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TEA1110AL-S14-R Datasheet(PDF) 7 Page - Unisonic Technologies

Part # TEA1110AL-S14-R
Description  LOW VOLTAGE VERSATILE TELEPHONE TRANSMISSION CIRCUIT WITH DIALLER INTERFACE
PDF  9 Pages
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Manufacturer  UTC [Unisonic Technologies]
Direct Link  http://www.utc-ic.com
Logo UTC - Unisonic Technologies

TEA1110AL-S14-R Datasheet(HTML) 7 Page - Unisonic Technologies

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TEA1110A
LINEAR INTEGRATED CIRCUIT
UNISONICTECHNOLOGIESCO.,LTD
7 of 9
www.unisonic.com.tw
QW-R108-014.C
FUNCTIONAL DESCRIPTION(Cont.)
6.0
3.0
5.0
4.0
104
105
106
107
(1) Influence of RVA on VREF
(2) VREF without influence of RVA
Fig.2 Reference voltage adjustment by RVA
(1)
(2)
RVA (Ω)
The internal circuitry of the UTC TEA1110A is supplied from pin VCC which can be used to supply peripheral
circuits such as dialling or control circuits. This voltage supply is derived from the line voltage by means of a resistor
(RCC) and it must be decoupled by a capacitor CVCC. The VCC voltage depends on the current consumed by the IC
and the peripheral circuits as shown by the formula :( RCCint is the internal equivalent resistance of the voltage
supply, and Irec is the current consumed by the output stage of the earpiece amplifier))
VCC= VCC0 - RCCint × (IP-IREC)
V CC0= VLN-RCC × ICC (see also Figs 3 and 4).
The DC line current flowing into the set is determined by the exchange supply voltage (Vexch), the feeding
bridge resistance (Rexch), the DC resistance of the telephone line (Rline) and the reference voltage (VREF). The
internal reference voltage (generating VREF) would be automatically adjusted to a lower value when the line currents
drop below 7.5mA. Therefore, more sets can work in parallel with DC line voltages (excluding the polarity guard)
down to 1.6V (absolute minimum voltage). At currents below 7.5mA, the circuit has limited sending and receiving
levels. This is called the low voltage area.
2.5
2
0.5
0
01
2
3
4
1.5
1
(1)
(2)
Vcc (V)
(1) With RVA resistor.
(2) Without RVA resistorl
Vcc
VEE
Rccint
Vcco
Irec
PERIPHERAL
CIRCUIT
Ip
+
Fig.3 Typical current IP available from VCC for peripheral
circuits at ILINE=15mA.
Fig.4
VCC supply voltage for peripherals



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