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

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
HMPP-386x Series
MiniPak Surface Mount RF PIN Diodes
Data Sheet
Description/Applications
These ultra-miniature products represent the blending of
Avago Technologies’ proven semiconductor and the latest
in leadless packaging technology.
The HMPP-386x series of general purpose PIN diodes are
designed for two classes of applications. The first is attenu-
ators where current consumption is the most important
design consideration. The second application for this
series of diodes is in switches where low capacitance with
no reverse bias is the driving issue for the designer.
The low dielectric relaxation frequency of the HMPP-386x
insures that low capacitance can be reached at zero volts
reverse bias at frequencies above 1 GHz, making this PIN
diode ideal for hand held applications.
Low junction capacitance of the PIN diode chip, combined
with ultra low package parasitics, mean that these products
may be used at frequencies which are higher than the upper
limit for conventional PIN diodes.
Note that Avago’s manufacturing techniques assure that
dice packaged in pairs are taken from adjacent sites on
the wafer, assuring the highest degree of match.
Minipak 1412 is a ceramic based package, while Minipak
QFN is a leadframe based package.
Package Lead Code Identification (Top View)
3
2
(Minipak 1412)
Single
#0
4
1
3
2
(Minipak 1412)
Anti-parallel
#2
4
1
3
2
(Minipak 1412)
Parallel
#5
4
1
Pin Connections and Package Marking
Notes:
1. Package marking provides orientation and identification.
2. See “Electrical Specifications” for appropriate package marking.
Features
• Surface mount MiniPak package
• Better thermal conductivity for higher power dissipa-
• Single and dual versions
• Matched diodes for consistent performance
• Low capacitance at zero volts
• Low resistance
• Low FIT (Failure in Time) rate*
• Six-sigma quality level
* For more information, see the Surface Mount Schottky Reliability
tion
Data Sheet.
Product code
3
2
AA
Date code
4
1

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HMPP-3865-TR1 Summary of contents

Page 1

... These ultra-miniature products represent the blending of Avago Technologies’ proven semiconductor and the latest in leadless packaging technology. The HMPP-386x series of general purpose PIN diodes are designed for two classes of applications. The first is attenu- ators where current consumption is the most important design consideration. The second application for this series of diodes is in switches where low capacitance with no reverse bias is the driving issue for the designer ...

Page 2

... HMPP-386x Series Absolute Maximum Ratings Symbol Parameter I Forward Current (1 µs pulse Peak Inverse Voltage IV T Junction Temperature j T Storage Temperature stg θ Thermal Resistance [2] jc MiniPak141 Electrical Specifications +5°C, each diode C Part Number Package HMPP- Marking Code 3860 H 3862 F 3865 E Test Conditions ...

Page 3

... MiniPak 141 HMPP-386x Series Typical Performance = +25 °C (unless otherwise noted), each diode T C 0.35 0.30 1 MHz 0.25 100 MHz 0.20 1 GHz 0. REVERSE VOLTAGE (V) Figure 1. RF Capacitance vs. Reverse Bias. 1000 100 FORWARD CURRENT (mA) Figure 4. Reverse Recovery Time vs. Forward Current for Various Reverse Voltages. ...

Page 4

Typical Applications RF COMMON BIAS 1 BIAS 2 Figure 6. Simple SPDT Switch Using Only Positive Bias. RF COMMON BIAS Figure 8. Very High ...

Page 5

... C to mention that in this frequency range, the diode can exhibit very strong capacitive or inductive reactance — it will not behave at all like a resistor. The HMPP-386x family features a typical lifetime of 300 to 500 ns, so 10f for this part is 5 MHz. At any frequency over C 5 MHz, the resistance of this diode will follow the curve given in Figure 2 ...

Page 6

... 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. ...

Page 7

MiniPak 141 Outline Drawing 1.44 (0.057) 1.40 (0.055) 1.20 (0.047) 1.16 (0.046) Top view 0.70 (0.028) 0.58 (0.023) Side view Dimensions are in millimeters (inches) 7 0.92 (0.036) 0.00 0.88 (0.035) -0.07 (-0.003) 0.42 (0.017) 1.32 (0.052) -0.03 (-0.001) 0.38 ...

Page 8

Assembly Information The MiniPak diode is mounted to the PCB or microstrip board using the pad pattern shown in Figure 17. 0.4 0.5 0.4 0.3 0.5 0.3 Figure 1. PCB Pad Layout, MiniPak (dimensions in mm). This mounting pad pattern ...

Page 9

... Ordering Information Part Number No. of Devices HMPP-386x-TR2 10000 HMPP-386x-TR1 3000 HMPP-386x-BLK 100 Device Orientation REEL CARRIER USER FEED DIRECTION COVER TAPE 9 Container 13˝ Reel 7˝ Reel antistatic bag TAPE 8 mm Note: “AA” represents package marking code. Package marking is right side up with carrier tape perforations at top. Conforms to Electronic Industries RS-481, “ ...

Page 10

Tape Dimensions and Product Orientation For Outline 4T (MiniPak 141 DESCRIPTION CAVITY LENGTH WIDTH DEPTH PITCH BOTTOM HOLE DIAMETER PERFORATION DIAMETER PITCH POSITION CARRIER TAPE WIDTH THICKNESS COVER TAPE WIDTH TAPE THICKNESS DISTANCE CAVITY TO PERFORATION ...

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