LNBH23PPR STMicroelectronics, LNBH23PPR Datasheet - Page 6

IC LNB SUPPLY/CTRL POWERSSO-24

LNBH23PPR

Manufacturer Part Number
LNBH23PPR
Description
IC LNB SUPPLY/CTRL POWERSSO-24
Manufacturer
STMicroelectronics
Datasheet

Specifications of LNBH23PPR

Applications
Converter, Analog and Digital STB Receivers/SatTV
Voltage - Input
8 ~ 15 V
Number Of Outputs
1
Voltage - Output
13.4V, 18.5V
Operating Temperature
0°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
PowerSSO-24
Output Voltage
25 V
Output Current
1000 mA
Input Voltage
8 V to 15 V
Switching Frequency
220 KHz
Operating Temperature Range
- 25 C to + 125 C
Mounting Style
Through Hole
Duty Cycle (max)
57 %
For Use With
497-8717 - DEMO BOARD BASED ON LNBH23497-8336 - BOARD EVAL BASED ON LNBH23
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-6121-2

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Application information
2.4
Figure 2.
2.5
2.6
6/32
Data encoding by external tone generator (EXTM)
In order to improve design flexibility an external tone input pin is available (EXTM). The
EXTM is a logic input pin which activates the 22 kHz tone output, on the V
the LNBH23 integrated tone generator (similarly to the DSQIN pin function). As a matter of
fact, the output tone waveform characteristics will be always internally controlled by the
LNBH23 tone generator and the EXTM signal will be used just as a timing control of the
DiSEqC tone data encoding on the V
for the proper control of the EXTM pin function. Before to send the TTL signal on the EXTM
pin, the V
or TTX bit set HIGH). As soon as the EXTM internal circuit detects the 22 kHz TTL signal
code, it activates the 22 kHz tone on the V
TTL signal presence on the EXTM pin, and it stops with 2 cycles ±25 µs delay after the TTL
signal is expired. Refer to the below
EXTM waveform
I²C interface
The main functions of the IC are controlled via I²C bus by writing 8 bits on the system
register (SR 8 bits in write mode). On the same register there are 8 bits that can be read
back (SR 8 bits in read mode) to provide 8 diagnostic functions: five bits will report the
diagnostic status of five internal monitoring functions (IMON, VMON, TMON, OTF, OLF)
while, three will report the last output voltage register status (EN, VSEL, LLC) received by
the IC (see below diagnostic functions section).
Output voltage selection
When the IC sections are in stand-by mode (EN bit LOW), the power blocks are disabled.
When the regulator blocks are active (EN bit HIGH), the output can be logic controlled to be
13 or 18 V by means of the V
LNBs. Additionally, the LNBH23 is provided with the LLC I²C bit that increases the selected
voltage value by +1 V to compensate the excess of voltage drop along the coaxial cable.
The LNBH23 is also compliant to the USA LNB power supply standards. In order to allow
fast transition of the output voltage from 18 V to 13 V and vice versa, the LNBH23 is
provided with the VCTRL TTL pin which keeps the output to 13 V when it is set LOW and to
18 V when it is set HIGH or floating. V
to use the VCTRL pin to switch the output voltage level. If VCTRL=1 or floating V
(or 19.5 V if LLC=1). With VCTRL=0 V
VCTRL pin controls only the linear regulator V
controlled only through the VSEL and LLC I²C bits, that is: Even if VCTRL=0 (keeping
oTX
tone generator must be previously enabled through the TTX function (TTX pin
SEL
Doc ID 13356 Rev 7
bit (Voltage SELect) for remote controlling of non-DiSEqC
Figure 2
oTX
SEL
oRX
output. A TTL compatible 22 kHz signal is required
and, if required, LLC bits must be set HIGH before
=13.4 V (LLC= either 0 or 1). Be aware that the
oTX
oRX
output with 1.5 cycles ±25 µs delay from the
stage while the step-up V
oTX
UP
pin, by using
voltage is
oRX
LNBH23
=18.5 V

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