HSMP-381x Diodes Datasheet

HSMP-381x Datasheet, PDF, Equivalent


Part Number

HSMP-381x

Description

Surface Mount RF PIN Low Distortion Attenuator Diodes

Manufacture

Hewlett-Packard

Total Page 9 Pages
Datasheet
Download HSMP-381x Datasheet


HSMP-381x
Surface Mount RF PIN Low
Distortion Attenuator Diodes
Technical Data
HSMP-381x Series and
HSMP-481x Series
Features
• Diodes Optimized for:
– Low Distortion Attenuating
– Microwave Frequency
Operation
• Surface Mount Packages
– Single and Dual Versions
– Tape and Reel Options
Available
• Low Failure in Time (FIT)
Rate[1]
• Lead-free Option Available
Note:
1. For more information see the
Surface Mount PIN Reliability Data
Sheet.
Package Lead Code
Identification, SOT-23
(Top View)
SINGLE
3
SERIES
3
12
#0
COMMON
ANODE
3
12
#2
COMMON
CATHODE
3
12
#3
DUAL CATHODE
3
12
#4
Description/Applications
The HSMP-381x series is
specifically designed for low
distortion attenuator applica-
tions. The HSMP-481x products
feature ultra low parasitic
inductance in the SOT-23 and
SOT-323 packages. They are
specifically designed for use at
frequencies which are much
higher than the upper limit for
conventional diodes.
12
4810
A SPICE model is not available
for PIN diodes as SPICE does not
provide for a key PIN diode
characteristic, carrier lifetime.
Package Lead Code
Identification, SOT-323
(Top View)
SINGLE
SERIES
B
COMMON
ANODE
C
COMMON
CATHODE
E
DUAL CATHODE
F
481B

HSMP-381x
2
Absolute Maximum Ratings[1] TC = +25°C
Symbol Parameter
Unit
If Forward Current (1 µs Pulse) Amp
PIV Peak Inverse Voltage
V
Tj Junction Temperature
°C
Tstg Storage Temperature
°C
θjc Thermal Resistance[2]
°C/W
SOT-23
1
Same as VBR
150
-65 to 150
500
SOT-323
1
Same as VBR
150
-65 to 150
150
Notes:
1. Operation in excess of any one of these conditions may result in permanent damage to
the device.
2. TC = +25°C, where TC is defined to be the temperature at the package pins where
contact is made to the circuit board.
Electrical Specifications TC = +25°C (Each Diode)
Conventional Diodes
Part
Number
HSMP-
3810
3812
3813
3814
381B
381C
381E
381F
Package
Marking
Code
E0[1]
E2[1]
E3[1]
E4[1]
E0[2]
E2[2]
E3[2]
E4[2]
Lead
Code Configuration
Minimum
Breakdown
Voltage
VBR (V)
Maximum Maximum
Total
Total
Resistance Capacitance
RT ()
CT (pF)
Minimum
High
Resistance
RH ()
0 Single
100 3.0 0.35 1500
2 Series
3 Common Anode
4 Common Cathode
B Single
C Series
E Common Anode
F Common Cathode
Maximum
Low
Resistance
RL ()
10
Test Conditions
VR = VBR
Measure
IR 10 µA
IF = 100 mA
f = 100 MHz
VR = 50 V
f = 1 MHz
IR = 0.01 mA IF = 20 mA
f = 100 MHz f= 100 MHz
High Frequency (Low Inductance, 500 MHz 3 GHz) PIN Diodes
Part
Number
HSMP-
4810
481B
Package
Marking Lead
Code Code Configuration
EB B[1] Dual Cathode
EB B[2] Dual Cathode
Minimum Maximum Typical Maximum Typical
Breakdown Series
Total
Total
Total
Voltage Resistance Capacitance Capacitance Inductance
VBR (V)
RS ()
CT (pF)
CT (pF)
LT (nH)
100 3.0 0.35
0.4
1.0
Test Conditions
Notes:
1. Package marking code is white.
2. Package laser marked.
VR = VBR
Measure
IR 10 µA
IF = 100 mA
VR = 50 V
f = 1 MHz
VR = 50 V
f = 1 MHz
VR = 0 V
f = 500 MHz
3 GHz


Features Surface Mount RF PIN Low Distortion Atte nuator Diodes Technical Data HSMP-381x Series and HSMP-481x Series Features Diodes Optimized for: – Low Distor tion Attenuating – Microwave Frequenc y Operation • Surface Mount Packages – Single and Dual Versions – Tape a nd Reel Options Available • Low Failu re in Time (FIT) Rate[1] • Lead-free Option Available Note: 1. For more info rmation see the Surface Mount PIN Relia bility Data Sheet. Package Lead Code I dentification, SOT-23 (Top View) SINGLE 3 SERIES 3 Package Lead Code Identifi cation, SOT-323 (Top View) SINGLE SERIE S 1 #0 2 1 #2 2 B COMMON ANODE C COMMON CATHODE COMMON ANODE 3 COMMO N CATHODE 3 1 #3 2 1 #4 2 E DUAL CATHODE F DUAL CATHODE 3 Descriptio n/Applications The HSMP-381x series is specifically designed for low distortio n attenuator applications. The HSMP-481 x products feature ultra low parasitic inductance in the SOT-23 and SOT-323 pa ckages. They are specifically designed for use at frequencies which are much hi.
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