参数资料
型号: RFRXD0920-I/LQ
厂商: Microchip Technology
文件页数: 9/32页
文件大小: 0K
描述: MODULE RCVR 868/915MHZ ASK/FSK
产品变化通告: RFRXD0(4,9)20I/LQ Obsolescence 07/Mar/2012
标准包装: 250
频率: 800MHz ~ 930MHz
灵敏度: -106dBm
数据传输率 - 最大: 80 kbps
调制或协议: ASK,FM,FSK
应用: 家庭自动化,遥感,RKE
电流 - 接收: 9.2mA
数据接口: PCB,表面贴装
天线连接器: PCB,表面贴装
电源电压: 2.5 V ~ 5.5 V
工作温度: -40°C ~ 85°C
封装/外壳: 32-LQFP
供应商设备封装: 32-LQFP(7x7)
包装: 托盘
rfRXD0420/0920
3.0
APPLICATION CIRCUITS
effect the trim capacitor has on the receive frequency
for the rfRXD0420 at 433.92 MHz. Keep in mind that
This section provides general information on applica-
tion circuits for the rfRXD0420/0920 receiver. The
following connections and external components
this graph represents one example circuit and the
actual results depends on the crystal and PCB layout.
provide starting points for designs and list the minimum
circuitry recommended for general purpose
applications.
Performance of the radio system (transmitter and
receiver) is affected by component selection and the
environment in which it operates. Each system design
has its own unique requirements. Specifications for a
particular design requires careful analysis of the appli-
cation and compromises for a practical implementation.
FIGURE 3-2:
434.10
434.05
434.00
433.95
433.90
433.85
433.80
RECEIVE FREQUENCY VS.
TRIM CAPACITANCE
3.1
General
433.75
This subsection lists connections and components that
are common between applications. The following
subsections give specific circuit connections and
components for ASK, FSK and FM applications.
Trim Capacitor (pF)
Note that a 0 ? resistor, in the lower left of the graph,
represents an infinite capacitance. This will be the
3.1.1
BYPASS CAPACITORS
lowest frequency obtainable for the crystal and PCB
combination.
Bypass capacitors should be placed as physically close
as possible to V DD pins 8, 14, 17, 27 and 32
respectively. Additional bypassing and board level low-
pass filtering of the power supply may be required
depending on the application.
Calculation of the crystal frequency requires knowl-
edge of the receive frequency (f rf ) and intermediate
frequency (f if ). Figure 3-3 is a worksheet to assist the
designer in calculating the crystal frequency. Table 3-1
lists crystal frequencies for popular receive frequen-
3.1.2
FREQUENCY PLANNING
cies. Table 3-2 lists crystal parameters required for
ordering crystals. For background information on
The rfRXD0420/0920 receivers are single-conversion
superheterodyne architecture with a single IF
frequency. The receive frequency is set by the crystal
frequency (f XTAL ) and intermediate frequency (f if ). For
a majority of applications an external crystal is
connected to XTAL (Pin 26). Figure 3-1 illustrates an
example circuit with an optional trim capacitor.
crystal selection see Application Note AN826, Crystal
Oscillator Basics and Crystal Selection for rfPIC TM and
PICmicro ? Devices.
TABLE 3-1: CRYSTAL FREQUENCIES FOR
POPULAR RECEIVE
FREQUENCIES
FIGURE 3-1:
XTAL EXAMPLE CIRCUIT
WITH OPTIONAL TRIM
CAPACITOR
Receive
Frequency
315 MHz
Crystal
Frequency
rfRXD0420
20.35625 MHz (2)
26
433.92 MHz
26.45125 MHz (1)
rfRXD0920
C TRIM
(OPTIONAL)
868.3 MHz
915 MHz
26.8 MHz (1)
28.259375 MHz (1)
X1
(1) Low-side injection (2) High-side injection
TABLE 3-2: CRYSTAL PARAMETERS
Parameter
Value
The crystal load capacitance should be specified to
include the internal load capacitance of the XTAL pin of
15 pF plus PCB stray capacitance (approximately 2 to
3 pF). A trim capacitor can be used to trim the crystal
Frequency:
Mode:
Load Capacitance:
(see Figure 3-1)
Fundamental
15-20 pF
on frequency within the limitations of the crystal’s trim
sensitivity and pullability. Figure 3-2 illustrates the
ESR: 60 ? Maximum
These values are for design guidance only.
? 2003 Microchip Technology Inc.
Preliminary
DS70090A-page 9
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