6
ELECTRICAL CHARACTERISTICS
(Characteristics noted under conditions 6.0 V
≤
V
D
= V
CC
≤
16 V,
–40
°
C
≤
T
A
≤
125
°
C, unless otherwise noted. Typical values are specified for T
A
= 25
°
C.)
Characteristic
Symbol
Min
Typ
Max
Unit
STALL CAPACITOR
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in(–)
CA =
CR
CS
ST
Run Mode, Stall Control, Discharge Current (V
= 14 V,
V
in(–)
= 10 V, V
CA
= 2.0 V, V
CR
= Open, V
CS
= 1.0 V,
Stall Control Saturation Voltage (V
= 14 V, V
= 0 V,
V
CA
= V
CR
= V
CS
= Open, V
ST
= 0 V) (Note 2)
V
CA
= V
CR
= Open, V
CS
= 1.0 V, V
ST
= 10 V)
Run Mode, Stalled, Stall Control, Discharge Current (V
= 14 V,
I
7.5
9.69
13.2
μ
A
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I
0.76
1.02
1.26
A
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NOTES:
1.Ramp V
from 1.5 to 2.5 V in 20 mV steps. Record V
CS
when I
CS
goes negative.
2.Set V
ST
= 10 V, V
= 1.0 V, Fail if output is on.
Set V
CS
= 3.0 V, Fail if output is off.
V
20
35.3
165
mV
ELECTRICAL CHARACTERISTICS
(Characteristics noted under conditions 6.0 V
≤
V
D
= V
CC
≤
16 V,
–40
°
C
≤
T
A
≤
125
°
C, unless otherwise noted. Typical values are specified for T
A
= 25
°
C.)
Characteristic
Symbol
Min
Typ
Max
Unit
RAMP CAPACITOR
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V
= 2.0 V, V
= 3.0 V, V
= 6.0 V) (Note 2)
Ramp Control Current Ratio (V
= 14 V, V
= 0 V,
CR
22
24.3
28
%
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NOTES:
1.Set V
CA
to 0.5 V, then open V
CA
. Set V
CR
to 0.9 V. Percent ratio of CR Up Current as compared to the CR Down Current;
(I
/(I
CR1
– I
) x 100).
2.Open V
, Force V
CR
= 1.3 V. Ramp V
CR
down in 3.0 mV steps until I
CR
goes negative, V
CR1
. Ramp V
CR
up in 3.0 mV steps, toggle input
between steps, until I
CR
goes positive, V
CR2
. V
CR(hys)
= V
CR2
– V
CR1
.
ELECTRICAL CHARACTERISTICS
(Characteristics noted under conditions 6.0 V
≤
V
D
= V
CC
≤
16 V,
–40
°
C
≤
T
A
≤
125
°
C, unless otherwise noted. Typical values are specified for T
A
= 25
°
C.)
Characteristic
Symbol
Min
Typ
Max
Unit
TIMING
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V
CA
= V
CS
= Open, V
CR
= 3.0 V, V
ST
= 0 V) (Note 2)
Start Delay, Positive Edge
CA4
CA1
CA2
CC
1
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t
sdp
1.15
1.46
1.71
ms
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sdn
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NOTES:
1.Measure time until V
> 0.2 V. The Negative Edge Filter prevents multiple output sparks caused by switching transients present at the input by
disabling the once used input for the filter time t.
2.Propagation delay time measurement of input to output response; Step change V
in(–)
from 0 to 10 V. Measure the time required for
V
O
< 1.5 V.
3.t
sdp
= (V
CA1
– V
CA2
) x CA/I
CA4
; CA = 0.1
μ
F.
4.t
sdn
= [(V
CA1
– V
CA2
) x CA/I
CA5
] + t
; CA = 0.1
μ
F.
5.t
sod
= (V
CS1
– V
CS2
) x CS/I
CS1
; CS = 0.1
μ
F.
6.t
ssd
= (V
CS1
– V
CS2
) x CS/I
CS3
; CS = 0.1
μ
F.
7.t
sst
= (V
– V
CS2
) x CS/I
CS2
; CS = 0.1
μ
F.
8.f
ss
= 1/[(5.4/V
) + (4.3/I
) + (2/I
CS2
)] x CS; CS = 0.1
μ
F.
9.t
bit
= [(V
CS
– 0.7 V)/I
CS1
] x CS; CS 0.1
F.
For More Information On This Product,
Go to: www.freescale.com
(Data from tests I
CS3
, V
CS1
, V
CS2
) (Note 6)
F
Freescale Semiconductor, Inc.
n
.