CAT5251YI-50-TE13 ON Semiconductor, CAT5251YI-50-TE13 Datasheet - Page 5

CAT5251YI-50-TE13

Manufacturer Part Number
CAT5251YI-50-TE13
Description
Manufacturer
ON Semiconductor
Datasheet

Specifications of CAT5251YI-50-TE13

Number Of Elements
4
# Of Taps
256
Resistance (max)
50KOhm
Power Supply Requirement
Single
Interface Type
Serial (SPI)
Single Supply Voltage (typ)
3.3/5V
Dual Supply Voltage (typ)
Not RequiredV
Single Supply Voltage (min)
2.5V
Single Supply Voltage (max)
6V
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
24
Lead Free Status / Rohs Status
Compliant
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
5. Relative linearity is utilized to determine the actual change in voltage between two successive tap positions when used as a potentiometer.
6. LSB = R
7. n = 0, 1, 2, ..., 255.
Table 3. RECOMMENDED OPERATING CONDITIONS
Table 4. POTENTIOMETER CHARACTERISTICS
Table 5. D.C. OPERATING CHARACTERISTICS
C
V
Operating Ambient Temperature (Industrial)
Symbol
TC
Symbol
TC
potentiometer.
It is a measure of the error in step size.
H
CC
V
V
V
R
R
I
I
/C
V
TERM
CC1
CC2
I
I
V
R
OH1
V
I
OL1
I
RATIO
SB
LO
POT
POT
RPOT
fc
LI
W
IH
IL
W
N
L
/C
W
TOT
Potentiometer Resistance (−00)
Potentiometer Resistance (−50)
Potentiometer Resistance Tolerance
R
Power Rating
Wiper Current
Wiper Resistance
Voltage on any R
Noise
Resolution
Absolute Linearity (Note 4)
Relative Linearity (Note 5)
Temperature Coefficient of R
Ratiometric Temp. Coefficient
Potentiometer Capacitances
Frequency Response
Power Supply Current
Power Supply Current
Non−volatile Write
Standby Current (V
Input Leakage Current
Output Leakage Current
Input Low Voltage
Input High Voltage
Output Low Voltage (V
Output High Voltage (V
/ 255 or (R
POT
Matching
H
Parameter
− R
Parameter
L
H
) / 255, single pot
or R
CC
= 5.0 V)
CC
CC
L
Parameter
Pin
= 3 V)
= 6 V)
POT
f
V
f
V
V
V
V
I
I
SCK
SCK
OL
OH
CC
CC
IN
IN
OUT
(Over recommended operating conditions unless otherwise stated.)
= 3 mA
http://onsemi.com
= GND or V
= GND to V
= −1.6 mA
(Over recommended operating conditions unless otherwise stated.)
= 6 V Inputs = GND
= 6 V Inputs = GND
= 2.5 MHz, SO Open
= 2.5 MHz, SO = Open
= GND to V
Test Conditions
R
I
I
W
W
W(n)(actual)
R
R
POT
= ±3 mA @ V
= ±3 mA @ V
W(n+1)
Test Conditions
5
25°C, each pot
CC
CC
= 50 kW (Note 3)
V
CC
(Note 3)
(Note 7)
(Note 7)
(Note 3)
(Note 3)
(Note 3)
; SO Open
SS
− [R
− R
= 0 V
W(n)+LSB
(n)(expected)
CC
CC
= 3 V
= 5 V
]
V
V
CC
CC
Min
GND
−1
Min
x 0.7
− 0.8
+2.5 V to +6
−40 to +85
Ratings
10/10/25
Typ
±300
Typ
100
200
100
0.4
0.4
50
V
V
CC
CC
Max
0.4
10
10
1
5
1
Max
±0.5
V
±20
300
150
x 0.3
+ 1.0
50
±3
±1
20
1
CC
Units
°C
(Note 6)
(Note 6)
V
nV/√Hz
ppm/°C
ppm/°C
Units
Units
MHz
LSB
LSB
mW
mA
kW
kW
mA
mA
pF
mA
mA
mA
%
%
%
W
W
V
V
V
V
V

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