SX1212IWLTRT Semtech, SX1212IWLTRT Datasheet - Page 53

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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Manufacturer:
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Please note that the received length byte, as part of the payload, is not stripped off the packet and is made
available in the FIFO.
To disable this function the user should set the value of the PKTParam_Payload_length to the value of the FIFO
size selected.
The CRC check is enabled by setting bit PKTParam_CRC_on. It is used for checking the integrity of the message.
By default, if the CRC check fails then the FIFO is automatically cleared and no interrupt is generated. This filtering
function can be disabled via PKTParam_CRC_autoclr bit and in this case, even if CRC fails, the FIFO is not
cleared and only Payload_ready interrupt goes high. Please note that in both cases, the two CRC checksum bytes
are stripped off by the packet handler and only the payload is made available in the FIFO.
The CRC is based on the CCITT polynomial as shown in Figure 45. This implementation also detects errors due to
leading and trailing zeros.
The payload to be transmitted may contain long sequences of 1’s and 0’s, which introduces a DC bias in the
transmitted signal. The radio signal thus produced has a non uniform power distribution over the occupied channel
bandwidth. It also introduces data dependencies in the normal operation of the demodulator. Thus it is useful if the
transmitted data is random and DC free.
For such purposes, two techniques are made available in the packet handler: Manchester encoding and data
whitening. Please note that only one of the two methods should be enabled at a time.
Manchester encoding/decoding is enabled by setting bit PKTParam_Manchester_on and can only be used in
Packet mode.
The NRZ data is converted to Manchester code by coding ‘1’ as “10” and ‘0’ as “01”.
In this case, the maximum chip rate is the maximum bit rate given in the specifications section and the actual bit
rate is half the chip rate.
Rev 2 – June 18th, 2009
ADVANCED COMMUNICATIONS & SENSING
On Tx side a two byte CRC checksum is calculated on the payload part of the packet and appended to the end
of the message.
On Rx side the checksum is calculated on the received payload and compared with the two checksum bytes
received. The result of the comparison is stored in the PKTParam_CRC_status bit and CRC_OK IRQ source.
data input
5.5.6. DC-Free Data Mechanisms
X
5.5.5.4. CRC Based
5.5.6.1. Manchester Encoding
15
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13
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Figure 45: CRC Implementation
12
CRC Polynomial =X
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