CDB6420 Cirrus Logic Inc, CDB6420 Datasheet - Page 20

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CDB6420

Manufacturer Part Number
CDB6420
Description
Development Kit
Manufacturer
Cirrus Logic Inc
Datasheet

Specifications of CDB6420

Silicon Manufacturer
Cirrus Logic
Application Sub Type
Speakerphone
Kit Application Type
Audio / Video / TV
Silicon Core Number
CS6420
Kit Contents
Board
Kit Features
Analog And Digital Patch Area
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
placed between these two pins and loaded with
22 pF capacitors will allow the on-chip oscillator to
provide this system clock. Alternatively, the CLKI
pin may be driven by a CMOS level clock signal.
The clock may vary from 20.480 MHz by up to
10%, however, this will change the sampling rate
of the converters and echo canceller, which will af-
fect the bandwidth of the analog signals and the du-
ration of echo that the echo canceller can
accommodate. CLKO is not connected when CLKI
is driven by the CMOS signal.
Power Supply
The pins AVDD (pin 1) and AGND (pin 2) power
the analog sections of the CS6420, and DVDD (pin
16) and DGND (pin 15) power the digital sections.
This distinction is important because internal to the
part, the digital power supply is likely to contain
high-frequency energy. The analog power supply is
kept clean internally by drawing current from a dif-
20
Analog
Supply
+5V
AVDD
AGND
Figure 6. Suggested Layout
DVDD
DGND
ferent pin, thereby achieving high performance in
the converters.
The digital supply of the CS6420 should not be
connected to the system digital supply, if there is
one, as the CS6420 has internal timing mechanisms
designed to minimize the detrimental effects of its
own digital noise, but cannot use these to compen-
sate for externally introduced digital noise. The
CS6420 digital power supply should be derived
from its analog power supply through a ferrite bead
with low (< 1 ) DC impedance.
Power Down Mode
Typical power consumption of the CS6420 is 60
mA, assuming normal operating conditions. This
current consumption can be further reduced by in-
voking the powerdown mode, which is entered by
holding RST low. Holding RST low will power
down all the internal blocks of the CS6420 and stop
the oscillator. In powerdown mode, current con-
sumption drops to less than 1 mA.
MB
From
Ferrite
Bead
CS6420
DS205PP2

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