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CC1020 Datasheet(PDF) 9 Page - Texas Instruments |
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CC1020 Datasheet(HTML) 9 Page - Texas Instruments |
9 / 95 page CC1020 www.ti.com SWRS046H – NOVEMBER 2006 – REVISED MARCH 2015 RF Transmit (continued) All measurements were performed using the two-layer PCB CC1020EMX reference design. See Figure 6-1. The electrical specifications given for 868 MHz are also applicable for 902 to 928 MHz. TA = 25°C, AVDD = DVDD = 3.0 V, fC = 14.7456 MHz if nothing else stated. PARAMETER MIN TYP MAX UNIT CONDITION 47 to 74, 87.5 to 118, 174 to At maximum output power, +10/+5 dBm –54 dBm 230, 470 to 862 MHz at 433/868 MHz. To comply with EN 300 220, FCC 9 kHz to 1 GHz –36 dBm CFR47 part 15 and ARIB STD-T96 an external (antenna) filter, as implemented in the application circuit in Section 5.11, must be used and tailored to each individual design to reduce out-of-band spurious emission levels. Spurious emissions can be measured as EIRP values according to EN 300 220. The antenna (SMAFF-433 and SMAFF- Spurious emission, 868 from R.W. Badland) plays a part in radiated CW attenuating the spurious emissions. 1 to 4 GHz –30 dBm If the output power is increased using an external PA, a filter must be used to attenuate spurs below 862 MHz when operating in the 868 MHz frequency band in Europe. Application Note AN036 CC1020/1021 Reducing Spurious Emission (SWRA057) presents and discusses a solution that reduces the TX mode spurious emission close to 862 MHz by increasing the REF_DIV from 1 to 7. 433 MHz 54 + j44 Ω Optimum load Transmit mode. For matching details see 868 MHz 15 + j24 Ω impedance Section 5.11. 915 MHz 20 + j35 Ω 4.5 RF Receive All measurements were performed using the two-layer PCB CC1020EMX reference design. See Figure 6-1. The electrical specifications given for 868 MHz are also applicable for 902 to 928 MHz. TA = 25°C, AVDD = DVDD = 3.0 V, fC = 14.7456 MHz if nothing else stated. PARAMETER MIN TYP MAX UNIT CONDITION 12.5 kHz channel spacing, optimized Sensitivity is measured with PN9 –114 dBm selectivity, ±2.025 kHz freq. deviation sequence at BER = 10−3 12.5 kHz channel spacing: 12.5 kHz channel spacing, optimized Receiver sensitivity, –118 dBm 2.4 kBaud, Manchester coded data. sensitivity, ±2.025 kHz freq. deviation 433 MHz, FSK 25 kHz channel spacing: 25 kHz channel spacing –112 dBm 4.8 kBaud, NRZ coded data, ±2.475 kHz frequency deviation. 500 kHz channel spacing –96 dBm 500 kHz channel spacing: 12.5 kHz channel spacing, ±2.475 kHz 153.6 kBaud, NRZ coded data, ±72 –116 dBm freq. deviation kHz frequency deviation. Receiver sensitivity, See Table 5-6 and Table 5-7 for 25 kHz channel spacing –111 dBm 868 MHz, FSK typical sensitivity figures at other 500 kHz channel spacing –94 dBm data rates. 2.4 kBaud –116 dBm Sensitivity is measured with PN9 Receiver sensitivity, sequence at BER = 10−3 433 MHz, OOK 153.6 kBaud –81 dBm Manchester coded data. 4.8 kBaud –107 dBm Receiver sensitivity, See Table 5-14 for typical sensitivity 868 MHz, OOK figures at other data rates. 153.6 kBaud –87 dBm Saturation FSK: Manchester/NRZ coded data (maximum input FSK and OOK 10 dBm OOK: Manchester coded data level) BER = 10−3 The receiver channel filter 6 dB System noise bandwidth is programmable from 9.6 to 307.2 kHz bandwidth 9.6 kHz to 307.2 kHz. See Section 5.9.2. Copyright © 2006–2015, Texas Instruments Incorporated Specifications 9 Submit Documentation Feedback Product Folder Links: CC1020 |
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