hcs410 Microchip Technology Inc., hcs410 Datasheet - Page 6

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hcs410

Manufacturer Part Number
hcs410
Description
Keeloq Code Hopping Encoder And Transponder Keeloq Code Hopping Encoder And Transponder
Manufacturer
Microchip Technology Inc.
Datasheet

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HCS410
2.1
The HCS410 has the same footprint as all of the other
devices in the K
that are reserved for transponder operations and the
LED that is now located at the same position as the S2
switch input.
• S[0:1] – are inputs with Schmitt Trigger detectors
• S2/LED – uses the same input detection circuit as
TABLE 2-1:
TABLE 2-2:
DS40158E-page 6
and an internal 60k¾ (nominal) pull-down
resistors.
S0/S1 but with an added PMOS transistor con-
nected to V
to drive an LED.
1
2
3
4
5
6
7
8
S2/LED
Name
PWM
LC1
LC0
V
V
S0
S1
SS
DD
Pinout Description
LC0
0
0
0
0
0
0
0
1
DD
EE
capable of sourcing enough current
PINOUT DESCRIPTION
FUNCTION CODES
L
OQ
S2
0
0
0
1
1
1
1
0
Pin Number
family, except for the two pins
1
2
3
4
5
6
7
8
S1
0
1
1
0
0
1
1
0
S0
1
0
1
0
1
0
1
0
Switch input 0
Switch input 1
Switch input 2/LED output, Clock pin for programming mode
Transponder interface pin
Ground reference connection
Pulse width modulation (PWM)
output pin/Data pin for
programming mode
Transponder interface pin
Positive supply voltage connection
Normal Code Hopping transmission
Normal Code Hopping transmission
Delayed seed transmission if allowed by SEED and TMPSD/Normal
Code Hopping transmission
Normal Code Hopping transmission
Normal Code Hopping transmission
Normal Code Hopping transmission
Immediate seed transmission if allowed by SEED and TMPSD/Normal
Code Hopping transmission
Transponder mode
Preliminary
• LC[0:1] – is the transponder interface pins to be
connected to an LC circuit for inductive communi-
cation. LC0 is connected to a detector for data
input. Data output is achieved by clamping LC0
and LC1 to GND through two NMOS transistors.
These pins are also connected to a rectifier and a
regulator, providing power to the rest of the logic
and for charging an external power source (Bat-
tery/Capacitor) through V
The input impedance of the LC pins is a function of
input voltage. At low voltages, the input impedance is
in the order of mega-ohms. When laying out a PC
board, care should be taken to ensure that there
is no cross coupling between the LC pins and
other traces on the board. Glitches on the LC lines
will cause the device to reset. A high-value resistor
(220 KΩ) between LC0 and GND can be added to
reduce sensitivity.
Description
Comments
 2001 Microchip Technology Inc.
DD
.

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