参数资料
型号: MC1311
厂商: Motorola, Inc.
英文描述: UNIVERSAL NARROWBAND FM RECEIVER INTEGRATED CIRCUIT
中文描述: 通用窄带调频接收器集成电路
文件页数: 43/68页
文件大小: 1316K
代理商: MC1311
MC13110A/B MC13111A/B
43
MOTOROLA ANALOG IC DEVICE DATA
The K–factor shown determines how far the additional
pole frequency will be separated from wp. Selecting too small
of a K–factor, the equations may provide negative
capacitance or resistor values. Too large of a K–factor may
not provide the maximum attenuation.
By selecting R3 to be 100 k
, C3 becomes known and C1
and C2 can be solved from the equations. By using equations
(8) and (7), time constants T2 and T1 can be derived by
selecting a phase margin. Finally, R2 follows from T2 and C2.
The following pages, the loopfilter components are
determined for both handset and baseset the US application
based on the equations described. Choose K to be
approximately five times wp (5.0wp).
In an application, wp is chosen to be 20 times less than the
reference frequency of 5.0 kHz and the phase margin has
been set to 45 degrees. This provides a lock time according
to (9) of about 2.0 ms (order of magnitude). With the adjacent
channels spaced at least 15 kHz away, reference
feedthrough at wp will not be directly disastrous but still, the
additional pole may be added in the loopfilter design for
added safety.
In an application, wp is chosen to be 20 times less than the
reference frequency of 5.0 kHz and the phase margin has
been set to 45 degrees. This provides a lock time according
to (9) of about 2.0 ms (order of magnitude). With the adjacent
channels spaced at least 15 kHz away, reference
feedthrough at wp will not be directly disastrous but still, the
additional pole may be added in the loopfilter design for
added safety.
O
Figure 101. Open Loop Response Handset US
with Selected Values
f, FREQUENCY (Hz)
Phase
Margin
100
1000
10000
100000
1000000
–80
–40
0
40
80
0
20
40
60
80
P
Loop
Gain
From
Phase
Detector
To VCO
22 k
.068
6800
1000
100 k
Figure 102. Open Loop Response Baseset US
with Selected Values
From
Phase
Detector
To VCO
18 k
.082
8200
1000
100 k
O
f, FREQUENCY (Hz)
Phase
Margin
100
1000
10000
100000
1000000
–80
–40
0
40
80
0
20
40
60
80
P
Loop
Gain
Figure 103. Handset US
Conditions
L = 470 uH
RF = 46.77 MHz
VCO center = 36.075 MHz
Fref = 5.0 kHz
Qp = 45 degrees
wp = wref / 20 radians
Equations
Results
Select
Kpd = 159.2 uA/rad
KVCO = 3.56 Mrad/V
T2 = 1540
μ
s
T1 = 264
μ
s
T3 = 91
μ
s
(14), (15)
(8)
(7)
with K = 7
C1 = 7.6 nF
C2 = 70.9 nF
R2 = 21.7 k
R3 = 100 k
C3 = 909.5 pF
(21)
(20)
(18)
choose:
(19)
C1 = 6.8 nF
C2 = 68 nF
R2 = 22 k
R3 = 100 k
C3 = 1 nf
Figure 104. Baseset US
Conditions
L = 470 uH
RF = 49.83 MHz
VCO center = 39.135 MHz
Fref = 5.0 kHz
Qp = 45 degrees
wp = wref / 20 radians
Equations
Results
Select
Kpd = 159.2 uA/rad
KVCO = 4.54 Mrad/V
T2 = 1540
μ
s
T1 = 264
μ
s
T3 = 91
μ
s
(14), (15)
(8)
(7)
with K = 7
C1 = 9.1 nF
C2 = 83.5 nF
R2 = 18.4 k
R3 = 100 k
C3 = 909.5 pF
(21)
(20)
(18)
choose:
(19)
C1 = 8.2 nF
C2 = 82 nF
R2 = 18 k
R3 = 100 k
C3 = 1 nf
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