X9521V20I Intersil, X9521V20I Datasheet - Page 20

IC LASR CTRLR 2CHAN 5.5V 20TSSOP

X9521V20I

Manufacturer Part Number
X9521V20I
Description
IC LASR CTRLR 2CHAN 5.5V 20TSSOP
Manufacturer
Intersil
Type
Laser Diode Controller (Fiber Optic)r
Datasheet

Specifications of X9521V20I

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-A
X9521V20I-A
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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