Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Xecom Incorporated FCC ID: DWE-XE900SL10 Block Diagram XE1203 Transceiver Internal Oscillator 902 MHz to 928 MHz Lowpass Filter Bandpass Filter T/R Switch 39.00 MHz Crystal MSP430 Microcontroller Host Connector 32.768 kHz Crystal 6 10 902 - 928 MHz 4.875 MHz
Response to TCB Findings 1. Is the antenna listed in the test report (Temple Star Model C-522) and the one listed in the manual (Xecom XE900A10 1/4 wave monopole) the same antenna? Please clarify. Yes, both antennas are the same. Xecom has renamed the Temple Star C-522 with their own product number of XE900A10. 2. Please supply antenna specification sheet of the antenna intended for use. Supplied. 3. Please also supply specification sheet of the onboard male AMC connector. SLN10 Antenna Connector Technical Data Sheet attached for Review 4. Please specify the VBW setting for the "Peak" detector used for radiated emissions testing above 1GHz (Pg 12 of the report). L.S. Compliance / Per Mr. Ken Boston ... RBW = 1MHz > 1GHz and VBW = 1MHz > 1GHz.. 5. The maximum conducted power readings at the antenna port in the report is much lower than the 10dBm rating of the module. Please justify this difference. Module was tested in "as supplied" condition from Xecom. The "10mW" setting is a nominal number. The readings in the report reflect actual performance. 6. Has the device been tested in 3 orthogonal planes of the antenna? Please clarify. 2 orthogonal test positions added to the report.
Xecom Incorporated FHSS Module 902 - 928 MHz Digital Radio FCC ID#: DWE-XE900SL10 Photo One – External Module configuration with ¼ wave monopole antenna Xecom Incorporated FHSS Module 902 - 928 MHz Digital Radio FCC ID#: DWE-XE900SL10 Photo Two – External Module with FCC ID Location Xecom Incorporated FHSS Module 902 - 928 MHz Digital Radio FCC ID#: DWE-XE900SL10 Photo Three – External Close-up of the FCC ID Label
XECOM, INC. Title: MARKING PLATE FOR XE900SL10 374 Turquoise St. Page of Specification No. REV. Milpitas, CA. 95035. USA 1 7 A900.139 A 1 REV. DCN No. DATE ORIGINATOR DESCRIPTION OF CHANGE A 1460 5-26-2004 K.Pham Initial Release XECOM, INC. Title: MARKING PLATE FOR XE900SL10 374 Turquoise St. Page of Specification No. REV. Milpitas, CA. 95035. USA 2 7 A900.139 A 2 xecom FCC ID: DWE-XE900SL10 Comp. with Part 15 FCC Rules. This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: 1) this device may not cause harmful interference, and 2) this device must accept any interference received, including interference that may cause undesired operation. USA 0.9” MAX 0.5” MAX 4-50 4-50 4-50 4-50 4-50 .01 .01 .01 .01 Universe condense TYPE 4-50 4-50 .01 .01 XECOM, INC. Title: MARKING PLATE FOR XE900SL10 374 Turquoise St. Page of Specification No. REV. Milpitas, CA. 95035. USA 3 7 A900.139 A 3 Product Information Sheet B-423 Lab Effective Date: 12/7/01 BRADY WORLDWIDE, INC. P.O. Box 2131 Milwaukee, WI 53201-2131 Tel. 414/358-6600 Fax 800/292-2289 B-423 THERMAL TRANSFER PRINTABLE GLOSSY WHITE POLYESTER LABEL STOCK This Product Information Sheet is focused on the suitability of B-423 for laboratory applications. For additional data regarding B-423 performance please refer to B-423 Technical Data Sheet. Description: GENERAL Print Technology: Thermal transfer Material Type: White polyester Finish: Glossy white Adhesive: Permanent acrylic APPLICATIONS Laboratory identification such as vials, centrifuge tubes, test tubes, well plates and slides RECOMMENDED RIBBONS Brady series 6000 Brady series 4400 (colors – red, blue, green, white) Brady series 4900 (alternate)* *B-423 can be printed with series 4900 ribbon; please note that testing described in this product information sheet was performed on materials printed with the 6000 series ribbon . AGENCY APPROVALS UL: Recognized to UL969 Labeling and Marking Standard when printed with Brady series R6000 and R4900 ribbons (see UL file MH17154 for specific details). CSA: accepted when printed with Brady series R6000 and R4900 ribbons (see CSA Acceptance Record LS41833 for specific details). SPECIAL FEATURES B-423 is also available web cleaned and packaged for introduction into ISO Class 5 cleanroom applications. This cleanroom product is supplied on a film release liner for standard bench top thermal transfer printers (THT) and Brady's TLS2200® printer family (PTL). The change to the film release liner may affect some adhesive performance characteristics noted in this Technical Data Sheet. However, short term test studies conducted showed the impact on adhesive performance to be minimal. 0.9” MAX 4-50 .01 TYPE XECOM, INC. Title: MARKING PLATE FOR XE900SL10 374 Turquoise St. Page of Specification No. REV. Milpitas, CA. 95035. USA 4 7 A900.139 A 4 Details: Note: All values shown are averages and should not be used for specification purposes. Test data and test results contained in this document are for general information only and shall not be relied upon by Brady customers for designs and specifications, or be relied on as meeting specified performance criteria. Customers desiring to develop specifications or performance criteria for specific product applications should contact Brady for further information. PHYSICAL PROPERTIES TEST METHODS AVERAGE RESULTS Thickness ASTM D1000 -Substrate -Adhesive -Total (excluding liner) 0.0508 mm (0.002 inch) 0.0254 mm (0.001 inch) 0.0762 mm (0.003 inch) Adhesion to: -Stainless Steel -Polypropylene -Glass ASTM D1000 20 minute dwell 24 hour dwell 20 minute dwell 24 hour dwell 20 minute dwell 24 hour dwell 46 oz/inch (50 N/100 mm) 55 oz/inch (60 N/100 mm) 32 oz/inch (35 N/100 mm) 32 oz/inch (35 N/100 mm) 35 oz/inch (38 N/100 mm) 48 oz/inch (53 N/100 mm) PERFORMANCE PROPERTIES – LAB SIMULATED ENVIRONMENT Performance properties tested on B-423 printed with Series R6000 ribbon on Bradyprinter ™ THT Model 300X-Plus thermal transfer printer. Printed samples were laminated to glass vials (2.8 cm outer diameter), polypropylene centrifuge tubes (3.5 cm outer diameter, 50 ml capacity) and glass microscope slides and allowed to dwell 24 hours before exposure to the indicated environments. XECOM, INC. Title: MARKING PLATE FOR XE900SL10 374 Turquoise St. Page of Specification No. REV. Milpitas, CA. 95035. USA 5 7 A900.139 A 5 ENVIRONMENTTEST METHOD TYPICAL RESULTS High Service Temperature** 30 days at elevated temperatures No visible effect at 120°C (248°F). Material discolored but functional up to 160°C (320°F) Freezer 3 cycles of 16 hours at – 70°C (–94°F)/ 8 hours at room temperature Glass vial Polypropylene centrifuge tube Glass microscope slide Flat polypropylene Pressure Cooker (simulate autoclave) 3 cycles of 1 hour in 121°C (250°F) 15 psi pressure cooker/23 hours room temperature Glass vial Polypropylene centrifuge tube Glass microscope slide Flat polypropylene Liquid Nitrogen 3 cycles of 4 hours at -196°C (-320°F)/20 hours at room temperature Glass vial Polypropylene centrifuge tube Glass microscope slide Flat polypropylene Freezer to boiling water 1 hour at -70°C (-94°F) then placed in boiling water 100°C (212°F) Glass vial Polypropylene centrifuge tube Glass microscope slide Flat polypropylene Liquid Nitrogen to boiling water 1 hour at -196°C (-320°F) then placed in boiling water 100°C (212°F) for 10 minutes Glass vial Polypropylene centrifuge tube Glass microscope slide Flat polypropylene ** Samples for this testing were placed on glass microscope slides Label suitable for application; no visible effect, label remains adhered to test surface Label may work in application; test results were mixed Label not recommended for application; label came off either during testing or after test surface was removed from environment. XECOM, INC. Title: MARKING PLATE FOR XE900SL10 374 Turquoise St. Page of Specification No. REV. Milpitas, CA. 95035. USA 6 7 A900.139 A 6 PERFORMANCE PROPERTIES - CHEM…
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Xecom Incorporated FHSS Module 902 - 928 MHz Digital Radio FCC ID#: DWE-XE900SL10 Photo One – Internal Open for Inspection Xecom Incorporated FHSS Module 902 - 928 MHz Digital Radio FCC ID#: DWE-XE900SL10 Photo Two – Internal Close-up of PCB RF Section Xecom Incorporated FHSS Module 902 - 928 MHz Digital Radio FCC ID#: DWE-XE900SL10 Photo Three – Internal Close-up of PCB Flip Side Xecom Incorporated FHSS Module 902 - 928 MHz Digital Radio FCC ID#: DWE-XE900SL10 Photo Four – Internal Close-up of PCB Antenna Connection Xecom Incorporated FHSS Module 902 - 928 MHz Digital Radio FCC ID#: DWE-XE900SL10 Photo Five – Internal Close-up of ¼ wave Monopole Antenna Connection
XECOM, INC. 374 Turquoise Street Milpitas, CA. 95035 Title: XE900SL10 Theory of Operation 1 OF 2 XECOM, INC. XE900SL10 900 MHZ TRANSCEIVER THEORY OF OPERATION XECOM, INC. 374 Turquoise Street Milpitas, CA. 95035 Title: XE900SL10 Theory of Operation 2 OF 2 The Xecom XE900SL10 Transceiver Module is a frequency hopping spread spectrum transceiver operating in the 902 MHz to 928 MHz ISM band. It transmits with a maximum power of 0.010 watts (+10 dBm) into a fixed ¼ wave monopole antenna with a nominal gain of 0 dBi. Transmission occurs on a pseudo-randomly ordered group of 50 channels determined are chosen from a pool of 52 available channels. Each radio is programmed with a seed value that determined the table based on a defined pseudorandom generator. Each channel carries a single packet of information for no longer than 52 mS. The receiver is a direct (zero IF) conversion type meaning that there is no offset local oscillator. Individual channel selection occurs within the receiver without the need for external filtering. An overall bandpass filter restricts the receiver to the stated ISM band.
1 Ultra Small SMT Coaxial Connectors - Low Profile 1.9mm or 2.4mm Mated Height U.FL Series 2003.9 1.9 ( 2.0Max ) 2.4 ( 2.5Max ) 3 ( 3.2Max ) U.FL-LP(V)-040 U.FL-LP-040 U.FL-LP-066 E.FL-LP-040 E.FL-LP-066 U.FL SeriesE.FL Series 2.5Max 2.5Max 2.0Max 2.4Max 2.4Max U.FL-LP-040 U.FL-LP-066 U.FL-LP(V)-040 U.FL-LP-062 U.FL-LP-088 U.FL-R-SMT U.FL-R-SMT U.FL-R-SMT U.FL-R-SMT U.FL-R-SMT Dia.0.81 Dia.1.32Dia.1.13 Dia.0.81 Dia.1.0 Dia.1.37 Features 1. Low Profile: 1.9mm or 2.4mm Nom. Mated Height Height from the circuit board is 2.0mm or 2.5mm maximum when a plug (right angle) is mated to a receptacle, which ranks with world’s smallest class. 2.Extremely Small Occupied Mounting Area In comparison with our SMT coaxial connectors E.FL series, the receptacle provides a reduction of approximately 18% of occupied mounting surface, which is only 7.7mm 2 . 3.Light Weight One of the world’s lightest coaxial connectors. Receptacle: 15.7mg 4.Applicable Up to 6 GHz Frequency To meet the frequency requirements of a wide variety of miniature equipment, these connectors offer high frequency performance from DC to 6 GHz. 5.Board placement with automatic equipment Supplied on tape-and-reel packaging. 6.Use of Ultra-fine Teflon Cable From among the types of applicable cable, dia. 0.81mm(single shielded) ultra-fine Teflon coaxial cable has been made a standard specification in construction area. Refer to the following pages for different cable types. 7.Simple Removal of Connector The extraction jig permits simple removal of connectors. 8.User Friendly Mating Operation Tactile lock feeling ensures engagement even with this small size. Applications Mobile phones, Wireless LAN, Mini-PCI, Bluetooth, PDA, GPS, electronic measuring instruments, etc. Mated Height Comparison (With Hirose Product) Space Factor of Mated Connector Meets up to 6 GHz Requirement NEW NEW NEW 2 Product Specifications *V.S.W.R. Measurement System The above V.S.W.R. standard values were measured using the measurement system of the diagram below. Note 1: Cable type connectors were measured with SMA conversion adapters attached to both ends of the harness product of a suitable 100cm cable. Note 2: Board type connectors were mounted to a 50Ωglass epoxy board and measurements were conducted with SMA conversion adapters attached. Ratings Nominal characteristic impedance Voltage rating Frequency range 50 ohms 60 V AC (rms) DC to 6 GHz Operating temperature range Operating humidity -40 ̊C to +90 ̊C 90% max. PartMaterialFinishRemarks Shell Phosphor bronzeSilver plating————— Male center contactBrassGold plating————— Female center contact Phosphor bronzeGold plating————— Insulator PlugColor: BlackUL94V-0 ReceptacleColor: Beige UL94V-0LCP PBT Materials 1. Contact resistance 2. Insulation resistance 3. Withstanding voltage 4. V.S.W.R.* 5. Female contact holding force 6. Durability (mating/un-mating, with corresponding plug) 7. Vibration 8. Shock 9. Humidity (Steady state) 10. Temperature cycle 11. Salt spray test ItemSpecificationConditions Center: 20 m ohms max. Outside: 10 m ohms max. 500 M ohms min. No flashover or insulation breakdown. 0.15 N min. Contact resistance Center: 25 m ohms max. Outside: 15 m ohms max. No electrical discontinuity of 1μs min. No damage, cracks or parts dislocation. No damage, cracks or parts dislocation. Insulation resistance 100 M ohms min.(when humidity high) Insulation resistance 500 M ohms min.(when dry) No damage, cracks or parts dislocation. Contact resistance:25 m ohms max. (Center) 15 m ohms max. (Outside) No excessive corrosion 10 mA max. 100 V DC 200 V AC / 1 minute Measured with a Ø 0.475 pin gauge 30 cycles Frequency: 10 to 100 Hz, single amplitude of 1.5mm, acceleration of 59m/s 2 , for 5 cycles in the direction of each of the 3 axis. Acceleration of 735 m/s 2 , 11ms duration, sine half-wave waveform, 2 cycles in each of 3 axes. 96 hours at temperature of 40ç and humidity of 95%. Temperature:-40 ̊C / +5 to +35 ̊C / +90 ̊C / +5 to +35 ̊C Time:30 / 5 max. / 30 / 5 max. (Minutes) 5 cycles 5% salt water solution, 48 hours Part No.Up to 3GHz3 to 6GHz U.FL-LP-040 dia.0.81mm Coaxial Cable Assembly1.3 Max1.35 Max U.FL-LP(V)-040 dia.0.81mm Coaxial Cable Assembly1.3 Max1.3 Max U.FL-LP-066 dia.1.13mm Coaxial Cable Assembly1.3 Max1.4 Max U.FL-LP-066 dia.1.32mm Coaxial Cable Assembly1.3 Max1.5 Max U.FL-LP-062 dia.1mm Coaxial Cable Assembly1.3 Max1.3 Max U.FL-LP-088 dia.1.37mm Coaxial Cable Assembly1.3 Max1.4 Max 3 Part No. Mated Height Applicable cable Weight (mg) 2.5mm Max.2.5mm Max.2.0mm Max.2.4mm Max.2.4mm Max. (2.4mm Nom.)(2.4mm Nom.)(1.9mm Nom.)(2.3mm Nom.)(2.3mm Nom.) Dia. 0.81mmDia. 0.81mmDia. 1mmDia. 1.37mm Coaxial cableCoaxial cableCoaxial cableCoaxial cable Dia. 0.81mmDia. 0.81mmDia. 1mmDia. 1.37mm Coaxial cableCoaxial cableCoaxial cableCoaxial cable 53.759.134.845.571.7 Dia. 1.13mm and Dia. 1.32mm Coaxial cable Cable Assembly (Plug) Cable Guide How to Specify Cable Assembled Plug Dimension of U.FL Series assembly products should be made as indicated below. Double-Ended Cable Assembly Single-Ended Cable Assembly U.FL - [] LP - [] - A - (L) Ordering Information Series nameU.FL Total Length(mm) 0035 0 < = L < = 0 02 00 0200 0< L < = 00500 0500 0 <L < < = 0 1000 1000 0 < 0 L < =1000 Standard Tolerance (mm) ±04 ±08 ±12 ±1.5% Total Standard Tolerance for Total Length of Cable Assembly Note: Shortest length L is 35 mm. LL 3124 1 Assembly type LP: Single ended 2LP: Double ended 2 Cable type 04 : Dia.0.81mm Coaxial Cable 068 : Dia.1.13mm Coaxial Cable 066 : Dia.1.32mm Coaxial Cable 062 : Dia.1 mm Coaxial Cable 088 : Dia.1.37mm Coaxial Cable 3 Total Length(mm)Length is expressed in mm units. Please contact Hirose Sales Representative for cable length and cable end treatment. 4 U.FL-LP-040U.FL-LP-062U.FL-LP-088 Dia.0.81mm Coaxial Cable 04 7/0.05 SA (AWG36) Dia.0.40 PFA Single Shield SA Dia.0.81 PFA 50 ohms6.45dB/m9.42dB/m Dia.1.13mm Coaxial Cable 068 7/0.08 SA (AWG32) Dia.0.68 FEP Single Shield SA[TA] Dia.1.13 FEP 50 ohms …
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Xecom Incorporated FHSS Module 902 - 928 MHz Digital Radio FCC ID#: DWE-XE900SL10 Maximum Permissible Exposure (Part 15.247(b)(4))) Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna 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 Maximum peak output power at antenna input terminal: 3.1 (dBm) Maximum peak output power at antenna input terminal: 2.02 (mW) Antenna gain(typical): 0.0 (dBi) Maximum antenna gain: 1.00 (numeric) Prediction distance: 20 (cm) Prediction frequency: 915 (MHz) MPE limit for uncontrolled exposure at prediction frequency: 0.61 (mW/cm 2 ) Power density at prediction frequency: 0.00040 (mW/cm 2 ) Maximum allowable antenna gain: 31.81 (dBi) Margin of Compliance at 20 cm = 31.81 dB 2 4R PG S π =
S325 582 B XE9 00SL 10 C 1 1 T h u r s d ay , Ap ri l 15 , 2004 XE CO M , I NC. 374 T U R Q U O I SE ST R EET , M I L P I T A S , C A 95 035 Ti t l e S i z e Do cu me n t Nu mb e r Re v Da t e : S h e e t of 04/ 08/ 0 4 D e l L4, C 11= 1. 5pf , C 86= 10nH B 1 399 01/ 19/ 0 4 1 417 R e l e as e t o pr oduc t i on A Re vi s i o n Hi s t o r y Re v D a t e D C N S i gnat ur e CH A N G E VR F VR F 3. 3V 3. 3V 3. 3 V 3. 3V VR F 3. 3 V VR F VR F VR F 3. 3 V VR F R5 1 5 R 1 02 1K R 1 04 1K C2 7 4n 7 F F B 1 BEAD C6100p f C5310pF J6 IO 2 / P 1 . 2 1 R1 2 0 O H M C1 0 1 10 uF / 6 . 3 V C4 6 22 nF R 107 1 K J 1 2 A 1 / P 6 .1 1 L8 10 nH C1 4 2. 7pF L32 2nH C1 0 0 2 2 p F R1 9 10 0K C1 6 3. 3pF SF 1 TA 9 1 5 E C 1 2 3 4 5 6 GND IN GND GND OU T GND C2 5 4n7 F C8 4 2. 7 p F TP 9 1 C9 5 1n F C5610pF R 1 01 1K C9 6 1nF C5410pF C2 0 4 7pF R7 6 47 0K J1 /T x D 1 C5910pF TP 1 1 1 R3 1 K R5 4 2K C1 7 4 n7F C6 1 10 pF C5 2 1nF C9 2 1nF C 8 6 10n H N e xt A ssy. P r e v A ssy. Da t e Da t e Me c h . C h e c k D o not s c a l e dr a w i n g U n le s s o t h e r w is e s p e c if ie d di m ens i o ns ar e i n i n c h es . T o l e r a nc es ar e: 0. 5 deg F r a c t i ons D e c i m a l s A n gl es 1/ 32 . x = + / - . 0 2 .x x = + / - .0 1 . xxx= + / - . 0 0 5 Dr a w n B y Ap p r o v a l s El e c . En g . Qu a l i t y Mf g . E n g . P u r c has i n g Ma r k e t i n g El e c . C h e c k El e c . C h e c k C5810pF C9 4 1nF D1MMB D 9 1 4 1 3 R8 2 R 2 TP 1 1 R3 8 1 K 1 16 2 15 3 14 4 13 5 12 6 11 7 10 8 9 C4 0 22p F TP 3 1 1 TP 2 1 C7047pF C7747pF R1 0 3 1 K C2 3 100n F C2 2 22n F TP 1 0 1 R 100 1 K C8 5 0. 1u f R3 0 10K R7 9 0OH M TP 8 1 C2 8 1 0uF / 6 . 3 V R1 1 1. 8K C1 0 2 10 0nF TP 4 1 R7 2 0 O H M J8 IO 0 / P 1 . 0 1 C7147pF L1 1 8nH R40 10K C3 1 22p F X239. 000 M H z C3 9 2 2pF R 1 06 1K U6 NC7 S V 1 4 P 5 X 5 1 2 3 4 VC C NCAGN D Y R371K C8 3 0p5F C6 4 22u F / 6V 3 C7247pF C4 8 22 nF C1 1 1. 5p F R4 9 0 C 108 100 nF X132. 768 KH z R 2 8 10R R6 6 1 K C2 6 100n F C2 1 330 pF C7 8 10 pF R1 5 5. 6 K J2 /RxD 1 C6210pF C5100n F R 1 05 1K TP 3 0 1 R5 2 2K L14 0ohm TP 5 1 C1 9 4n7 F C4 9 10uF / 6 . 3 V C5 1 2 2uF / 6 V3 C5710pF U4 M S P 4 3 0 F148 _P Q F P 6 4 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 DV CC P 6 .3 /A 3 P 6 .4 /A 4 P 6 .5 /A 5 P 6 .6 /A 6 P 6 .7 /A 7 VR EF + XI N XO U T / C L K VeR E F + VR EF _/ VeR E F _ P 1 .0 /T A C L K P 1 .1 /T A 0 P 1 .2 /T A 1 P 1 .3 /T A 2 P 1 .4 /S M C L K P1. 5/TA0 P1. 6/TA1 P1. 7/TA2 P2. 0/ACLK P2. 1/TAI NCLK P2.2/CAOUT/TA0 P2.3/CA0/TA1 P2.4/CA1/TA2 P2. 5/Rosc P2.6/ADC12CLK P2. 7/TA0 P3. 0/STE0 P3.1/SIMO0 P3.2/SOMI0 P3. 3/UCLK0 P3. 4/UTXD0 P 3 . 5 / URX D0 P 3 .6 /U T X D 1 P 3 . 7 / URX D1 P 4 .0 /T B 0 P 4 .1 /T B 1 P 4 .2 /T B 2 P 4 .3 /T B 3 P 4 .4 /T B 4 P 4 .5 /T B 5 P 4 .6 /T B 6 P 4 .7 /T B C L K P 5 .0 /S T E 1 P 5 .1 /S I M O 1 P 5 .2 /S O M I 1 P5 . 3 / U C L K1 P 5 .4 /M C L K P5.5/SMCLK P5. 6/ACLK P5.7/TBoutH XT2OUT XT2I N TD0/TDI TDI TMS TCK /RST/NMI P6.0/A0 P6.1/A1 P6.2/A2 AVSS DVSS AVCC C71 00nF C 120 100 pF J1 3 A 0 / P 6 .0 1 J3 /CT S 1 R6 7 0 R7 8 0 O H M J4 /RT S 1 J9 N C 1 R2 0 10R C4 7 1n F C9 1 1n F J1 0 G N D 1 C 1 5 22pF C7647pF C7347pF R1 4 1 2 n H R 4 39nH J1 1 V C C 1 C6 3 0. 1uF C5510pF L16 56nH L13 56nH R3 1 10 K C7547pF C7447pF TP 1 7 1 U1 X E 12 03 _ V Q F N 4 8 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 NCNCNCVSSFRF_ I NA RF_ I NB VSSPVSSPRF_ O UT V DDP TE S T V DDF VSSF TANK_A TANK_B VSSF LFB VDDD VSSD TEST TEST NC TEST TEST VSSA X T AL_A VSSA X T AL_B VD D A NCNC T EST T EST T EST EN VD D T/R_SWITCH SERIAL_OUT SERI AL_I N SERIAL_CLK CLK_OUT VSS D_CLK DATA DATA_IN PATTERN NC NC SL U G J1 4 R ESET 1 C1 0 3 1 0 0pF R2 6 5. 6 K JP 1 SM _ R F _ C O N 2 1 3 AN T GND GND C1 2 2. 7 p F R2 2 39 0 C6 0 10 pF U 5 AS18 8 - 9 2 5 1 2 3 4 6 IN OU T 1 GN D OU T 2 V2 V1 J5 IO 3 / P 1 . 3 1 TP 3 1 C9 3 1n F C6 5 22 nF R2 9 1 0 R C2 4 1 p 5 F R1 8 10R C8 7 10 00pF J7 IO 1 / P 1 . 1 1 TX AV CC RX
TITLE: XE900S-500 MODULE CONDUCTED TESTS PROJECT: XE900S-500 RADIO MODULE DEVELOPMENT W66 N220 COMMERCE COURT CEDARBURG, WI 53012, USA (262)-375-4400 FAX: (262)-375-6731 email: [email protected], http://www.lsr.com DRAWN BY: John Lofgren DATE: May 7, 2004 CHECKED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 APPROVED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 SIZE: A DRAWING NUMBER: XE900SL10-PCT-1.0 REVISION: 1.1 FILENAME, FILES AFFECTED: Test Report - Conducted.doc SCALE: NOT TO SCALE SHEET: 1 OF 27 Xecom Corporation XE900SL10 Transceiver Module CONDUCTED EMISSION TESTING TITLE: XE900S-500 MODULE CONDUCTED TESTS PROJECT: XE900S-500 RADIO MODULE DEVELOPMENT W66 N220 COMMERCE COURT CEDARBURG, WI 53012, USA (262)-375-4400 FAX: (262)-375-6731 email: [email protected], http://www.lsr.com DRAWN BY: John Lofgren DATE: May 7, 2004 CHECKED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 APPROVED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 SIZE: A DRAWING NUMBER: XE900SL10-PCT-1.0 REVISION: 1.1 FILENAME, FILES AFFECTED: Test Report - Conducted.doc SCALE: NOT TO SCALE SHEET: 2 OF 27 TABLE OF CONTENTS 1.0 SIGNATURES............................................................................................3 2.0 SCOPE.......................................................................................................4 3.0 REVISION CONTROL ...............................................................................4 4.0 APPLICABLE DOCUMENTS .....................................................................5 5.0 EQUIPMENT UNDER TEST CONDITIONS (CONDUCTED EMISSIONS)7 5.1 Output Power and Occupied Bandwidths15.247(a) (b) (c) : .................8 5.1.1 Minimum Channel Separation (Part 15.247(a)(1))...........................9 5.1.2 Equal Channel Usage (Part 15.247(a)(1)) .....................................11 5.1.3 Pseudorandom Hopping Pattern (Part 15.247(a)(1)).....................11 5.1.4 Receiver Synchronization (Part 15.247(a)(1)) ...............................11 5.1.5 Receiver Input Bandwidth (Part 15.247(a)(1)) ...............................11 5.1.6 Number of Hopping Frequencies (Part 15.247(a)(1)(i)).................12 5.1.7 Dwell Time (Part 15.247(a)(1)(i)) ...................................................18 5.1.8 20dB Bandwidth (Part 15.247(a)(1)(i)) ...........................................19 5.1.9 Peak Output Power (Part 15.247(b)(2)..........................................20 5.1.10 EIRP Limit (Part15.247(b)(3))........................................................22 5.1.11 Maximum Permissible Exposure (Part 15.247(b)(4)))....................22 5.1.12 Spurious Emission at Band Edges (Part 15.247(c))......................23 5.1.13 Spurious Emission, Wideband (Part 15.247(c)) .............................25 TITLE: XE900S-500 MODULE CONDUCTED TESTS PROJECT: XE900S-500 RADIO MODULE DEVELOPMENT W66 N220 COMMERCE COURT CEDARBURG, WI 53012, USA (262)-375-4400 FAX: (262)-375-6731 email: [email protected], http://www.lsr.com DRAWN BY: John Lofgren DATE: May 7, 2004 CHECKED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 APPROVED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 SIZE: A DRAWING NUMBER: XE900SL10-PCT-1.0 REVISION: 1.1 FILENAME, FILES AFFECTED: Test Report - Conducted.doc SCALE: NOT TO SCALE SHEET: 3 OF 27 1.0 SIGNATURES Manufacturer: Xecom Date(s) of Test: May 7, 2004 Test Engineer: John Lofgren Model #: XE900SL10 Serial #: 100 Operating Mode: Hopping / CW, as required per individual test Prepared By: July 28, 2004 Teresa A. White, Document Coordinator Date Tested By: July 28, 2004 John A. Lofgren, Senior Design Engineer Date Approved By: July 28, 2004 Brian E. Petted, VP Engineering Date Approved By: July 28, 2004 Kenneth L. Boston, EMC Lab Manager Date PE # 31926 Licensed Professional Engineer Registered in the State of Wisconsin, United States TITLE: XE900S-500 MODULE CONDUCTED TESTS PROJECT: XE900S-500 RADIO MODULE DEVELOPMENT W66 N220 COMMERCE COURT CEDARBURG, WI 53012, USA (262)-375-4400 FAX: (262)-375-6731 email: [email protected], http://www.lsr.com DRAWN BY: John Lofgren DATE: May 7, 2004 CHECKED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 APPROVED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 SIZE: A DRAWING NUMBER: XE900SL10-PCT-1.0 REVISION: 1.1 FILENAME, FILES AFFECTED: Test Report - Conducted.doc SCALE: NOT TO SCALE SHEET: 4 OF 27 2.0 SCOPE This report presents the results associated with the conducted emission tests of the Xecom XE900SL10 RF Transceiver Module. This particular module is configured for 902-928 MHz operation. This report presents conducted test results required for pre-compliance for authorization under FCC Part 15.247 as a potential frequency hopping device. 3.0 REVISION CONTROL DATE CHANGES REVISION 05/05/04 ORIGINAL RELEASE 1.0 07/27/04 MODIFY WORDING IN SECTIONS 5.1.2 AND 5.1.3 1.1 TITLE: XE900S-500 MODULE CONDUCTED TESTS PROJECT: XE900S-500 RADIO MODULE DEVELOPMENT W66 N220 COMMERCE COURT CEDARBURG, WI 53012, USA (262)-375-4400 FAX: (262)-375-6731 email: [email protected], http://www.lsr.com DRAWN BY: John Lofgren DATE: May 7, 2004 CHECKED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 APPROVED BY: BRIAN PETTED, VP ENG DATE: May 10, 2004 SIZE: A DRAWING NUMBER: XE900SL10-PCT-1.0 REVISION: 1.1 FILENAME, FILES AFFECTED: Test Report - Conducted.doc SCALE: NOT TO SCALE SHEET: 5 OF 27 4.0 APPLICABLE DOCUMENTS [1] “Code of Federal Regulations Title 47, Volume 1, Sec. 1.1310 Radiofrequency radiation exposure limits” 47CFR1.1310, Revised as of October 1, 2001, Page 297-298. [2] “Code of Federal Regulations Title 47, Volume 1, Sec. 2.1091 Radiofrequency radiation exposure evaluation: mobile devices.” 47CFR2.1091, Revised as of October 1, 2001, Page 588-589. [3] “Code of Federal Regulations Title 47, Volume 1, Sec. 15.31 “Measurement standards.” 47CFR15.31, Revised as of October 1, 2001, Page 677-681. [4] “Code of Federal Regulations Title 47, Volume 1, Sec. 15.33 “Frequency range of radiated measurements.” 47CFR15.33, Revised as of October 1, 2001, Page 682-683. [5] “Code of Federal Regulati…
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L.S. Compliance, Inc. W66 N220 Commerce Court Cedarburg, WI 53012 262-375-4400 Fax: 262-375-4248 COMPLIANCE TESTING OF: 900S10 Module (10 mW) PREPARED FOR: Xecom TEST REPORT NUMBER: 304193 TX TCB Rev. 1 TEST DATE(S): May 4 th and 14th, 2004 All results of this report relate only to the items that were tested. This report is not to be reproduced, except in full, without written approval of L. S. Compliance, Inc. L.S. Compliance, Inc. Page 2 of 23 Test Report Number: 304193 TX TCB Rev. 1 Prepared For: Xecom Table of Contents Section Description Page Index 2 1 L. S. Compliance in Review 3 2 A2LA Certificate of Accreditation 4 3 A2LA Scope of Accreditation 5 4 Validation Letter-U.S. Competent Body for EMC Directive 89/336/EEC 6 5 Signature Page 7 6 Product and General Information 8 7 Introduction 8 8 Product Description 8 9 Test Requirements 9 10 Summary of Test Report 9 11 Radiated Emissions Test 10-17 12 Conducted Emissions Test, AC Power Line 18-22 Appendix A Test Equipment List 23 B Conducted Emissions Test Report (LSR) attached L.S. Compliance, Inc. Page 3 of 23 Test Report Number: 304193 TX TCB Rev. 1 Prepared For: Xecom 1. L. S. Compliance In Review L.S. Compliance – Accreditations and Listing’s As an EMC Testing Laboratory, our Accreditation and Assessments are recognized through the following: A2LA – American Association for Laboratory Accreditation Accreditation based on ISO/IEC 17025 : 1999 with Electrical (EMC) Scope of Accreditation A2LA Certificate Number: 1255.01 Federal Communications Commission (FCC) – USA Listing of 3 Meter Semi-Anechoic Chamber based on Title 47 CFR – Part 2.948 FCC Registration Number: 90756 Listing of 3 and 10 meter OATS based on Title 47CFR – Part 2.948 FCC Registration Number: 90757 Industry Canada On file, 3 Meter Semi-Anechoic Chamber based on RSS-212 – Issue 1 File Number: IC 3088-A On file, 3 and 10 Meter OATS based on RSS-212 – Issue 1 File Number: IC 3088 U. S. Conformity Assessment Body (CAB) Validation Validated by the European Commission as a U. S. Competent Body operating under the U. S. /EU, Mutual Recognition Agreement (MRA) operating under the European Union Electromagnetic Compatibility –Council Directive 89/336/EEC, Article 10.2. Date of Validation: January 16, 2001 Validated by the European Commission as a U.S. Notified Body operating under the U.S./EU, Mutual Recognition Agreement (MRA) operating under the European Union Telecommunication Equipment – Council Directive 99/5/EC, Annex V. Date of Validation: November 20, 2002 Notified Body Identification Number: 1243 L.S. Compliance, Inc. Page 4 of 23 Test Report Number: 304193 TX TCB Rev. 1 Prepared For: Xecom 2. A2LA Certificate of Accreditation L.S. Compliance, Inc. Page 5 of 23 Test Report Number: 304193 TX TCB Rev. 1 Prepared For: Xecom 3. A2LA Scope of Accreditation L.S. Compliance, Inc. Page 6 of 23 Test Report Number: 304193 TX TCB Rev. 1 Prepared For: Xecom 4. Validation Letter – U.S. Competent Body for EMC Directive 89/336/EEC L.S. Compliance, Inc. Page 7 of 23 Test Report Number: 304193 TX TCB Rev. 1 Prepared For: Xecom 5. Signature Page Prepared By: Sept. 13, 2004 Teresa A. White, Document Coordinator Date Tested By: Sept. 13, 2004 Thomas T. Smith, EMC Engineer Date Approved By: Sept. 13, 2004 Kenneth L. Boston, EMC L…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902 MHz - 928 MHz | 2.00 mW |
Transceiver Module
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterData Modem
Equipment Class
JBP - Part 15 Class B Computing Device PeripheralInternal Modem Card
Equipment Class
JBP - Part 15 Class B Computing Device PeripheralInternal modem (fax/data) card
Equipment Class
JBP - Part 15 Class B Computing Device PeripheralInternal Laptop Modem
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral