TH72031KDC Melexis Inc, TH72031KDC Datasheet - Page 4

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TH72031KDC

Manufacturer Part Number
TH72031KDC
Description
868/915 MHZ, FSK TRANSMITTER
Manufacturer
Melexis Inc
Datasheets

Specifications of TH72031KDC

Frequency
868MHz, 915MHz
Applications
Alarm and Security Systems, RKE
Modulation Or Protocol
FSK
Data Rate - Maximum
40 kbps
Power - Output
-11dBm ~ 9dBm
Current - Transmitting
5.1mA ~ 13.4mA
Data Interface
PCB, Surface Mount
Antenna Connector
PCB, Surface Mount
Voltage - Supply
1.9 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Package / Case
8-SOIC (0.154", 3.90mm Width)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Features
-
Memory Size
-
Other names
Q3477881B

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
TH72031KDC
Manufacturer:
MELEXIS/迈来芯
Quantity:
20 000
2 Functional Description
2.1 Crystal Oscillator
A Colpitts crystal oscillator with integrated functional capacitors is used as the reference oscillator for the PLL
synthesizer. The equivalent input capacitance CRO offered by the crystal oscillator input pin ROI is about
18pF. The crystal oscillator is provided with an amplitude control loop in order to have a very stable fre-
quency over the specified supply voltage and temperature range in combination with a short start-up time.
2.2 FSK Modulation
FSK modulation can be achieved by pulling the
crystal
compatible data stream applied at the pin
FSKDTA digitally modulates the XOSC via an
integrated NMOS switch. Two external pulling
capacitors CX1 and CX2 allow the FSK devia-
tion Δf and the center frequency f
justed independently. At FSKDTA = 0, CX2 is
connected in parallel to CX1 leading to the low-
frequency component of the FSK spectrum
(f
and the XOSC is set to its high frequency f
An external reference signal can be directly AC-
coupled to the reference oscillator input pin
ROI. Then the transmitter is used without a
crystal. Now the reference signal sets the car-
rier frequency and may also contain the FSK (or
FM) modulation.
2.3 Crystal Pulling
A crystal is tuned by the manufacturer to the
required oscillation frequency f
capacitance CL and within the specified calibra-
tion tolerance. The only way to pull the oscilla-
tion frequency is to vary the effective load ca-
pacitance CL
Figure 3 shows the oscillation frequency of a
crystal as a function of the effective load ca-
pacitance. This capacitance changes in accor-
dance with the logic level of FSKDTA around
the specified load capacitance. The figure illus-
trates the relationship between the external
pulling capacitors and the frequency deviation.
It can also be seen that the pulling sensitivity
increases with the reduction of CL. Therefore,
applications with a high frequency deviation
require a low load capacitance. For narrow
band FSK applications, a higher load capaci-
tance could be chosen in order to reduce the
frequency drift caused by the tolerances of the
chip and the external pulling capacitors.
3901072031
Rev. 010
min
); while at FSKDTA = 1, CX2 is deactivated
oscillator
eff
seen by the crystal.
frequency.
0
at a given load
A
c
to be ad-
CMOS-
max
.
Page 4 of 20
f
f
max
Fig. 2:
min
Fig. 3:
f
c
f
FSKDTA
CX1 CRO
CX1+CRO
0
1
Crystal pulling circuitry
Crystal pulling characteristic
CL
f
f
min
max
= f
= f
XTAL
c
CX1
(CX1+CX2) CRO
CX1+CX2+CRO
c
- Δf (FSK switch is closed)
+ Δf (FSK switch is open)
Description
CX2
FSK Transmitter
C1
L1
XTAL
R1
TH72031
FSKSW
ROI
868/915MHz
C0
Data Sheet
VCC
VEE
Jan/09
CL
CL
eff
eff

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