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SP3222EB Datasheet(PDF) 13 Page - Sipex Corporation

No. de pieza SP3222EB
Descripción Electrónicos  CorporationTrue 3.0V to 5.5V RS-232 Transceivers
PDF  25 Pages
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Fabricante Electrónico  SIPEX [Sipex Corporation]
Página de inicio  http://www.sipex.com
Logo SIPEX - Sipex Corporation

SP3222EB Datasheet(HTML) 13 Page - Sipex Corporation

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Date:11/02/05
SP3222EB/SP3232EB True +3.0V to +5.5V RS-232 Transceivers
© Copyright 2005 Sipex Corporation
13
13
Date: 02/27/05
SP3222EB/3232EB True +3.0 to +5.5V RS-232 Transceivers
© Copyright 2005 Sipex Corporation
The Contact Discharge Method applies the ESD
current directly to the EUT. This method was
devised to reduce the unpredictability of the
ESD arc. The discharge current rise time is
constant since the energy is directly transferred
without the air-gap arc. In situations such as
hand held systems, the ESD charge can be
directly discharged to the equipment from a
person already holding the equipment. The
current is transferred on to the keypad or the
serial port of the equipment directly and then
travels through the PCB and finally to the IC.
The circuit models in Figures 18 and 19
represent the typical ESD testing circuits used
for all three methods. The CS is initially charged
with the DC power supply when the first
switch (SW1) is on. Now that the capacitor is
charged, the second switch (SW2) is on while
SW1 switches off. The voltage stored in the
capacitor is then applied through RS, the current
limiting resistor, onto the device under test
(DUT). In ESD tests, the SW2 switch is pulsed
so that the device under test receives a duration
of voltage.
Figure 18. ESD Test Circuit for Human Body Model
Figure 19. ESD Test Circuit for IEC1000-4-2
RC
CS
RS
SW1
SW2
RC
Device
Under
Test
DC Power
Source
CS
RS
SW1
SW2
RS and RV add up to 330 for IEC1000-4-2.
RS and RV add up to 330 for IEC1000-4-2.
Contact-Discharge Module
RV
RC
CS
RS
SW1
SW2
RC
Device
Under
Test
DC Power
Source
CS
RS
SW1
SW2
RV
Contact-Discharge Module



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