max2620euat Maxim Integrated Products, Inc., max2620euat Datasheet - Page 9

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max2620euat

Manufacturer Part Number
max2620euat
Description
Max2620 10mhz To 1050mhz Integrated Rf Oscillator With Buffered Outputs
Manufacturer
Maxim Integrated Products, Inc.
Datasheet
According to the electrical model shown in Figure 5, the
resonance frequency can be calculated as:
[Equation 1]
Figure 4. 10MHz Crystal Oscillator
f
where C
O
X = STATEK AT-3004 10MHz
FUNDAMENTAL MODE CRYSTAL SURFACE MOUNT
C
LOAD
120pF
120pF
30pF
2
= 20pF
SHDN
n
L1 C
V
CC
C
C
10
3
1
2
3
4
0.01 F
STRAY
3
+ C
_______________________________________________________________________________________
V
TANK
FDBK
SHDN
+ C
CC
1
03
MAX2620
03
+
+ C
C
C
C
17
17
4
V
4
GND
RF Oscillator with Buffered Outputs
OUT
OUT
CC
Sample Calculation
+ C
x C
2
+ C
+ C
10 H
1
8
7
6
5
04
D1
D1
51
04
V
CC
V
V
CC
CC
0.01 F
C
0.01 F
0.01 F
0.01 F
10MHz to 1050MHz Integrated
0.01 F
27pF
6
C
C x C
OUT
OUT
5
5
+ C
n
n
R
and is approximately:
[Equation 2]
where g
Using the circuit model of Figure 5, the following exam-
ple describes the design of an oscillator centered at
900MHz.
Using Equation 1, solve for varactor capacitance (C
C
age applied to the varactor is approximately at half-
supply (the center of the varactor’s capacitance range).
Assume the following values:
C
C
The value of C
mance of the MAX2620 EV kit. Values of C3 and C4 are
chosen to minimize R
the resonant circuit with excessive capacitance. C
and C
The varactor’s capacitance range should allow for the
desired tuning range. Across the tuning frequency
range, ensure that R
The MAX2620’s oscillator is optimized for low-phase-
noise operation. Achieving lowest phase-noise charac-
teristics requires the use of high-Q (quality factor)
components such as ceramic transmission-line type
n
STRAY
03
D1
, the negative real impedance, is set by C3 and C4
= 2.4pF, C
is the capacitance of the varactor when the volt-
Calculate: R
04
Choose: L1 = 5nH ±10%
m
= 2.7pF, C17 = 1.5pF, C6 = 1.5pF, C5 = 1.5pF,
are parasitic capacitors.
R
= 18mS.
n
g
04
m
STRAY
Q = 140
p
= 2.4pF, C3 = 2.7pF, and C4 = 1pF
2
= Q
f C
s
< 1/2 R
is based on approximate perfor-
n
3
1
(Equation 2) while not loading
C
2
03
n
f
2
L1
f C
4
1
C
04
D1
03
).
9

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