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LDKATBRTH16802.11a/h radio

Cisco Systems Inc
802.11a/h radio - FCC ID LDKATBRTH16 - Cisco Systems Inc
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Mar 20, 2008
Application Purpose
Original Equipment
Date of Application
Dec 30, 2007
Equipment Note
802.11a/h radio
Frequency Range
5745.00000000 - 5825.00000000
Company
Cisco Systems Inc
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

CHAPTER 6-1 Cisco 3200 Series Router Hardware Reference OL-5816-09 6 Wireless Mobile Interface Cards (WMICs) The Cisco Wireless Mobile Interface Card (WMIC) is a Cisco 3200 Series router interface card in a standard PC/104-Plus form factor. It is one component of the Cisco 3200 Series routers and provides a wireless interface: •2.4 GHz (802.11b/g) – Cisco 3201 •4.9 GHz (public safety) – Cisco 3202 •5.0 GHz (802.11h) – Cisco 3205 (The C3205WMIC-K9 and C3205WMIC-TP-K9 WMICs are available only in the European Telecommunications Standards Institute [ETSI] domain.) CautionThe 4.9 GHz (public safety) radio requires an operators license and can only be operated by US Public Safety operators who meet the requirements specified under FCC Part 90.20. This chapter provides basic information about the WMIC hardware for the purpose of performing simple troubleshooting, such as reconnecting a loose cable. To solve more difficult problems, please contact your vendor. WMIC Component Systems The ISA buses and PCI buses on the Cisco 3200 Series router cards provide power to the components on the cards. The WMIC does not receive or transmit communications signals on either bus, but it will pass signals through the bus to a card above or below the WMIC. Both buses comply with the PC/104-Plus standard. The PCI bus signals allow the Cisco cards to communicate. Non-Cisco cards cannot communicate with the Cisco 3200 Series Router cards over the PCI bus. CautionIf you add non-Cisco cards that generates signals on the PCI bus, the router might shut down. Please do not add non-Cisco cards that generate signals on the PCI bus. 6-2 Cisco 3200 Series Router Hardware Reference OL-5816-09 Chapter 6 Wireless Mobile Interface Cards (WMICs) Figure 6-1 shows the WMIC header and bus locations. Figure 6-1WMIC Header and Bus Locations NoteThe PC/104-Plus standard requires that the PCI bus and the ISA bus utilize keying features in the standard stacking headers to guarantee proper module installation. On the PCI bus, pin D30 is removed and the D30 opening is plugged. On the ISA bus, pin C19 and pin B10 are removed, and the C19 and B10 openings are plugged. Antenna Connector On the radio card, there are two ultra-miniature coaxial connectors (U.FL connector) that are used to connect the coax cables between the WMIC and the external antenna connectors. Two connectors are used to support antenna diversity. The cable should be as short as possible to minimize the loss in strength of the radio frequency (RF) signal. The cable carries the RF signal from the antenna to the low noise amplifier (LNA) on the receiver and transmits the RF signal from power amplifier (PA) to the antenna that radiates the RF signal. There are many antenna connector families. The Cisco RP-TNC antenna connector can be used to support standard antennas. WMIC Console and Fast Ethernet Ports Cisco 3200 Series router cards do not support any ISA bus signals. The PCI bus connector supports communication between Cisco 3200 Series router card and the Fast Ethernet Switch Mobile Interface Card (FESMIC) and Serial Mobile Interface Card (SMIC). In a Cisco rugged enclosure, the WMIC communicates with the router through the WMIC Fast Ethernet interface. The WMIC Fast Ethernet ports are connected internally to Fast Ethernet ports that provide a communications link with the router. 1PCI bus2Left antenna connector (J2) 3Right antenna connector (J1)4ISA bus 510-pin Fast Ethernet header624-pin multifunction header 103981 4 2 1 3 5 6 6-3 Cisco 3200 Series Router Hardware Reference OL-5816-09 Chapter 6 Wireless Mobile Interface Cards (WMICs) The WMIC interfaces are configured through a WMIC console port. In contrast, the Serial Mobile Interface Card (SMIC) and FESMIC communicate with the router through the PC/104-Plus bus. The interfaces are configured through the router console port, and all of the router and FESMIC Fast Ethernet ports are identified by using the slot/port format. The WMIC runs an independent IOS image and when it is configured, the link between the WMIC and the router forms an internal LAN. In standard configurations, a WMIC Fast Ethernet port is never brought out to the end cap. The WMIC console port is brought out to the corresponding RJ-45 port on the I/O end cap, replacing a Fast Ethernet port. If the router includes one WMIC, the RS-232 WMIC console port replaces a Fast Ethernet port on the end cap. If the router includes two WMICs, two WMIC RS-232 console ports replace two Fast Ethernet ports on the end cap. NoteCurrently, even if the router contains zero WMICs, in standard configurations a maximum of three Fast Ethernet ports are brought out to the end cap. Unused RS-232 ports are sealed. Fast Ethernet Signals on the WMIC The Fast Ethernet signals are delivered through a 10-pin header. LED signals and RS-232 console signals are provided through the 24-pin multifunction header. There is one set of fixed Fast Ethernet signals on the WMIC. The Fast Ethernet port signals are in compliance with IEEE 802.3. They are provided through the Ethernet headers, which support the following: •Auto-negotiation for 10/100BASE-TX connection •Full-duplex and half-duplex modes •Low-power sleep mode •10BASE-T and 100BASE-TX using a single Ethernet connection •Robust baseline wander correction performance •Standard carrier signal multiple access collision detect (CSMA/CD) or full-duplex operation •Integrated LED drivers NoteIf Auto-MDIX is disabled, when connecting to Ethernet switches or repeaters a straight-through cable can be used. When connecting to compatible workstations, servers, and routers, a crossover cable should be used. If Auto-MDIX is enabled, either a straight-through or crossover cable can be used can be used to make the connection, as the router automatically changes the signals on the pins to compensate. 6-4 Cisco 3200 Series Router Hardware Reference OL-5816-09 Chapter 6 Wireless Mobile Interface Cards (WMICs) LED Behavior During normal operations, the …

Text truncated - open the document above for the full version.

Users Manual

CHAPTER 6-1 Cisco 3200 Series Router Hardware Reference OL-5816-09 6 Wireless Mobile Interface Cards (WMICs) The Cisco Wireless Mobile Interface Card (WMIC) is a Cisco 3200 Series router interface card in a standard PC/104-Plus form factor. It is one component of the Cisco 3200 Series routers and provides a wireless interface: •2.4 GHz (802.11b/g) – Cisco 3201 •4.9 GHz (public safety) – Cisco 3202 •5.0 GHz (802.11h) – Cisco 3205 (The C3205WMIC-K9 and C3205WMIC-TP-K9 WMICs are available only in the European Telecommunications Standards Institute [ETSI] domain.) CautionThe 4.9 GHz (public safety) radio requires an operators license and can only be operated by US Public Safety operators who meet the requirements specified under FCC Part 90.20. This chapter provides basic information about the WMIC hardware for the purpose of performing simple troubleshooting, such as reconnecting a loose cable. To solve more difficult problems, please contact your vendor. WMIC Component Systems The ISA buses and PCI buses on the Cisco 3200 Series router cards provide power to the components on the cards. The WMIC does not receive or transmit communications signals on either bus, but it will pass signals through the bus to a card above or below the WMIC. Both buses comply with the PC/104-Plus standard. The PCI bus signals allow the Cisco cards to communicate. Non-Cisco cards cannot communicate with the Cisco 3200 Series Router cards over the PCI bus. CautionIf you add non-Cisco cards that generates signals on the PCI bus, the router might shut down. Please do not add non-Cisco cards that generate signals on the PCI bus. 6-2 Cisco 3200 Series Router Hardware Reference OL-5816-09 Chapter 6 Wireless Mobile Interface Cards (WMICs) Figure 6-1 shows the WMIC header and bus locations. Figure 6-1WMIC Header and Bus Locations NoteThe PC/104-Plus standard requires that the PCI bus and the ISA bus utilize keying features in the standard stacking headers to guarantee proper module installation. On the PCI bus, pin D30 is removed and the D30 opening is plugged. On the ISA bus, pin C19 and pin B10 are removed, and the C19 and B10 openings are plugged. Antenna Connector On the radio card, there are two ultra-miniature coaxial connectors (U.FL connector) that are used to connect the coax cables between the WMIC and the external antenna connectors. Two connectors are used to support antenna diversity. The cable should be as short as possible to minimize the loss in strength of the radio frequency (RF) signal. The cable carries the RF signal from the antenna to the low noise amplifier (LNA) on the receiver and transmits the RF signal from power amplifier (PA) to the antenna that radiates the RF signal. There are many antenna connector families. The Cisco RP-TNC antenna connector can be used to support standard antennas. WMIC Console and Fast Ethernet Ports Cisco 3200 Series router cards do not support any ISA bus signals. The PCI bus connector supports communication between Cisco 3200 Series router card and the Fast Ethernet Switch Mobile Interface Card (FESMIC) and Serial Mobile Interface Card (SMIC). In a Cisco rugged enclosure, the WMIC communicates with the router through the WMIC Fast Ethernet interface. The WMIC Fast Ethernet ports are connected internally to Fast Ethernet ports that provide a communications link with the router. 1PCI bus2Left antenna connector (J2) 3Right antenna connector (J1)4ISA bus 510-pin Fast Ethernet header624-pin multifunction header 103981 4 2 1 3 5 6 6-3 Cisco 3200 Series Router Hardware Reference OL-5816-09 Chapter 6 Wireless Mobile Interface Cards (WMICs) The WMIC interfaces are configured through a WMIC console port. In contrast, the Serial Mobile Interface Card (SMIC) and FESMIC communicate with the router through the PC/104-Plus bus. The interfaces are configured through the router console port, and all of the router and FESMIC Fast Ethernet ports are identified by using the slot/port format. The WMIC runs an independent IOS image and when it is configured, the link between the WMIC and the router forms an internal LAN. In standard configurations, a WMIC Fast Ethernet port is never brought out to the end cap. The WMIC console port is brought out to the corresponding RJ-45 port on the I/O end cap, replacing a Fast Ethernet port. If the router includes one WMIC, the RS-232 WMIC console port replaces a Fast Ethernet port on the end cap. If the router includes two WMICs, two WMIC RS-232 console ports replace two Fast Ethernet ports on the end cap. NoteCurrently, even if the router contains zero WMICs, in standard configurations a maximum of three Fast Ethernet ports are brought out to the end cap. Unused RS-232 ports are sealed. Fast Ethernet Signals on the WMIC The Fast Ethernet signals are delivered through a 10-pin header. LED signals and RS-232 console signals are provided through the 24-pin multifunction header. There is one set of fixed Fast Ethernet signals on the WMIC. The Fast Ethernet port signals are in compliance with IEEE 802.3. They are provided through the Ethernet headers, which support the following: •Auto-negotiation for 10/100BASE-TX connection •Full-duplex and half-duplex modes •Low-power sleep mode •10BASE-T and 100BASE-TX using a single Ethernet connection •Robust baseline wander correction performance •Standard carrier signal multiple access collision detect (CSMA/CD) or full-duplex operation •Integrated LED drivers NoteIf Auto-MDIX is disabled, when connecting to Ethernet switches or repeaters a straight-through cable can be used. When connecting to compatible workstations, servers, and routers, a crossover cable should be used. If Auto-MDIX is enabled, either a straight-through or crossover cable can be used can be used to make the connection, as the router automatically changes the signals on the pins to compensate. 6-4 Cisco 3200 Series Router Hardware Reference OL-5816-09 Chapter 6 Wireless Mobile Interface Cards (WMICs) LED Behavior During normal operations, the …

Text truncated - open the document above for the full version.

Attestation Statements

Date: 12/18/2007 Attestation Statements on compliance for FCC ID: LDKATBRTH16 The above device meets the various requirements as specified under Part 15 and RSS-210 Rev 7 . The above referenced FCC ID number meets the following requirements below as specified Technical Specifications In review of this product we have verified that it has been designed and manufactured in accordance with good engineering practices and is capable of meeting all required regulations. 15.15 Compliance / RSS -210 In accordance with the requirements spelled out in Part 15.15 and RSP100, this device has no user accessible controls that would allow the user to configure the device to operate outside the regulations or rules. 15.21 Information to User The user manual or instruction manual for an intentional radiator cautions the user that changes or unauthorized modifications other then by the responsible party for compliance could void the user’s authority to operate the equipment. 15.27(a) Special Accessories Equipment marketed to a consumer must be capable of complying with the necessary regulations in the configuration in which the equipment is marketed. Where special accessories , such as shielded cables or special connectors are required to enable an unintentional or intentional radiator to comply with the emission limits in this part, the equipment must be marketed with, the special accessories . In lieu of shipping with the special accessories, the responsible party may employ other methods to ensure that the special accessories are provided to the consumer without additional charge. This device does not require any special cables or special accessories to comply with the Part 15 and RSS-210 requirements. 15.202 Non US channels Master devices: This device is pre configured at the factory and can only operate on US frequency band. The user has no access to select non US channels 15.203 / RSS-210 Section 5.5 Antenna Requirements An intentional radiator shall be designed to ensure that no other antenna other then furnished by the responsible party shall be attached to the device. The use of a permanently mounted antenna or an antenna that uses a unique coupler shall be considered sufficient to comply with the provisions of this section. This requirement does not apply to intentional radiators that must be professionally installed such as perimeter protection systems or some field disturbance sensors or other intentional radiators which in accordance with 15.31(d) must be measured at the installation site. Statement of Compliance to 15.203 / RSS-210 Section 5.5 The Cisco Systems Inc. transmitter is compliant to 15.203 based on the following: The device based on design, implantation and tune up procedures in the field requires professional installation and no unique connector is required. The installation instructions are not available to the general public <reference appropriate manual section here as well as reference exhibit where instructions are Donald J Foster Cisco Systems, Inc. Compliance Engineer

Cover Letter(s)

FCC ID: LDKATBRTH16 Marlene H. Dortch Secretary Federal Communications Commission 445 12 th St. NW Washington DC 20554 Pursuant to sections 0.407(d)(1)(ii) and 0.459 of the Commission’s rules, this letter requests confidential treatment of following material filed in support of the above- referenced application. Cisco requests the following documents be confidential • Theory of Operation, including the list of radio parameters • Schematics • Block diagram. The information contained in the document presents information about a Cisco product that is being certified for commercial development. If competitors were to have access to this document both before and after release, they would have knowledge of Cisco’s proprietary technology and would be able to use this advance knowledge to their advantage. This could result in substantial competitive harm to Cisco’s ability to bring future product to market, should that decision be made. 1. Identification of any measures taken by the submitting party to prevent unauthorized disclosure. • Information about Cisco’s products whether under development or in production is considered by the company to be commercially sensitive information that employees are not permitted to discuss outside the company. 2. Identification of whether the information is available to the public and the extent of any previous disclosure of information to third parties. • Information about product development is not routinely provided to the public, and is not available on Cisco’s web site. No information about this product has been disclosed. 3. Justification of the period during which the submitting party asserts that material should not be available for public disclosure. • Cisco requests that the above-identified material be held permanently confidential. . Sincerely, Donald J Foster Cisco Systems, Inc.

Cover Letter(s)

Date : 12/18/2007 FCC ID: LDKATBRTH16 Marlene H. Dortch Secretary Federal Communications Commission 445 12 th St. NW Washington DC 20554 Pursuant to sections 0.407(d)(1)(ii) and 0.459 of the Commission’s rules, this letter requests confidential treatment of following material filed in support of the above- referenced application. Cisco requests the following documents be held as confidential until such time as the product is released per FCC Public Notice 04-1705 • Set Up Photos • Product Exterior Photos • Product Internal Photos • User Manual • Product literature or description The information contained in the document presents information about a Cisco product that is being certified for commercial development. If competitors were to have access to this document both before and after release, they would have knowledge of Cisco’s proprietary technology and would be able to use this advance knowledge to their advantage. This could result in substantial competitive harm to Cisco’s ability to bring future product to market, should that decision be made. 1. Identification of any measures taken by the submitting party to prevent unauthorized disclosure. • Information about Cisco’s products currently under development is considered by the company to be commercially sensitive information that employees are not permitted to discuss outside the company. 2. Identification of whether the information is available to the public and the extent of any previous disclosure of information to third parties. • Information about product development is not routinely provided to the public, and is not available on Cisco’s web site. No information about this product has been disclosed. 3. Justification of the period during which the submitting party asserts that material should not be available for public disclosure. • We further authorize the release of the above information after the official product launch scheduled for 5/1/2008. Or a period not to exceed 6 months which ever comes first. 4.) Explanation of degree to which information concerns a service subject to competition NA 5) Explanation of how disclosure of information could result in substantial competitive harm. Premature release of the information before Cisco is ready to market and or sell the product could have negative impact revenue goals and or effect sales of current products. Further release of the information before official product release will provide our competitors with an in sight into our new product lines or products before we are ready to publicly release them. 6) Identification of measures taken by submitting party to prevent unauthorized disclosure. Cisco internal business practices on handling confidential information address t his issue specifically. Unauthorized release of information by Cisco personnel is a violation of company policy. 7) Identification of whether the information is available to the public and the extent of any disclosure to 3 rd parties. Upon announcement of the product or product line, the information that we are seeking temporary confidentiality for will be available to the public. Any pre lease of information to any 3 rd party including a TCB is done under a NDA. 8) Justification on period during which the submitting party asserts that the material should not be available for public disclosure. The period of time for the request for temporary confidentiality is based on our plan public announcement of the product in question. This request is in addition to our request to with hold specific Cisco technology confidential for the life of the product per applicable regulations. Sincerely, Donald J Foster Cisco Systems, Inc. Compliance Engineer

External Photos

Photographs of the EUT Radio Module Top Radio Module Bottom Test Jig Test Jig

External Photos

Photographs of the EUT Radio Module Top Radio Module Bottom Test Jig Test Jig

Internal Photos

Photographs of the EUT Radio Module Top Radio Module Bottom Test Jig Test Jig

RF Exposure Info

3/4/2008 Beartooth: Colocation A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. 1 of 7 Cisco Company Confidential Document Number: EDCS-654720 Revision 1.1 Author Fred Leffingwell Project Manager Howard Ji C3205WMIC-A-K9 (BEARTOOTH) Colocation Company Name: Cisco Systems, Inc. 170 West Tasman Drive San Jose, CA 95134 USA EUT Description: CISCO 802.11bg WIRELESS RADIO Model Number: C3201-WMIC-A-K9 EUT Description: CISCO 802.11a WIRELESS RADIO Model Number: C3205WMIC-A-K9 Reviewers Department Name/Title Compliance Howard Ji, Manager The departments and/or individuals listed above should be notified in advance and given a sufficient time period to review this document. The Project Team determines requirements for approval according to the scope of the project. 3/4/2008 Beartooth: Colocation A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. 2 of 7 Cisco Company Confidential Modification History Rev Date Originator Comment 1 2/26/2008 Fred Leffingwell Initial 1.1 2/27/2008 Added 28 dbi and corrected 17 dbi 1. Test Results Summary Applicable Standards Standard Test Results EN50385: 2002 PASS 2. Test Methodology The calculations were performed in accordance with EN 50385: 2002 The limits referenced are taken from Table 2, Annex III Council Recommendation 1999/519/EC. 3/4/2008 Beartooth: Colocation A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. 3 of 7 Cisco Company Confidential 3. Radio Module Combinations Module SKU Number Possible Max =3/EUT 2.4 Ghz Wlan (802.11 bg) C3201-WMIC-A-K9 1, 2, 3 5 Ghz Wlan (802.11 a) C3205WMIC-A-K9 1, 2, 3 4. EN 50385 Requirements – Limits of Exposure 4.1 Calculations E = (30 * P * G)^1/2 / d Where: E = field strength in Volts/meter P = Power in Watts G = Numeric Antenna Gain d = Distance in meters Using: P (mW) =1000 * P (W) d (cm) = 100 * d (m) Result: E = 17.32 * (P * G)^1/2 / d Using: P (mW) = 10^(P (dBm)/10 G (numeric) = 10^(G (dBi)/10) Result: E = 17.32 * (10^((P + G)/ 20)/ d d = distance in cm P = power in dBm G = antenna gain in dBi E = field strength in Volts/meter 3/4/2008 Beartooth: Colocation A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. 4 of 7 Cisco Company Confidential 5. WLAN Operation and Contribution to Fraction of the Limit 5.1 Limits Frequency Range E Field Strength 2-300 Ghz 61 V/m 5.2 Calculations of contribution to fraction of the limit Distance = 20 cm Calculated Values Radio + Antenna Band Output Power (dBm) Antenna Gain (dBi) E-Field (V/m) Limit (V/m) Fraction of the Limit 802.11 bg 2.4 gHz 17.61 2.2 8.47 61 0.14 802.11 a (RPTNC) * 5 gHz 14.0 9.5 12.96 61 0.21 802.11 a (N) ** 5 gHz 14.0 17 21.75 61 0.36 802.11 a (N Dish) *** 5 gHz 14.0 28 54.51 (40 CM) 61 0.89 Single Transmitter Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 bg 1 2.4 gHz 20 cm - 0.14 1 Single Transmitter Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 a (RPTNC) * 1 5 gHz 20 cm - 0.21 1 3/4/2008 Beartooth: Colocation A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. 5 of 7 Cisco Company Confidential \Single Transmitter Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 a (N) ** 1 5 gHz 20 cm - 0.36 1 Single Transmitter Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 a (N-Dish) ** 1 5 gHz 40 cm - 0.89 1 Two Transmitters Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 bg 1 2.4 gHz 20 cm 0.14 802.11 a (RPTNC) * 1 5 gHz 20 cm 0.21 Total 0.35 0.35 1 Two Transmitters Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 bg 2 2.4 gHz 20 cm 2 * 0.14 802.11 a (RPTNC) * 0 5 gHz 20 cm 0 Total 0.28 0.28 1 3/4/2008 Beartooth: Colocation A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. 6 of 7 Cisco Company Confidential Two Transmitters Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 bg 0 2.4 gHz 20 cm 0 802.11 a (RPTNC) * 2 5 gHz 20 cm 2 * 0.21 Total 0.42 0.42 1 Three Transmitters Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 bg 3 2.4 gHz 20 cm 3 * .14 802.11 a (RPTNC) * 0 5 gHz 20 cm 0 Total 0.42 0.42 1 Three Transmitters Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 bg 2 2.4 gHz 20 cm 2 * 0.14 802.11 a (RPTNC) * 1 5 gHz 20 cm 0.21 1 Total 0.49 0.49 1 Three Transmitters Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 bg 1 2.4 gHz 20 cm 0.14 802.11 a (RPTNC) * 2 5 gHz 20 cm 2 * 0.21 Total 0.56 0.56 1 3/4/2008 Beartooth: Colocation A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. 7 of 7 Cisco Company Confidential Three Transmitters Transmitter How Many Band MPE Distance Calculation Fraction of the limit Limit 802.11 bg 0 2.4 gHz 20 cm 0 802.11 a (RPTNC) * 3 5 gHz 20 cm 3 * 0.21 Total 0.63 0.63 1 * Note: only RPTNC antennas (suffex R on page 6) can be directly mounted. ** Note: N type antenna are mounted separately (cabled) and hence are not colocated. *** Note: Dish antenna is highly directional.

Test Report

                                                  !"##$%&      !! "# $% $ %  !&' '() &*+    , -.#%    !"" #" (  /   )*+& ,                                 0                                 )    1      2 32  2                                                                                                 …

Text truncated - open the document above for the full version.

Contact Information

Applicant

Samuel Kim(Manager, Engineering)
[email protected]408-527-1446Fax: 408-527-1446

Technical Contact

Cisco SystemsDonald J Foster
[email protected]408-853-5965

821 Alder Dr. · Milpitas, California · United States

Non-Technical Contact

Cisco SystemsFred Leffingwell
[email protected]408 902 8590

Test Firm

Cisco Systems, Inc.Daisy Poon
[email protected]408-526-7315Fax: 408-526-4184

Technical Specifications

#Rule PartsFrequency RangePower Output
115C5.75 GHz - 5.83 GHz40.00 mW
Software Defined Radio
Yes
Confidentiality
Long Term

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