NUP2202W1T2G ON Semiconductor, NUP2202W1T2G Datasheet - Page 5

IC DIODE/TVS ARRAY HS SOT-363

NUP2202W1T2G

Manufacturer Part Number
NUP2202W1T2G
Description
IC DIODE/TVS ARRAY HS SOT-363
Manufacturer
ON Semiconductor
Datasheet

Specifications of NUP2202W1T2G

Voltage - Reverse Standoff (typ)
5V
Voltage - Breakdown
6V
Power (watts)
500W
Polarization
2 Channel Array - Bidirectional
Mounting Type
Surface Mount
Package / Case
SC-70-6, SC-88, SOT-363
Applications
General Purpose
Number Of Circuits
2
Voltage - Working
5V
Voltage - Clamping
20V
Technology
Diode Array
Polarity
Unidirectional
Channels
1 Channel
Clamping Voltage
20 V
Operating Voltage
5 V
Breakdown Voltage
6 V
Termination Style
SMD/SMT
Peak Surge Current
28 A
Peak Pulse Power Dissipation
500 W
Capacitance
3 pF
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C
Dimensions
1.25 mm W x 2 mm L
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
NUP2202W1T2G
NUP2202W1T2GOSTR

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designed to protect sensitive electronics such as
communications systems, computers, and computer
peripherals against damage due to ESD events or transient
overvoltage conditions. Because of its low capacitance, it
can be used on high speed I/O data lines. The integrated
design of the NUP2202W1 offers surge rated, low
capacitance steering diodes and a TVS diode integrated in
a single package (SC−88). If a transient condition occurs, the
steering diodes will drive the transient to the positive rail of
the power supply or to ground. The TVS device protects the
power line against overvoltage conditions to avoid damage
to the power supply and any downstream components.
NUP2202W1 Device Configuration Options
transient overvoltage conditions by driving them to a fixed
reference point for clamping purposes. The steering diodes
will be forward biased whenever the voltage on the
protected line exceeds the reference voltage (Vf or V
Vf). The diodes will force the transient current to bypass the
sensitive circuit.
reference is connected at pin 2. This pin must be connected
directly to ground by using a ground plane to minimize the
PCB’s ground inductance. It is very important to reduce the
PCB trace lengths as much as possible to minimize parasitic
inductance.
Option 1
V
positive supply rail (V
the supply voltage. The internal TVS diode prevents
overvoltage on the supply rail. Biasing of the steering diodes
reduces their capacitance.
CC
The NUP2202W1 is a low capacitance TVS diode array
The NUP2202W1 is able to protect two data lines against
Data lines are connected at pins 1 and 6. The negative
Protection of two data lines and the power supply using
For this configuration, connect pin 5 directly to the
I/O 1
I/O 2
as reference.
1
2
3
CC
), the data lines are referenced to
6
5
4
APPLICATIONS INFORMATION
V
CC
http://onsemi.com
CC
+
5
Option 2
isolation resistor.
by connecting a series resistor between pin 5 and V
10 kW resistor is recommended for this application. This
will maintain bias on the internal TVS and steering diodes,
reducing their capacitance.
Option 3
as reference.
those cases in which a fully isolated power supply is
required, the internal TVS can be used as the reference. For
these applications, pin 5 is not connected. In this
configuration, the steering diodes will conduct whenever the
voltage on the protected line exceeds the working voltage of
the TVS plus one diode drop (Vc = Vf + V
ESD Protection of Power Supply Lines
a supply rail provides advantages. Biasing the diodes
reduces their capacitance and minimizes signal distortion.
Implementing this topology with discrete devices does have
disadvantages. This configuration is shown below:
Protection of two data lines with bias and power supply
The NUP2202W1 can be isolated from the power supply
Protection of two data lines using the internal TVS diode
In applications lacking a positive supply reference or
When using diodes for data line protection, referencing to
I/O 1
I/O 2
I/O 1
I/O 2
1
2
3
1
2
3
6
5
4
6
5
4
TVS
).
V
NC
CC
10 k
CC
. A

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