Si4455
4.2.3. Frequency Deviation
If FSK or GFSK modulation is selected, then a frequency deviation will also need to be selected. The frequency
deviation is the maximum instantaneous difference between the FM modulated frequency and the nominal carrier
frequency. The Si4455 can operate across a wide range of data rates and frequency deviations. If a frequency
deviation needs to be selected, the following guideline might be helpful to build a robust link. A proper frequency
deviation is linked to the frequency error between transmitter and receiver. The frequency error can be calculated
using the crystal tolerance parameters and the RF operating frequency: (ppm_tx+ppm_rx)*Frf/1E-6. For frequency
errors below 50 kHz, the deviation can be about the same as the frequency error. For frequency errors exceeding
50 kHz, the frequency deviation can be set to about 0.75 times the frequency error. It is advised to position the
modulation index (= 2*freq_dev/data_rate) into a range between 1 and 100 for Packet Handling mode and 2 to 100
for direct mode (non-standard preamble). For example, when in Packet Handling mode and the frequency error is
smaller than data_rate/2, the frequency deviation is set to about data_rate/2. When the frequency error exceeds
100xdata_rate/2, the frequency deviation is preferred to be set to 100xdata_rate/2.
4.2.4. Data Rate
The Si4455 can be set to communicate at between 1 to 500 kbps in (G)FSK mode and between 0.5 to 120 kbps in
OOK mode. Higher data rates allow for faster data transfer while lower data rates result in improved sensitivity and
range performance.
4.2.5. Channel Bandwidth
The channel bandwidth sets the bandwidth for the receiver. Since the receiver bandwidth is directly proportional to
the noise allowed in the system, this will normally be set as low as possible. The specific channel bandwidth used
will usually be determined based upon the precision of the oscillator and the frequency deviation of the transmitted
signal. The RCA can provide the recommended channel bandwidth based upon these two parameters to help
optimize the system.
4.2.6. Preamble Length
A preamble is a defined simple bit sequence used to notify the receiver that a data transmission is imminent. The
length of this preamble will normally be set as short as possible to minimize power while insuring that it will be
reliably detected given the receiver characteristics, such as duty cycling and packet error rate performance. The
Si4455 allows the preamble length to be set between 0 to 255 bytes in length with a default length of 4 bytes. The
preamble pattern for the Si4455 will always be 55h with a first bit of "0" if the packet handler capability is used.
4.2.7. Sync Word Length and Pattern
The sync word follows the preamble in the packet structure and is used to identify the start of the payload data and
to synchronize the receiver to the transmitted bit stream. The Si4455 allows for sync word lengths of 1 to 4 bytes
and the specific pattern can be set within the RCA program. The default is a 2 byte length 2d d4 pattern.
4.2.8. Cyclic Redundancy Check
Cyclic Redundancy Check (CRC) is used to verify that no errors have occurred during transmission and the
received packet has exactly the same data as it did when transmitted. If this function is enabled in the Si4455, the
last byte of transmitted data must include the CRC generated by the transmitter. The Si4455 then performs a CRC
calculation on the received packet and compares that to the transmitted CRC. If these two values are the same, the
Si4455 will set an interrupt indicating a valid packet has been received and is waiting in the Rx FIFO. If these two
CRC values differ, the Si4455 will flag an interrupt indicating that a packet error occurred. The Si4455 uses
CRC(16)-IBM: x16+x15+x2+1 with a seed of 0xFFFF.
20
Rev 1.1
相关PDF资料
SI4462DY-T1-GE3 MOSFET N-CH 200V 1.15A 8-SOIC
SI4463-915-DK KIT DEV WIRELESS SI4463 915MHZ
SI4465ADY-T1-GE3 MOSFET P-CH 8V 13.7A 8SOIC
SI4466DY-T1-GE3 MOSFET N-CH 20V 9.5A 8-SOIC
SI4470EY-T1-GE3 MOSFET N-CH D-S 60V 8-SOIC
SI4472DY-T1-GE3 MOSFET N-CH D-S 150V 8-SOIC
SI4477DY-T1-GE3 MOSFET P-CH D-S 20V 8-SOIC
SI4483EDY-T1-GE3 MOSFET P-CH D-S 30V 8-SOIC
相关代理商/技术参数
Si4455-B1A-FMR 功能描述:射频收发器 Si4455 EZRadio Transceiver RoHS:否 制造商:Atmel 频率范围:2322 MHz to 2527 MHz 最大数据速率:2000 Kbps 调制格式:OQPSK 输出功率:4 dBm 类型: 工作电源电压:1.8 V to 3.6 V 最大工作温度:+ 85 C 接口类型:SPI 封装 / 箱体:QFN-32 封装:Tray
SI4455-B1A-GM 制造商:Silicon Laboratories Inc 功能描述:SI4455 EZRADIO TRANSCEIVER - Bulk
SI4455-C2A-GM 功能描述:IC RF TxRx + MCU General ISM < 1GHz 284MHz ~ 960MHz 20-VFQFN Exposed Pad 制造商:silicon labs 系列:- 包装:托盘 零件状态:有效 类型:TxRx + MCU 射频系列/标准:通用 ISM < 1GHz 协议:- 调制:FSK,GFSK,OOK 频率:284MHz ~ 960MHz 数据速率(最大值):500kbps 功率 - 输出:13dBm(最小值) 灵敏度:-115dBm 存储容量:- 串行接口:SPI GPIO:4 电压 - 电源:1.8 V ~ 3.6 V 电流 - 接收:10.9mA 电流 - 传输:19mA ~ 24mA 工作温度:-40°C ~ 85°C 封装/外壳:20-VFQFN 裸露焊盘 标准包装:490
SI4455-C2A-GMR 功能描述:IC RF TXRX+MCU ISM<1GHZ 20-VFQFN 制造商:silicon labs 系列:* 包装:剪切带(CT) 零件状态:在售 封装/外壳:20-VFQFN 裸露焊盘 标准包装:1
SI4455DY 制造商:VISHAY 制造商全称:Vishay Siliconix 功能描述:P-Channel 150-V (D-S) MOSFET
SI4455DY-T1-E3 功能描述:MOSFET 150V 8.9A 5.9W 295mohm @ 10V RoHS:否 制造商:STMicroelectronics 晶体管极性:N-Channel 汲极/源极击穿电压:650 V 闸/源击穿电压:25 V 漏极连续电流:130 A 电阻汲极/源极 RDS(导通):0.014 Ohms 配置:Single 最大工作温度: 安装风格:Through Hole 封装 / 箱体:Max247 封装:Tube
SI4455DY-T1-GE3 功能描述:MOSFET 150V 8.9A 5.9W 295mohm @ 10V RoHS:否 制造商:STMicroelectronics 晶体管极性:N-Channel 汲极/源极击穿电压:650 V 闸/源击穿电压:25 V 漏极连续电流:130 A 电阻汲极/源极 RDS(导通):0.014 Ohms 配置:Single 最大工作温度: 安装风格:Through Hole 封装 / 箱体:Max247 封装:Tube
SI4456DY-T1-E3 功能描述:MOSFET 40V 33A 7.8W 3.8mohm @ 10V RoHS:否 制造商:STMicroelectronics 晶体管极性:N-Channel 汲极/源极击穿电压:650 V 闸/源击穿电压:25 V 漏极连续电流:130 A 电阻汲极/源极 RDS(导通):0.014 Ohms 配置:Single 最大工作温度: 安装风格:Through Hole 封装 / 箱体:Max247 封装:Tube