X9C503 Xicor, X9C503 Datasheet

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X9C503

Manufacturer Part Number
X9C503
Description
E2POT Nonvolatile Digital Potentiometer
Manufacturer
Xicor
Datasheet

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X9C102/103/104/503
Terminal Voltage 5V, 100 Taps
FEATURES
FUNCTIONAL DIAGRAM
E
©Xicor, Inc. 1994, 1995 Patents Pending
3863-2.4 9/18/96 T2/C0/D0 SH
AN42 • AN44–48 • AN50 • AN52 • AN53 • AN71 • AN73
2
POT
Compatible with X9102/103/104/503
Low Power CMOS
—V
—Active Current, 3mA Max
—Standby Current, 500 A Max
99 Resistive Elements
—Temperature Compensated
— 20% End to End Resistance Range
100 Wiper Tap Points
—Wiper Positioned via Three-Wire Interface
—Similar to TTL Up/Down Counter
—Wiper Position Stored in Nonvolatile
Memory and Recalled on Power-Up
100 Year Wiper Position Data Retention
X9C102 = 1K
X9C103 = 10K
X9C503 = 50K
X9C104 = 100K
is a trademark of Xicor, Inc.
CC
= 5V
A V A I L A B L E
GND
V CC
A
U/D
INC
CS
PPLICATION
E
N
2
NONVOLATILE
OTES
POT
STORE AND
CIRCUITRY
COUNTER
UP/DOWN
CONTROL
MEMORY
RECALL
7-BIT
7-BIT
X9C102/103/104/503
Nonvolatile Digital Potentiometer
HUNDRED
DECODER
ONE-
ONE
OF
1
99
98
97
96
DESCRIPTION
The Xicor X9C102/103/104/503 is a solid state nonvola-
tile potentiometer and is ideal for digitally controlled
resistance trimming.
The X9C102/103/104/503 is a resistor array composed of
99 resistive elements. Between each element and at
either end are tap points accessible to the wiper element.
The position of the wiper element is controlled by the CS,
U/D, and INC inputs. The position of the wiper can be
stored in nonvolatile memory and then be recalled upon a
subsequent power-up operation.
The resolution of the X9C102/103/104/503 is equal to
the maximum resistance value divided by 99. As an
example, for the X9C503 (50K ) each tap point repre-
sents 505 .
All Xicor nonvolatile memories are designed and tested
for applications requiring extended endurance and data
retention.
2
1
0
TRANSFER
GATES
RESISTOR
ARRAY
Characteristics subject to change without notice
V H
V L
V W
3863 FHD F01

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X9C503 Summary of contents

Page 1

... The resolution of the X9C102/103/104/503 is equal to the maximum resistance value divided by 99 example, for the X9C503 (50K ) each tap point repre- sents 505 . All Xicor nonvolatile memories are designed and tested for applications requiring extended endurance and data retention ...

Page 2

X9C102/103/104/503 PIN DESCRIPTIONS V and The high (V ) and low (V ) terminals of the X9C102/103 104/503 are equivalent to the fixed terminals of a mechanical potentiometer. The minimum voltage is –5V and the ...

Page 3

X9C102/103/104/503 DEVICE OPERATION There are three sections of the X9C102/103/104/503: the input control, counter and decode section; the non- volatile memory; and the resistor array. The input control section operates just like an up/down counter. The output of this counter ...

Page 4

... Temperature Coefficient (– +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 Physical Characteristics ...

Page 5

... VL Terminal Voltage L CS, INC, U/D Input IN (5) C Capacitance STANDARD PARTS Part Number Maximum Resistance X9C102 X9C103 X9C503 X9C104 Notes: (4) Typical values are for and nominal supply voltage. A (5) This parameter is periodically sampled and not 100% tested. Max. Supply Voltage +70 C X9C102/103/104/503 +85 C +125 C 3863 PGM T03 ...

Page 6

X9C102/103/104/503 A.C. CONDITIONS OF TEST Input Pulse Levels Input Rise and Fall Times Input Reference Levels A.C. OPERATING CHARACTERISTICS (Over recommended operating conditions unless otherwise specified) Symbol Parameter CS to INC Setup t Cl INC HIGH to U/D Change t ...

Page 7

X9C102/103/104/503 Typical Frequency Response for X9C102 –3 –6 –9 –12 –15 –18 –21 0.01 0.10 1.00 FREQUENCY IN KHz Typical Total Harmonic Distortion for X9C102 2.0 1.8 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0.0 ...

Page 8

X9C102/103/104/503 Typical Linearity for X9C102 –2 –4 –6 –8 – WIPER POSITION Typical Frequency Response for X9C103 –3 –6 –9 –12 –15 –18 –21 0.01 0.10 ...

Page 9

X9C102/103/104/503 Typical Total Harmonic Distortion for X9C103 2.0 1.8 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0.0 0.01 0.10 1.00 FREQUENCY IN KHz Typical Linearity for X9C103 –2 –4 –6 –8 –10 0 ...

Page 10

... X9C102/103/104/503 Typical Frequency Response for X9C503 -12 -15 -18 -21 0.01 0.10 1.00 FREQUENCY IN KHz Typical Total Harmonic Distortion for X9C503 9 1.8 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0.0 0.01 0.10 FREQUENCY IN KHz 10.00 100.00 1000.00 1.00 10.00 100.00 1000.00 10 TEST CONDITIONS Temp Wiper @ Tap 0.5V H RMS Normalized (0dB @ 1 KHz) Test Circuit #1 3863 FHD F12 ...

Page 11

... X9C102/103/104/503 Typical Linearity for X9C503 - Typical Frequency Response for X9C104 -12 -15 -18 -21 0.01 0.10 FREQUENCY IN KHz 100 WIPER POSITION 1.00 10.00 100.00 1000.00 11 TEST CONDITIONS Temp Test Circuit #2 KEY: = ABSOLUTE = RELATIVE 0039– ...

Page 12

X9C102/103/104/503 Typical Total Harmonic Distortion for X9C104 2.0 1.8 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0.0 0.01 0.10 1.00 FREQUENCY IN KHz Typical Linearity for X9C104 -10 0 ...

Page 13

X9C102/103/104/503 PACKAGING INFORMATION 8-LEAD PLASTIC DUAL IN-LINE PACKAGE TYPE P HALF SHOULDER WIDTH ON ALL END PINS OPTIONAL 0.015 (0.38) MAX. NOTE: ALL DIMENSIONS IN INCHES (IN PARENTHESES IN MILLIMETERS) NOTE: ALL DIMENSIONS IN INCHES (IN PARENTHESES IN MILLIMETERS) 0.430 ...

Page 14

X9C102/103/104/503 PACKAGING INFORMATION 8-LEAD PLASTIC SMALL OUTLINE GULL WING PACKAGE TYPE S PIN 1 INDEX 0.050 (1.27) 0 – 8 NOTE: ALL DIMENSIONS IN INCHES (IN PARENTHESIS IN MILLIMETERS) PIN 1 0.014 (0.35) 0.019 (0.49) 0.188 (4.78) 0.197 (5.00) (4X) ...

Page 15

... LIMITED WARRANTY Devices sold by Xicor, Inc. are covered by the warranty and patent indemnification provisions appearing in its Terms of Sale only. Xicor, Inc. makes no warranty, express, statutory, implied description regarding the information set forth herein or regarding the freedom of the described devices from patent infringement. ...

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