SA606DK NXP Semiconductors, SA606DK Datasheet - Page 4

SA606DK

Manufacturer Part Number
SA606DK
Description
Manufacturer
NXP Semiconductors
Datasheet

Specifications of SA606DK

Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Operating Temperature Classification
Industrial
Lead Free Status / Rohs Status
Not Compliant

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Philips Semiconductors
AC ELECTRICAL CHARACTERISTICS
CIRCUIT DESCRIPTION
The SA606 is an IF signal processing system suitable for second IF
systems with input frequency as high as 150MHz. The bandwidth of
the IF amplifier and limiter is at least 2MHz with 90dB of gain. The
gain/bandwidth distribution is optimized for 455kHz, 1.5k source
applications. The overall system is well-suited to battery operation
as well as high performance and high quality products of all types.
The input stage is a Gilbert cell mixer with oscillator. Typical mixer
characteristics include a noise figure of 6.2dB, conversion gain of
17dB, and input third-order intercept of -9dBm. The oscillator will
operate in excess of 200MHz in L/C tank configurations. Hartley or
Colpitts circuits can be used up to 100MHz for xtal configurations.
Butler oscillators are recommended for xtal configurations up to
150MHz.
The output impedance of the mixer is a 1.5k resistor permitting
direct connection to a 455kHz ceramic filter. The input resistance of
the limiting IF amplifiers is also 1.5k . With most 455kHz ceramic
filters and many crystal filters, no impedance matching network is
necessary. The IF amplifier has 43dB of gain and 5.5MHz
bandwidth. The IF limiter has 60dB of gain and 4.5MHz bandwidth.
To achieve optimum linearity of the log signal strength indicator,
there must be a 12dB(v) insertion loss between the first and second
IF stages. If the IF filter or interstage network does not cause
1997 Nov 07
RF/IF section (int LO)
SYMBOL
SYMBOL
Low-voltage high performance mixer FM IF system
THD
S/N
Total harmonic distortion
Signal-to-noise ratio
RF RSSI output, R
RSSI range
RSSI accuracy
IF input impedance
IF output impedance
Limiter input impedance
Limiter output impedance
Limiter output voltage
Audio level
System RSSI output
System SINAD sensitivity
PARAMETER
PARAMETER
9
= 2k
(Continued)
No modulation for noise
RF level = -118dBm
RF level = -68dBm
RF level = -23dBm
Pin 18
Pin 16
Pin 14
Pin 11
Pin 11
3V = V
3V = V
RF level = -117dBm
CC
CC
TEST CONDITIONS
TEST CONDITIONS
, RF level = -27dBm
, RF level = -27dBm
4
12dB(v) insertion loss, a fixed or variable resistor or an L pad for
simultaneous loss and impedance matching can be added between
the first IF output (Pin 16) and the interstage network. The overall
gain will then be 90dB with 2MHz bandwidth.
The signal from the second limiting amplifier goes to a Gilbert cell
quadrature detector. One port of the Gilbert cell is internally driven
by the IF. The other output of the IF is AC-coupled to a tuned
quadrature network. This signal, which now has a 90 phase
relationship to the internal signal, drives the other port of the
multiplier cell.
The demodulated output of the quadrature drives an internal op
amp. This op amp can be configured as a unity gain buffer, or for
simultaneous gain, filtering, and 2nd-order temperature
compensation if needed. It can drive an AC load as low as 5k with
a rail-to-rail output.
A log signal strength completes the circuitry. The output range is
greater than 90dB and is temperature compensated. This log signal
strength indicator exceeds the criteria for AMPs or TACs cellular
telephone. This signal drives an internal op amp. The op amp is
capable of rail-to-rail output. It can be used for gain, filtering, or
2nd-order temperature compensation of the RSSI, if needed.
NOTE: dB(v) = 20log V
OUT
/V
IN
MIN
1.20
-35
.70
1.3
1.3
LIMITS
TYP
+1.5
130
120
-50
0.3
1.1
1.8
1.5
0.3
1.5
0.3
2.2
62
90
12
Product specification
MAX
1.80
2.50
.80
SA606
mV
mV
UNITS
UNITS
k
k
k
k
dB
dB
dB
dB
dB
V
V
V
V
RMS
RMS

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