le79489 Zarlink Semiconductor, le79489 Datasheet - Page 4

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le79489

Manufacturer Part Number
le79489
Description
Subscriber Line Interface Circuit
Manufacturer
Zarlink Semiconductor
Datasheet

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PIN DESCRIPTIONS
Exposed Pad
AGND/DGND
Pin Names
RINGOUT
TESTOUT
BSWOUT
B(RING)
BSWEN
BSWTH
VBAT1
VBAT2
A(TIP)
BGND
C3–C1
RSVD
OVH
TMG
HPA
RDC
VCC
VTX
CAS
DET
HPB
RFA
RSN
DA
DB
NC
RD
C4
E1
Battery
Capacitor
Capacitor
Capacitor
Resistor
Resistor
Battery
Battery
Output
Output
Output
Output
Output
Output
Output
Type
Power
Input
Input
Input
Input
Input
Input
Input
Input
Gnd
Gnd
Analog and Digital ground.
Output of A(TIP) power amplifier.
Battery (power) ground.
Output of B(RING) power amplifier.
Decoder. TTL compatible. C3 is MSB and C1 is LSB.
Anti-sat pin for capacitor to filter reference voltage when operating in anti-sat region.
Ring-trip negative. Negative input to ring-trip comparator.
Ring-trip positive. Positive input to ring-trip comparator.
Switchhook detector. When enabled, a logic Low indicates the selected detector is tripped. The detector
is selected by the logic inputs (C3–C1). The output is open-collector with a built-in 15 kΩ pull-up
resistor.
High-Pass Filter Capacitor. A(TIP) side of high-pass filter capacitor.
High-Pass Filter Capacitor. B(RING) side of high-pass filter capacitor.
Detector resistor. Detector threshold set and filter pin.
DC feed resistor. Connection point for the DC feed current programming network. The other end of the
network connects to the receiver summing node (RSN). Connection point for the DC feed current
programming network. The other end of the network connects to RSN. V
polarity and positive for reverse polarity.
Receive Summing Node. The metallic current (AC and DC) between A(TIP) and B(RING) is equal to
500 times the current into this pin. The networks that program receive gain, two-wire impedance, and
feed current all connect to this node.
Most negative battery supply and substrate connection.
+5 V power supply.
Transmit Audio. This output is a 0.5066 unity gain version of the A(TIP) and B(RING) metallic voltage.
VTX also sources the two-wire input impedance programming network.
Battery Switch Control. Internally connected to automatic battery switch circuitry. BSWEN can be
overridden by external logic. BSWEN Low connects VBAT1 to VBAT2. BSWEN High disconnects
VBAT1 from VBAT2.
Buffered Output. Internally connected to battery switch circuitry. The output is open-collector with a
built-in pull-up resistor. BSWOUT Low indicates VBAT1 is connected to VBAT2. BSWOUT High
indicates VBAT1 is disconnected from VBAT2. This output is valid only in the Active states.
Input for setting automatic battery switch threshold. Normally tied to Battery 2. Tie to ground for
manual switching.
Test Relay Input – Active Low. 1 = Off. 0 = On.
Ground-Key Detect Select. E1 = 1 selects the hook switch detector. E1 = 0 selects the ground-key
detector. In the Tip Open state, ground key is selected independent of E1.
No connect. This pin not internally connected.
Overhead Control. Logic High enables minimized nonmetering overhead. Logic Low enables 2.2 V
metering DC overhead. TTL-compatible.
Resistive feed adjust. Adjust the DC feed resistance gain coefficient, GDC, with external resistor
connected to ground.
Ring Relay Driver. Open-collector driver with emitter internally connected to BGND.
Reserved. These pins are reserved for Legerity use. Make no connection to these pins.
Test Relay Driver. Open collector driver with emitter internally connected to AGND.
Thermal Management. External resistor connects this pin to VBAT2 to offload power dissipation from
SLIC. Functions during normal polarity, Active state.
Battery supply for output power amplifiers. Switched to VBAT1 by BSWEN.
This must be electrically tied to VBAT1.
Zarlink Semiconductor Inc.
4
Description
RDC
is negative for normal

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