am79q02 ETC-unknow, am79q02 Datasheet - Page 48

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am79q02

Manufacturer Part Number
am79q02
Description
Quad Subscriber Line Audio-processing Circuit Qslac Devices
Manufacturer
ETC-unknow
Datasheet

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35, 36. Write/Read Z Filter Coefficients (FIR and IIR)
48
(84/85h)
R/W = 0: Write
R/W = 1: Read
This command writes and reads both the FIR and IIR filter sections simultaneously.
The Z-transform equation for the Z filter is defined as:
For i = 0 to 5 and 7
Power Up and Hardware Reset (
See note under Commands 31 and 32.
Note: Z
one. The input to the IIR filter section is first increased by a gain of 1/Z
avoiding truncation limitations through processing within this filter. The IIR filter output is then multiplied
by Z
coefficients, but it also includes the initial 1/Z
and normalization, is actually Z
Command
I/O Data Byte 1
I/O Data Byte 2
I/O Data Byte 3
I/O Data Byte 4
I/O Data Byte 5
I/O Data Byte 6
I/O Data Byte 7
I/O Data Byte 8
I/O Data Byte 9
I/O Data Byte 10
I/O Data Byte 11
I/O Data Byte 12
I/O Data Byte 13
I/O Data Byte 14
I/O Data Byte 15
6
to normalize the overall gain. Z
6
is used for IIR filter scaling only. Its value is typically greater than zero but less than or equal to
Sample rate = 32 kHz
(H
H
z
z
i
6
z
z
z ( )
=
=
(z) = 0)
C1i 2
C16 2
=
z
0
Am79Q02/021/031 Data Sheet
+
z
m1i
1
m16
{
z
{
1
5
1
1
/Z
+
+
+
6
C2i 2
C40
C20
C41
C21
C42
C22
C43
C23
C44
C24
C45
C25
C26
C47
C27
.
C26 2
RST
z
D
1
2
5
7
is the actual IIR filter gain value defined by the programmed
z
) Values = 0190 0190 0190 0190 0190 0190 01 0190 (Hex)
2 –
m2i
+
6
m26
D
0
z
gain. The theoretical effective IIR gain, without the Z
[
6
3
1
}
+
z
C3i 2
3
m40
m20
m41
m21
m42
m22
m43
m23
m44
m24
m45
m25
m26
m47
m27
D
+
0
5
z
4
m3i
z
4 –
(
D
0
1
+
4
+
z
-------------------------------------- -
5
C4i 2
1 z
6
z
, improving dynamic range and
C30
C10
C31
C11
C32
C12
C33
C13
C34
C14
C35
C15
C16
C37
C17
D
6
0
3
7
z
7
m4i
z
1 –
)
z
]
D
}
1
1
2
MPI Command
m30
m10
m31
m11
m32
m12
m33
m13
m34
m14
m35
m15
m16
m37
m17
D
0
1
6
R/W
D
gain
0

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