ncn6001 ON Semiconductor, ncn6001 Datasheet - Page 27

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ncn6001

Manufacturer Part Number
ncn6001
Description
Compact Smart Card Interface Ic
Manufacturer
ON Semiconductor
Datasheet

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INPUT SCHMITT TRIGGERS
circuits to protect the NCN6001 against uncontrolled
operation. The typical dynamic characteristics of the related
pins are depicted in Figure 30.
voltage is above 0.70* V
voltage is below 0.30* V
SECURITY FEATURES
card, the NCN6001 provides security features to prevent
catastrophic failures as depicted hereafter.
ground, the current forced by the device is limited to 15 mA
for any pins, except CRD_CLK pin. No feedback is
provided to the external MPU.
senses the CRD_VCC voltage and, in the case of either over
OFF
V
OUTPUT
ON
All the Logic Input pins have built−in Schmitt trigger
The output signal is guaranteed to go High when the input
In order to protect both the interface and the external smart
Pin Current Limitation: In the case of a short circuit to
DC/DC Operation: The internal circuit continuously
bat
Figure 30. Typical Schmitt Trigger Characteristic
0.3 V
bat
CC
CC
, and will go Low when the input
.
0.7 V
bat
V
bat
INPUT
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NCN6001
27
or under voltage situation, updates the READ_REG register
accordingly and forces INT pin to Low. This register can be
read out by the MPU.
detected by the NCN6001, the READ_REG register being
updated accordingly. The external MPU can read the register
through the MISO pin to take whatever is appropriate to
cope with the situation.
ESD PROTECTION
against the ESD spikes voltages. To cope with the different
ESD voltages developed across these pins, the built−in
structures have been designed to handle either 2.0 kV, when
related to the microcontroller side, or 8.0 kV when
connected with the external contacts. Practically, the
CRD_RST, CRD_CLK, CRD_IO, CRD_C4, and CRD_C8
pins can sustain 8.0 kV, the maximum short circuit current
being limited to 15 mA. The CRD_VCC pin has the same
ESD protection, but can source up to 65 mA continuously,
the absolute maximum current being internally limited to
150 mA.
PRINTED CIRCUIT BOARD LAYOUT
with high frequency clock, the printed circuit board must be
carefully designed to avoid the risk of uncontrolled
operation of the interface.
highlighting the ground technique. Dual face printed circuit
board may be necessary to solve ringing and cross talk with
the rest of the system.
Battery Voltage: Both the over and under voltage are
The NCN6001 includes silicon devices to protect the pins
Since the NCN6001 carries high speed currents together
A typical single sided PCB layout is provided in Figure 32

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