IP Library Granted Patent US 12,556,214
Granted Patent B2
US 12,556,214 · App. 17/684,409 · Granted Feb 17, 2026

Methods and apparatus for reducing cellular telephone radiation exposure

Inventor: Brian M. Dugan (Sleepy Hollow, NY)
Assignee: Dugan Patents, LLC
H04B1/3838H04M1/0256H04M1/72412H04W4/50H04W88/06H04M2250/02H04M2250/06
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Quick Facts
Patent No.
US 12,556,214
App. No.
17/684,409
Granted
Feb 17, 2026
Kind
B2
Abstract

In some aspects, a cellular telephone includes (1) a user interface portion having a communications circuit; and (2) a cellular portion having a first communications circuit adapted to communicate with the communications circuit of the user interface portion and a second communications circuit adapted to communicate with a cellular network. The cellular portion is removably coupled to the user interface portion so as to allow a user of the cellular telephone to communicate over a cellular network by using the user interface portion while the cellular portion is separated from the user interface portion. Numerous other aspects are provided.

Claims (30)

1 . A cellular communications system for reducing a level of radiation to which a cellular telephone user is exposed comprising:

a wireless telephone comprising:

a low radiation (LR) wireless voice communicator including a user interface; and

a high radiation (HR) wireless communicator including a high power wireless network communication circuit,

wherein the LR wireless voice communicator and the HR wireless communicator are adapted to physically couple together for conventional use as a wireless telephone, and

a cellular unit separate from the wireless telephone, the cellular unit including:

a cellular transceiver circuit configured to communicate with a cellular network, wherein communications from the cellular transceiver circuit to the cellular network are configured to be at a first radiation level; and

a local transceiver circuit configured to communicate with the wireless telephone, wherein communications from the local transceiver circuit to the wireless telephone are configured to be at a second radiation level, wherein the second radiation level is less than the first radiation level,

wherein, in at least one mode of operation, communications at the wireless telephone are automatically switched from the first radiation level to the second radiation level and are performed between the cellular network and the wireless telephone by way of the cellular unit in response to the wireless telephone detecting the presence of the cellular unit.

2 . The cellular communications system of claim 1 , wherein the LR wireless voice communicator includes a first transceiver configured to communicate with the local transceiver circuit.

3 . The cellular communications system of claim 2 , wherein the first transceiver is configured to communicate via a WiFi protocol.

4 . The cellular communications system of claim 2 , wherein the first transceiver is configured to communicate via a Bluetooth protocol.

5 . The cellular communications system of claim 1 , wherein the LR wireless voice communicator comprises a keyboard.

6 . The cellular communications system of claim 1 , wherein the LR wireless voice communicator comprises a display.

7 . The cellular communications system of claim 1 , wherein the wireless telephone has an antenna and the cellular unit has an antenna and wherein the antenna of the cellular unit is larger than the antenna of the wireless telephone.

8 . A cellular communications system for reducing a level of radiation to which a cellular telephone user is exposed comprising:

a cellular telephone configured to communicate over a cellular network; and

a cellular unit separate from the cellular telephone and including:

a cellular transceiver circuit configured to communicate with the cellular network, wherein communications from the cellular transceiver circuit to the cellular network are configured to be at a first radiation level; and

a local transceiver circuit configured to communicate with the cellular telephone, wherein communications from the local transceiver circuit to the cellular telephone are configured to be at a second radiation level, wherein the second radiation level is less than the first radiation level,

wherein, in a first mode of operation, the cellular telephone is configured to communicate directly with the cellular network without the cellular unit and, in a second mode of operation, the cellular telephone is configured automatically to communicate with the cellular network by communicating with the local transceiver circuit of the cellular unit in response to the cellular telephone detecting the presence of the cellular unit.

9 . The cellular communications system of claim 8 , wherein the local transceiver circuit is configured to communicate with the cellular telephone by way of a WiFi protocol.

10 . The cellular communications system of claim 8 , wherein the local transceiver circuit is configured to communicate with the cellular telephone by way of a Bluetooth protocol.

11 . The cellular communications system of claim 8 , further comprising a battery, wherein the battery is configured to provide power to at least one of the cellular transceiver circuit and the local transceiver circuit.

12 . The cellular communications system of claim 8 , wherein the local transceiver circuit is configured to communicate with a plurality of cellular telephones, wherein communications from the local transceiver circuit to the plurality of cellular telephones are configured to be at the second radiation level.

13 . The cellular communications system of claim 12 , wherein the cellular transceiver circuit and the local transceiver circuit are configured to provide communications between the cellular network and each of the plurality of cellular telephones.

14 . The cellular communications system of claim 8 , further comprising a plug configured to connect the cellular unit to an electrical outlet, wherein the electrical outlet provides power to at least one of the cellular transceiver circuit and the local transceiver circuit.

15 . The cellular communications system of claim 14 , wherein the plug is foldable.

16 . The cellular communications system of claim 8 , wherein the cellular telephone has an antenna and the cellular unit has an antenna and wherein the antenna of the cellular unit is larger than the antenna of the cellular telephone.

17 . The cellular communications system of claim 8 , wherein the cellular telephone includes an application executable on the cellular telephone, the application including computer program code operative to direct the cellular telephone to communicate with the cellular network by communicating through the cellular unit.

Continuity (7)
Continuation 16878588 · May 19, 2020
Continuation 16011620 · Jun 18, 2018
Continuation 15069922 · Mar 14, 2016
Division 13485776 · May 31, 2012
Provisional Application 61492349 · Jun 1, 2011
Provisional Application 61491890 · May 31, 2011
Related Publication 20220190863A1 · Jun 16, 2022
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