LT1684CN#PBF Linear Technology, LT1684CN#PBF Datasheet - Page 10

IC RING TONE GENERATOR 14-DIP

LT1684CN#PBF

Manufacturer Part Number
LT1684CN#PBF
Description
IC RING TONE GENERATOR 14-DIP
Manufacturer
Linear Technology
Datasheet

Specifications of LT1684CN#PBF

Function
Tone Generator
Number Of Circuits
1
Operating Temperature
0°C ~ 125°C
Mounting Type
Through Hole
Package / Case
14-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Supply
-
Voltage - Supply
-
Power (watts)
-
Interface
-

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Quantity
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Part Number:
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APPLICATIO S I FOR ATIO
LT1684
The component selections for the active tracking supply
lowpass MFB filter configuration follow the relations:
Example:
Conditions: Output ring tone peak voltage = 100V
Set:
Choose:
Then:
This filter configuration yields a DC Gain of 100, a corner
frequency of just under 100Hz with gain reduction of only
0.1% at 20Hz, and a 10kHz carrier rejection of greater than
40dB at the output.
Active Tracking Supply Components
Given the previous discussion, implementation of an
active tracking supply system may seem almost trivial.
10
C
R
R
R
2
2
1
3
= mC
= 1 [1–4mQ
= R
=
2
n
1
/ |H
2
C
Ring frequency = 20Hz
Input duty cycle range = 10% to 90%
Filter Q = 0.707
f
C
m [4(0.7)
C
(sets m = 0.0047)
R
R
R
R
R
R
2
1
1
n
O
1
2
2
2
2
1
1
3
3
=
|
R
= 1.0 F (a convenient value)
= mC
= 300k
= 3.0k
= [(2 100)
= 2k
= 1 [1– 4(0.0047)(0.707)
= 300k/100
n
2
C
m 1 / [4Q
m
2
U
n
1
(1+|H
mQ
(4 100)(1e–6)(.0047)(0.707)
/ 2 = 100Hz
1
2
U
O
(1+100)]
|)]
2
(1e–6)
1/2
2
(1+|H
C2 = 4700pF
W
–1
2
(300k)(0.0047)]
O
|)]
.005
2
(101)]
U
1/2
–1
However, bootstrapping an amplifier system about its
own output creates a complex myriad of inherent stability
and response issues. Attempting such a configuration
with generic “jelly-bean” components is not recommended
for the faint of heart or type-A personalities. The LT1684,
however, makes for a simplistic approach to active track-
ing component selection.
The high voltage MOSFET transistors used in the circuit
must have an operating V
corresponding high voltage supply rail plus the opposite
maximum excursion of the output signal. For example, if
a system is designed with a 240V supply (+ 120V,
–120V) and outputs a ring signal that has a 100V peak
amplitude, the MOSFET V
240/2 + 100 = 220V.
Active Filter Tuned Oscillator—
No PWM Input Required
A simple yet effective method of producing a high quality
sine wave is to place a high-Q bandpass filter and a hard
limited gain element in a positive feedback loop. This
circuit will oscillate at the bandpass frequency, producing
a sine wave at the filter output. The product of the funda-
mental component of the limiter and the filter gain at the
bandpass frequency determines the output amplitude.
This type of circuit is commonly referred to as an active
filter tuned oscillator.
Feedback Filter Transfer Characteristic (A
–50
Active Tracking Supply Lowpass Multiple
50
0
1
10
100
HERTZ (Hz)
DS
DS
ratings must be greater than
specified at greater than the
1K
10K
1684 F02
100K
V
vs f
n
)

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