
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
PA1;1 Ericsson Confidential ASSEMBLY DRAWING 1 (1) Prepared (also subject responsible if other) No. ENIDANI 151 88-KRD 131 14 Uen Approved Checked Date Rev Reference 2008-04-18 PA1 Assembly Drawing F3507g 1 Label Location Figure 1 shows the label location for the primary label on Ericsson F3507g. Product Label Mounted on Primary Side Figure 1 Ericsson F3507g Label Location
PB1;1 Ericsson Internal PRODUCT SPEC. 1 (8) Prepared (also subject responsible if other) No. EBJOBOD 1301-1/SVF 191 310/01 Uen Approved Checked Date Rev Reference 2008-04-18 PB1 MBM Label Specification, Ericsson Generic Abstract This document contains information for Ericsson generic marking on the Mobile Broadband Module. For prototype production the label changes, prototype changes can be seen in Section 2. Application Marking product number shall be included in the manufacturing specification, 131 32- for the product. Revision history Rev. Date Description PA1 2008-01-10 First draft 1 1/SVF 191 310/01 The information specified in this document will be printed on the preprinted label 2/SVF 191 310/20. All distances are in millimeters and tolerances ±0.1mm unless otherwise noted. The printing on the label shall fulfill the following general properties: Text Color Black Font Triumvirate Bold Condensed Margins Left and right 0.5mm clear margin Top and bottom 0.2mm clear margin Printer resolution 300 dpi The label has been divided into 14 parts, A-N, according to Figure 1. The different parts will be described separately. Part A is pre-printed while the other parts will be printed during production. The parts’ positions are specified with distance from the leftmost point of the part to the left label border, and PB1;1 Ericsson Internal PRODUCT SPEC. 2 (8) Prepared (also subject responsible if other) No. EBJOBOD 1301-1/SVF 191 310/01 Uen Approved Checked Date Rev Reference 2008-04-18 PB1 the distance from the uppermost point of the part to the upper border of the label. To exemplify, for the CE, the leftmost and uppermost points are those marked in Figure 2. F3507g KRD 131 14/01 R1A S/N: Y99ZZZZZZZ IMEI: 000000000000000 FCC ID: VV7-MBMF3507G IC: 287AG-MBMF3507G NZ SCN: Not type approved Made in China (e1) Year/W eek: YYYYWW WWAN AUX MAIN I B H C D E F G N A 0682 N173 J K L M Figure 1. The Ericsson generic label divided into 14 parts. Not to scale. Figure 2. Definition of leftmost and uppermost points. 1.1 Label Part A Part A of the label is preprinted, see 2/SVF 191 310/20, and consists of Text MAIN Font Triumvirate Bold Condensed Font size 1.76mm Upper triangle (at MAIN) Color CMKY Red Height 2.5 mm PB1;1 Ericsson Internal PRODUCT SPEC. 3 (8) Prepared (also subject responsible if other) No. EBJOBOD 1301-1/SVF 191 310/01 Uen Approved Checked Date Rev Reference 2008-04-18 PB1 Text WWAN Font Triumvirate Bold Condensed Font size 1.76mm Lower triangle (at AUX) Color CMKY Deep Sea Blue Height 2.5 mm Text AUX Font Triumvirate Bold Condensed Font size 1.76mm 1.2 Label Part B Part B consists of the Ericsson logo and shall have the following properties: Distance from left side to left border 1.5mm Distance from top to upper border 1mm Length 14mm 1.3 Label Part C Part C consists of two rows of text with the following general properties: Font Triumvirate Bold Condensed Font size Variable, see below Line spacing Single (2.11mm) Distance to left edge 1.5mm Distance from first row to top 5mm The contents of the rows are: Row 1 Ericsson model number F3507g Font size 1.76mm Font style Bold Spaces 3 spaces Font size 1.76mm Ericsson product number with R-state KRD 131 14/01 R1A Font size 1.42mm Font style Normal Row 2 Ericsson serial number identifier S/N: Font size 1.42mm Font style Normal Space 1 space Font size 1.42mm Ericsson serial number Y99ZZZZZZZ Format See Section 1.3.1 Font size 1.42mm Font style Normal 1.3.1 Construction of Ericsson Serial Number Ericsson’s serial number consists of two parts. First Y99, which is a manufacturing code, then ZZZZZZZ, which is a unique number for the module. These numbers are not specified yet. PB1;1 Ericsson Internal PRODUCT SPEC. 4 (8) Prepared (also subject responsible if other) No. EBJOBOD 1301-1/SVF 191 310/01 Uen Approved Checked Date Rev Reference 2008-04-18 PB1 1.4 Label Part D Part D consists of a bar code for Ericsson’s serial number. Properties for the bar code are: Barcode type 128 Module width 1 Height 32 (About 2.7 mm) Interpretation line No Mode A Distance to left border 1.5mm Distance from top to upper row 8mm 1.5 Label Part E Part E consists of one row of text with the following general properties: Font Triumvirate Bold Condensed Font size 1.42mm Distance to left border 1.5mm Distance from first row to top 12mm The contents of the row are: Row 1 IMEI number identifier IMEI: Font style Normal Space 1 space IMEI number 000000000000000 Font style Normal 1.6 Label Part F Part F consists of a bar code for the IMEI number. Properties for the bar code are: Bar code type 128 Module width 1 Height 32 (About 2.7mm) Interpretation line No Mode A Distance to left border 1.5mm Distance from top to upper row 13.1mm 1.7 Label Part G Part G consists of three rows of text with the following general properties: Font Triumvirate Bold Condensed Font size Variable, see below Line spacing Single (1.704mm) Distance to left border 1.5mm Distance from first row to top 17mm The contents of the rows are: Row 1 Federal Communications Commission ID identifier FFC ID: Font size 1.42mm Font style Normal Spaces 1 space Ericsson generic FCC ID VV7-MBMF3507G Font size 1.07mm PB1;1 Ericsson Internal PRODUCT SPEC. 5 (8) Prepared (also subject responsible if other) No. EBJOBOD 1301-1/SVF 191 310/01 Uen Approved Checked Date Rev Reference 2008-04-18 PB1 Font style Normal Row 2 Industry Canada (IC) identifier IC: Font size 1.42mm Font style Normal Spaces 1 space Ericsson generic IC number 287AG-MBMF3507G Font size 1.07mm Font style Normal Row 3 New Zealand supplier code number identifier NZ SCN: Font size 1.42mm Font style Normal Spaces 1 space Not-type-approved text Not type approved Font size 1.07mm Font style Normal 1.8 Label Part H Part H consists of two rows of text with the following general properties: Font Triumvirate Bold Condensed Font size 1.42mm Line spacing Single (1.704mm) Distance to left border 1.5mm Distance from first row to top 22.5mm The contents of the rows are Row 1…
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Ericsson Confidential INTERNAL PHOTOS 1 (1) Prepared (also subject responsible if other) No. EAB/FJB/MI Magnus Gyllenhammar Approved Checked Date Rev Reference EAB/FJB/MI Pelle Hellberg 2008-04-16 A VV7-MBMF3507G Internal photos KRD 131 14/01 R1C Top View Bottom View
Ericsson Confidential STATEM OF COMPLIANCE 1 (3) Prepared (also subject responsible if other) No. EPELHEL 5/174 02-HRC 105 034/1 Uen Approved Checked Date Rev Reference EAB/FJB/MI [Pelle Hellberg] 2008-05-07 A RF exposure information for the equipment F3507G The device F3507G (FCC ID: VV7-MBMF3507G) is designed as module to be installed in other devices. This device is to be used only for fixed and mobile applications. If the final product after integration is intended for portable use, a new application and FCC is required. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all the persons and must not be co-located or operating in conjunction with any other antenna or transmitter. The table below is excerpted from Table 1B of 47 CFR 1.1310 titled Limits for Maximum Permissible Exposure (MPE), Limits for General Population/Uncontrolled Exposure: Frequency Range (MHz) Power density (mW/cm 2 ) Averaging time (minutes) 300 – 1500 f (MHz) /1500 30 1500 – 100.000 1.0 30 Based on the above table the limits are: For 850 MHz frequency band device: 0.57 mW/cm 2 For 1900 MHz frequency band device: 1 mW/cm 2 Using the equation from page 19 of OET Bulletin 65, Edition 97-01: 2 4R PG S π = where: S = power density (in appropriate units, e.g. mW/cm 2 ) P = power input to the antenna (in appropriate units, e.g., mW) G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna (appropriate units, e.g., cm) Compliance with MPE limits can be guaranteed as the calculation below shows: Ericsson Confidential STATEM OF COMPLIANCE 2 (3) Prepared (also subject responsible if other) No. EPELHEL 5/174 02-HRC 105 034/1 Uen Approved Checked Date Rev Reference EAB/FJB/MI [Pelle Hellberg] 2008-05-07 A 850 MHz frequency band Maximum output power considerations: Mode Maximum conducted output power (dBm) Maximum conducted output power (mW) Duty cycle Equivalent conducted output power (Maximum conducted output power x duty cycle) (mW) GPRS 33,00 1995,26 25% 498,82 EDGE 31,00 1258,93 25% 314,73 WCDMA 23,62 230,14 100%230,14 HSDPA 23,49 223,36 100%223,36 HSUPA 23,08 203,24 100%203,24 P Maximum power input to the antenna: 498,82 mW R Distance: 20 cm S MPE limit for uncontrolled exposure: 0,57 mW/cm 2 G 1 Antenna gain (numerical) to comply with MPE limits: 5,71 G 1 Antenna gain (dBi) to comply with MPE limits: 7,57 dBi ERP power limit according to §22,913 (a): 7 W G 2 Antenna gain (numerical) to comply with ERP limits: 5,75 (ERP = Maximum conducted output power x Antenna gain / 1,64) G 2 Antenna gain (dBi) to comply with ERP limits: 7,60 dBi G 850 MHz band Min (G 1 , G 2 ) 7,57 dBi Therefore the maximum antenna gain to comply with MPE and ERP limits should not exceed 7.57 dBi. Ericsson Confidential STATEM OF COMPLIANCE 3 (3) Prepared (also subject responsible if other) No. EPELHEL 5/174 02-HRC 105 034/1 Uen Approved Checked Date Rev Reference EAB/FJB/MI [Pelle Hellberg] 2008-05-07 A 1900 MHz frequency band Maximum output power considerations: Mode Maximum conducted output power (dBm) Maximum conducted output power (mW) Duty cycle Equivalent conducted output power (Maximum conducted output power x duty cycle) (mW) GPRS 29,30 851,14 25% 212,78 EDGE 28,70 741,31 25% 185,33 WCDMA 22,80 190,55 100%190,55 HSDPA 23,00 199,53 100%199,53 HSUPA 22,80 190,55 100%190,55 P Maximum power input to the antenna: 212,78 mW R Distance: 20 cm S MPE limit for uncontrolled exposure: 0,57 mW/cm 2 G 3 Antenna gain (numerical) to comply with MPE limits: 13,39 G 3 Antenna gain (dBi) to comply with MPE limits: 11,27 dBi EIRP power limit according to §24,232 (b): 2 W G 4 Antenna gain (numerical) to comply with ERP limits: 3,85 (EIRP = Maximum conducted output power x Antenna gain) G 4 Antenna gain (dBi) to comply with EIRP limits: 5,86 dBi G 1900 MHz band Min (G 3 , G 4 ) 5,86 dBi Therefore the maximum antenna gain to comply with MPE and EIRP limits should not exceed 5.86 dBi.
CETECOM ICT Services GmbH Untertürkheimer Straße 6-10 . D-66117 Saarbrücken Phone: +49 (0) 681-598-0 Fax:-9075 RSC-Laboratory 2008-04-19 Page 1 of 152 Accredited testing-laboratory DAR registration number: DAT-P-176/94-D1 Federal Motor Transport Authority (KBA) DAR registration number: KBA-P 00070-97 Recognized by the Federal Communications Commission Anechoic chamber registration no.: 90462 (FCC) Anechoic chamber registration no.: 3463A-1 (IC) Certification ID: DE 0001 Accreditation ID: DE 0002 Accredited Bluetooth ® Test Facility (BQTF) The Bluetooth word mark and logos are owned by the Bluetooth SIG, Inc. and any use of such marks by Cetecom ICT is under license Test report no. : 4-2918-01-02/07 Model name : F3507g Applicant : Ericsson AB FCC ID : VV7-MBMF3507G IC Certification No : 287AG-MBMF3507G Test standards : 47 CFR Part 22 47 CFR Part 24 RSS - 132 Issue 2 RSS - 133 Issue 4 CETECOM ICT Services GmbH Test report no.: 4-2918-01-02/07 2008-04-19 Page 2 of 152 Table of contents 1 General information.................................................................................................. 3 1.1 Notes ...................................................................................................................................................................3 1.2 Testing laboratory ...............................................................................................................................................4 1.3 Details of applicant .............................................................................................................................................4 1.4 Application details ..............................................................................................................................................4 2 Test standard/s:........................................................................................................ 5 3 Technical tests.......................................................................................................... 6 3.1 Details of manufacturer.......................................................................................................................................6 3.1.1 Test item......................................................................................................................................................6 3.2 Test Setup............................................................................................................................................................7 4 Statement of Compliance ........................................................................................... 8 4.1 Summary of Measurement Results .....................................................................................................................8 4.1.1 PCS 1900.....................................................................................................................................................8 4.1.2 GSM 850 .....................................................................................................................................................8 4.1.3 UMTS Band II.............................................................................................................................................8 4.1.4 UMTS Band V ............................................................................................................................................9 5 Measurements and results ....................................................................................... 10 5.1 PART PCS 1900 ...............................................................................................................................................10 5.1.1 RF Power Output.......................................................................................................................................10 5.1.2 Frequency Stability...................................................................................................................................14 5.1.3 Radiated Emissions ...................................................................................................................................17 5.1.4 Receiver Radiated Emissions ....................................................................................................................24 5.1.5 Conducted Spurious Emissions .................................................................................................................28 5.1.6 Block Edge Compliance............................................................................................................................31 5.1.7 Occupied Bandwidth .................................................................................................................................34 5.2 PART GSM 850................................................................................................................................................41 5.2.1 RF Power Output.......................................................................................................................................41 5.2.2 Frequency Stability...................................................................................................................................44 5.2.3 Radiated Emissions ...................................................................................................................................47 5.2.4 Receiver Radiated Emissions ....................................................................................................................54 5.2.5 Conducted Spurious Emissions .................................................................................................................58 5.2.6 Block Edge Compliance............................................................................................................................61 5.2.7 Occupied Bandwidth .........................…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 6 | 22H | 826.4 MHz - 846.6 MHz | 435.00 mW | 4M20F9W | 0.0394 ppm |

N5321 Ericsson Mobile Broadband Module
Equipment Class
PCB - PCS Licensed Transmitter
Mobile Broadband Module
Equipment Class
PCB - PCS Licensed Transmitter
H5321 Ericsson Mobile Broadband Module
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral
F5321 Ericsson Mobile Broadband Module
Equipment Class
PCB - PCS Licensed Transmitter
Transmitter Module
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral