MT8880C Mitel Networks Corporation, MT8880C Datasheet - Page 8

no-image

MT8880C

Manufacturer Part Number
MT8880C
Description
Integrated DTMFTransceiver
Manufacturer
Mitel Networks Corporation
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MT8880CC
Manufacturer:
MT
Quantity:
286
Part Number:
MT8880CE
Manufacturer:
MITEL
Quantity:
5 510
Part Number:
MT8880CE
Quantity:
2 831
Part Number:
MT8880CE
Manufacturer:
N/A
Quantity:
20 000
Part Number:
MT8880CE-1
Manufacturer:
TI
Quantity:
2 974
Part Number:
MT8880CE1
Manufacturer:
Zarlink
Quantity:
2
Part Number:
MT8880CE1
Manufacturer:
ZARLINK
Quantity:
20 000
Part Number:
MT8880CN
Manufacturer:
ZARLINK
Quantity:
4
Part Number:
MT8880CN
Manufacturer:
MITEL
Quantity:
20 000
Part Number:
MT8880CP
Manufacturer:
MITEL
Quantity:
20 000
Part Number:
MT8880CS
Manufacturer:
PHILIPS
Quantity:
2 402
MT8880C/MT8880C-1
using Equation 2. V
group
respectively, and V
intermodulation components. The internal switched-
capacitor filter following the D/A converter keeps
distortion products down to a very low level as
shown in Figure 10.
DTMF Clock Circuit
The internal clock circuit is completed with the
addition of a standard television colour burst crystal.
The crystal specification is as follows:
Frequency:
Frequency Tolerance:
Resonance Mode:
Load Capacitance:
4-40
Table 1. Actual Frequencies Versus Standard
THD(%) =
THD (%) = 100
ACTIVE
INPUT
H1
H2
H3
H4
L1
L2
L3
L4
Equation 1. THD (%) For a Single Tone
amplitude
Equation 2. THD (%) For a Dual Tone
100
SPECIFIED
OUTPUT FREQUENCY
1209
1336
1477
1633
697
770
852
941
Requirements
L
and
V
2
and V
2
IMD
2L
V
(Hz)
V
+ V
2
2
3H
2f
high
is the sum of all the
±
Parallel
18pF
3.579545 MHz
2
+ V
+ .. V
V
H
3L
0.1%
ACTUAL
1215.9
1331.7
1471.9
1645.0
2
V
699.1
766.2
847.4
948.0
L
correspond to the low
+ .... V
2
fundamental
+ V
3f
2
nH
+ V
group
2
H
+ V
2
2
nL
4f
2
+ .... V
+ V
IMD
2
2H
%ERROR
ISO
amplitude,
+0.30
+0.74
+0.57
+0.73
-0.49
-0.54
-0.32
-0.35
2
+
nf
2
-CMOS
Maximum Series Resistance:150 ohms
Maximum Drive Level:
e.g.
A
connected as shown in Figure 12 such that only one
crystal is required. Alternatively, the OSC1 inputs on
all devices can be driven from a TTL buffer with the
OSC2 outputs left unconnected.
Microprocessor Interface
The
interface which allows precise control of transmitter
and receiver functions. There are five internal
registers
interface which can be subdivided into three
categories, i.e., data transfer, transceiver control and
transceiver
associated with data transfer operations.
The Receive Data Register contains the output code
of the last valid DTMF tone pair to be decoded and is
a read only register. The data entered in the Transmit
Data Register will determine which tone pair is to be
generated (see Figure 7 for coding details). Data can
only be written to the transmit register. Transceiver
control is accomplished with two Control Registers
(CRA and CRB) which occupy the same address
space. A write operation to CRB can be executed by
setting the appropriate bit in CRA. The following
write operation to the same address will then be
directed to CRB and subsequent write cycles will
then be directed back to CRA. A software reset must
be included at the beginning of all programs to
initialize the control and status registers after power
up or power reset (see Figure 16). Refer to Tables 3,
4, 5 and 6 for details concerning the Control
Registers. The IRQ/CP pin can be programmed such
that it will provide an interrupt request signal upon
validation of DTMF signals or when the transmitter is
ready for more data (Burst mode only). The IRQ/CP
pin is configured as an open drain output device and
as such requires a pull-up resistor (see Figure 13).
OSC1 OSC2
MT8880C/C-1
number
3.579545 MHz
CTS Knights MP036S
Toyocom TQC-203-A-9S
MT8880C/C-1
Figure 12 - Common Crystal Connection
associated
of
status.
MT8880C/C-1
OSC1 OSC2
MT8880C/C-1
employs
There
with
2mW
the
are
a
devices
microprocessor
microprocessor
two
OSC1 OSC2
MT8880C/C-1
registers
can
be

Related parts for MT8880C