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Renesas Technology |
(HD643228x) 16-Bit Single-Chip Microcomputer H8S Family/H8S/2200 Series ii) Input/Output Pin iii) Register Description iv) Operation v) Usage Note When designing an application system that includes this LSI, take notes into account. Each section includes notes in relation to the descriptions given, and usage notes are gi |
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Renesas Technology |
(HD643221x) 16-Bit Single-Chip Microcomputer H8S Family H8S-2200 Series t. 2. Renesas shall have no liability for damages or infringement of any intellectual property or other rights arising www.DataSheet4U.com out of the use of any information in this document, including, but not limited to, product data, diagrams, char |
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Renesas Technology |
(HD64322xx) Single-Chip Microcomputer H8S Family/H8S/2200 Series ii) Input/Output Pin iii) Register Description iv) Operation v) Usage Note When designing an application system that includes this LSI, take notes into account. Each section includes notes in relation to the descriptions given, and usage notes are gi |
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Renesas Technology |
(HD64322xx) Single-Chip Microcomputer H8S Family/H8S/2200 Series ii) Input/Output Pin iii) Register Description iv) Operation v) Usage Note When designing an application system that includes this LSI, take notes into account. Each section includes notes in relation to the descriptions given, and usage notes are gi |
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Renesas Technology |
16-Bit Single-Chip Microcomputer H8S Family/H8S/2200 Series com 2. Renesas shall have no liability for damages or infringement of any intellectual property or other rights arising out of the use of any information in this document, including, but not limited to, product data, diagrams, charts, programs, algor |
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Renesas |
Voltage Variable RF Attenuator include the VMODE pin allowing either positive or negative voltage control slope vs attenuation and multi-directional operation meaning the RF input can be applied to either RF1 or RF2 pins. Control voltage ranges from 0V to 3.6V using either positiv |
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Renesas |
Voltage Variable RF Attenuator include the VMODE pin allowing either positive or negative voltage control slope vs attenuation and multi-directional operation meaning the RF input can be applied to either RF1 or RF2 pins. Control voltage ranges from 0V to 3.6V using either positiv |
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Renesas Technology |
(HD64322xx) Single-Chip Microcomputer H8S Family/H8S/2200 Series ii) Input/Output Pin iii) Register Description iv) Operation v) Usage Note When designing an application system that includes this LSI, take notes into account. Each section includes notes in relation to the descriptions given, and usage notes are gi |
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Renesas Technology |
(HD643228x) 16-Bit Single-Chip Microcomputer H8S Family/H8S/2200 Series ii) Input/Output Pin iii) Register Description iv) Operation v) Usage Note When designing an application system that includes this LSI, take notes into account. Each section includes notes in relation to the descriptions given, and usage notes are gi |
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Renesas |
Voltage Variable RF Attenuator Low Insertion Loss: 1.4 dB @ 2000 MHz Typical / Min IIP3: 65 dBm / 47 dBm Typical / Min IIP2: 95 dBm / 87 dBm 33.6 dB Attenuation Range Bi-directional RF ports +34.4 dBm Input P1dB compression Linear-in-dB attenuation characteristic S |
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Renesas |
Voltage Variable RF Attenuator Low Insertion Loss: 1.4 dB @ 2000 MHz Typical / Min IIP3: 65 dBm / 47 dBm Typical / Min IIP2: 95 dBm / 87 dBm 33.6 dB Attenuation Range Bi-directional RF ports +34.4 dBm Input P1dB compression Linear-in-dB attenuation characteristic S |
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Renesas |
Voltage Variable RF Attenuator include the VMODE pin allowing either positive or negative voltage control slope vs attenuation and multi-directional operation meaning the RF input can be applied to either RF1 or RF2 pins. Control voltage ranges from 0V to 3.6V using either positiv |
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Renesas |
Voltage Variable RF Attenuator include the VMODE pin allowing either positive or negative voltage control slope vs attenuation and multi-directional operation meaning the RF input can be applied to either RF1 or RF2 pins. Control voltage ranges from 0V to 3.6V using either positiv |
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Renesas |
Voltage Variable RF Attenuator include the VMODE pin allowing either positive or negative voltage control slope vs attenuation and multi-directional operation meaning the RF input can be applied to either RF1 or RF2 pins. Control voltage ranges from 0V to 3.6V using either positiv |
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Renesas |
Voltage Variable RF Attenuator include the VMODE pin allowing either positive or negative voltage control slope vs attenuation and multi-directional operation meaning the RF input can be applied to either RF1 or RF2 pins. Control voltage ranges from 0V to 3.6V using either positiv |
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Renesas Technology |
(HD643221x) 16-Bit Single-Chip Microcomputer H8S Family H8S-2200 Series t. 2. Renesas shall have no liability for damages or infringement of any intellectual property or other rights arising www.DataSheet4U.com out of the use of any information in this document, including, but not limited to, product data, diagrams, char |
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Renesas Technology |
16-Bit Single-Chip Microcomputer H8S Family/H8S/2200 Series perty or other rights arising out of the use of any information in this document, including, but not limited to, product data, diagrams, charts, programs, algorithms, and application circuit examples. 3. You should not use the products or the technol |
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Renesas Technology |
(HD64322xx) Single-Chip Microcomputer H8S Family/H8S/2200 Series ii) Input/Output Pin iii) Register Description iv) Operation v) Usage Note When designing an application system that includes this LSI, take notes into account. Each section includes notes in relation to the descriptions given, and usage notes are gi |
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Renesas Technology |
16-Bit Single-Chip Microcomputer H8S Family/H8S/2200 Series ii) Input/Output Pin iii) Register Description iv) Operation v) Usage Note When designing an application system that includes this LSI, take notes into account. Each section includes notes in relation to the descriptions given, and usage notes are gi |
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Renesas Technology |
16-Bit Single-Chip Microcomputer H8S Family/H8S/2200 Series ii) Input/Output Pin iii) Register Description iv) Operation v) Usage Note When designing an application system that includes this LSI, take notes into account. Each section includes notes in relation to the descriptions given, and usage notes are gi |
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