SI3019-F-FT Silicon Laboratories Inc, SI3019-F-FT Datasheet - Page 9

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SI3019-F-FT

Manufacturer Part Number
SI3019-F-FT
Description
IC VOICE DAA GCI/PCM/SPI 16TSSOP
Manufacturer
Silicon Laboratories Inc
Type
Chipsetr
Datasheets

Specifications of SI3019-F-FT

Package / Case
16-TSSOP
Function
Data Access Arrangement (DAA)
Interface
GCI, PCM, SPI
Number Of Circuits
1
Voltage - Supply
3 V ~ 3.6 V
Current - Supply
8.5mA
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Includes
Line Voltage Monitor, Loop Current Monitor, Overload Detection, Parallel Handset Detection, Polarity Reversal Detection, TIP and
Product
Modem Chip
Supply Voltage (min)
3 V
Supply Current
8.5 mA
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power (watts)
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

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Table 4. AC Characteristics (Continued)
(V
Table 5. Absolute Maximum Ratings
Dynamic Range (Caller ID mode)
Caller ID Full-Scale Level
Gain Accuracy
Transhybrid Balance
Transhybrid Balance
Two-Wire Return Loss
Two-Wire Return Loss
Notes:
Parameter
DC Supply Voltage
Input Current, Si3050 Digital Input Pins
Digital Input Voltage
Ambient Operating Temperature Range
Storage Temperature Range
Note: Permanent device damage can occur if the above Absolute Maximum Ratings are exceeded. Functional operation
Parameter
D
=
1. Measured at TIP and RING with 600 Ω termination at 1 kHz, as shown in Figure 1 on page 6.
2. With FULL = 1, the transmit and receive full-scale level of +3.2 dBm can be achieved with a 600 Ω ac termination. While
3. Receive full-scale level produces –0.9 dBFS at DTX.
4. DR = 20 x log (RMS V
5. Measurement is 300 to 3400 Hz. Applies to both transmit and receive paths.
6. Vin = 1 kHz, –3 dBFS.
7. THD = 20 x log (RMS distortion/RMS signal).
8. DR
9. Refer to Tables 10–11 for relative gain accuracy characteristics (passband ripple).
10. Analog hybrid only. Z
3.0 to 3.6 V, T
the transmit and receive level in dBm varies with reference impedance, the DAA will transmit and receive 1 dBV into all
reference impedances. With FULL2 = 1, the transmit and receive full-scale level of +6.0 dBm can be achieved with a
600 Ω termination. In this mode, the DAA will transmit and receive +1.5 dBV into all reference impedances.
Here, V
enhanced caller ID circuit. With the typical CID circuit, the V
50 dB.
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 might affect device reliability.
CID
= 20 x log (RMS V
FS
6,9
is the 0 dBm full-scale level per Note 1 above.
A
=
10
10
0 to 70 °C for F/K-Grade,
8
ACIM
FS
/RMS Vin) + 20 x log (RMS V
CID
controlled by ACIM in Register 30.
/RMS V
8
Symbol
DR
V
IN
CID
) + 20 x log (RMS V
CID
Fs = 8000 Hz,
300–3.4 kHz,
1 kHz, all ac terminations
Symbol
VIN = 1 kHz, –13 dBFS
T
TXG2, RXG2, TXG3,
V
1 kHz,
Rev. 1.2
300–3.4 kHz, all ac
V
I
T
STG
and RXG3 = 0000
IND
in
IN
D
A
Test Condition
/RMS noise). The RMS noise measurement excludes harmonics.
2-W to DTX,
terminations
IN
see
CID
Z
/RMS noise). V
ACIM
"2. Typical Application Schematic" on page 17
full-scale level is 6 V peak, and the DR
Z
ACIM
=
Z
LINE
=
–0.3 to (V
Z
LINE
–0.5 to 3.6
–40 to 100
–65 to 150
CID
Value
±10
is the 1.5 V full-scale level with the
D
+ 0.3)
–0.5
Min
20
25
Typ
1.5
62
30
32
0
Max
CID
Si3050
0.5
Unit
mA
°C
°C
decreases to
V
V
V
Unit
PEAK
dB
dB
dB
dB
dB
dB
)
9

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