参数资料
型号: TRC105
厂商: RFM
文件页数: 7/67页
文件大小: 0K
描述: IC TXRX 300MHZ-510MHZ 32TQFN
标准包装: 1
频率: 300MHz ~ 510MHz
数据传输率 - 最大: 200kbps
调制或协议: FSK,OOK
应用: 通用
功率 - 输出: 13dBm
灵敏度: -112dBm
电源电压: 2.1 V ~ 3.6 V
电流 - 接收: 3mA
电流 - 传输: 30mA
数据接口: PCB,表面贴装
天线连接器: PCB,表面贴装
工作温度: -40°C ~ 85°C
封装/外壳: 32-TQFN
包装: 标准包装
产品目录页面: 583 (CN2011-ZH PDF)
其它名称: 583-1159-6
2.1 RF Port
The receiver and the transmitter share the same RF pins. Figure 3 shows the implementation of the common
front-end. In transmit mode, the PA and the PA regulator are on; the voltage on VDD_PA pin is the nominal volt-
age of the regulator, about 1.8 V. The external inductances L1 and L4 are used for the PA. In receive mode, both
PA and PA regulator are off, and VDD_PA is tied to ground. The external inductances L1 and L4 are used for bi-
asing and matching the LNA, which is implemented as a common gate amplifier.
Figure 3
2.2 Transmitter
The TRC105 is set to transmit mode when MCFG00_Chip_Mode[7..5] bits are set to 100. In Continuous data
mode the transmitted data is sent directly to the modulator. The host microcontroller is provided with a bit rate
clock by the TRC105 to clock the data; using this clock to send the data synchronously is mandatory in FSK con-
figuration and optional in OOK configuration. In Buffered and Packet data modes the data is first written into the
64-byte FIFO via the SPI interface; data from the FIFO is then used by the modulator.
At the front end of the transmitter, I and Q signals are generated by the base-band circuit which contains a digital
waveform generator, two D/A converters and two anti-aliasing low-pass filters. The I and Q signals are two quad-
rature sinusoids whose frequency is the selected frequency deviation. In FSK mode, the phase shift between I
and Q is switched between +90° and -90° according to the input data. The modulation is then performed at this
stage, since the information contained in the phase shift will be converted into a frequency shift when the I and Q
signals are combined in the first mixers. In OOK mode, the phase shift is kept constant whatever the data. The
combination of the I and Q signals in the first mixers creates a fixed frequency signal at a low intermediate fre-
quency which is equal to the selected frequency deviation. After D/A conversion, both I and Q signals are filtered
by anti-aliasing filters whose bandwidth is programmed with the register TXCFG1A_TXInterpfilt[7..4] . Behind the
filters, a set of four mixers combines the I and Q signals and converts them into two I and Q signals at the second
intermediate frequency which is equal to 1/8 of the LO frequency, which in turn is equal to 8/9 of the RF frequen-
cy. These two new I and Q signals are then combined and up-converted to the desired RF frequency by two
quadrature mixers fed by the LO signals. The signal is then amplified by a driver and power amplifier stage.
MCFG05_PA_Ramp[7..6]
00
01
10
11
T PA (μs)
3
8.5
15
23
Rise/fall (μs)
2.5/2
5/3
10/6
20/10
Table 2
www.RFM.com E-mail: info@rfm.com
? 2009-2013 by RF Monolithics, Inc.
Technical support +1.800.704.6079
Page 7 of 67
TRC105 - 05/29/13
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