SI3200-FS Silicon Laboratories Inc, SI3200-FS Datasheet - Page 60

IC LINEFEED INTRFC 100V 16SOIC

SI3200-FS

Manufacturer Part Number
SI3200-FS
Description
IC LINEFEED INTRFC 100V 16SOIC
Manufacturer
Silicon Laboratories Inc
Series
ProSLIC®r
Datasheets

Specifications of SI3200-FS

Package / Case
16-SOIC (3.9mm Width)
Function
Subscriber Line Interface Concept (SLIC), CODEC
Interface
GCI, PCM, SPI
Number Of Circuits
2
Voltage - Supply
3.3V, 5V
Current - Supply
110µA
Power (watts)
941mW
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Includes
Battery Switching, BORSCHT Functions, DTMF Generation and Decoding, FSK Tone Generation, Modem and Fax Tone Detection
Product
SLIC
Supply Voltage (min)
3.13 V
Supply Current
0.11 mA, 8.8 mA
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Mounting Style
SMD/SMT
Number Of Channels
2
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
SI3200-FS
Manufacturer:
SILICON LABS/芯科
Quantity:
20 000
Part Number:
SI3200-FSR
Manufacturer:
SILICON
Quantity:
11 430
Si3220/Si3225
OSC1PHAS = 0
coeff
OSC2FREQ = 0.49819 (2
OSC2PHAS = 0
The preceding computed values are written to the
corresponding registers to initialize the oscillators. Once
the oscillators are initialized, the oscillator control
registers can be accessed to enable the oscillators and
direct their outputs.
60
OSC1AMP
OSC2AMP
=
=
0x590
2
0x942
OSC1FREQ
= cos (2 π 1336 / 8000) = 0.49819
coeff
=
=
1
-- - 0.21556
4
1
-- - 0.50181
4
1
=
=
-------------------- -
1.78434
-------------------- -
1.49819
0.78434 2
cos
2 π 852
---------------- -
14
8000
×
×
(
) = 8162 = 0x1FE2
(
(
2
2
14
15
15
)
=
=
1
1
12851
0.78434
)
)
×
×
0.5
0.5
=
=
=
0x3233
1424
2370
Rev. 1.0
Tone Generator Cadence Programming
Each of the two tone generators contains two timers,
one for setting the active period and one for setting the
inactive period. The oscillator signal is generated during
the active period and suspended during the inactive
period. Both the active and inactive periods can be
programmed from 0 to 8 seconds in 125 µ s steps. The
active period time interval is set using OSC1TA for tone
generator 1 and OSC2TA for tone generator 2.
To enable automatic cadence for tone generator 1,
define the OSC1TA and OSC1TI registers and set the
OSC1TAEN and OSC1TIEN bits. This enables each of
the timers to control the state of the oscillator enable bit,
OSC1EN. The 16-bit counter counts until the active
timer expires, at which time the 16-bit counter resets to
zero and begins counting until the inactive timer
expires. The cadence continues until the user clears the
OSC1TA and OSC1TIEN control bits. Setting the
ZEROEN1 bit implements the zero crossing detect
feature. This ensures that each oscillator pulse ends
without a dc component. The timing diagram in
Figure 36 is an example of an output cadence that uses
the zero crossing feature.
One-shot oscillation is possible with OSC1EN and
OSC1TAEN. Direct control over the cadence is
achieved by setting the OSC1EN bit directly if
OSC1TAEN and OSC1TIEN are disabled.
The operation of tone generator 2 is identical to that of
tone generator 1 using its respective control registers.
Note: Tone Generator 2 should not be enabled simulta-
neously with the ringing oscillator because of resource
sharing within the hardware.

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