SRV05-4.TC Semtech, SRV05-4.TC Datasheet - Page 5

Diode

SRV05-4.TC

Manufacturer Part Number
SRV05-4.TC
Description
Diode
Manufacturer
Semtech
Datasheets

Specifications of SRV05-4.TC

Peak Reflow Compatible (260 C)
No
Junction Capacitance
3pF
Peak Surge Current
12A
Reel Quantity
3000
Breakdown Voltage Min
6V
Leaded Process Compatible
No
Peak Pulse Power Dissipation Pppm
350W
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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Device Connection Options for Protection of Four
High-Speed Data Lines
The SRV05-4 TVS is designed to protect four data lines
from transient over-voltages by clamping them to a
fixed reference. When the voltage on the protected
line exceeds the reference voltage (plus diode V
steering diodes are forward biased, conducting the
transient current away from the sensitive circuitry.
Data lines are connected at pins 1, 3, 4 and 6. The
negative reference (REF1) is connected at pin 2. This
pin should be connected directly to a ground plane on
the board for best results. The path length is kept as
short as possible to minimize parasitic inductance.
The positive reference (REF2) is connected at pin 5.
The options for connecting the positive reference are
as follows:
1. To protect data lines and the power line, connect
2. The SRV05-4 can be isolated from the power
3. In applications where no positive supply reference
ESD Protection With RailClamps
RailClamps are optimized for ESD protection using the
rail-to-rail topology. Along with good board layout,
these devices virtually eliminate the disadvantages of
using discrete components to implement this topology.
Consider the situation shown in Figure 1 where dis-
crete diodes or diode arrays are configured for rail-to-
rail protection on a high speed line. During positive
duration ESD events, the top diode will be forward
biased when the voltage on the protected line exceeds
PROTECTION PRODUCTS
Applications Information
2008 Semtech Corp.
pin 5 directly to the positive supply rail (V
configuration the data lines are referenced to the
supply voltage. The internal TVS diode prevents
over-voltage on the supply rail.
supply by adding a series resistor between pin 5
and V
internal TVS and steering diodes remain biased,
providing the advantage of lower capacitance.
is available, or complete supply isolation is desired,
the internal TVS may be used as the reference. In
this case, pin 5 is not connected. The steering
diodes will begin to conduct when the voltage on
the protected line exceeds the working voltage of
the TVS (plus one diode drop).
CC
. A value of 100k
is recommended. The
CC
). In this
F
) the
5
Data Line and Power Supply Protection Using Vcc as
reference
Data Line Protection with Bias and Power Supply
Isolation Resistor
Data Line Protection Using Internal TVS Diode as
Reference
SRV05-4
www.semtech.com

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