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SI3016 Datasheet(PDF) 7 Page - Silicon Laboratories |
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SI3016 Datasheet(HTML) 7 Page - Silicon Laboratories |
7 / 50 page Si3016 Rev. 1.0 7 Caller ID Full Scale Level (0 dB gain) VCID MODE = 0 — 0.8 — VPP Caller ID Full Scale Level (ARX = 00) VCID MODE = 1 — 1.4 — VPP Gain Accuracy5,6 2-W to SDO, ATX and ARX = 000, 001, or 010 –0.5 0 0.5 dB Gain Accuracy5,6 2-W to SDO, ATX and ARX = 011, 1xx –1 0 1 dB Table 5. Absolute Maximum Ratings Parameter Symbol Value Unit Operating Temperature Range TA –40 to 100 °C Storage Temperature Range TSTG –65 to 150 °C Note: Permanent device damage may occur if the absolute maximum ratings are exceeded. Functional operation should be restricted to the conditions as specified in the operational sections of this data sheet. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. Table 6. Digital FIR Filter Characteristics—Transmit and Receive (Sample Rate = 8kHz, TA = 70 °C for K-Grade and –40 to 85 °C for B-Grade) Parameter Symbol Min Typ Max Unit Passband (0.1 dB) F(0.1 dB) 0— 3.3 kHz Passband (3 dB) F(3 dB) 0— 3.6 kHz Passband Ripple Peak-to-Peak –0.1 — 0.1 dB Stopband — 4.4 — kHz Stopband Attenuation –74 — — dB Group Delay tgd — 12/Fs — sec Note: Typical FIR filter characteristics for Fs = 8000 Hz are shown in Figures 2, 3, 4, and 5. Table 4. AC Characteristics (Continued) (TA = 0 to 70 °C for K-Grade and –40 to 85 °C for B-Grade; see Figure 6 on page 9) Parameter Symbol Test Condition Min Typ Max Unit Notes: 1. Measured at TIP and RING with 600 Ω termination at 1 kHz, as shown in Figure 1. 2. R2 should be changed to a 243 Ω resistor when the FULLSCALE bit (FULL) is set to 1 (Register 18, bit 7). 3. Receive full scale level will produce –0.9 dBFS at SDO. 4. DR = 20 x log |Vin| + 20 x log (RMS signal/RMS noise). 5. Measurement is 300 to 3400 Hz. Applies to both transmit and receive paths. 6. Vin = 1 kHz, –3 dBFS, Fs = 10300 Hz. 7. Vin = 1 KHz, –6 dBFS, Fs = 10300 Hz. 8. THD = 20 x log (RMS distortion/RMS signal). 9. The AOUT pin is an optional pin located on the integrated system-side module. VD refers to the digital power supply of the integrated system-side module. |
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