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ISL22512WFB8Z Fiches technique(PDF) 4 Page - Intersil Corporation

No de pièce ISL22512WFB8Z
Description  Single Push Button Controlled Potentiometer XDCP
Download  11 Pages
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Fabricant  INTERSIL [Intersil Corporation]
Site Internet  http://www.intersil.com/cda/home
Logo INTERSIL - Intersil Corporation

ISL22512WFB8Z Fiches technique(HTML) 4 Page - Intersil Corporation

  ISL22512WFB8Z Datasheet HTML 1Page - Intersil Corporation ISL22512WFB8Z Datasheet HTML 2Page - Intersil Corporation ISL22512WFB8Z Datasheet HTML 3Page - Intersil Corporation ISL22512WFB8Z Datasheet HTML 4Page - Intersil Corporation ISL22512WFB8Z Datasheet HTML 5Page - Intersil Corporation ISL22512WFB8Z Datasheet HTML 6Page - Intersil Corporation ISL22512WFB8Z Datasheet HTML 7Page - Intersil Corporation ISL22512WFB8Z Datasheet HTML 8Page - Intersil Corporation ISL22512WFB8Z Datasheet HTML 9Page - Intersil Corporation Next Button
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4
FN6679.0
March 24, 2008
Roffset
(Note 13)
Offset
W option
0
1
2
MI
(Note 12)
U option
0
0.5
1
MI
(Note 12)
Potentiometer Specifications Over recommended operating conditions, unless otherwise specified. (Continued)
SYMBOL
PARAMETER
TEST CONDITIONS
MIN
(Note 18)
TYP
(Note 5)
MAX
(Note 18)
UNIT
DC Electrical Specifications
Over recommended operating conditions unless otherwise specified.
SYMBOL
PARAMETER
TEST CONDITIONS
MIN
(Note 18)
TYP
(Note 5)
MAX
(Note 18)
UNIT
ICC
VCC Active Current
VCC = 5.5V, perform wiper move
operation
150
µA
ICC
VCC Current During Store Operation
VCC = 5.5V, perform non-volatile
store operation
2mA
ISB
Standby Current
0.6
3
µA
ILkg
PU, PD Input Leakage Current
VIN = VSS to VCC
-2
+2
µA
VIH
PU, PD Input HIGH Voltage
VCC x 0.7
V
VIL
PU, PD input LOW Voltage
VCC x 0.1
V
CIN
(Note 17)
PU, PD Input Capacitance
VCC = 3.3V, TA = +25°C, f = 1MHz
10
pF
Rpull_up
(Note 17)
Pull-Up Resistor for PU and PD
1M
Ω
AC Electrical Specifications
Over recommended operating conditions unless otherwise specified.
SYMBOL
PARAMETER
MIN
(Note 18)
TYP
(Note 5)
MAX
(Note 18)
UNIT
tGAP
Time Between Two Separate Push Button Events
2
ms
tDB
Debounce Time
15
28
ms
tS SLOW
Wiper Change on a Slow Mode
100
250
390
ms
tS FAST
Wiper Change on a Fast Mode
25
50
78
ms
tstdn
(Note 17)
Time to Enter Shutdown Mode (keep PU and PD LOW)
2
s
tPU
Power-Up to Wiper Stable
500
µs
tR VCC
VCC Power-Up Rate
0.2
50
V/ms
NOTES:
5. Typical values are for TA = +25°C and 3.3V supply voltage.
6. LSB: [V(RW)15 – V(RW)0]/15. V(RW)31 and V(RW)0 are voltage on RW pin for the DCP register set to 0F hex and 00 hex respectively. LSB is
the incremental voltage when changing from one tap to an adjacent tap.
7. ZS error = V(RW)0/LSB.
8. FS error = [V(RW)31 – VCC]/LSB.
9. DNL = [V(RW)i – V(RW)i-1]/LSB -1, for i = 1 to 15; i is the DCP register setting.
10. INL = [V(RW)i – i • LSB – V(RW)]/LSB for i = 1 to 15
11.
for i = 5 to 15 decimal, T = -40°C to +125°C. Max( ) is the maximum value of the wiper
voltage and Min ( ) is the minimum value of the wiper voltage over the temperature range.
12. MI =
|RW
15 – RW0|/15. MI is a minimum increment. RW15 and RW0 are the measured resistances for the DCP register set to 1F hex and 00
hex respectively.
13. Roffset = RW0/MI, when measuring between RW and RL.
Roffset = RW15/MI, when measuring between RW and RH.
14. RDNL = (RWi – RWi-1)/MI, for i = 1 to 15.
15. RINL = [RWi – (MI • i) – RW0]/MI, for i = 1 to 15.
16.
for i = 5 to 15, T = -40°C to +125°C. Max( ) is the maximum value of the resistance and Min ( ) is the
minimum value of the resistance over the temperature range.
17. Limits should be considered typical and are not production tested.
18. Parts are 100% tested at +25°C. Temperature limits established by characterization and are not production tested.
TC
V
Max V RW
()
i
() Min V RW
()
i
()
Max V RW
()
i
() Min V RW
()
i
()
+
[] 2
----------------------------------------------------------------------------------------------
106
+165°C
---------------------
×
=
TC
R
Max Ri
() Min Ri
()
[]
Max Ri
() Min Ri
()
+
[] 2
----------------------------------------------------------------
10
6
+165°C
---------------------
×
=
ISL22512


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