Gin Development Series The Power Of A Support Network

Use these steps to support network settings on the moto G7 power.

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APN & data settings

  1. Swipe up on the Home screen to view your apps, then tap Settings.
  2. Tap Network & Internet > Mobile network > Advanced > Access Point Names.
  3. Tap Plus icon to add a new APN. The default APN is named 'T-Mobile US' and has these settings:
    • Name: T-Mobile
    • APN: fast.t-mobile.com
    • Proxy: [Not set]
    • Port: [Not set]
    • Username: [Not set]
    • Password: [Not set]
    • Server: [Not set]
    • MMSC:http://mms.msg.eng.t-mobile.com/mms/wapenc
    • MMS proxy: [Not set]
    • MMS port: [Not set]
    • MCC: 310
    • MNC: 260
    • Authentication type: [Not set]
    • APN type: default,supl,hipri,fota,mms
    • APN protocol: IPv6
    • APN roaming protocol: IPv4
    • APN enable/disable: Enabled
    • MVNO type: None
    • MVNO value: [Not set]

Manual network selection

The device detects and registers on wireless networks inside T-Mobile’s calling area, but roaming networks are usually restricted to T-Mobile SIM cards. You can manually select a network only in areas where T-Mobile does not own GSM spectrum.

  1. Swipe up on the Home screen to view your apps, then tap Settings.
  2. Tap Network & Internet > Mobile network > Advanced.
  3. Tap the switch next to Automatically select network to turn it off.
  4. The device will search for available networks. When it finishes, tap the desired network.

Switch 2G / 4G

Cotton gin facts
  1. Swipe up on the Home screen to view your apps, then tap Settings.
  2. Tap Network & Internet > Mobile network > Advanced.
  3. Tap Preferred network type and choose from the following options:
    • LTE on (Automatic LTE/3G/2G)
    • LTE/3G
    • 2G Only

Turn on / off airplane mode

Airplane mode turns off wireless connections. This allows app and menu use, but prevents voice or Internet use.

  1. Swipe up on the Home screen to view your apps, then tap Settings.
  2. Tap Network & Internet > Advanced.
  3. Tap the switch next to Airplane mode to turn on or off.

Turn on / off data roaming

  1. Swipe up on the Home screen to view your apps, then tap Settings.
  2. Tap Network & Internet > Mobile network.
  3. Tap the switch next to Roaming to turn data roaming on or off.

Turn on / off mobile data

  1. Swipe up on the Home screen to view your apps, then tap Settings.
  2. Tap Network & Internet > Mobile network.
  3. Tap the switch next to Mobile data to turn on or off.

The power gain of an electrical network is the ratio of an output power to an input power. Unlike other signalgains, such as voltage and current gain, 'power gain' may be ambiguous as the meaning of terms 'input power' and 'output power' is not always clear. Three important power gains are operating power gain, transducer power gain and available power gain. Note that all these definitions of power gains employ the use of average (as opposed to instantaneous) power quantities and therefore the term 'average' is often suppressed, which can be confusing at occasions.

Operating power gain[edit]

The operating power gain of a two-port network, GP, is defined as:

GP=PloadPinput{displaystyle G_{P}={frac {P_{mathrm {load} }}{P_{mathrm {input} }}}}

where

  • Pload is the maximum time averaged power delivered to the load, where the maximization is over the load impedance, i.e., we desire the load impedance which maximizes the time averaged power delivered to the load.
  • Pinput is the time averaged power entering the network

If the time averaged input power depends on the load impedance, one must take the maximum of the ratio--not just the maximum of the numerator.

Transducer power gain[edit]

The transducer power gain of a two-port network, GT, is defined as:

GT=PloadPsource,max{displaystyle G_{T}={frac {P_{mathrm {load} }}{P_{mathrm {source,max} }}}}

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  • Pload is the average power delivered to the load
  • Psource,max is the maximum available average power at the source

In terms of y-parameters this definition can be used to derive:

GT=4y212(YL)(YS)(y11+YS)(y22+YL)y12y212{displaystyle G_{T}={frac {4 y_{21} ^{2}Re {(Y_{L})}Re {(Y_{S})}}{ (y_{11}+Y_{S})(y_{22}+Y_{L})-y_{12}y_{21} ^{2}}}}

where

  • YL is the load admittance
  • YS is the source admittance

This result can be generalized to z, h, g and y-parameters as:

GT=4k212(ML)(MS)(k11+MS)(k22+ML)k12k212{displaystyle G_{T}={frac {4 k_{21} ^{2}Re {(M_{L})}Re {(M_{S})}}{ (k_{11}+M_{S})(k_{22}+M_{L})-k_{12}k_{21} ^{2}}}}

where

  • kxx is a z, h, g or y-parameter
  • ML is the load value in the corresponding parameter set
  • MS is the source value in the corresponding parameter set

Psource,max may only be obtained from the source when the load impedance connected to it (i.e. the equivalent input impedance of the two-port network) is the complex conjugate of the source impedance, a consequence of the maximum power theorem.

Available power gain[edit]

The available power gain of a two-port network, GA, is defined as:

GA=Pload,maxPsource,max{displaystyle G_{A}={frac {P_{mathrm {load,max} }}{P_{mathrm {source,max} }}}}

where

  • Pload,max is the maximum available average power at the load
  • Psource,max is the maximum power available from the source

Similarly Pload,max may only be obtained when the load impedance is the complex conjugate of the output impedance of the network.

References[edit]

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