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PDF RFM01 Data sheet ( Hoja de datos )

Número de pieza RFM01
Descripción Universal ISM Band FSK Receiver
Fabricantes HOPERF 
Logotipo HOPERF Logotipo



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RFM01 Universal ISM
Band FSK Receiver
DESCRIPTION
Hoperf’ RFM01 is a single module, low power, multi-channel FSK
receiver designed for use in applications requiring FCC or ETSI
conformance for unlicensed use in the 315, 433, 868, and 915 MHz
bands. Used in conjunction with RFM02, Hoperf’ FSK transmitters,
the RFM01 is a flexible, low cost, and highly integrated solution that
does not require production alignments. All required RF functions are
integrated. Only an external crystal and bypass filtering are needed for
operation.
The RFM01 has a completely integrated PLL for easy RF design, and its
rapid settling time allows for fast frequency hopping, bypassing multipath
fading, and interference to achieve robust wireless links. The PLL’s high
resolution allows the usage of multiple channels in any of the bands. The
baseband bandwidth (BW) is programmable to accommodate various
deviation, data rate, and crystal tolerance requirements. The receiver
employs the Zero-IF approach with I/Q demodulation, therefore no external
components (except crystal and decoupling) are needed in a typical
application. The RFM01 is a complete analog RF and baseband receiver
including a multi-band PLL synthesizer with an LNA, I/Q down converter
mixers, baseband filters and amplifiers, and I/Q demodulator.
The Module dramatically reduces the load on the microcontroller
with integrated digital data processing: data filtering, clock recovery, data
pattern recognition and integrated FIFO. The automatic frequency control
(AFC) feature allows using a low accuracy (low cost) crystal. To minimize
the system cost, the chip can provide a clock signal for the microcontroller,
avoiding the need for two crystals.
For simple applications, the receiver supports a standalone operation
mode. This allows complete data receiver operation and control of four
digital outputs based on the incoming data pattern without a
microcontroller. In this mode, 12 or more predefined frequency channels
can be used in any of the four bands. For low power applications, the
device supports low duty-cycle operation based on the internal wake-up
timer.
FUNCTIONAL BLOCK DIAGRAM
RFM01
FEATURES
Fully integrated (low BOM, easy design-in)
No alignment required in production
Fast settling, programmable, high-resolution PLL
Fast frequency hopping capability
High bit rate (up to 115.2 kbps in digital mode and 256 kbps
in analog mode)
Direct differential antenna input
Programmable baseband bandwidth (67 to 400 kHz)
Analog and digital RSSI outputs
Automatic frequency control (AFC)
Data quality detection (DQD)
Internal data filtering and clock recovery
RX pattern recognition
SPI compatible serial control interface
Clock and reset signals for microcontroller
16 bit RX data FIFO
Standalone operation mode without microcontroller
Low power duty-cycle mode (less than 0.5 mA average
supply current)
Standard 10 MHz crystal reference with in circuit calibration
Alternative OOK support
Wake-up timer
Low battery detector
2.2 to 5.4 V supply voltage
Low power consumption (~9 mA in low bands)
Low standby current (0.3 µA)
Compact 16-pin TSSOP package
TYPICAL APPLICATIONS
Remote control
Home security and alarm
Wireless keyboard/mouse and other PC peripherals
Toy control
Remote keyless entry
Tire pressure monitoring
Telemetry
Personal/patient data logging
Remote automatic meter reading
1
www.hoperf.com
Free Datasheet http://www.datasheet4u.com/

1 page




RFM01 pdf
Typical Application, Microcontroller Mode
Minimal Microcontroller Mode
VCC
C2 C1
10n 2.2u
P4
P3
P2
P1
P0
nRESET CLKin
SDI 1
SCK 2
nSEL 3
SDO 4
nIRQ 5
nFFS 6
FFIT 7
8
RFM01
16 VDI
15 ARSSI
14
13
12
11
10
9
C3
Antenna
250 Ohm
(optional)
(optional)
X1
10MHz
RFM01
Microcontroller Mode with FIFO usage
VCC
C2 C1
10n 2.2u
P4
P3
P2
P1
P0
nRESET CLKin
SDI 1
SCK 2
nSEL 3
SDO 4
nIRQ 5
nFFS 6
FFIT 7
8
RMF01
16 VDI
15 ARSSI
14
13
12
11
10
9
C3
Antenna
250 Ohm
(optional)
(optional)
X1
10MHz
5
Free Datasheet http://www.datasheet4u.com/

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RFM01 arduino
RFM01
Control Commands
Control Word
1 Configuration Setting Command
2 Frequency Setting Command
3 Receiver Setting Command
4 Wake-up Timer Command
5 Low Duty-Cycle Command
6
Low Battery Detector and Clock Divider
Command
7 AFC Control Command
8 Data Filter Command
9 Data Rate Command
10 Output and FIFO Command
11 Reset Mode Command
12 Status Read Command
Related Parameters/Functions
Frequency band, low battery detector, wake-up timer,
crystal oscillator load capacitance, baseband filter
bandwidth, clock output
Set the frequency of the local oscillator
Set VDI source, LNA gain, RSSI threshold,
Wake-up time period
Set duty-cycle, enable low duty-cycle mode.
Set LBD threshold voltage and microcontroller clock
division ratio
Set AFC parameters
Set data filter type, clock recovery parameters
Bit rate
Set FIFO IT level, FIFO start control, FIFO enable
and FIFO fill enable
Enable / disable sensitive reset
Read status information
Related Control Bits
b1 to b0, eb, et, ex, x3 to
x0, i2 to i0, dc
f11 to f0
d1 to d0, g1 to g0, r2 to
r0, en
r4 to r0, m7 to m0
d6 to d0, en
d2 to d0, t4 to t0
a1 to a0, rl1 to rl0, st, fi,
oe, en
al, ml, s1 to s0, f2 to f0
cs, r6 to r0
f3 to f0, s1 to s0, ff, fe
dr
Note: In the following tables the POR column shows the default values of the command registers after power-on.
1. Configuration Setting Command
bit 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0
1 0 0 b1 b0 eb et ex x3 x2 x1 x0 i2 i1 i0 dc
POR
893Ah
b1 b0
00
01
10
11
Frequency Band [MHz]
315
433
868
915
i2
i1 i0
Baseband
Bandwidth [kHz]
0 00
reserved
0 01
400
0 10
340
0 11
270
1 00
200
1 01
134
1 10
67
1 11
reserved
x3 x2 x1 x0 Crystal Load Capacitance [pF]
0000
8.5
0001
9.0
0010
9.5
0011
10.0
1110
1111
15.5
16.0
Bits eb and et control the operation of the low battery detector and
wake-up timer, respectively. They are enabled when the
corresponding bit is set.
If ex is set the crystal is active during sleep mode.
When dc bit is set it disables the clock output
11
Free Datasheet http://www.datasheet4u.com/

11 Page







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