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STLC3075 Datasheet(PDF) 22 Page - STMicroelectronics

Part # STLC3075
Description  Integrated POTS interface for home access gateway and WLL
PDF  36 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STLC3075 Datasheet(HTML) 22 Page - STMicroelectronics

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Application information
STLC3075
22/36
Table 16.
External components @gain set = 1
Name
Function
Formula
Typ. value
RS
Protection resistance image
RS = 50
⋅ (2Rp)
5 k
Ω @ Rp = 50 Ω
ZAC
Two wire AC impedance
ZAC = 50
⋅ (Zs - 2Rp)
25 k
Ω 1% @ Zs = 600 Ω
ZA(1)
SLIC impedance balancing
network
ZA = 50
⋅ Zs
30 k
Ω 1%
@ Zs = 600
Ω
ZB(1)
Line impedance balancing
network
ZB = 50
⋅ Zl
30 k
Ω 1%
@ Zl = 600
Ω
CCOMP
AC feedback loop
compensation
fo = 250 kHz
CCOMP = 1/(2
π⋅fo⋅100⋅(RP))
120 pF 10 % 10 V
@ Rp = 50
Ω
CH
Trans-hybrid Loss frequency
compensation
CH = CCOMP
120 pF 10 % 10 V
RTTX(2)
Pulse metering cancellation
resistor
RTTX = 50Re (Zlttx+2Rp)
15 k
Ω
@ Zlttx = 200
Ω real
CTTX (2)
Pulse metering cancellation
capacitor
CTTX = 1/{50
⋅ 2π⋅ fttx [-lm(Zlttx)]}
100 nF 10 % 10 V (3)
@ Zlttx = 200
Ω real
RLV
Pulse metering level resistor
RLV = 63.3·10·
α·V
LOTTX
α = (|Zlttx + 2Rp|/|Zlttx|)
16.2 k
Ω
@ VLOTTX = 170 mVrms
CS
Pulse metering shaping
capacitor
CS =
τ/(2⋅RLV)
100 nF 10 % 10 V
@
τ = 3.2 ms, RLV = 16.2 kΩ
CFL
Pulse metering filter capacitor CFL = 2/(2
π⋅fttx⋅RLV)
1.5 nF 10 % 10 V
@fttx = 12 kHz RLV = 16.2 k
Ω
1.
In case Zs=Zl, ZA and ZB can be replaced by two resistors of same value: RA=RB=|Zs|.
2.
Defining ZTTX as the impedance of RTTX in series with CTTX, RTTX and CTTX can also be calculated from the following
formula: ZTTX=50*(Zlttx+2Rp).
3.
In this case CTTX is just operating as a DC decoupling capacitor (fp=100 Hz).



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