NCV7361A ON Semiconductor, NCV7361A Datasheet - Page 6

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NCV7361A

Manufacturer Part Number
NCV7361A
Description
Voltage Regulator
Manufacturer
ON Semiconductor
Datasheet

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9. Not production tested, guaranteed by design and qualification.
10. See Figures 2 and 3, Timing Diagrams.
11. See Figures 5, 6, 7, 8, and 9 for test setup.
12. t
13. t
14. See Figure 18.
15. See Timing Diagrams.
16. See Test Circuits for Dynamic and Static Characteristics.
RESET AC CHARACTERISTICS
GENERAL LIN BUS INTERFACE AC CHARACTERISTICS
LIN BUS PARAMETER ACCORDING TO LIN SPEC. REV. 1.3
LIN BUS PARAMETER ACCORDING TO LIN SPEC. REV. 2.0
ELECTRICAL CHARACTERISTICS
ELECTRICAL CHARACTERISTICS
t
Reset Time
Reset Rise Time (Note 9)
BUS Debounce Time (Note 14)
Wake−Up Time
Transmit Propagation Delay
TxD −> BUS (Notes 10 and 11)
Symmetry of Propagation Delay
BUS −> RxD (Note 10)
Receiver Propagation Delay
BUS −> RxD (Notes 10 and 11)
Symmetry of Propagation Delay
TxD −> BUS (Note 10)
Slew Rate BUS Rising Edge (Note 9)
Slew Rate BUS Falling Edge (Note 9)
Slope Time, Transition from Recessive to
Dominant (Notes 11 and 12)
Slope Time, Transition from Dominant to
Recessive (Notes 11 and 13)
Slope Time Symmetry
Slope Time, Transition from Recessive to
Dominant (Notes 11 and 12)
Slope Time, Transition from Dominant to
Recessive (Notes 11 and 13)
Slope Time Symmetry
Minimal Recessive Bit Time (Notes 15 and 16)
Maximum Recessive Bit Time (Notes 15 and 16)
Duty Cycle 1
Duty Cycle 2
Bit
sdom
sdom
= 50 ms, t
= (t
= (t
VBUS40%
VBUS60%
wH
Characteristic
= T
wL
Characteristic
− t
− t
= t
VBUS95%
VBUS5%
Bit
; t
rise
) / 0.55.
) / 0.55.
= t
fall
< 100 ns, −40 C = T
(7.0 V v V
( V
SUP
t
t
t
Wake_BUS
dV/dT
t
Symbol
dsym_TxD
dsym_RxD
dV/dT
deb_BUS
t
t
t
t
= 7.0 V to 18 V; BUS loads: 1.0 k / 1 nF; 660 / 6.8 nF; 500 / 10 nF, T
dr_TxD
dr_RxD
df_TxD
df_RxD
t
t
t
t
t
t
t
sdom
ssym
sdom
ssym
srec
srec
Res
t
rr
SUP
rise
fall
,
v 18 V, −40 C v T
Symbol
t
A
t
rec(max)
http://onsemi.com
rec(min)
= 125 C unless otherwise noted)
D
D
NCV7361A
1
2
C
C
R
R
R
R
R
R
5.25 v V
5.25 v V
20% v V
20% v V
L
L
T
T
L
L
L
L
L
L
= 1.0 nF, R
= 1.0 nF, R
ssym
ssym
6
t
= 500 W/C
= 500 W/C
= 500 W/C
= 500 W/C
= 500 W/C
= 500 W/C
D
t
C
D
dr_RxD
dr_TxD
R
1.0 kW/1.0 nF
660 W/6.8 nF
V
V
V
2
500 W/10 nF
L(RxD)
V
V
V
1
Condition
L
SUP
SUP
SUP
SUP
SUP
SUP
= t
= t
/C
= t
= t
rec(max)
L
Condition
rec(min)
SUP
SUP
BUS
BUS
sdom
sdom
− t
= 8.0 V
= 8.0 V
= 8.0 V
− t
A
at BUS
= 18 V
= 18 V
= 18 V
= 50 pF
v 125 C unless otherwise noted)
df_TxD
df_RxD
L
L
L
L
L
L
L
L
v 18 V
v 18 V
v 80%
v 80%
= 1.0 kW
= 1.0 kW
= 10 nF
= 10 nF
= 10 nF
− t
= 10 nF
= 10 nF
= 10 nF
− t
/ (2 * t
/ (2 * t
srec
srec
Bit
Bit
)
)
−2.0
−2.0
−2.5
−7.0
−5.0
Min
3.0
1.5
1.0
0.396
70
25
Min
40
40
−1.7
Typ
100
7.5
2.8
1.7
60
Typ
50
50
xD
Signal:
Max
−1.0
140
120
4.0
4.0
2.0
6.0
2.0
2.5
1.0
5.0
15
12
12
18
18
0.581
Max
58
58
V/ms
V/ms
Unit
ms
ms
ms
ms
ms
ms
ms
ms
ms
ms
ms
ms
ms
ms
Unit
ms
ms

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