isppac80 Lattice Semiconductor Corp., isppac80 Datasheet - Page 9

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isppac80

Manufacturer Part Number
isppac80
Description
In-system Programmable Analog Circuit
Manufacturer
Lattice Semiconductor Corp.
Datasheet

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Manufacturer
Quantity
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Manufacturer:
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Reference Configuration
In the specifications table, specific filter configurations
are referred to, such as the CC051042. This is simply a
shorthand notation for the classical filter type that in-
cludes all the characteristic parameters of the particular
configuration. In this case, the CC refers to complete
Chebyshev, or a Chebyshev ripple response in both the
pass and stopbands of the filter. Another common name
for this type of filter is the Elliptic family of filters. The next
set of numbers, “05” refers to the order of the filter. In the
case of ispPAC80 this will always be fifth order. The next
two digits signify the reflection coefficient (rf), in this case
10%, and has a direct mathematical relationship to the
passband ripple magnitude of the filter, where the pass-
band ripple expressed in dB = 10*Log(1-rf
digits are the passband to stopband attenuation ratio
expressed as an angle, in this case 42 degrees or 1.49
(1/sin((π/180)*42)). This configuration corresponds to
the elliptical filter with the ID# 3083 (Fp=50.00kHz;
Figure 1. Simplified ispPAC80 Filter Core Schematic
V OUT
Theory of Operation
V IN
V IN
100K
=
Rin
+
 
2(L2 C5 G 3 ) - 2(G 3 L4 C2)
R11 100K
A1
A1
C1
+
 
+
2(G 4 C5)
V1
 
(L2 C1 C3 G 2
-100K
+
100K
R21
R12
G = 1/100K; G/2 = 1/200K; C2 = C231 = C213; C4 = C435; C4/2 = C453
 
-(L2 G C4 2 L4)
- L C C G
2 2 1 4
(
+
- G (L L C C )s
 
2
 
( 4 4 C3) - 2(G 4 C4)
-(L2 C4 2 L4 C1) 2( L2 C1 C3 L4 C5) - 2(C2 2 L2 L4 C5)
G
+
A2
 
(
G 3 L4 C3)
) (
C231
C213
L2
2 4 4 2 4
+
2
). The final two
L2 G 2 C3 L4) - (G 2 L4 C4 2
V2
2
+
)
(
100K
+
R23
L2 C1 C3 L4 G) - (C2 2 L2 L4 G) 2(L2 G C3 L4 C5)
2
-100K
+
R32
(
G C L C
(
L2 G 3 C1) 2(G 3 L4 C5) - 2( L2 C4 G 3
+
2 1 4 5
+
+
(
G 4 L4)
( L G C
9
(
A3
Fc=56.23kHz) in the filter configuration database utility of
PAC-Designer. Because of the almost limitless number
of configurations realizable with ispPAC80, standard test
configurations had to be chosen. The Elliptical family was
chosen since it has many parameters that can be easily
and directly measured to insure that all the internal
circuits of ispPAC80 are operating correctly.
SPI Power-On Condition
The SPI shift register is always reset to all zeroes when
an ispPAC80 powers on. That means that if the ENSPI
pin is high at power on, the initial configuration will be set
to a gain of 1X (0dB) and configuration “A” is selected as
the “wake-up” configuration. The only way to prevent this
behavior would be to hold the ENSPI pin low while
applying power to the device. Because this is usually
impractical, it is advised that if the ispPAC80 is used in
SPI mode that it be reloaded to the desired first configu-
ration every time power is cycled to the device and/or that
2
+
C3
)
+
+
2
(
2 2 5
G 4 C1)
(
V3
L C G C - C
2
) (
)
+
+
-100K
2(G 2 2 L4 C5 C3) - 4(G 2 L4 C5 C2)
Specifications ispPAC80
R34
G L C ) s
100K
R43
+
2 4 4
(
2 1
L2 G 4 ) - 2(G 4 C2) s
+
) (
A4
)
2 2 2
C453
C435
L4
2
L G
V4
+
) (
G
 
+
100K
s
R45
4
2
5
G 3 C1 L4)
 
)
 
 
s
-200K
R54
3
+ 
 
s
 
4
2 G 5
200K
A5
R55
C5
+
 
 
(
L2 C3 G 3 ) s 2
V OUT
 

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