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LNBH25LS 数据表(PDF) 9 Page - STMicroelectronics |
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LNBH25LS 数据表(HTML) 9 Page - STMicroelectronics |
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9 / 30 page ![]() LNBH25LS Application information DocID026753 Rev 3 9/30 2.7 Surge protections and TVS diodes The LNBH25LS device is directly connected to the antenna cable in a set-top box. Atmospheric phenomenon can cause high voltage discharges on the antenna cable causing damage to the attached devices. Surge pulses occur due to direct or indirect lightning strikes to an external (outdoor) circuit. This leads to currents or electromagnetic fields causing high voltage or current transients. Transient voltage suppressor (TVS) devices are usually placed, as shown in the following schematic, to protect the STB output circuits where the LNBH25LS and other devices are electrically connected to the antenna cable. Figure 4: Surge protection circuit For this purpose we recommend the use of LNBTVSxx surge protection diodes specifically designed by ST. The selection of LNBTVS diodes should be based on the maximum peak power dissipation supported by the diode, see the LNBTVS datasheet for further details. 2.8 Power-on I²C interface reset and undervoltage lockout The I²C interface built into the LNBH25LS is automatically reset at power-on. As long as the VCC stays below the undervoltage lockout (UVLO) threshold (4.7 V typ.), the interface does not respond to any I²C command and all data register bits are initialized to zeros, therefore keeping the power blocks disabled. Once the VCC rises above 4.8 V typ. the I²C interface becomes operative and the data registers can be configured by the main microprocessor. 2.9 PNG: input voltage minimum detection When input voltage (VCC pin) is lower than LPD (low power diagnostic) minimum thresholds, the PNG I²C bit is set to “1”. 2.10 COMP: boost capacitors and inductor The DC-DC converter compensation loop can be optimized in order to properly work with both ceramic and electrolytic capacitors (VUP pin). For this purpose, one I²C bit in the data 4 register, see COMP Table 9: "Data 4 (read/write register. Register address = 0X5)" can be set to “1” or “0” as follows: COMP = 0 for electrolytic capacitors COMP = 1 for ceramic capacitors For recommended DC-DC capacitor and inductor values refer to Section 5: "Typical application circuits" and to the BOM in Table 5: "DiSEqC 1.x bill of material". 2.11 OLF: overcurrent, short-circuit protection and diagnostic In order to reduce the total power dissipation during an overload or a short-circuit condition, the device is provided with a dynamic short-circuit protection. It is possible to set short- |
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