Fr01 S4 210 | 071-210 트레이 고장 에러 및 용지크기 불일치 – Apeosport Vi \U0026 Docucentre Vi 제품 Korean 7727 좋은 평가 이 답변

당신은 주제를 찾고 있습니까 “fr01 s4 210 – 071-210 트레이 고장 에러 및 용지크기 불일치 – ApeosPort VI \u0026 DocuCentre VI 제품 Korean“? 다음 카테고리의 웹사이트 https://ppa.charoenmotorcycles.com 에서 귀하의 모든 질문에 답변해 드립니다: https://ppa.charoenmotorcycles.com/blog. 바로 아래에서 답을 찾을 수 있습니다. 작성자 FUJIFILM Business Innovation Support 이(가) 작성한 기사에는 조회수 2,097회 및 좋아요 5개 개의 좋아요가 있습니다.

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FR01-S4-210 Ignion – Mouser Electronics

FR01-S4-210 Ignion Antennas New part number 128-NN03-310 datasheet, inventory, & pricing.

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FR01-S4-210 TRIO mXTEND™ Evaluation Board – Ignion

FR01-S4-210 TRIO mXTEND™ Evaluation Board … This Evaluation Board integrates one TRIO mXTEND™ chip antenna component to prove operation in two frequency …

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FR01-S4-210 footprint & symbol by Ignion | SnapEDA

Download schematic symbols, PCB footprints, 3D Models, pinout & datasheet for the FR01-S4-210 by Ignion. 700MHz, 800MHz, 850MHz, 900MHz, 1.7GHz, 1.8GHz, …

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FR01-S4-210 – Fractus Antennas – Antennas | SemiKart India

FR01-S4-210, Fractus Antennas, Antennas New part number 128-NN03-310 | Buy Antennas on SemiKart at the lowest price with no minimum order value.

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FR01-S4-210 Ignion – Richardson RFPD

FR01-S4-210 Ignion Antenna Unit Pricing And Availability.

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Fractus FR01-S4-210 – RF Antennas – Octopart

CAD Models. Download Fractus FR01-S4-210 symbol, footprint, and 3D STEP models from our trusted partners. EE Concierge. Symbol. Footprint.

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TRIO mxtend TM (FR01-S4-210) A standard antenna solution …

TRIO mxtend TM (FR01-S4-210) A standard antenna solution for mobile frequency bands · 3216 Ceramic Chip Antenna for Bluetooth/WLAN Application · 50 ohm nominal …

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FR01-S4-210 – Fractus Antennas – X-On Electronics

FR01-S4-210 of Fractus Antennas are available at X-ON Electronics Components. X-ON offers better pricing, availability and various range of FR01-S4-210.

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fr01-s4-210 Price and Stock – Findchips

fr01-s4-210 price and availability by authorized and independent electronic component distributors.

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071-210 트레이 고장 에러 및 용지크기 불일치 -  ApeosPort VI \u0026 DocuCentre VI 제품   Korean
071-210 트레이 고장 에러 및 용지크기 불일치 – ApeosPort VI \u0026 DocuCentre VI 제품 Korean

주제에 대한 기사 평가 fr01 s4 210

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  • Date Published: 2020. 11. 27.
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FR01-S4-210 Ignion

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FR01-S4-210 TRIO mXTEND™ Evaluation Board – Ignion – RF Evaluation, Development Kits, Boards

FR01-S4-210 TRIO mXTEND™ Evaluation Board

EB_FR01-S4-210-M TRIO mXTEND™ Evaluation Board

Ignion

This Evaluation Board integrates one TRIO mXTEND™ chip antenna component to provide operation in two frequency regions, from 698MHz to 960MHz and from 1710MHz to 2690MHz. A UFL cable connects this single input/output port to the SMA connector. The specs of a Ignion standard product are measured in their Evaluation Board, which is an ideal case. In a real design, components nearby the antenna, LCD’s, batteries, covers, connectors, etc. affect the antenna performance. This is the reason why it is highly recommended placing pads compatible with 0402 and 0603 SMD components for a matching network as close as possible to the feeding point. Do it in the ground plane area, not in the clearance area. This provides a degree of freedom to tune the TRIO mXTEND™ chip antenna component once the design is finished and considering all elements of the system (batteries, displays, covers, etc.).

FR01-S4-210 footprint & symbol by Ignion

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FR01-S4-210 Ignion

The TRIO mXTENDTM chip antenna component has been specifically designed for providing multiband performance in wireless devices, in particular in mobile devices. This antenna is an ultra slim off the shelf component of only 1.0 mm height, this gives the designer freedom to integrate it in about all wireless platforms. Thanks to its modular, multiband and multiport configuration this chip antenna works in worldwide frequency regions, including connectivity within several 2G, 3G, 4G and 5G bands, but also for other regions of the spectrum such as GNSS and Bluetooth. The TRIO mXTENDTM chip antenna component is built on glass epoxy substrate.

Note: This part is available until the extent of inventory. Please see replacement part NN03-310

FR01-S4-210 Fractus – RF Antennas – Distributors, Price Comparison, and Datasheets

Alternate Names

Fractus has several brands around the world that distributors may use as alternate names. Fractus may also be known as the following names:

TRIO mxtend TM (FR01-S4-210) A standard antenna solution for mobile frequency bands

Transcription

1 A standard antenna solution for mobile frequency bands Fractus Antennas specializes in enabling effective mobile communications. Using Fractus Antennas technology, we design and manufacture optimized antennas to make your wireless devices more competitive. Our mission is to help our clients develop innovative products and accelerate their time to market through our expertise in antenna design, testing and manufacturing. Fractus Antennas products are protected by Fractus Antennas patents. All information contained within this document is property of Fractus Antennas and is subject to change without prior notice. Information is provided as is and without warranties. It is prohibited to copy or reproduce this information without prior approval. TRIO mxtend TM chip antenna component Fractus Antennas is an ISO 9001:2015 certified company. All our antennas are lead-free and RoHS compliant. FR01-S4-210 ISO 9001: 2015 Certified Last updated on February FRACTUS ANTENNAS, S.L. – 1

2 INDEX OF CHAPTERS 1. PRODUCT DESCRIPTION FR01-S EVALUATION BOARD ( MHz and MHz) CAPABILITIES AND MEASUREMENT SYSTEMS MECHANICAL CHARACTERISTICS FR01-S ASSEMBLY PROCESS PACKAGING Last updated on February FRACTUS ANTENNAS, S.L. – 2

3 TABLE OF CONTENTS 1. PRODUCT DESCRIPTION FR01-S EVALUATION BOARD ( MHz and MHz) QUICK REFERENCE GUIDE EVALUATION BOARD ( MHz and MHz) CAPABILITIES AND MEASUREMENT SYSTEMS MECHANICAL CHARACTERISTICS FR01-S DIMENSIONS, TOLERANCES, AND RoHS COLOR RANGE FOR THE INK RECOMMENDED FOOTPRINT FOR THE FR01-S ASSEMBLY PROCESS PACKAGING Last updated on February FRACTUS ANTENNAS, S.L. – 3

4 1. PRODUCT DESCRIPTION FR01-S4-210 The TRIO mxtend TM chip antenna component has been specifically designed for providing the major level of flexibility to operate any required frequency band inside any wireless device. TRIO mxtend TM chip antenna component is capable of operating the main mobile communication standards, enabling worldwide coverage, such as GSM850, GSM900, GSM1800/DCS, GSM1900/PCS, UMTS, LTE700, LTE800, LTE850, LTE900, LTE1700, LTE1800, LTE1900, LTE2000, LTE2100, LTE2300, LTE2500, and LTE2600, ( MHz and MHz), the main short range wireless bands such as Bluetooth and Wi-Fi ( MHz and MHz), as well as the Global Navigation Systems such as GPS, Glonass, and Beidou (1561 MHz, 1575 MHz and MHz) through the same antenna component. The TRIO mxtend TM chip antenna component offers the flexibility to be tuned at the frequency regions of interest through the proper adjustment of the matching network. This characteristic provides an important benefit since removes the need of including different antenna parts inside the same wireless device for operating different communication standards, thus reducing considerably the integration complexity while saving costs. The results gathered herein presents how the matching network should be configured for operating the main mobile communication standards. TOP BOTTOM Material: The TRIO mxtend TM chip antenna component is built on glass epoxy substrate. Handsets Smartphones Tablets Laptop PCs Smart Meters IoT Devices Modules Routers APPLICATIONS BENEFITS High efficiency Small size Cost-effective Easy-to-use (pick and place) Multiband behaviour (worldwide standards) Off-the-Shelf Standard Product (no customization is required) The TRIO mxtend TM chip antenna component belongs to a new generation of antenna solutions based on the Virtual Antenna TM technology owned by Fractus Antennas. The technology is mainly focused on replacing conventional antenna solutions by miniature and standard components. Last updated on February FRACTUS ANTENNAS, S.L. – 4

5 2. EVALUATION BOARD ( MHz and MHz) 2.1. QUICK REFERENCE GUIDE Technical features MHz MHz Average Efficiency > 55 % > 65 % Peak Gain 1.1 dbi 2.4 dbi VSWR < 3:1 Radiation Pattern Omnidirectional Polarization Linear Weight (approx.) 0.25 g. Temperature -40 to + 85 ºC Impedance 50 Dimensions (L x W x H) 30.0 mm x 3.0 mm x 1.0 mm Table 1 Technical features. Measures from the Evaluation Board. See Figure 1. Note that for obtaining comparable results, a ground plane length larger than 100 mm is recommended EVALUATION BOARD ( MHz and MHz) This Evaluation Board (part number: EB_FR01-S4-210-M) integrates one TRIO mxtend TM chip antenna component to provide operation in two frequency regions, from 698 MHz to 960 MHz and from 1710 MHz to 2690 MHz. A UFL cable connects this single input/output port to the SMA connector. F E A G D B C Measure mm A 142 B 130 C 60 D 9 E 40 F 20 G 12 Tolerance: ±0.2 mm Figure 1 EB_FR01-S4-210-M. Evaluation Board for providing operation in 2 frequency ranges, MHz and MHz. Material: The Evaluation Boards are built on FR4 substrate. Thickness is 1 mm. Clearance Area: 40 mm x 12 mm (ExG) This product and its use are protected by at least one or more of the following patents and patent applications PAT. US 62/529032; and other domestic and international patents pending. Additional information about patents related to this product is available at Last updated on February FRACTUS ANTENNAS, S.L. - 5 6 MATCHING NETWORK The specs of a Fractus Antennas standard product are measured in their Evaluation Board, which is an ideal case. In a real design, components nearby the antenna, LCD s, batteries, covers, connectors, etc. affect the antenna performance. This is the reason why it is highly recommended placing pads compatible with 0402 and 0603 SMD components for a matching network as close as possible to the feeding point. Do it in the ground plane area, not in the clearance area. This provides a degree of freedom to tune the TRIO mxtend TM chip antenna component once the design is finished and taking into account all elements of the system (batteries, displays, covers, etc.). Figure 2 Matching network distribution Please notice that different devices with different ground planes and different components nearby the TRIO mxtend TM chip antenna component may need a different matching network. To ensure optimal results, the use of high Q and tight tolerance components is highly recommended (Murata components). 698 MHz 960 MHz and 1710 MHz 2690 MHz MN Section a Value Part Number 15 nh LQW18AN15NG pf GJM1555C1HR30WB01 MN Section b Value Part Number 2.2 nh LQW18AN2N2C nh LQW15AN8N6G pf GJM1555C1H2R2WB pf GJM1555C1H1R0WB01 10 nh LQW18AN10NG pf GJM1555C1HR36WB nh LQW18AN3N0C80 Figure 3 Matching network implemented in the Evaluation Board 1 port (Figure 1). Last updated on February FRACTUS ANTENNAS, S.L. - 6 7 This matching network applies to this Evaluation Board. Other configurations would require a matching network adjustment. Please contact for more information related to the matching service for a chip antenna component VSWR AND TOTAL EFFICIENCY VSWR (Voltage Standing Wave Ratio) and Total Efficiency versus Frequency (GHz). Figure 4 VSWR and Total Efficiency for the MHz frequency range and for the MHz frequency range (from the Evaluation Board) (Figure 1). Last updated on February FRACTUS ANTENNAS, S.L. - 7 8 RADIATION PATTERNS ( MHz), GAIN AND EFFICIENCY Measurement System Set-Up Evaluation Board in Plane XY θ = 90º Plane XY at 750 MHz and 890 MHz = 0º Plane XZ at 750 MHz and 890 MHz = 90º Plane YZ at 750 MHz and 890 MHz Peak Gain 1.1 dbi Gain Average Gain across the band Gain Range across the band (min, max) 0.5 dbi -0.7 < > 1.1 dbi Peak Efficiency 64.3 % Efficiency Average Efficiency across the band 59.3 % Efficiency Range across the band (min, max) % Table 2 Antenna Gain and Total Efficiency from the Evaluation Board (Figure 1) within the MHz frequency range. Measures made in the Satimo STARGATE 32 anechoic chamber. Last updated on February FRACTUS ANTENNAS, S.L. – 8

9 RADIATION PATTERNS ( MHz) GAIN, AND EFFICIENCY Measurement System Set-Up Evaluation Board in Plane XY θ = 90º Plane XY at 1.71 GHz, 2.2 GHz and 2.69 GHz = 0º Plane XZ at 1.71 GHz, 2.2 GHz and 2.69 GHz = 90º Plane YZ at 1.71 GHz, 2.2 GHz and 2.69 GHz Peak Gain 2.4 dbi Gain Average Gain across the band Gain Range across the band (min, max) 1.8 dbi 0.3 < > 2.4 dbi Peak Efficiency 80.2 % Efficiency Average Efficiency across the band 71.4 % Efficiency Range across the band (min, max) % Table 3 Antenna Gain and Total Efficiency for the Evaluation Board (Figure 1) within the MHz frequency range. Measures made in the Satimo STARGATE 32 anechoic chamber. Last updated on February FRACTUS ANTENNAS, S.L. – 9

10 Return Los s (db) 3. CAPABILITIES AND MEASUREMENT SYSTEMS Fractus Antennas specializes in designing and manufacturing optimized antennas for wireless applications and providing our clients with RF expertise. We offer turn-key antenna products and antenna integration support to minimize your time requirement and maximize your return on investment during your product development efforts. We also provide our clients with the opportunity to leverage our in-house testing and measurement facilities to obtain accurate results quickly and efficiently. VSWR & S Parameters VSWR=2 Le ft Ante nna Right Ante nna Is olation Agilent E5071B Frequency (GHz) Radiation Pattern & Efficiency SATIMO STARGATE 32 Anechoic chambers and full equipped in-house lab Last updated on February FRACTUS ANTENNAS, S.L. – 10

11 4. MECHANICAL CHARACTERISTICS FR01-S DIMENSIONS, TOLERANCES, AND RoHS TOP SIDE BOTTOM Dimension mm Dimension mm A 3.0 ± 0.15 B 30.0 ± 0.20 C 0.5 ± 0.10 D (height) 1.0 ± 0.10 E 1.0 ± 0.05 F 2.0 ± 0.05 G 0.5 ± 0.05 H 8.5 ± 0.05 Figure 5 TRIO mxtend TM chip antenna component dimensions and tolerances. The TRIO mxtend TM chip antenna component FR01-S4-210 is compliant with the restriction of the use of hazardous substances (RoHS). For more information, please contact 4.2. COLOR RANGE FOR THE INK Next figure shows the range of the colors in the TRIO mxtend TM chip antenna component: Acceptable color range Last updated on February FRACTUS ANTENNAS, S.L. – 11

12 4.3. RECOMMENDED FOOTPRINT FOR THE FR01-S4-210 Assuming that the TRIO mxtend TM chip antenna component FR01-S4-210 is placed in the clearance area of the PCB, see below the recommended footprint dimensions. Measure mm A 12.0 B 23.0 C 3.0 D 0.5 E 1.0 F 8.5 G 2 Tolerance: ±0.05mm Clearance Area Ground Plane Area Matching network* 50 Ohm feeding line Figure 6 Footprint dimensions for the single chip antenna component. For additional support in the integration process, please contact Last updated on February FRACTUS ANTENNAS, S.L. – 12

13 5. ASSEMBLY PROCESS Figure 7 shows the back and front views of the TRIO mxtend TM chip antenna component FR01-S Due to the product configuration, the feeding pad can only be the pad 1. Mounting Pads (2, 3, 4, 5, 6, 7): solder the TRIO mxtend TM chip antenna component mounting pads to the soldering pad on the PCB. These pads must NOT be grounded Feed Pad (1): The location of the pad 1, 2, and 3 is fully symmetrical to the pad 5, 6, and 7. Align the feed pad with the feeding line on the PCB. See section 4.3. Figure 7 Pads of the TRIO mxtend TM chip antenna component FR01-S As a surface mount device (SMD), the TRIO mxtend TM chip antenna component is compatible with industry standard soldering processes. The basic assembly procedure for the TRIO mxtend TM chip antenna component is as follows: 1. Apply a solder paste on the pads of the PCB. Place the TRIO mxtend TM chip antenna component on the board. 2. Perform a reflow process according to the temperature profile detailed in Table 4, Figure After soldering the TRIO mxtend TM chip antenna component to the circuit board, perform a cleaning process to remove any residual flux. Fractus Antennas recommends conducting a visual inspection after the cleaning process to verify that all reflux has been removed. The drawing below shows the soldering details obtained after a correct assembly process: TRIO mxtend TM chip antenna component TRIO mxtend TM chip antenna component Solder Paste ~ 0.1* mm PCB PCB Figure 8 Soldering Details. NOTE(*): Solder paste thickness after the assembly process will depend on the thickness of the soldering stencil mask. A stencil thickness equal or larger than 127 microns (5 mils) is required. Last updated on February FRACTUS ANTENNAS, S.L. – 13

14 The TRIO mxtend TM chip antenna component FR01-S4-210 can be assembled following the Pb-free assembly process. According to the Standard IPC/JEDEC J-STD-020C, the temperature profile suggested is as follows: Phase Profile features Pb-Free Assembly (SnAgCu) RAMP-UP Avg. Ramp-up Rate (Tsmax to Tp) 3 ºC / second (max.) PREHEAT REFLOW PEAK – Temperature Min (Tsmin) – Temperature Max (Tsmax) – Time (tsmin to tsmax) – Temperature (TL) – Total Time above TL (tl) – Temperature (Tp) – Time (tp) 150 ºC 200 ºC seconds 217 ºC seconds 260 ºC seconds RAMP-DOWN Rate 6 ºC/second max Time from 25 ºC to Peak Temperature 8 minutes max Table 4 Recommended soldering temperatures. Next graphic shows temperature profile (grey zone) for the TRIO mxtend TM chip antenna component assembly process reflow ovens. Figure 9 Temperature profile. Last updated on February FRACTUS ANTENNAS, S.L. – 14

15 6. PACKAGING The TRIO mxtend TM chip antenna component FR01-S4-210 is delivered in tape and reel packaging. Figure 10 Tape dimensions and Tolerances. Measure mm Ao 3.3 ± 0.1 Bo 30.3 ± 0.1 Ko 2 ± 0.1 W 44 ± 0.3 D0 1.5 ± 0.05 P1 8 ± 0.1 P0 4 ± 0.1 P2 2 ± 0.1 E 1.75 ± 0.1 F 20.2 ± 0.1 S 40.4 ± 0.3 T 0.3 ± 0.05 Measure mm A 330 ± 2.0 G 44.4 ± 0.13 t MAX 48.4 ± 0.13 Reel Capacity: 2500 pcs Figure 11 Reel Dimensions and Capacity. Figure 12 Image of the reel. Last updated on February FRACTUS ANTENNAS, S.L. – 15

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