XR18W753 Datasheet PDF - Exar
Part Number | XR18W753 | |
Description | SINGLE CHIP 868MHZ TO 956MHZ RF TRANSCEIVER | |
Manufacturers | Exar | |
Logo | ||
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SINGLE CHIP 868MHZ TO 956MHZ RF TRANSCEIVER
MARCH 2008
REV. 1.0.0
GENERAL DESCRIPTION
The XR18W753 is a low-power, single-chip RF
transceiver designed to operate in license-free
European 868 MHz SRD, North American / Australian
915 MHz ISM bands. Digital I/Q modulation,
demodulation and direct sequence spread spectrum
techniques were employed to provide robust data
transmission in signal congested RF environments.
The device provides extensive hardware support for
packet handling such as frame timing, data buffering,
RSSI/ED/LQI for clear channel assessment, and FCS
and CRC hardware for error detection. TX output
power is programmable from -24 dBm to 0 dBm with
100 Kbps and 250 Kbps O-QPSK data supported.
APPLICATIONS
• Industrial/Home automation, monitoring and control
• Point of sales and data collection terminals
• Entertainment, game, toy, robot, and remote control
• Active RFID, asset tracking and keyless entry
• Lighting, HVAC energy management
• Automatic meter reading
• Wireless sensor and telemetry networks
FEATURES
• 2.2 to 3.6 Volt Operation
• 868 MHz to 956 MHz
• Direct-Sequence-Spread-Spectrum Transceiver
• Direct-up-conversion I/Q modulator
• Low-IF I/Q digital receiver
• Superior blocking/desensitization performance
• RSSI / ED / LQI for clear channel assessment
• FCS computation and CRC for error detection
• Low BOM cost and ease of production
• I2C Interface to data buffer and internal registers
• Fully integrated loop filter with few external
components needed (crystal, capacitors, antenna
and matching networks)
• Programmable TX output power in 3 dB steps
• Receiver sensitivity of -94 dBm at 100 Kbps
• Supports O-QPSK 100 Kbps and 250 Kbps data
• Industrial temperature (-40 to +85 oC)
• 48-pin QFN package
FIGURE 1. RF TRANSCEIVER BLOCK DIAGRAM
16MHz
XTAL
VREG_CLK_EN
16MHz
CLK
SCL
SDA
IRQ#
CLOCK
GENERATION
Voltage
Regulator
DATA
ACCESS
CONTROLLER
TX
DATA
BUFFER
RX
DATA
BUFFER
ModemControl &Status
CRC
P
L
M
E
cca_ed_ready
pck_tx_ready
pck_received
plme_ready
Digital
Modem
RF
Modem
Controller
Matching
Network
Exar Corporation 48720 Kato Road, Fremont CA, 94538 • (510) 668-7000 • FAX (510) 668-7017 • www.exar.com
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REV. 1.0.0
XR18W753
SINGLE CHIP 868MHZ TO 956MHZ RF TRANSCEIVER
NAME
PIN TYPE
DESCRIPTION
TEST2
31
Digital I
Factory Test Mode. For normal operation, this pin should be connected
to GND.
A2
32
Digital I
I2C Address bit-2
A3
33
Digital I
I2C Address bit-3. This address line should be connected to GND.
CLK_OUT+
34
Digital O
16 MHz LVDS digital clock outputs. Connect pin 35 to ground for
CLK_OUT-
35
Digital O
CMOS clock output.
MODEM_RESET 36
Digital I
Digital modem reset (active high, level sensitive).
VREG_CLK_EN
37
Digital I
Voltage Regulator and crystal oscillator enable (active high, level sensi-
tive)
AVDD19
38
Power I
VDD (1.9V ± 0.1V) for crystal oscillator and clock divider.
XTAL1
39
Analog I
16MHz crystal input or external clock input. Based on typical PCB stray
capacitance, a 27 pF capacitor to GND is recommended.
XTAL2
40
Analog I
Crystal output, 27 pF capacitor to GND is recommended. If an external
clock is used at XTAL1, this input should be left unconnected.
AGND
41
Ground
Ground for crystal oscillator and buffers.
DVDD_OUT
42
Power O
Decoupling pin for digital VDD, 10 nF capacitor to GND recommended.
DVDD
43
Power I
Digital Power Supply, DVDD = 2.2 - 3.6V. DVDD and AVDD should use
the same power supply. 100nF capacitor to GND recommended.
AVDD
44
Power I
Analog Power Supply, AVDD = 2.2 - 3.6V. DVDD and AVDD should use
the same power supply. 100nF capacitor to GND recommended.
AVDD_OUT
45
Power O
1.9V stabilized analog VDD output. This output should be connected to
all AVDD19 pins. 1uF ceramic capacitor to GND recommended.
AVDD19
46
Power I
Analog VDD (1.9V ± 0.1V) for ADC and DAC.
AVDD19
47
Power I
Analog VDD (1.9V ± 0.1V) for ADC.
AVDD19
48
Power I
Analog VDD (1.9V ± 0.1V) for IF strip, TX mixers and both I/Q dividers.
PADDLE
49
Ground
The center pad on the backside of the 48-QFN package is metallic and
is not electrically connected to anything inside the device. It must be
soldered on to the PCB and may be optionally connected to GND on the
PCB. The thermal pad size on the PCB should be the approximate size
of this center pad and should be solder mask defined. The solder mask
opening should be at least 0.0025" inwards from the edge of the PCB
thermal pad.
Pin type: I=Input, O=Output, I/O= Input/output, OD=Output Open Drain.
5
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Information | Total 27 Pages | |
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