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CS5466-ISZ View Datasheet(PDF) - Cirrus Logic

Part Name
Description
MFG CO.
CS5466-ISZ Datasheet PDF : 16 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
CS5466
ANALOG CHARACTERISTICS (Continued)
Parameter
Symbol Min
Typ
Power Supplies
Power Supply Currents
IA+
-
ID+ (VA+ = VD+ = 5 V)
-
ID+ (VA+ = 5 V, VD+ = 3.3 V)
-
-
1.3
-
2.9
-
1.7
Power Consumption
(Note 3)
(VA+ = VD+ = 5 V)
-
(VA+ = 5 V, VD+ = 3.3 V)
-
-
21
-
11.6
Power Supply Rejection Ratio
(50, 60 Hz)
-
(Note 4)
Voltage Channel (Gain = 10) PSRR
45
55
Current Channel (All Gains)
56
75
Max Unit
-
mA
-
mA
-
mA
25
mW
-
mW
-
-
dB
-
dB
Notes: 3. All outputs unloaded. All inputs CMOS level.
4. Definition for PSRR: VREFIN tied to VREFOUT, VA+ = VD+ = 5 V, a 150 mV zero-to-peak sine wave (frequency =
60 Hz) is imposed onto the +5 V supply voltage at VA+ and VD+ pins. The “+” and “-” input pins of both input
channels are shorted to VA-. Then the CS5466 is put into an internal test mode and digital output data is collected
for the channel under test. The zero-peak value of the digital sinusoidal output signal is determined, and this value
is converted into the zero-peak value of the sinusoidal voltage that would need to be applied at the channel’s inputs,
in order to cause the same digital sinusoidal output. This voltage is then defined as Veq. PSRR is then (in dB):
PSRR
=
20
log
0----.-1---5---0---V---
Veq
VOLTAGE REFERENCE
Parameter
Reference Output
Output Voltage
VREFOUT Temperature Coefficient
Load Regulation
Reference Input
Input Voltage Range
Input Capacitance
Input CVF Current
Symbol
(Note 5)
(Note 6)
REFOUT
TCVREF
VR
VREFIN
-
-
Min
+2.4
-
-
-
-
-
Typ
+2.5
25
6
+2.5
4
70
Max
Unit
+2.6
60
10
V
ppm/°C
mV
-
V
-
pF
-
nA
Notes: 5. The voltage at VREFOUT is measured across the temperature range. From these measurements the following
formula is used to calculate the VREFOUT Temperature Coefficient:.
( ( ( TCVREF =
(VREFOUTMAX - VREFOUTMIN)
VREFOUTAVG
1
TAMAX - TAMIN
1.0 x 10 6
6. Specified at maximum recommended output current of 1 µA, source or sink.
6
DS659F1

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