LTC1061ACN Linear Technology, LTC1061ACN Datasheet - Page 11

IC FILTER BUILDNG BLK TRPL 20DIP

LTC1061ACN

Manufacturer Part Number
LTC1061ACN
Description
IC FILTER BUILDNG BLK TRPL 20DIP
Manufacturer
Linear Technology
Datasheet

Specifications of LTC1061ACN

Filter Type
Universal Switched Capacitor
Frequency - Cutoff Or Center
35kHz
Number Of Filters
3
Max-order
6th
Voltage - Supply
4.74 V ~ 16 V, ±2.37 V ~ 8 V
Mounting Type
Through Hole
Package / Case
20-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LTC1061ACN#PBF
Manufacturer:
LT
Quantity:
1 001
W
passive ladder filters provide enough data to synthesize
the above filters. The measured amplitude response of
such a lowpass is shown in Figure 15 where the filter
output is taken out of side A’s Pin 1, Figure 12. The clock-
to-center frequency ratio can be either 50:1 or 100:1
because the last stage of the LTC1061 operates in Mode 1
with a center frequency very close to the overall cutoff
frequency of the lowpass filter.
In Figure 16, all three sides of the LTC1061 are connected
in Mode 3a. This topology is useful for elliptic highpass
and notch filters with clock-to-cutoff (or notch) frequency
ratio higher than 100:1. This is often required to extend the
allowed input signal frequency range and to avoid prema-
ture aliasing. Figure 16 is also a versatile, general purpose
architecture providing 3 notches and 4 pole pairs, and
there is no restriction on the location of the poles with
respect to the notch frequencies. The drawbacks, when
compared to Figure 12, are the use of an external op amp
and the increased number of the required external
resistors.
Figure 17 shows the measured frequency of a 6th order
highpass elliptic filter operating with 250:1 clock-to-cutoff
frequency ratio. With a 1MHz clock, for instance, the filter
yields a 4kHz cutoff frequency, thus allowing an input
frequency range beyond 100kHz. Band limiting can be
easily added by placing a capacitor across the feedback
resistor of the external op amp of Figure 16.
–30
–50
–70
–80
–90
–10
–20
–40
–60
ODES OF OPERATIO
Figure 15. Resistor Values and Amplitude Response of
the Topology of Figure 12
0
0
1
2
3
4
f
IN
(kHz)
5
6
7
8
9
10
R11 = 39.2k
R31 = 13.7k
R
R22 = 10k
R42 = 14k
R
R33 = 100k
NOTES: USE A 10pF ACROSS R42
FOR f
THE ELLIPTIC LOWPASS FILTER
HAS ONLY TWO NOTCHES IN THE
STOPBAND, AND IT OPERATES
WITH A CLOCK TO CUTOFF
FREQUENCY RATIO OF 50:1.
h
l
2 = 11.8k
U
1 = 20.5k
CLK
RESISTOR VALUES
STANDARD 1%
> 1MHz.
R21 = 10k
R41 = 39.2k
R
R32 = 26.7k
R
R23 = 10k
l
h
1 = 12.4k
2 = 32.4k
1061 F15
Figure 17. Measured Amplitude Response of the Topology of
Figure 16, Configured to Provide a 6th Order Elliptic Highpass
Filter Operating with a Clock-to-Cutoff Frequency Ratio of 250:1
CLOCK INPUT
–10
–20
–30
–40
–50
–60
–70
–80
–90
T
2
0
L
0
l
, CMOS
Figure 16. Using an External Op Amp to Connect
all 3 Sides of the LTC1061 in Mode 3a
f
CLK
V
V
IN
+
= 250kHz
0.5
R33
R23
R43
R
h
3
1.0
f
IN
R
(kHz)
10
l
1
2
3
4
5
6
7
8
9
3
1.5
+
LTC1061
LT1056
R
g
2.0
20
19
18
17
16
15
14
13
12
11
2.5
R11 = 105k
R31 = 47.5k
R
R22 = 32.4k
R42 = 52.3k
R
R33 = 255k
R
R
NOTE: FOR CLOCK FREQUENCIES
BELOW 500kHz, USE A CAPACI-
TOR IN PARALLEL WITH R21
SUCH AS (1/2πR21C) ≅ f
h
l
h
g
2 = 750k
1 = 10k
3 = 10k
= 140k
V
RESISTOR VALUES
V
STANDARD 1%
R
LTC1061
OUT
R42
R
R41
R31
R21
R11
l
R32
R22
R
2
l
h
1
1
R
R21 = 10k
R41 = 45.3k
R
R32 = 28.7k
R
R23 = 10k
R43 = 63.4k
R
11
h
l
h
l
1 = 1.07M
3 = 110k
2
2 = 42.2k
1061 F16
CLK
1061 F17
1061fe
/3.

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