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What is PBL386302QNS?

This electronic component, produced by the manufacturer "Ericsson", performs the same function as "Subscriber Line Interface Circuit".


PBL386302QNS Datasheet PDF - Ericsson

Part Number PBL386302QNS
Description Subscriber Line Interface Circuit
Manufacturers Ericsson 
Logo Ericsson Logo 


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March 2000
PBL 386 30/2
Subscriber Line
Interface Circuit
Description
The PBL 386 30/2 Subscriber Line Interface Circuit (SLIC) is a 90 V bipolar integrated
circuit for use in Digital Loop Carrier, FITL and other telecommunications equipment.
The PBL 386 30/2 has been optimized for low total line interface cost and a high
degree of flexibility in different applications.
The PBL 386 30/2 emulates resistive loop feed, programmable between 2x50
and 2x900 , with short loop current limiting adjustable to max 45 mA. In the current
limited region the loop feed is nearly constant current with a slight slope
corresponding to 2x30k.
A second lower battery voltage may be connected to the device to reduce short
loop power dissipation. The SLIC automatically switches between the two battery
supply voltages without need for external components or external control.
The SLIC incorporates loop current and ring trip detection functions.
The PBL 386 30/2 is compatible with loop start signaling.
Two- to four-wire and four- to two-wire voice frequency (VF) signal conversion is
accomplished by the SLIC in conjunction with either a conventional CODEC/filter or
with a programmable CODEC/filter, e.g. SLAC, SiCoFi, Combo II. The programmable
two-wire impendance, complex or real, is set by a simple external network.
Longitudinal voltages are suppressed by a feedback loop in the SLIC and the
longitudinal balance specifications meet the DLC requirements.
The PBL 386 30/2 package options are 24-pin SSOP, 24-pin SOIC and
28-pin PLCC.
DT
DR
TIPX
RINGX
HP
VCC
VBAT2
VBAT
AGND
BGND
Two-wire
Interface
Ring Trip
Comparator
Line Feed
Controller
and
Longitudinal
Signal
Suppression
Off-hook
Detector
VF Signal
Transmission
Ring Relay
Driver
Input
Decoder
and
Control
RRLY
C1
C2
DET
POV
PSG
PLC
LP
PLD
REF
VTX
RSN
Key Features
• 24-pin SSOP package
• High and low battery supply with
automatic switching
• 65 mW on-hook power dissipation in
active state
• On-hook transmission
• Long loop battery feed tracks Vbat for
maximum line voltage
• Only +5 V feed in addition to battery
• Selectable transmit gain (1x or 0.5x)
• No power-up sequence
• Programmable signal headroom
• 43V open loop voltage @ -48V battery
feed
• Constant loop voltage for line leakage
<5 mA (RLeak ~ >10 k@ -48V)
• Full longitudinal current capability
during on-hook state
• Analog over temperature protection
permits transmission while the
protection circuit is active
• Integrated Ring Relay Driver
• -40°C to +85°C ambient temperature
range
PBL 386 30/2
Figure 1. Block diagram.
PTG
24-pin SOIC, 24-pin SSOP, 28-pin PLCC
1

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PBL386302QNS equivalent
PBL 386 30/2
Parameter
Four-wire to two-wire, g
4-2
Four-wire to four-wire, g4-4
Insertion loss
Two-wire to four-wire, G
2-4
Four-wire to two-wire, G4-2
Gain tracking
Two-wire to four-wire
Four-wire to two-wire
Noise
Idle channel noise at two-wire
(TIPX-RINGX) or four-wire (VTX) output
Harmonic distortion
Two-wire to four-wire
Four-wire to two-wire
Battery feed characteristics
Loop current, IL , in the current
limited region, reference A, B & C
Open circuit state loop current, ILOC
Ref
fig Conditions
6 relative to 0 dBm, 1.0 kHz. E =0 V
L
0.3 kHz < f < 3.4 kHz
f = 8 kHz, 12 kHz,
16 kHz
6 relative to 0 dBm, 1.0 kHz, EL=0 V
0.3 kHz < f < 3.4 kHz
6 0 dBm, 1.0 kHz, Note 5
G2-4 = 20 · Log
VTX
VTR
; ERX = 0
PTG = AGND
6 0 dBm, 1.0 kHz, Note 6
V
G = 20 · Log TR ; E = 0
E4-2 L
RX
6 Ref. -10 dBm, 1.0 kHz, Note 7
-40 dBm to +3 dBm
-55 dBm to -40 dBm
6 Ref. -10 dBm , 1.0 kHz
-40 dBm to +3 dBm
-55 dBm to -40 dBm
C-message weighting
Psophometrical weighting
Note 8
6 0 dBm
0.3 kHz < f < 3.4 kHz
12 18mA IL 45 mA
RL = 0
Min
Typ
Max
Unit
-0.2 0.1 dB
-1.0 0 dB
-2.0 0 dB
-0.2 0.1 dB
-0.2
-6.22
-0.2
0.2
-6.02 -5.82
dB
dB
0.2 dB
-0.1 0.1 dB
-0.2 0.2 dB
-0.1 0.1 dB
-0.2 0.2 dB
12 dBrnC
-78 dBmp
-67 -50
-67 -50
dB
dB
0.92 IL
-100
IL
0
1.08 IL
100
mA
µA
Figure 6.
Frequency response, insertion loss,
gain tracking.
1
ωC
<<
R,
L
R
L
=
600
k
RT = 120 k, RRX = 60 k
C
TIPX
VTX
RL
VTR ILDC PBL 386 30/2 RT
EL RINGX RSN
RRX
E RX
VTX
5


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