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SL2030MP1S データシートの表示(PDF) - Mitel Networks

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SL2030MP1S Datasheet PDF : 6 Pages
1 2 3 4 5 6
SL2030
IF2
NC
GND
GND
GND
GND
RFIN
RFIN
1
16
2
15
3
14
4 SL 13
5 2030 12
6
11
7
10
8
9
IF1
NC
VCC/VCO
LO2
LO1
VCC/VCO
PRSC1
VCC/LNA
MP16
Figure 2 Pin connections - top view
Quick Reference Data
All data applies with circuit component values given in Table 1
Characteristic
Value
RF input operating frequency range
Input noise Figure, SSB, 50 to 860MHz
Conversion gain 50 to 860MHz
IIP3 input referred
CTB (fully loaded matrix)
P1dB input referred
IIP2 input referred
Composite 2nd order (fully loaded matrix)
LO phase noise at10 kHz offset, fRF 50 to 860MHz, application as in Figure 6
LO leak to RF input
Fundamental
Second harmonic
50-860
8
8
121
,264
104
145
,262
,285,see Figure 5
72
92
Units
MHz
dB
dB
dBµV
dBc
dBµV
dBµV
dBc
dBc/Hz
dBµV
dBµV
Electrical Characteristics
Tamb = 240°C to 185°C, VCC = 5V 65%, VEE = 0V. These characteristics are guaranteed by either production test or
design. They apply within the specified ambient temperature and supply voltage ranges unless otherwise stated.
Characteristic
Value
Pin Min. Typ. Max. Units
Conditions
Supply current
9,11,14
99 mA IF output pins 1 and 16 will be nominally
connected to VCC through the differential
balun load as in Figure 6
Input frequency range
7,8 50
860 MHz
Composite peak input signal 7,8
97
dBµV Operating condition only
Input impedance
7,8
See Figure 3
Input return loss
7,8 25
225 dB
Conversion gain
8 10 11 dB Differential voltage gain to 50load on
output of impedance transformer as in
Figure 6.
Gain variation across
21
11
50-860MHz
operating range
Gain variation within channel
0·5 dB Channel bandwidth 8MHz within operating
frequency range
Through gain
220 dB 45-865MHz
Noise figure
6·5 8 10
cont
2

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