X9521V20I-A Intersil, X9521V20I-A Datasheet - Page 20

IC DCP DUAL EEPROM MEM 20-TSSOP

X9521V20I-A

Manufacturer Part Number
X9521V20I-A
Description
IC DCP DUAL EEPROM MEM 20-TSSOP
Manufacturer
Intersil
Type
Laser Diode Controller (Fiber Optic)r
Datasheet

Specifications of X9521V20I-A

Number Of Channels
2
Voltage - Supply
2.7 V ~ 5.5 V
Current - Supply
1.5mA
Operating Temperature
-40°C ~ 85°C
Package / Case
20-TSSOP
Mounting Type
Surface Mount
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
X9521V20I-AIS
POTENTIOMETER CHARACTERISTICS
Notes: 1. Power Rating between the wiper terminal R
Notes: 2.Absolute Linearity is utilized to determine actual wiper resistance versus, expected resistance = (R
Notes: 3.Relative Linearity is a measure of the error in step size between taps = R
Notes: 4.1 Ml = Minimum Increment = R
Notes: 5.Typical values are for T
Notes: 6.This parameter is periodically sampled and not 100% tested.
R
V
V
P
R
I
C
W
t
V
t
wcr
PU
Symbol
RHx
RLx
R
TOL
W
H
TRIP
/C
L
/C
W
Ml Maximum (x = 1,2).
End to End Resistance Tolerance
R
R
Power Rating
DCP Wiper Resistance
Wiper Current (6)
Noise
Absolute Linearity
Relative Linearity
R
Potentiometer Capacitances
Wiper Response time (6)
Vcc power-up DCP recall delay time (6)
Vcc power-up DCP recall threshold
H
L
TOTAL
Terminal Voltage (x = 1,2)
Terminal Voltage (x = 1,2)
Temperature Coefficient
A
20
Parameter
= 25°C and nominal supply voltage.
(1)
(6)
(3)
(2)
TOT
/ (Number of taps in DCP - 1).
WX(n)
and the end terminals R
Min.
Vss
Vss
-20
25
-1
-1
X9521
10/10/25
±300
±300
Typ.
200
400
50
Wx(n + 1)
Limits
HX
or R
Max.
1200
V
V
+20
- [R
400
200
LX
4.4
10
+1
+1
75
CC
CC
5
- for ANY tap position n, (x = 1,2).
wx(n)
+ Ml] = ±1 Ml (x = 0,1,2)
ppm/°C
ppm/°C
sqt(Hz)
sqt(Hz)
Units
MI
MI
mW
mW
mV/
mV/
mA
ms
pF
μs
%
Ω
Ω
V
V
V
(4)
(4)
wx(n)
R
R
I
V
(x = 1,2).
I
V
(x = 1,2)
R
R
R
R
R
R
See Figure 21.
See Figure 25.
W
W
RHx
RHx
TOTAL
TOTAL
TOTAL
TOTAL
w(n)(actual)
w(n + 1)
TOTAL
TOTAL
Test Conditions/Notes
= 1mA, V
= 1mA, V
(actual) - R
= Vcc, V
= Vcc, V
= 10kΩ (DCP1)
= 100kΩ (DCP2)
= 10kΩ ( DCP1)
= 100kΩ (DCP2)
= 10kΩ (DCP1)
= 100kΩ (DCP2)
- [R
CC
CC
- R
w(n) + MI
wx(n)
RLx
RLx
= 5 V,
= 2.7 V,
w(n)(expected)
(expected)) = ±1
September 21, 2010
= Vss
= Vss
]
FN8207.2

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