參數(shù)資料
型號(hào): KESTX01IG
廠商: Zarlink Semiconductor Inc.
英文描述: 400MHz - 460MHz ASK Transmitter
中文描述: 400MHz的- 460MHz ASK發(fā)射
文件頁(yè)數(shù): 6/10頁(yè)
文件大?。?/td> 266K
代理商: KESTX01IG
5
KESTX01
vCC
vEE
vCC
TXEN
vEE
ACTIVE CIRCUITS
power up
power dn
APPLICATIONS INFORMATION
Power control
The bias current for the power amplifier directly controls the
output current (and hence the output power). The bias current
is set by the external resistor connected between PWRC and
ground. The bias voltage on pin PWRC is nominally 1.20V and
hence the modulation current Imod is given by 1.20/R.
Figure 3 TXEN power-up operation
To a first order neither the linearity (harmonic spurii relative
to fundamental) nor the amplifier efficiency are affected by
Imod. The graph below shows typical simulation results for the
amplifier current output with Imod variation.
O
9
8
7
6
5
4
3
2
1
37
100
200
300
400
500
600
MODULA
TION CURRENT Imod (uA)
OUTPUT CURRENT VS Imod
Frequency accuracy
The stability of the output frequency is equal to that of the
crystal referenced oscillator and shift in the VCO frequency
during data modulation. To operate with a final output
accuracy of
±
66KHz at 433.92MHz (as required for use with
the receiver KESRX01) would require a crystal with a
tolerance specification of
±
150ppm. This tolerance should
encompass e.g. initial accuracy, temperature stability and
ageing.
Operation at a final output frequency of 433.92MHz
requires a crystal specified for operation at 6.78MHz.
Figure 4 PWRC power output control
Antenna interface
The IC is capable of directly interfacing to a PCB loop
antenna as shown in the applications diagram.
Figure 4 is an equivalent circuit for a PCB loop
antenna. The inductance of the loop is Lant and this is in series
with two resistors. These represent Rr the radiation resistance
and Rs the series resistance of the antenna.
The Q of the antenna is defined as (
ω
o*Lant/(Rs+Rr)
where
ω
o is the resonant frequency (rad/s) of the antenna. At
resonance the antenna can be transformed to the equivalent
circuit on the right hand side. Here the equivalent parallel
resistance Rp is given by
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