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PDF LNBK20CR Data sheet ( Hoja de datos )

Número de pieza LNBK20CR
Descripción LNB SUPPLY AND CONTROL VOLTAGE REGULATOR PARALLEL INTERFACE
Fabricantes STMicroelectronics 
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LNBK10 SERIES
® LNBK20
LNB SUPPLY AND CONTROL VOLTAGE
REGULATOR (PARALLEL INTERFACE)
s REDUCED OUTPUT CURRENT VERSION
OF LNBP1X AND LNBP20 SERIES
s COMPLETE INTERFACE FOR TWO LNBs
REMOTE SUPPLY AND CONTROL
s LNB SELECTION AND STAND-BY FUNCTION
s BUILT-IN TONE OSCILLATOR FACTORY
TRIMMED AT 22KHz
s FAST OSCILLATOR START-UP
FACILITATES DiSEqCENCODING
s TWO SUPPLY INPUTS FOR LOWEST
DISSIPATION
s BYPASS FUNCTION FOR SLAVE
OPERATION
s LNB SHORT CIRCUIT PROTECTION AND
DIAGNOSTIC
s AUXILIARY MODULATION INPUT EXTENDS
FLEXIBILITY
s CABLE LENGTH COMPENSATION
s INTERNAL OVER TEMPERATURE
PROTECTION
s BACKWARD CURRENT PROTECTION
DESCRIPTION
Intended for analog and digital satellite receivers,
the LNBK is a monolithic linear voltage regulator,
assembled in Multiwatt-15, PowerSO-20 and
PowerSO-10, specifically designed to provide the
powering voltages and the interfacing signals to
the LNB downconverter situated in the antenna
via the coaxial cable. It has the same functionality
of the LNBP1X and LNBP20 series, at a reduced
output current capability. Since most satellite
receivers have two antenna ports, the output
voltage of the regulator is available at one of two
logic-selectable output pins (LNBA, LNBB). When
the IC is powered and put in Stand-by (EN pin
LOW), both regulator outputs are disabled to
allow the antenna downconverters to be
supplied/controlled by others satellite receivers
sharing the same coaxial lines. In this occurrence
the device will limit at 3 mA (max) the backward
current that could flow from LNBA and LNBB
output pins to GND.
For slave operation in single dish, dual receiver
systems, the bypass function is implemented by
an electronic switch between the Master Input pin
Multiwatt-15
PowerSo-20
10
1
PowerSO-10
(MI) and the LNBA pin, thus leaving all LNB
powering and control functions to the Master
Receiver. This electronic switch is closed when
the device is powered and EN pin is LOW.
The regulator outputs can be logic controlled to
be 13 or 18 V (typ.) by mean of the VSEL pin for
remote controlling of LNBs. Additionally, it is
possible to increment by 1V (typ.) the selected
voltage value to compensate the excess voltage
drop along the coaxial cable (LLC pin HIGH).
In order to reduce the power dissipation of the
device when the lowest output voltage is
selected, the regulator has two Supply Input pins
VCC1 and VCC2. They must be powered
respectively at 16V (min) and 23V (min), and an
internal switch automatically will select the
suitable supply pin according to the selected
output voltage. If adequate heatsink is provided
and higher power losses are acceptable, both
supply pins can be powered by the same 23V
source without affecting any other circuit
performance.
The ENT (Tone Enable) pin activates the internal
oscillator so that the DC output is modulated by a
±0.3 V, 22KHz (typ.) square wave. This internal
September 1998
1/18

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LNBK20CR pdf
BLOCK DIAGRAM
LNBK10 SERIES - LNBK20
5/18

5 Page





LNBK20CR arduino
TYPICAL APPLICATION SCHEMATICS
TWO ANTENNA PORTS RECEIVER
LNBK10 SERIES - LNBK20
AUX DATA
MCU+V
17V 24V
10uF
C2
R1
11 EXTM
VCC1
VCC2
1
2
3
47K
13 OLF
LNBA
LNBB
MI
15
14
4
9
5
VSEL
ENT
7 EN
12
OSEL
LLC
LNBK20CR
CEXT
G ND
10
4.7µF C1
+
8
C3 C4 C5 C6
2x 0.1µF 2x 47nF
ANT CONNECTORS
JA
TUNER
JB
Vcc I/Os
MCU
I/Os
SINGLE ANTENNA RECEIVER WITH MASTER RECEIVER PORT
AUX DATA
MCU+V
10uF
C2
R1
11 EXTM
VCC1
VCC2
1
2
17V
24V
47K 13
LNBA
3
15
OLF
LNBB
MI
14
4 VSEL
9 ENT
5 EN
7 OSEL
12 LLC
CEXT
GND
LNBK20CR
10
4.7µF C1
+
C3 C4
8
2x 0.1µF
C5
47nF
Vcc I/Os
MCU
TUNER
I/Os
ANT
MASTER
11/18

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