HSMP- R
S
() τ (ns) C
T
(pF)
389x 3.8 200 0.20 @ 5 V
Test Conditions I
F
= 1 mA I
F
= 10 mA
f = 100 MHz I
R
= 6 mA
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