13 local wake-up via pin wake, 14 wake-up source recognition – Rainbow Electronics ATA6664 User Manual

Page 8

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8

9146E–AUTO–03/11

Atmel ATA6663/ATA6664

3.13

Local Wake-up via Pin WAKE

A falling edge at pin WAKE, followed by a low level maintained for a certain time period
(> t

WAKE

), results in a local wake-up request. According to ISO7637, the wake-up time ensures

that no transient creates a wake-up. The device then switches to fail-safe mode. Pin INH is
activated (switches to V

S

) and the internal termination resistor is switched on. The local

wake-up request is indicated both by a low level at pin RXD to interrupt the microcontroller and
by a strong pull-down at pin TXD (see

Figure 3-5

). The voltage threshold for a wake-up signal

is 3V below the VS voltage with an output current of typically –3µA. Even in case of a continu-
ous low at pin WAKE it is possible to switch the IC into sleep mode via a low level at pin EN.
The IC will remain in sleep mode for an unlimited time. To generate a new wake-up at pin
WAKE, a high signal > 6µs is required. A negative edge then starts the wake-up filtering time
again.

Figure 3-5.

Wake-up from Wake-up Switch

3.14

Wake-up Source Recognition

The device can distinguish between a local wake-up request (pin WAKE) and a remote
wake-up request (LIN bus). The wake-up source can be read at pin TXD in fail-safe mode. If
an external pull-up resistor (typically 5k

Ω

) has been added on pin TXD to the power supply of

the microcontroller, a high level indicates a remote wake-up request (weak pull-down at pin
TXD), a low level indicates a local wake-up request (strong pull-down at pin TXD).

The wake-up request flag (indicated at pin RXD) as well as the wake-up source flag (indicated
at pin TXD) are reset immediately if the microcontroller sets pin EN to high (see

Figure 3-2 on

page 6

and

Figure 3-5 on page 8

).

Microcontroller

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RXD

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