參數資料
型號: X9C503S
元件分類: 數字電位計
英文描述: E2POT⑩ Nonvolatile Digital Potentiometer
中文描述: E2POT⑩非易失數字電位器
文件頁數: 4/15頁
文件大小: 83K
代理商: X9C503S
X9C102/103/104/503
4
ABSOLUTE MAXIMUM RATINGS*
Temperature under Bias .................. –65
°
C to +135
°
C
Storage Temperature ....................... –65
°
C to +150
°
C
Voltage on
CS
,
INC
, U/
D
and V
CC
with Respect to V
SS...............................
–1V to +7V
Voltage on V
H
and V
L
Referenced to V
SS.................................
–8V to +8V
V = |V
H
–V
L
|
X9C102.............................................................4V
X9C103, X9C503, and X9C104......................10V
Lead Temperature (Soldering, 10 seconds).... +300
°
C
Wiper Current.....................................................
±
1mA
*COMMENT
Stresses above those listed under “Absolute Maximum
Ratings” may cause permanent damage to the device.
This is a stress rating only and the functional operation
of the device at these or any other conditions above
those listed in the operational sections of this specifica-
tion is not implied. Exposure to absolute maximum
rating conditions for extended periods may affect device
reliability.
ANALOG CHARACTERISTICS
Electrical Characteristics
End-to-End Resistance Tolerance .....................
±
20%
Power Rating at 25
°
C
X9C102.......................................................16mW
X9C103, X9C503, and X9C104..................10mW
Wiper Current............................................
±
1mA Max.
Typical Wiper Resistance......................... 40
at 1mA
Typical Noise..........................< –120dB/
Hz Ref: 1V
Resolution
Resistance ............................................................. 1%
Linearity
Absolute Linearity
(1)........................................
±
1.0 Ml
(2)
Relative Linearity
(3)
.....................................
±
0.2 Ml
(2)
Temperature Coefficient
(–40
°
C to +85
°
C)
X9C102 ......................................+600 ppm/
°
C Typical
X9C103, X9C503, X9C104 ........+300 ppm/
°
C Typical
Ratiometric Temperature Coefficient ............
±
20 ppm
Wiper Adjustability
Unlimited Wiper Adjustment (Non-Store operation)
Wiper Position Store Operations ...................10,000
Data Changes
Physical Characteristics
Marking Includes
Manufacturer‘s Trademark
Resistance Value or Code
Date Code
Test Circuit #2
Test Circuit #1
3863 FHD F04
3863 FHD F05
FORCE
CURRENT
VL
VW
VH
TEST POINT
TEST POINT
VW
VH
VL
Notes:
(1) Absolute Linearity is utilized to determine actual wiper voltage versus expected voltage
= (V
w(n)
(actual) – V
w(n)
(expected)) =
±
1 Ml Maximum.
(2) 1 Ml = Minimum Increment = R
TOT
/99.
(3) Relative Linearity is a measure of the error in step size between taps = V
W(n+1)
– [V
w(n)
+ Ml] = +0.2 Ml.
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