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MICRF213 查看數據表(PDF) - Micrel

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MICRF213 Datasheet PDF : 16 Pages
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Micrel, Inc.
Functional Diagram
MICRF213
ANT
VDD
VSS
SEL
SEL
SQUELCH
SHDN
RF
Amp
Mixer
Mixer
fLO
Synthesizer
Reference and Control
IMAGE
REJECT
FILTER
–f f
i
Control
Logic
Reference
Oscillator
AGC
CAGC
IF
Amp
Control Logic
Detector
Programmable
Low Pass Filter
DO
Control Logic
RSSI
RSSI
OOK
Demodulator
IF
Amp
DO
Slicing
Level
CTH
RO1
RO2
Crystal
Figure 1. Simplified Block Diagram
Functional Description
Figure 1. Simplified Block Diagram. It is the basic
structure of the MICRF213. It is made of three sub-
blocks; Image Rejection UHF Down-converter, the OOK
Demodulator, and Reference and Control Logics.
Outside the device, the MICRF213 requires only three
components to operate; two capacitors (CTH, and
CAGC) and the reference frequency device, usually a
quartz crystal. An additional five components may be
used to improve performance. These are: power supply
decoupling capacitor, two components for the matching
network and two components for the pre-selector band
pass filter.
Receiver Operation
LNA
The RF input signal is AC-coupled into the gate circuit of
the grounded source LNA input stage. The LNA is a
Cascoded NMOS.
Mixers and Synthesizer
The LO ports of the Mixers are driven by quadrature
local oscillator outputs from the synthesizer block. The
local oscillator signal from the synthesizer is placed on
the low side of the desired RF signal. This allows
suppression of the image frequency at twice the IF
frequency below the wanted signal. The local oscillator
is set to 32 times the crystal reference frequency via a
phase-locked loop synthesizer with a fully integrated
loop filter.
Image Reject Filter and Band-Pass Filter
The IF ports of the mixer produce quadrature down
converted IF signals. These IF signals are low-pass
filtered. This removes higher frequency products prior to
the image reject filter where they are combined to reject
the image frequencies. The IF signal then passes
through a third order band pass filter. The IF center
frequency is 0.86MHz. The IF BW is 235KHz @
315MHz, this will vary with RF operating frequency. The
IF BW can be calculated via direct scaling:
BWIF
=
BWIF@315MHz ×
⎜⎛ Operating Freq (MHz) ⎟⎞
315
These filters are fully integrated inside the MICRF213.
After filtering, four active gain controlled amplifier stages
enhance the IF signal to proper level for demodulation.
OOK Demodulator
The demodulator section is comprised of detector,
programmable low pass filter, slicer, and AGC
comparator.
May 2007
6
M9999-052307-A
(408) 944-0800

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