HBAT-5402 AVAGO [AVAGO TECHNOLOGIES LIMITED], HBAT-5402 Datasheet

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HBAT-5402

Manufacturer Part Number
HBAT-5402
Description
High Performance Schottky Diode for Transient Suppression
Manufacturer
AVAGO [AVAGO TECHNOLOGIES LIMITED]
Datasheet

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HBAT-5400, 5402, 540B, 540C
High Performance Schottky Diode  
for Transient Suppression
Data Sheet
Description
The HBAT-540x series of Schottky diodes, commonly
referred to as clipping /clamping diodes, are optimal for
circuit and waveshape preservation applications with
high speed switching. Low series resistance, R
them ideal for protecting sensitive circuit elements
against high current transients carried on data lines.
With picosecond switching, the HBAT-540x can respond
to noise spikes with rise times as fast as 1 ns. Low capaci-
tance minimizes waveshape loss that causes signal deg-
radation.
Package Lead Code Identification (Top View)
1
1
COMMON
SINGLE
ANODE
0, B
E
3
3
2
2
1
1
COMMON
CATHODE
SERIES
2, C
3
3
F
2
2
S
, makes
Features
• Ultra-low Series Resistance for Higher Current
• Low Capacitance
• Low Series Resistance
• Lead-free Option Available
Applications
RF and computer designs that require circuit protection,
high-speed switching, and voltage clamping.
Handling

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HBAT-5402 Summary of contents

Page 1

... High Performance Schottky Diode   for Transient Suppression Data Sheet Description The HBAT-540x series of Schottky diodes, commonly referred to as clipping /clamping diodes, are optimal for circuit and waveshape preservation applications with high speed switching. Low series resistance, R them ideal for protecting sensitive circuit elements against high current transients carried on data lines ...

Page 2

... Thermal Resistance, junction to lead JC Note: 1. Operation in excess of any one of these conditions may result in permanent damage to the device. Linear and Non-linear SPICE Model 0. SPICE model Note effectively model the packaged HBAT-540x product, please refer to Application Note AN114. HBAT-540x DC Electrical Specifications, T Part Package Number Marking Lead [2] HBAT- Code Code Configuration Package -5400 0 V0 Single -540B ...

Page 3

... T = +75C +25C –25C 0. 0.1 0.2 0.3 0.4 0.5 0.6 V – FORWARD VOLTAGE (V) F Figure 1. Forward Current vs. Forward Voltage at Temperature for HBAT-5400 and HBAT-5402. 160 Max. safe junction temp. 140 120 100 +75C +25C –25C 100 200 300 400 ...

Page 4

Package Dimensions Outline SOT- XXX SYMBOL Notes: e2 XXX-package marking E Drawings are not to scale L Tape Dimensions and Product Orientation P ...

Page 5

Package Dimensions Outline SOT-323 (SC-70 3 Lead) e1 XXX SYMBOL Notes: E XXX-package marking L Drawin g s are not to scale Tape Dimensions and ...

Page 6

... Both diodes have similar barrier heights; and this is indicated by corresponding values of saturation current Yet, different contact diameters and epitaxial- S layer thickness result in very different values of junction , there are many capacitance parameters in Table 1. Table 1. HBAT-540x and HSMS-270x SPICE Parameters. Parameter BV CJ0 EG IBV low values of I two diodes are nearly identical ...

Page 7

... Figure 7. Forward Current vs. Forward Voltage at 25°C. 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 HBAT- 540 or HBAT-540C (series pair) are closely matched — without the added expense of testing and binning. Current Handling in Clipping/Clamping Circuits The purpose of a clipping/clamping diode is to handle high currents, protecting delicate circuits downstream of the diode ...

Page 8

... SOT-3 diodes. Note that the term “ ambient temperature” refers to the temperature of the diode’s leads, not the air around the circuit board. It can be seen that the HBAT- 540B and HBAT-540C products in the SOT-33 package will safely withstand a steady-state forward current of 330 mA when the diode’s terminals are maintained at 75°C. For pulsed currents and transient current spikes of less than one microsecond in duration, the junction does not have time to reach thermal steady state ...

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