參數(shù)資料
型號: TEA1099H
廠商: NXP SEMICONDUCTORS
元件分類: 無繩電話/電話
英文描述: Speech and handsfree IC with auxiliary inputs/outputs and analog multiplexer
中文描述: TELEPHONE SPEECH CKT, PQFP44
封裝: 10 X 10 MM, 1.75 MM HEIGHT, PLASTIC, QFP-44
文件頁數(shù): 6/40頁
文件大?。?/td> 185K
代理商: TEA1099H
1999 Apr 08
6
Philips Semiconductors
Product specification
Speech and handsfree IC with auxiliary
inputs/outputs and analog multiplexer
TEA1099H
Fig.2 Pin configuration.
handbook, full pagewidth
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TEA1099H
MGM297
QR
DTMF
MIC
+
MIC
TXIN
GATX
TXOUT
IDT
SWT
VOL
HFRX
TNOI
TENV
TSEN
RNOI
RSEN
DLC
ESI
GALS
GNDTX
T
R
A
M
M
P
H
R
G
A
H
G
S
L
R
I
A
M
S
S
L
V
RENV
VBB
FUNCTIONAL DESCRIPTION
All data given in this chapter are typical values, except
when otherwise specified.
Supplies
L
INE INTERFACE AND INTERNAL SUPPLY
(
PINS
LN, SLPE,
REG
AND
V
BB
)
The supply for the TEA1099H and its peripherals is
obtained from the line. The IC generates a stabilized
reference voltage (V
ref
) between pins SLPE and GND.
This reference voltage is equal to 3.7 V for line currents
lower than 18 mA. It than increases linearly with the line
current and reaches the value of 6.1 V for line currents
higher than 45 mA. For line currents below 9 mA, the
internal reference voltage generating V
ref
is automatically
adjusted to a lower value. This is the so-called low voltage
area and the TEA1099H has limited performances in this
area (see Section “Low voltage behaviour”). This
reference voltage is temperature compensated.
The voltage between pins SLPE and REG is used by the
internal regulator to generate the stabilized reference
voltage and is decoupled by means of a capacitor between
pins LN and REG. This capacitor converted into an
equivalent inductance realizes the set impedance
conversion from its DC value (R
SLPE
) to its AC value (done
by an external impedance).
The IC regulates the line voltage at pin LN and it can be
calculated as follows:
where:
I
line
= line current
I
x
= current consumed on pin LN (approximately a few
μ
A)
I
SLPE
= current flowing through the R
SLPE
resistor
V
LN
I
SLPE
V
ref
I
line
=
R
SLPE
I
x
I
×
+
SLPE
=
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