HSMS-270C Hewlett-Packard, HSMS-270C Datasheet

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HSMS-270C

Manufacturer Part Number
HSMS-270C
Description
(HSMS-2700 / HSMS-2702) High Performance Schottky Diode
Manufacturer
Hewlett-Packard
Datasheet

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Features
• Ultra-low Series Resistance
• Picosecond Switching
• Low Capacitance
• Lead-free Option Available
Applications
RF and computer designs that
require circuit protection, high-
speed switching, and voltage
clamping.
High Performance Schottky
Diode for Transient Suppression
Technical Data
HSMS-270x DC Electrical Specifications, T
Notes:
1. T
2. Package marking code is laser marked.
3. I
4. I
5. V
6. Measured with Karkauer method at 20 mA; guaranteed by design.
Number Marking Lead
HSMS-
-270B
-270C
for Higher Current Handling
-2700
-2702
Part
F
F
A
F
= 100 mA; 100% tested
= 100 µA; 100% tested
= +25°C, where T
= 0; f =1 MHz
Package
Code
J0
J2
[2]
Code Configuration
B
C
0
2
A
is defined to be the temperature at the package pins where contact is made to the circuit board.
Single
Series
Package Lead Code
Identification
(Top View)
(3-lead SC-70)
(3-lead SC-70)
1
SINGLE
Package
SOT-323
SOT-323
SOT-23
SOT-23
0, B
3
2
Maximum Minimum
Forward Breakdown
V
Voltage
550
F
(mV)
A
1
[3]
= +25°C
SERIES
2, C
3
Voltage
V
BR
2
15
(V)
[4]
[1]
Capacitance Resistance
HSMS-2700/-2702
Description
The HSMS-2700 series of Schottky
diodes, commonly referred to as
clipping /clamping diodes, are
optimal for circuit and waveshape
preservation applications with
high speed switching. Ultra-low
series resistance, R
ideal for protecting sensitive
circuit elements against higher
current transients carried on data
lines. With picosecond switching,
the HSMS-270x can respond to
noise spikes with rise times as fast
as 1 ns. Low capacitance mini-
mizes waveshape loss that causes
signal degradation.
C
Typical
T
6.7
(pF)
[5]
-270B/-270C
Typical
R
Series
S
0.65
(Ω)
S
, makes them
Eff. Carrier
Maximum
Lifetime
τ (ps)
100
[6]

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HSMS-270C Summary of contents

Page 1

... Higher Current Handling • Picosecond Switching • Low Capacitance • Lead-free Option Available Applications RF and computer designs that require circuit protection, high- speed switching, and voltage clamping. HSMS-270x DC Electrical Specifications, T Part Package Number Marking Lead [2] HSMS- Code Code Configuration -2700 ...

Page 2

... Absolute Maximum Unit HSMS-2700/-2702 mA 350 A 1.0 mW 250 V 15 °C 150 °C -65 to 150 °C/W 500 SPICE Parameters Parameter Unit CJO IBV Ω [1] HSMS-270B/-270C 750 1.0 825 15 150 -65 to 150 150 Value 25 6.7 0.55 10E-4 1.4E-7 1.04 0.65 0.6 2 0.5 ...

Page 3

... V – FORWARD VOLTAGE (V) F Figure 2. Forward Current vs. Forward Voltage at Temperature for HSMS-270B and HSMS-270C 600 750 – REVERSE VOLTAGE (V) F Figure 5. Total Capacitance vs. Reverse Voltage. 3 160 Max. safe junction temp. ...

Page 4

Package Dimensions Outline SOT-23 1.02 (0.040) 0.89 (0.035) PACKAGE 3 MARKING CODE (XX 0.60 (0.024) 2.04 (0.080) 0.45 (0.018) 1.78 (0.070) TOP VIEW 3.06 (0.120) 2.80 (0.110) 0.10 (0.004) 0.013 (0.0005) SIDE VIEW DIMENSIONS ARE ...

Page 5

Package Dimensions Outline SOT-323 (SC-70 3 Lead) PACKAGE 1.30 (0.051) MARKING REF. CODE (XX) 2.20 (0.087 2.00 (0.079) 2.20 (0.087) 1.80 (0.071) 0.10 (0.004) 0.00 (0.00) 0.25 (0.010) 1.00 (0.039) 0.80 (0.031) 0.15 (0.006) DIMENSIONS ARE ...

Page 6

... F forward voltages of the two diodes are nearly identical. However, as current rises above 10 mA, the lower series resistance of the HSMS-270x allows for a much lower forward voltage. This gives the HSMS-270x a much higher current handling capability. The trade-off is a higher value of junction capacitance. The forward ...

Page 7

... Because the automatic, pick-and- place equipment used to assemble these products selects dice from adjacent sites on the wafer, the two diodes which go into the HSMS-2702 or HSMS-270C (series pair) are closely matched — without the added expense of testing and binning. Current Handling in Clipping/ ...

Page 8

... It can be seen that the HSMS-270B and HSMS-270C products in the SOT-323 package will safely withstand a steady-state forward current of 550 mA when the No. of Devices ...

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