LTC1264CSW#TRM Linear Technology, LTC1264CSW#TRM Datasheet - Page 8

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LTC1264CSW#TRM

Manufacturer Part Number
LTC1264CSW#TRM
Description
Manufacturer
Linear Technology
Datasheet

Specifications of LTC1264CSW#TRM

Architecture
Switched Capacitor
Order Filter (max)
8th
Single Supply Voltage (typ)
5/9/12/15V
Dual Supply Voltage (typ)
±3/±5V
Power Supply Requirement
Single/Dual
Single Supply Voltage (min)
4.75V
Single Supply Voltage (max)
16V
Dual Supply Voltage (min)
±2.375V
Dual Supply Voltage (max)
±8V
Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Package Type
SOIC W
Filter Type
Universal
Lead Free Status / RoHS Status
Not Compliant

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W
LTC1264
Mode 3a
This is an extension of Mode 3 where the highpass and
lowpass output are summed through two external resis-
8
V
IN
ODES OF OPERATIO
AGND
R1
V
IN
Figure 7. Mode 2, 2nd Order Filter Providing Highpass
Notch, Bandpass and Lowpass Outputs
H
H
Q = 1.005
f
OBP
OHP
i
R1
=
f
CLK
20
= –
= –
+
R3
R1
( ) √
; f
R2
R1
R3
R2
R4
R3
R2
O
(AC GAIN, f > f
AGND
= f
(
Figure 8. Mode 3a, 2nd Order Filter Providing a Highpass Notch or Lowpass Notch Output
1 –
i
+
1 +
1 +
6.42•R4
R2
R4
R4
R3
R2
1
R3
R2
R4
1/4 LTC1264
(
N
; f
1 –
n
); H
n
)
+
C
= f
; H
C
6.42•R4
OHPn
Σ
O
1
R3
OLP
S
HP
= –
= H
1/4 LTC1264
+
C
)
C
U
R2
R1
OHPn
Σ
S
(
1 +
1
R2
R4
BP
)
(DC GAIN, f < f
R
H
1264 F07
BP
LP
n
)
LP
tors R
8. Mode 3a is more versatile than Mode 2 because the
notch frequency can be higher or lower than the center
frequency of the 2nd order section. The external op amp
of Figure 8 is not always required. When cascading the
sections of the LTC1264, the highpass and lowpass
outputs can be summed directly into the inverting input of
the next section.
Please refer to the Maximum Frequency of Operation
paragraph under Applications Information for a guide to
the use of capacitor C
Mode 2n
This mode extends the circuit topology of Mode 3a to
Mode 2 (Figure 9) where the highpass notch and lowpass
outputs are summed through two external resistors R
and R
frequency than the notch in Mode 2. This mode, shown in
Figure 8, is most useful in lowpass elliptic designs. When
cascading the sections of the LTC1264, the highpass
notch and lowpass outputs can be summed directly into
the inverting input of the next section.
Please refer to the Maximum Frequency of Operation
paragraph under Applications Information for a guide to
the use of capacitor C
R
L
L
H
to create a lowpass output with a notch higher in
and R
+
R
EXTERNAL OP AMP OR
INPUT OP AMP OF THE
LTC1264, SIDES A, B, C, D
G
L
to create a notch. This is shown in Figure
Q = 1.005 R3
f
H
i
OHPn
=
f
CLK
20
(f = ∞) =
; f
( )
C
C
n
R2
.
.
= f
HIGHPASS
OR LOWPASS
NOTCH OUTPUT
i
( )
R2
R4
R
R
R
R
G
H
H
L
( )
(
;
R2
R1
f
1 –
O
= f
; H
6.42•R4
i
1
OLPn
R3
R2
R4
1264 G08
(f = 0) =
)
( )
R
R
G
L
( )
R4
R1
1264fb
H

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