参数资料
型号: MAX7034AUI/V+T
厂商: Maxim Integrated
文件页数: 9/14页
文件大小: 0K
描述: IC RCVR 315/433MHZ ASK 28TSSOP
其它有关文件: Automotive Product Guide
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
频率: 300MHz ~ 450MHz
灵敏度: -114dBm
数据传输率 - 最大: 66 kbps
调制或协议: ASK
应用: RKE,遥测,安全技术
电流 - 接收: 7.2mA
数据接口: PCB,表面贴装
天线连接器: PCB,表面贴装
特点: 配有 RSSI
电源电压: 4.5 V ~ 5.5 V
工作温度: -40°C ~ 125°C
封装/外壳: 28-TSSOP(0.173",4.40mm 宽)
供应商设备封装: 28-TSSOP
包装: 带卷 (TR)
315MHz/434MHz ASK Superheterodyne
Receiver
L PARASITICS and C PARASITICS include inductance and
capacitance of the PCB traces, package pins, mixer
input impedance, etc. These parasitics at high frequen-
cies cannot be ignored, and can have a dramatic effect
on the tank filter center frequency. The total parasitic
capacitance is generally between 4pF and 6pF.
Mixer
A unique feature of the MAX7034 is the integrated
image rejection of the mixer. This device eliminates the
need for a costly front-end SAW filter for most applica-
tions. Advantages of not using a SAW filter are
increased sensitivity, simplified antenna matching, less
board space, and lower cost.
The mixer cell is a pair of double balanced mixers that
perform an IQ downconversion of the RF input to the
10.7MHz IF from a low-side injected LO (i.e., f LO = f RF -
f IF ). The image-rejection circuit then combines these
signals to achieve 44dB of image rejection. Low-side
injection is required due to the on-chip image-rejection
architecture. The IF output is driven by a source follow-
er biased to create a driving-point impedance of 330 Ω ;
this provides a good match to the off-chip 330 Ω ceram-
ic IF filter.
The IRSEL pin is a logic input that selects one of the
three possible image-rejection frequencies. When V IRSEL
= 0V, the image rejection is tuned to 315MHz. V IRSEL =
V DVDD /2 tunes the image rejection to 375MHz, and
V IRSEL = V DVDD tunes the image rejection to 434MHz.
The IRSEL pin is internally set to V DVDD /2 (image rejec-
tion at 375MHz) when it is left unconnected, thereby
eliminating the need for an external V DVDD /2 voltage.
Phase-Locked Loop
The PLL block contains a phase detector, charge
pump, integrated loop filter, VCO, asynchronous 64x
clock divider, and crystal oscillator driver. Besides the
crystal, this PLL does not require any external compo-
nents. The VCO generates a low-side LO. The relation-
Intermediate Frequency and RSSI
The IF section presents a differential 330 Ω load to pro-
vide matching for the off-chip ceramic filter. The six
internal AC-coupled limiting amplifiers produce an
overall gain of approximately 65dB, with a bandpass-
filter-type response centered near the 10.7MHz IF fre-
quency with a 3dB bandwidth of approximately 10MHz.
The RSSI circuit demodulates the IF by producing a DC
output proportional to the log of the IF signal level, with
a slope of approximately 14.2mV/dB.
Applications Information
Crystal Oscillator
The crystal oscillator in the MAX7034 is designed to
present a capacitance of approximately 3pF between
the XTAL1 and XTAL2. If a crystal designed to oscillate
with a different load capacitance is used, the crystal is
pulled away from its intended operating frequency,
introducing an error in the reference frequency.
Crystals designed to operate with higher differential
load capacitance always pull the reference frequency
higher. For example, a 4.7547MHz crystal designed to
operate with a 10pF load capacitance oscillates at
4.7563MHz with the MAX7034, causing the receiver to
be tuned to 315.1MHz rather than 315.0MHz, an error
of about 100kHz, or 320ppm. It is very important to
use a crystal with a load capacitance that is equal to
the capacitance of the MAX7034 crystal oscillator
plus PCB parasitics.
In actuality, the oscillator pulls every crystal. The crys-
tal’s natural frequency is really below its specified fre-
quency, but when loaded with the specified load
capacitance, the crystal is pulled and oscillates at its
specified frequency. This pulling is already accounted
for in the specification of the load capacitance.
Additional pulling can be calculated if the electrical
parameters of the crystal are known. The frequency
pulling is given by:
C M ? 1 1 ?
2 ? ? C CASE LOAD CASE SPEC ? ?
+ C C
+ C
ship  between  the  RF,  IF,  and  crystal  frequencies  is
given by:
f P =
-
× 10 6
f XTAL = RF IF
f - f
32 × M
where:
M = 1 (V XTALSEL = V DVDD ) or 2 (V XTALSEL = 0V)
To allow the smallest possible IF bandwidth (for best sen-
sitivity), minimize the tolerance of the reference crystal.
where:
f P is the amount the crystal frequency pulled in ppm.
C M is the motional capacitance of the crystal.
C CASE is the case capacitance.
C SPEC is the specified load capacitance.
C LOAD is the actual load capacitance.
When the crystal is loaded as specified (i.e., C LOAD =
C SPEC ), the frequency pulling equals zero.
9
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