Ceramic transient voltage suppressors
SMD multilayer varistor, E series
Series/Type:
Ordering code:
CT0603S17BCCG2
B72500E5170S270
Date:
Version:
2013-04-10
2
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Identification/Classification 1
(header 1 + top left header bar):
Ceramic transient voltage suppressors
Identification/Classification 2
(header 2 + bottom left header bar):
SMD multilayer varistor, E series
Ordering code: (top right header bar)
B72500E5170S270
Series/Type: (top right header bar)
CT0603S17BCCG2
Preliminary data (optional):
(if necessary)
Department:
PPD ML PD
Date:
2013-04-10
Version:
2
Prepared by:
Hr. Schrotter
Release signed by:
Dr. Dernovsek
Release signed QS:
Hr. Schlauer
Modifications/Remarks:
Correction capacitance
EPCOS AG 2013. Reproduction, publication and dissemination of this publication, enclosures hereto and the information
contained therein without EPCOS' prior express consent is prohibited
Ceramic transient voltage suppressors
SMD multilayer varistor, E series
B72500E5170S270
CT0603S17BCCG2
Description
The E series multilayer ceramic varistors has been developed to protect automotive
electronic circuits against transient overvoltages, such as electrostatic discharges and surge
currents.
Features
Reliable ESD protection up to 30 kV acc. to IEC 61000-4-2
High energy absorption capability
Low leakage current
No temperature derating up to 150 °C
High life time robustness
Stable protection level
RoHS-compatible, lead-free
Qualified based on AEC-Q200 Rev-D
PSpice simulation models available
Designation system
CT
0603
S...B
17
CC
G2
Chip with three-layer-termination (Ag/Ni/Sn)
Dimensions of the device 06 x 03 (length x width in 1/100 inch)
Special tolerance B of the varistor voltage
Maximum operating voltage (VRMS)
Controlled capacitance
Taped version, cardboard tape, 13" reel (16000 pcs./ reel)
PPD ML PD
Please read Cautions and warnings and
Important notes at the end of this document.
2013-04-10
Page 2 of 13
Ceramic transient voltage suppressors
SMD multilayer varistor, E series
B72500E5170S270
CT0603S17BCCG2
Electrical data
Max. operating voltage
RMS voltage
DC voltage
VRMS
VDC
Varistor voltage (@ 1 mA, 25 °C)
Maximum leakage current (@ 22 V, 25 °C)
Typical leakage current (@ 14 V, 25 °C)
Maximum clamping voltage (@ 1 A)
Maximum average power dissipation
Maximum surge current (8/20 µs)
Maximum energy absorption (2 ms)
Capacitance (@ 1 MHz, 0.5 V, 25 °C)
VV
= 25.0 … 40.0 V
Ileakmax = 5 µA
Ileak
=
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