SX1212IWLTRT Semtech, SX1212IWLTRT Datasheet - Page 19

IC TXRX 300MHZ-510MHZ 32-TQFN

SX1212IWLTRT

Manufacturer Part Number
SX1212IWLTRT
Description
IC TXRX 300MHZ-510MHZ 32-TQFN
Manufacturer
Semtech
Datasheet

Specifications of SX1212IWLTRT

Frequency
300MHz ~ 510MHz
Data Rate - Maximum
150kbps
Modulation Or Protocol
FSK, OOK
Applications
AMR, ISM, Home Automation, Process Control
Power - Output
12.5dBm
Sensitivity
-110dBm
Voltage - Supply
2.1 V ~ 3.6 V
Current - Receiving
3mA
Current - Transmitting
25mA
Data Interface
PCB, Surface Mount
Antenna Connector
PCB, Surface Mount
Operating Temperature
-40°C ~ 85°C
Package / Case
32-TQFN
Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Operating Temperature Classification
Industrial
Modulation Type
FSK/OOK
Package Type
TQFN EP
Operating Supply Voltage (min)
2.1V
Operating Supply Voltage (typ)
2.5/3.3V
Operating Supply Voltage (max)
3.6V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Memory Size
-
Lead Free Status / Rohs Status
Supplier Unconfirmed
Other names
SX1212IWLTR

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In OOK mode, the phase difference between the I and Q channels is kept constant (independent of the transmitted
data). Thus, the first stage of up-conversion creates a fixed frequency signal at the low IF = Fdev (This explains
why the transmitted OOK spectrum is offset by Fdev).
OOK Modulation is accomplished by switching on and off the PA and PA regulator stages. By convention:
After the interpolation filters, a set of four mixers combines the I and Q signals and converts them into a pair of
complex signals at the second intermediate frequency, equal to 1/8 of the LO frequency, or 1/9 of the RF
frequency. These two new I and Q signals are then combined and up-converted to the final RF frequency by two
quadrature mixers fed by the LO signal. The signal is pre-amplified, and then the transmitter output is driven by a
final power amplifier stage.
In Continuous transmit mode, setting the Bit Rate is useful to determine the frequency of DCLK. As explained in
section 5.3.2, DCLK will trigger an interrupt on the uC each time a new bit has to be transmitted.
Bit rate, frequency deviation and TX interpolation filter settings are a function of the reference oscillator crystal
frequency, F
the correct reference oscillator frequency. Please contact your local Semtech representative for further details.
The frequency deviation, Fdev, of the FSK transmitter is programmed through bits MCParam_Freq_dev:
For correct operation the modulation index ß should be such that:
It should be noted that for communications between a pair of SX1212s, that Fdev should be at least 33 kHz to
ensure a correct operation on the receiver side.
Fdev has no physical meaning in OOK transmit mode. However, as has been shown - due to the DDS baseband
signal generation, the OOK signal is always offset by “-Fdev” (see formulas is section 3.2.8). It is suggested that
Fdev retains its default value of 100 kHz in OOK mode.
Rev 2 – June 18th, 2009
ADVANCED COMMUNICATIONS & SENSING
3.3.2. Bit Rate Setting
3.3.3. Alternative Settings
3.3.4. Fdev Setting in FSK Mode
3.3.5. Fdev Setting in OOK Mode
XTAL
. Settings other than those programmable with a 12.8 MHz crystal can be obtained by selection of
BR
=
2
*
[
1
+
val
Fdev
(
MCParam
=
32
*
DATA
DATA
[
1
β
+
_
val
=
BR
Page 19 of 77
2
=
=
(
MCParam
*
'
' '
' ' 1 '
_
' ' 0
Fdev
C
F
BR
F
XTAL
)
XTAL
] [
*
PAon
PAoff
1
+
2
_
val
Freq
(
MCParam
_
dev
)
]
_
BR
_
D
)
]
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SX1212

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