AD1954YSRL Analog Devices Inc, AD1954YSRL Datasheet - Page 32

IC DSP DAC AUDIO3CH/26BIT 44MQFP

AD1954YSRL

Manufacturer Part Number
AD1954YSRL
Description
IC DSP DAC AUDIO3CH/26BIT 44MQFP
Manufacturer
Analog Devices Inc
Series
SigmaDSP®r
Datasheet

Specifications of AD1954YSRL

Rohs Status
RoHS non-compliant
Number Of Bits
26
Data Interface
Serial
Number Of Converters
3
Voltage Supply Source
Analog and Digital
Power Dissipation (max)
510mW
Operating Temperature
-40°C ~ 105°C
Mounting Type
Surface Mount
Package / Case
44-MQFP, 44-PQFP
Settling Time
-
APPENDIX
Cookbook Formulae for Audio EQ Biquad Coefficients
(Adapted from Robert Bristow-Johnson’s Internet Posting)
For designing a parametric EQ, follow the steps below.
1. Given:
2. Compute intermediate variables:
AD1954
A = 10
Frequency
Q
dB_Gain
Sample_Rate
 = 2    Frequency/Sample_Rate
sn = sin()
cs = cos()
 = sn/(2  Q)
(dB_Gain/40)
–32–
3. Compute coefficients:
4. The transfer function implemented by the AD1954 is given by:
Y(n) = a1  y(n – 1) + a2  y(n – 2) + b0  x(n)
b0 = ( 1 + A  )/( 1 + (/A))
b1 = –2  cs/( 1 + (/A))
b2 = (1 – (  A))/(1 + (/A))
a1 = 2  cs/(1 + (/A)) = –b1
a2 = –( 1 – (/A))/( 1 + (/A))
H(Z) = (b0 + b1  Z – 1 + b2  Z – 2)/
Note the inversion in sign of a1 and a2 relative to the more
standard form. This form is used in this document because
the AD1954 implements the difference equation using the
formula below.
+ b1  x(n – 1) + b2  x(n – 2)
(1 – a1  Z – 1 – a2  Z – 2)
REV. A

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