CAT5259UI-00-TE13

Manufacturer Part NumberCAT5259UI-00-TE13
ManufacturerON Semiconductor
CAT5259UI-00-TE13 datasheets

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Specifications of CAT5259UI-00-TE13

Number Of Elements4# Of Taps256
Resistance (max)100KOhmPower Supply RequirementSingle
Interface TypeSerial (2-Wire/I2C)Single Supply Voltage (typ)3.3/5V
Dual Supply Voltage (typ)Not RequiredVSingle Supply Voltage (min)2.5V
Single Supply Voltage (max)6VDual Supply Voltage (min)Not RequiredV
Dual Supply Voltage (max)Not RequiredVOperating Temp Range-40C to 85C
Operating Temperature ClassificationIndustrialMountingSurface Mount
Pin Count24Lead Free Status / Rohs StatusNot Compliant
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Table 2. ABSOLUTE MAXIMUM RATINGS
Parameters
Temperature Under Bias
Storage Temperature
Voltage on Any Pin with Respect to V
SS
V
with Respect to Ground
CC
Package Power Dissipation Capability (T
Lead Soldering Temperature (10 s)
Wiper Current
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the
Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect
device reliability.
1. The minimum DC input voltage is –0.5 V. During transitions, inputs may undershoot to –2.0 V for periods of less than 20 ns. Maximum DC
voltage on output pins is V
+0.5 V, which may overshoot to V
CC
2. Latch−up protection is provided for stresses up to 100 mA on address and data pins from –1 V to V
Table 3. RECOMMENDED OPERATING CONDITIONS
Parameters
V
CC
Industrial Temperature
Table 4. POTENTIOMETER CHARACTERISTICS
Symbol
Parameter
R
Potentiometer Resistance (100 kW)
POT
R
Potentiometer Resistance (50 kW)
POT
Potentiometer Resistance Tolerance
R
Matching
POT
Power Rating
I
Wiper Current
W
R
Wiper Resistance
W
R
Wiper Resistance
W
V
Voltage on any R
or R
TERM
H
L
V
Noise
N
Resolution
Absolute Linearity (Note 4)
Relative Linearity (Note 5)
TC
Temperature Coefficient of R
RPOT
TC
Ratiometric Temp. Coefficient
RATIO
C
/C
/C
Potentiometer Capacitances
H
L
W
fc
Frequency Response
3. This parameter is tested initially and after a design or process change that affects the parameter.
4. Absolute linearity is utilized to determine actual wiper voltage versus expected voltage as determined by wiper position when used as a
potentiometer.
5. Relative linearity is utilized to determine the actual change in voltage between two successive tap positions when used as a potentiometer.
It is a measure of the error in step size.
6. LSB = R
/ 255 or (R
− R
) / 255, single pot
TOT
H
L
7. n = 0, 1, 2, ..., 255
(Notes 1, 2)
= 25°C)
A
+2.0 V for periods of less than 20 ns.
CC
(Over recommended operating conditions unless otherwise stated.)
Test Conditions
25°C, each pot
I
= ±3 mA @ V
= 3 V
W
CC
I
= ±3 mA @ V
= 5 V
W
CC
Pin
V
= 0 V
SS
(Note 3)
R
−R
W(n)(actual)
(n)(expected)
(Note 7)
R
−[R
]
W(n+1)
W(n)+LSB
(Note 7)
(Note 3)
POT
(Note 3)
(Note 3)
R
= 50 kW (Note 3)
POT
http://onsemi.com
4
Ratings
Units
−55 to +125
°C
−65 to +150
°C
−2.0 to +V
+ 2.0
V
CC
−2.0 to +7.0
V
1.0
W
300
°C
±6
mA
+1 V.
CC
Ratings
Units
+2.5 to +6
V
−40 to +85
°C
Limits
Min
Typ
Max
Units
100
kW
50
kW
±20
%
1
%
50
mW
+3
mA
200
300
W
100
150
W
V
V
V
SS
CC
nV√Hz
0.4
%
±1
LSB
(Note 6)
±0.2
LSB
(Note 6)
±300
ppm/°C
20
ppm/°C
10/10/25
pF
0.4
MHz