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TSH690 查看數據表(PDF) - STMicroelectronics

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TSH690
ST-Microelectronics
STMicroelectronics ST-Microelectronics
TSH690 Datasheet PDF : 14 Pages
First Prev 11 12 13 14
TSH690
ASK TRANSMITTER USING THE TSH690
Application purpose
The purpose is to use the TSH690 as a ASK trans-
mitter for remote control applications taking bene-
fits of the 2 stages architecture, the bias control
pin and output power capability.
The first transistor stage is devoted to the oscilla-
tor by the meaning of a Surface Acoustic Wave
(SAW) resonator while the second stage realizes
the power amplification to drive antennas includ-
ing the impedance matching.
Modulation is insured by applying the modulating
signal onto the bias pin of TSH690 to get an ampli-
tude modulation.
Figure 7 : Saw transmitter schematic
By tuning R1 and C1, stability of the circuit can be
guaranted disregarding the load impedance of the
output stage.
Output Stage
The output matching is defined for a 50load im-
pedance by adding a 100nH self-inductor L2 as
load to the open collector of the output stage while
capacitor C3 is just placed as a DC block with the
antenna.
In such described conditions, output power on fun-
damental reaches more than +13dBm under 3V
with an average current consumption of 50mA
featuring 2nd & 3rd harmonics levels respectively
of -18dBc et -27dBc.
Oscillator Considerations
The oscillator frequency is given by the SAW res-
onator which is connected between pins 5 & 7 of
the TSH690 to ensure a well-known Colpitts archi-
tecture with 2 capacitors C1 and C2. Capacitor C2
is a small value one and, depending on PCB,
could be directly obtained from parasitics of mi-
crostrip lines. Center frequency is tuned with the
trimmer capacitor C1.
Note that the pin 7 is internally connected to an in-
tegrated self inductor L1 which is wired to the col-
lector of the first stage transistor. A resistor R1 is
placed to avoid resonance between L1 and C1 but
also to adjust the current consumption of the oscil-
lator.
Moreover, start-up conditions and output harmon-
ics levels are related to the R1 value, so that its
recommended to use a potentiometer for R1.
Modulation
As a result of applying a modulating signal to the
bias pin (pin 8), the TSH690 features an amplitude
modulation up to the On-Off-Keying when the
modulating signal is digital.
A series resistor R2 can be added on pin 8 to
change biasing conditions but also oscillating con-
ditions and finally the available output power. In
most of applications, this resistor can be omitted.
In the case of digital modulation control, when a ‘0’
logic level is applied on pin 8, the circuit in set in
Standby mode during which the oscillator is
stopped whereas during a ‘1’ logic level, the circuit
radiates RF wave due to oscillator running
mode.The maximum data rate of modulating sig-
nal is given by the oscillator turn-on time which is
typically of 200µs to reach the nominal operating
frequency and amplitude. Note that the turn-off
time is negligeable. Thus, it is recommended to
use a data rate of 2400b/s to keep a duty cycle of
25% (T_ON~200µs, T_OFF~(400+200)µs). For a
higher data rate (maximum of 4800b/s), duty cycle
on transmission side decreases drastically so that
it is recommended to use a monostable on recep-
tion side to recover a correct 50% duty cycle. In or-
der to decrease the spectrum shape of transmis-
sion, a simple low-pass filter can be added in front
of pin 8 to attenuate high level harmonics of the
modulating signal.
12/14

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