140 Appendix

Solutions (ATIS). The U and UT marks are referenced in Section 20.19 of the FCC Rules. The HAC rating and measurement procedure are described in the American National Standards Institute (ANSI) C63.19 standard.

For information about hearing aids and digital wireless phones

FCC Hearing Aid Compatibility and Volume Control:

http://www.fcc.gov/cgb/dro/hearing.html

Gallaudet University, RERC:

http://tap.gallaudet.edu/DigWireless.KS/DigWireless.htm

SAR Information

SAR: 1.130 W/kg @1g (USA)

THIS MODEL DEVICE MEETS THE GOVERNMENT’S REQUIREMENTS FOR EXPOSURE TO RADIO WAVES.

For body worn operation, this phone has been tested and meets the FCC RF exposure guidelines when used with the High Tech Computer Corp. accessories supplied or designated for this product. Use of other accessories may not ensure compliance with the FCC RF exposure guidelines.

Your wireless mobile CDMA phone is a radio transmitter and receiver. It is designed and manufactured not to exceed the emission limits for exposure to radio frequency (RF) energy set by the Federal Communications Commission of the U.S. Government. These limits are part of comprehensive guidelines and establish permitted levels of RF energy for the general population. The guidelines are based on the safety standards previously set by both U.S. and international standards bodies:

American National Standards Institute (ANSI) IEEE. C95.1-1992.

National Council on Radiation Protection and Measurement (NCRP). Report 86. 1986.

International Commission on Non-Ionizing Radiation Protection (ICNIRP) 1996.

Ministry of Health (Canada), Safety Code 6. The standards include a substantial safety margin designed to assure the safety of all persons, regardless of age and health.

The exposure standard for wireless mobile CDMA phone employs a unit of measurement known as the Specific Absorption Rate, or SAR. The SAR limit set by the FCC is 1.6W/kg*. Tests for SAR are conducted with

the device transmitting at its highest certified power level in all tested frequency bands. Although the SAR is determined at the highest certified power level, the actual SAR level of the device while operating can be well below the maximum value. This is because the device is designed to operate at multiple power levels so as to use only the power required to reach the network. In general, the closer you are to a wireless base station antenna, the lower the power output. Before a device model is available for sale to the public, it must be tested and certified to the FCC that it does not exceed the limit established by the government adopted requirement for safe exposure. The tests are performed in positions and locations (e.g., at the ear and worn on the body) as required by the FCC for each model.

The highest SAR value for this model device when tested for use at the ear is 1.130 W/Kg @ 1g and when worn on the body, as described in this user guide, is 0.922 W/Kg @ 1g. (Body-worn measurements differ among device models, depending upon available accessories and FCC requirements). While there may be differences between the SAR levels of various devices and at various positions, they all meet the government requirement for safe exposure.

The FCC has granted an Equipment Authorization for this model device with all reported SAR levels evaluated as in compliance with the FCC RF exposure guidelines. SAR information on this model device is on file with the FCC and can be found under the Display Grant section of https://gullfoss2.fcc.gov/prod/oet/cf/eas/ reports/GenericSearch.cfm after searching on FCC ID: NM8TITA100.

Additional information on Specific Absorption Rates (SAR) can be found on the Cellular Telecommunications & Internet Association (CTIA) web-site as http://www.phonefacts.net.

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HTC XV6800 user manual SAR Information, SAR 1.130 W/kg @1g USA

XV6800 specifications

The HTC XV6800, also known as the HTC Mogul, is a versatile smartphone that emerged in 2007. This device was particularly significant for its advanced features and functionality, catering to both business and personal users. Equipped with Windows Mobile 6, the XV6800 offered a familiar interface for users accustomed to Microsoft products.

One of the key features of the HTC XV6800 is its slide-out QWERTY keyboard, which provided an efficient typing experience. This physical keyboard was a major selling point, especially for professionals who relied on email and messaging. The device also sports a 2.8-inch touchscreen, allowing users to navigate through applications and menus with ease.

In terms of connectivity, the HTC XV6800 included a range of options to keep users connected on the go. It supported both Wi-Fi and Bluetooth technologies, enabling wireless internet access and easy syncing with other devices. The inclusion of EVDO Rev. A support allowed for faster mobile data access, which was crucial for users who needed to retrieve information quickly while traveling.

The XV6800 was powered by a Qualcomm 7200 400 MHz processor, which, while not the most robust by today's standards, provided sufficient power for the multitasking needs of its time. It supported microSD memory cards, allowing users to expand the device's storage to accommodate music, photos, and videos.

Multimedia capabilities were also a highlight of the HTC XV6800. It included a 2-megapixel camera, enabling users to capture photos and videos. The device supported various audio and video playback formats, making it a multimedia companion for users on the move.

Battery life was another consideration, with a removable 1350 mAh battery that offered a decent performance for daily use. Users could easily replace the battery, extending the device's functionality without the need for a complete upgrade.

Overall, the HTC XV6800 represented a convergence of work and play, providing essential features for productivity while also catering to entertainment needs. Its combination of a physical keyboard, touchscreen interface, and robust connectivity options made it a noteworthy device in the smartphone evolution, laying groundwork for future mobile technology innovations.