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SL560CCM Scheda tecnica(PDF) 4 Page - Zarlink Semiconductor Inc

Il numero della parte SL560CCM
Spiegazioni elettronici  300MHz LOW NOISE AMPLIFIER
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Produttore elettronici  ZARLINK [Zarlink Semiconductor Inc]
Homepage  http://www.zarlink.com
Logo ZARLINK - Zarlink Semiconductor Inc

SL560CCM Scheda tecnica(HTML) 4 Page - Zarlink Semiconductor Inc

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SL560
Small signal voltage gain
Gain flatness
Upper cut-off frequency
Output swing
Noise figure (common emitter)
Supply current
Characteristic
ELECTRICAL CHARACTERISTICS
These characteristics are guaranteed over the following conditions (unless otherwise stated)
Frequency = 30MHz; VCC=6V; RS = RL =50Ω; TAMB=22°C ± 2°C; Test Circuit: Fig.6
Typ.
Min.
Max.
Units
Conditions
10MHz - 220MHz
VCC6V
VCC = 9V
RS = 200Ω
RS = 50Ω
11
+5
14
±1.5
250
+7
+11
1.8
3.5
20
17
30
dB
dB
MHz
dBm
dBm
dB
dB
mA
CIRCUIT DESCRIPTION
Three high performance transistors of identical geometry
are employed. Advanced design and processing techniques
enable these devices to combine a low base resistance (Rbb')
of 17
Ω (for low noise operation) with a small physical size -
giving a transition frequency, f
T, in excess of 1GHz.
The input transistor (TR1) is normally operating in common
base, giving a well defined low input impedance. The full
voltage gain is produced by this transistor and the output
voltage produced at its collector buffered by the two emitter
followers (TR2 and TR3). To obtain maximum bandwidth the
capacitance at the collector of TR1 must be minimised. Hence,
to avoid bonding pad and can capacitances, this point is not
brought out of the package. The collector load resistance of
TR1 is split, the tapping being accessible via pin 5. If required,
an external roll-off capacitor can be fixed to this point.
The large number of circuit nodes accessible from the
outside of the packages affords great flexibility, enabling the
operating current and circuit configuration to be optimised for
any application. In particular, the input transistor (TR1) can be
operated in common emitter mode by decoupling pin 7 and
using 6 as the input. In this configuration, a 2dB noise figure
(R
S = 200Ω) can be achieved.
This configuration can give a
gain of 35dB with a bandwidth of 300MHz (see figs. 10 and 11).
Because the transistors used in the SL560C exhibit a high
value of f
T,
care must be taken to avoid high frequency
instability. Capacitors of small physical size should be used,
the leads of which must be short as possible to avoid oscillation
brought about by stray inductance. The use of a ground plane
is recommended.
15
10
5
0
10
30
50
100
200
300
FREQUENCY (MHz)
(b)
(a)
T
A
= +25°C
V
CC
= 6V
P
OUT
= (a) +5dBm
(b) 0dBm
12
10
8
6
4
2
0
10
30
100
200
300
FREQUENCY (MHz)
T
A
= +25°C
V
CC
= a) 6V
(b) 9V
(a)
(b)
Fig.4 Frequency response, small signal gain is of a
typical device
Fig.5. Frequency response, output capability (loci of maximum
output power with frequency for 1dB gain compression (typical)


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