MAX3186EAP+T Maxim Integrated Products, MAX3186EAP+T Datasheet - Page 6

IC RS-232 SERIAL 230KBPS 20-SSOP

MAX3186EAP+T

Manufacturer Part Number
MAX3186EAP+T
Description
IC RS-232 SERIAL 230KBPS 20-SSOP
Manufacturer
Maxim Integrated Products
Type
Transceiverr
Datasheet

Specifications of MAX3186EAP+T

Number Of Drivers/receivers
5/3
Protocol
RS232
Voltage - Supply
4.5 V ~ 5.5 V
Mounting Type
Surface Mount
Package / Case
20-SSOP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
±15kV ESD-Protected, EMC-Compliant, 230kbps
RS-232 Serial Port for Modems
Figure 2a shows the Human Body Model, and Figure
2b shows the current waveform it generates when dis-
charged into a low impedance. This model consists of
a 100pF capacitor charged to the ESD voltage of inter-
est, which is then discharged into the device through a
1.5kΩ resistor.
The IEC1000-4-2 standard covers ESD testing and per-
formance of finished equipment; it does not specifically
refer to integrated circuits. The MAX3186 helps you
design equipment that meets Level 4 (the highest level)
of IEC1000-4-2, without additional ESD-protection com-
ponents.
The main difference between tests done using the
Human Body Model and IEC1000-4-2 is higher peak
current in IEC1000-4-2. Because series resistance is
lower in the IEC1000-4-2 ESD test model (Figure 1a),
the ESD withstand voltage measured to this standard is
generally lower than measured using the Human Body
Model. Figure 1b shows the current waveform for the
±8kV IEC1000-4-2 Level 4 ESD Contact-Discharge test.
The Air-Gap test involves approaching the device with a
charge probe. The Contact-Discharge method connects
the probe to the device before the probe is energized.
Figure 2a. Human Body ESD Test Model
6
VOLTAGE
SOURCE
_______________________________________________________________________________________
HIGH-
DC
CHARGE-CURRENT
LIMIT RESISTOR
R
C
100pF
1M
C s
STORAGE
CAPACITOR
R
RESISTANCE
D
DISCHARGE
1500
Human Body Model
IEC1000-4-2
DEVICE
UNDER
TEST
The Machine Model for ESD testing uses a 200pF stor-
age capacitor and zero-discharge resistance. It mimics
the stress caused by handling during manufacturing
and assembly. Of course, all pins (not just RS-232
inputs and outputs) require this protection during man-
ufacturing. Therefore, the Machine Model is less rele-
vant to the I/O ports than are the Human Body Model
and IEC1000-4-2.
Use proper layout to ensure other devices on your
board are not damaged in an ESD strike. Currents as
high as 60A can instantaneously pass into the ground,
so be sure to minimize the ground-lead return path to
the power supply. A separate return path to the power
supply is recommend. Trace widths should be greater
than 40 mils. Bypass V
capacitors as close to the part as possible to ensure
maximum ESD protection.
Tie any transmitter inputs to GND or V
protection diodes are needed because the MAX3186 is
not sensitive to power-supply sequencing.
Figure 2b. Human Body Model Current Waveform
__________Applications Information
AMPERES
I
P
36.8%
100%
90%
10%
0
0
t
RL
CC
CURRENT WAVEFORM
TIME
, V
t
DL
DD
I r
, and V
PEAK-TO-PEAK RINGING
(NOT DRAWN TO SCALE)
Machine Model
CC
SS
. No external
with 0.1µF

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