th71221 Melexis Company, th71221 Datasheet - Page 11

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th71221

Manufacturer Part Number
th71221
Description
Transceiver - 27 To 930mhz, Fsk/fm/ask, Multi-channel 32l Qfn 5x5 Quad
Manufacturer
Melexis Company
Datasheet

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3.1.1
The reference oscillator is based on a Colpitts topology with two integrated functional capacitors as shown in
figure 3. The circuitry is optimized for a load capacitance range of 10 pF to 15 pF. The equivalent input
capacitance CRO offered by the oscillator input pin RO is about 18pF.
To ensure a fast and reliable start-up and a very stable frequency
over the specified supply voltage and temperature range, the
oscillator bias circuitry provides an amplitude regulation. The am-
plitude on pin RO is monitored in order to regulate the current of
the oscillator core I
between the regulation is maintained. These values can be
changed via serial control interface in Programmable User Mode
(PUM). In Stand-alone User Mode (SUM), ROMAX and ROMIN
are set to default values (refer to para. 5.1.3). ROMAX defines the
start-up current of the oscillator. The ROMIN value sets the de-
sired steady-state current. If ROMIN is sufficient to achieve an
amplitude of about 400 mV on pin RO, the current I
to ROMIN. Otherwise the current will be permanently regulated
between ROMIN and ROMAX. If ROMIN and ROMAX are equal,
no regulation takes place. For most of the applications ROMIN
and ROMAX should not be changed from default.
3.1.2
The reference divider provides the input signal of the phase detector by dividing the signal of the reference
oscillator. The range of the reference divider is
3.1.3
The feedback divider of the PLL is based on a pulse-swallow topology. It contains a 4-bit swallow A-counter,
a 13-bit program B-counter and a prescaler. The divider ratio of the prescaler is controlled by the program
counter and the swallow counter. During one cycle, the prescaler divides by 17 until the swallow A-counter
reaches its terminal count. Afterwards the prescaler divides by 16 until the program counter reaches its
terminal count. Therefore the overall feedback divider ratio can be expressed as:
The A-counter configuration represents the lower bits in the feedback divider register (N
upper bits the B-counter configuration (N
ranges are implemented:
and therefore the range of the overall feedback divider ratio results in:
The user does not need to care about the A- and B-counter settings. It is only necessary to know the overall
feedback divider ratio N to program the register settings.
3.1.4
It is obvious from (2) that, at a given frequency resolution f
limited by the maximum N-counter setting. The table below provides some illustrative numbers. Please also
refer to section 4.4.1 for the pre-configured settings in Stand-alone User Mode (SUM).
39010 071221
Rev. 006
Reference Oscillator (XOSC)
Reference Divider
Feedback Divider
Frequency Resolution and Operating Frequency
RO
. There are two limits ROMAX and ROMIN
4
0
64
N
=
R
A
17
N
15
1023
A
4-16
131071
+
;
16
= B
.
4
(B
0-12
Page 11 of 44
B
-
.
) respectively. According to that, the following counter
A)
8191
RO
.
will be set
R
whereas
, the maximum operating frequency of the VCO is
B >
Fig. 3:
FSK/FM/ASK Transceiver
A
CX2
CX1
XTAL
Reference oscillator circuit
FSKSW
RO
(3)
(4)
(5)
(6)
TH71221
36pF
0-3
27 to 930MHz
VCC
= A
VEE
0-3
) and the
I
Data Sheet
RO
36pF
June/08

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