DIODE PIN SWITCH 100V SOT-143

 

HSMP-3895-TR1G

Manufacturer Part NumberHSMP-3895-TR1G
DescriptionDIODE PIN SWITCH 100V SOT-143
ManufacturerAvago Technologies US Inc.
HSMP-3895-TR1G datasheets

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Warranty: 60 days

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Specifications of HSMP-3895-TR1G

Diode TypePIN - 2 IndependantVoltage - Peak Reverse (max)100V
Current - Max1ACapacitance @ Vr, F0.3pF @ 5V, 1MHz
Resistance @ If, F2.5 Ohm @ 5mA, 100MHzPackage / CaseSOT-143, SOT-143B, TO-253AA
Diode Case StyleSOT-23No. Of Pins3
Capacitance Ct0.2pFPin ConfigurationUnconnected Pair
Termination TypeSMDMounting TypeSurface Mount
Breakdown Voltage100VFilter TerminalsSMD
Rohs CompliantYesCapacitance0.2pF
Forward Test Current If1ALead Free Status / RoHS StatusLead free / RoHS Compliant
Power Dissipation (max)-  
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Electrical Specifications, T
= 25°C, each diode
C
Package
Part Number
Marking
Lead
HSMP-
Code
Code
Configuration
3890
G0
0
Single
[1]
3892
G2
2
Series
[1]
3893
G3
3
Common Anode
[1]
3894
G4
4
Common Cathode
[1]
3895
G5
5
Unconnected Pair
[1]
389B
G0
B
Single
[2]
389C
G2
C
Series
[2]
389E
G3
E
Common Anode
[2]
389F
G4
F
Common Cathode
[2]
389L
GL
L
Unconnected Trio
[2]
389R
S
R
Dual Switch Mode
[2]
389T
Z
T
Low Inductance Single
[2]
389U
GU
U
Series-Shunt Pair
[2]
389V
GV
V
High Frequency Series Pair
[2]
T est Conditions
Notes:
1. Package marking code is white.
2. Package is laser marked.
High Frequency (Low Inductance, 500 MHz – 3 GHz) PIN Diodes
Part
Package
Number
Marking
HSMP-
Code
Configuration
[1]
489x
GA
Dual Anode
T est Conditions
Note:
1. SOT-23 package marking code is white; SOT-323 is laser marked.
T
= 25°C
Typical Parameters at
C
Part Number
HSMP-
389x
Test Conditions
3
Minimum
Breakdown
Voltage V
BR
100
V
= V
R
BR
Measure
I
10 µA
R
Minimum
Maximum
Breakdown
Series
Voltage
Resistance
V
(V)
R
(ý)
BR
S
100
2.5
V
= V
I
= 5 mA
R
BR
F
Measure
I
10 µA
R
Series Resistance
Carrier Lifetime
R
(ý)
τ (ns)
S
3.8
200
I
= 1 mA
I
= 10 mA
F
F
f = 100 MHz
I
= 6 mA
R
Maximum
Maximum
Series Resistance
Total Capacitance
(V)
R
(ý)
C
(pF)
S
T
2.5
0.30
I
= 5 mA
V
= 5 V
F
R
f = 100 MHz
f = 1 MHz
Typical
Maximum
Typical
Total
Total
Total
Capacitance
Capacitance
Inductance
C
(pF)
C
(pF)
L
T
T
T
0.33
0.375
f = 1 MHz
V
= 5 V
f=500 MHz–
R
V
= 5 V
f = 1 MHz
3 GHz
R
Total Capacitance
C
(pF)
T
0.20 @ 5V
(nH)
1.0