ATA6661-TAQJ 19 Atmel, ATA6661-TAQJ 19 Datasheet - Page 11

TXRX LIN 2.0 3.3V/5V 8SOIC

ATA6661-TAQJ 19

Manufacturer Part Number
ATA6661-TAQJ 19
Description
TXRX LIN 2.0 3.3V/5V 8SOIC
Manufacturer
Atmel
Type
Transceiverr
Datasheet

Specifications of ATA6661-TAQJ 19

Number Of Drivers/receivers
1/1
Protocol
LIN
Voltage - Supply
3.3V, 5V
Mounting Type
Surface Mount
Package / Case
SO-8
Number Of Transmitters
1
Number Of Receivers
1
Power Supply Requirement
Single
Package Type
SO
Operating Temperature Classification
Automotive
Mounting
Surface Mount
Pin Count
8
Operating Temperature (max)
125C
Operating Temperature (min)
-40C
Dual Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Dual Supply Voltage (min)
Not RequiredV
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Operating Supply Voltage
- 0.3 V to + 40 V
Propagation Delay Time Ns
6 us
Supply Current
1.6 mA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
6. Electrical Characteristics (Continued)
5V < V
4729M–AUTO–02/09
*) Type means: A = 100% tested, B = 100% correlation tested, C = Characterized on samples, D = Design parameter
10.1
10.2
10.3
10.4
11.1
11.2
No.
8.6
8.7
9.1
9.2
9.3
9.4
9.5
9.6
10
11
9
S
< 18V, T
Parameters
Wake detection LIN
Low level input voltage
LIN pull-up current
Internal Timers
Dominant time for wake-up via
LIN bus
Time of low pulse for wake-up
via pin WAKE
Time delay for mode change
from pre-normal mode to normal
mode via pin EN
Time delay for mode change
from normal mode into sleep
mode via pin EN
TXD dominant time out timer
Power-up delay between
V
high
LIN Bus Driver (see
Bus load conditions: Load1 small 1 nF 1 k , Load2 big 10 nF 500 , R
The following two rows specifies the timing parameters for proper operation at 20.0 Kbit/s.
Slope time falling and rising
edge at LIN
Symmetry of rising and falling
edge
Receiver Electrical AC Parameters of the LIN Physical Layer
LIN receiver, RXD load conditions (C
Propagation delay of receiver
(see
Symmetry of receiver
propagation delay rising edge
minus falling edge
Duty cycle 1
Duty cycle 1
S
= 5V until INH switches to
Figure 6-1 on page
amb
= –40°C to +125°C
Figure 6-1 on page
12)
Test Conditions
I
V
V
V
V
V
V
V
TH
TH
V
t
D1 = t
TH
TH
V
t
D2 = t
Load1/Load2
V
VS = 7.3V
t
t
t
LIN
Bit
Bit
sym
rec_pd
rx_sym
S
LIN
WAKE
EN
EN
TXD
VS
S
S
S
Rec(max)
Dom(max)
Rec(min)
Dom(min)
RXD
< 27V
= 7.0V to 18V
= 50 µs
= 7.0V to 18V
= 50 µs
= 7.3V to 18V
= Typically –3 µA
= t
= 5V
= 0V
= 5V
= 0V
= 0V
bus_rec(min)
bus_rec(max)
= max(t
): 20 pF, R
= t
= 0V
Slope_fall
12)
rx_pdr
= 0.422
= 0.744
= 0.284
= 0.581
rx_pdr
– t
– t
/(2
/(2
pull-up
rx_pdf
Slope_rise
, t
rx_pdf
V
t
V
V
t
Bit
V
Bit
= 5 k
S
S
S
S
)
)
)
Pin
6
6
6
3
2
2
4
6
6
6
RXD
Symbol
t
t
Slope_rise
Slope_fall
t
= 5 k , C
t
V
t
t
rx_sym
t
t
WAKE
t
t
rx_pd
I
norm
sleep
BUS
t
D1
D2
dom
sym
LINL
LIN
VS
RXD
0.396
–27V
Min.
–30
3.5
30
60
–4
–2
= 20 pF;
2
2
6
Typ.
–10
130
90
10
10
9
0.581
Max.
V
22.5
150
200
200
3V
15
12
20
+4
+2
S
6
ATA6661
Unit
ms
µA
µs
µs
µs
µs
µs
µs
µs
µs
µs
V
Type*
A
A
A
A
A
A
A
A
A
A
A
A
A
A
11

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