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MICRF114 Datasheet(PDF) 4 Page - Microchip Technology

Part # MICRF114
Description  Low-Power Integrated Sub-GHz Wireless RF Transmitter
PDF  34 Pages
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Manufacturer  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MICRF114 Datasheet(HTML) 4 Page - Microchip Technology

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MICRF114
DS50002416A-page 4
Preliminary
 2015 Microchip Technology Inc.
1.3
Pin Descriptions
Table 1-1 describes the MICRF114 pins.
1.4
Power Management
The MICRF114 has a single power pin and a single
ground pin. The sensitive analog blocks run from an
internal LDO, which does not need an external
capacitor. A bias and reference circuit provides
reference voltage to the LDO and bias currents to all
analog blocks.
The digital block runs from the unregulated supply. This
enables communication with the MCU even when most
of the blocks (including the LDO) are turned off to save
power. Additionally, the MICRF114 retains its self-
calibration result and user-programmable parameters
in this low-power state. To get the highest possible
efficiency, the RF Power Amplifier (PA) block runs
directly from the unregulated supply.
A POR circuit keeps the MICRF114 in a Reset state
until the supply voltage is sufficient for proper operation
of the digital block. The POR event resets the device
control state machine and the Configuration register to
their default state. A Reset is also triggered by
sufficiently large supply voltage glitches and brown-out.
1.5
MCU Interface
A proprietary 2-wire serial interface consisting of a
clock line and a data line is utilized to control the
operation of the MICRF114 and to input the transmit
data packet. Special start and stop conditions on these
two lines indicate the beginning and end of
communication with the MCU. Except during these
Start and Stop bits, the MCU must change the data
only when the clock is at logic low. Control and
Configuration bits are sent synchronously, and the
MICRF114 samples the data on the rising edge of the
clock. Transmit data is sent asynchronously with the
clock held low. During transmission, the serial data line
is connected directly to the RF modulator. The
assembly and timing of the data packet are the
responsibilities of the MCU.
1.6
Device Control
Data transmission start and stop are always initiated by
the MCU. Programmable transmit parameters are
stored in a single 16-bit register. The value in this
register is kept as long as the supply voltage is present.
The MCU can rewrite the register at the beginning of
each transmission. Immediately after POR or at the
beginning of a transmission, an internal state machine
turns on the various blocks of the MICRF114 with the
required sequence and timing and then performs an
automatic calibration of the device when required. The
MCU must wait for these operations to be completed
before sending the transmit data packet.
An initial calibration is done after POR. The calibration
result is kept as long as the supply voltage is present.
Recalibration can be requested by the MCU when
required.
1.7
Crystal Oscillator
The reference frequency source is a single-pin crystal
oscillator. The transmit frequency is 32 times the
reference. Thus, the relative accuracy of the crystal
oscillator directly determines the accuracy of the
transmit frequency. The most popular transmit
frequencies require standard and off-the-shelf low-cost
crystals. The oscillator operates at parallel resonance.
The load capacitor that the crystal requires is
integrated to minimize the BOM. To accommodate
various crystal types and compensate for PCB parasitic
capacitances, the value of this load capacitor is
programmable by the MCU.
The other function of the crystal oscillator is to provide
a relatively accurate clock frequency for the automatic
calibration circuit. As the crystal frequency is
determined by the transmit frequency and can vary
over a wide range, the clock is generated by dividing
the crystal frequency by a programmable number that
must be properly set
to achieve the expected
performance.
TABLE 1-1:
MICRF114 PIN DESCRIPTIONS
Pin
Name
Type
Description
1
SCK
Digital Input
MCU interface serial clock input
2
SDI
Digital Input
MCU interface serial configuration or TX data input
3
VDD
Power
Positive supply voltage
4
RFO
Analog Output
RF TX output
5
VSS
Power
Ground reference
6
OSC
Analog Input
Reference crystal connection



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