User Manual for ignion models including: NN01-104 Slim Reach Xtend Mouser, NN01-104, Slim Reach Xtend Mouser
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DocumentDocumentSlim Reach XtendTM: Bluetooth, Zigbee, 802.11 b/g/n WLAN USER MANUAL Slim Reach XtendTM (NN01-104) USER MANUAL Slim Reach XtendTM (NN01-104) Slim Reach XtendTM (NN01-104) Bluetooth®, Zigbee®, 802.11 b/g/n WLAN Ignion specializes in enabling effective mobile communications. Using Ignion 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. Slim Reach XtendTM NN01-104 Ignion products are protected by Ignion patents. All information contained within this document is property of Ignion 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. Ignion is an ISO 9001:2015 certified company. All our antennas are lead-free and RoHS compliant. ISO 9001: 2015 Certified Last Update: January 2021 2 INDEX OF CHAPTERS 1. ANTENNA DESCRIPTION 2. QUICK REFERENCE GUIDE 3. ELECTRICAL PERFORMANCE 4. MECHANICAL CHARACTERISTICS 5. ASSEMBLY PROCESS 6. PACKAGING 7. PRODUCT CHANGE NOTIFICATION USER MANUAL Slim Reach XtendTM (NN01-104) 5 5 6 10 11 14 15 Last Update: January 2021 3 USER MANUAL Slim Reach XtendTM (NN01-104) TABLE OF CONTENTS 1. ANTENNA DESCRIPTION 5 2. QUICK REFERENCE GUIDE 5 3. ELECTRICAL PERFORMANCE 6 3.1. IGNION EVALUATION BOARD 6 3.2. MATCHING NETWORK 6 3.3. VSWR AND EFFICIENCY 7 3.4. RADIATION PATTERNS (2.4 2.5 GHz), GAIN AND EFFICIENCY 8 3.5. CAPABILITIES AND MEASUREMENT SYSTEMS 9 4. MECHANICAL CHARACTERISTICS 10 4.1. DIMENSIONS AND TOLERANCES 10 4.2. SPECIFICATIONS FOR THE INK 10 4.3. ANTENNA FOOTPRINT 11 5. ASSEMBLY PROCESS 11 6. PACKAGING 14 7. PRODUCT CHANGE NOTIFICATION 15 Last Update: January 2021 4 USER MANUAL Slim Reach XtendTM (NN01-104) ANTENNA DESCRIPTION The Slim Reach XtendTM chip antenna is engineered specifically for wireless headsets using Bluetooth® and other wireless standards operating at the ISM 2.4 GHz band. The Slim Reach XtendTM antenna has been designed to resonate at 2.65 GHz in free space conditions. This has been done purposely because the human head and plastic housing produce a frequency downshift of 150-250 MHz in the resonance frequency of the antenna. Based on our research and development in this area, you are not forced to test multiple antennas with different resonant frequencies. TOP BOTTOM Material: The Slim Reach XtendTM antenna is built on glass epoxy substrate. APPLICATIONS BENEFITS · Headsets · Modules WiFi, Bluetooth, Zigbee... · Sensors (data acquisition, etc...) · RTLS (Real Time Location System) · Small footprint and size · Cost-effective · Easy-to-use (pick and place) QUICK REFERENCE GUIDE Technical Features Average Efficiency Peak Gain VSWR Radiation Pattern Polarization Weight (approx.) Temperature Impedance Dimensions (L x W x H) 2.4 2.5 GHz 61.0 % 1.1 dBi < 2:1 Omnidirectional Linear 0.02 g -40 to +125º C 50 7.0 mm x 3.0 mm x 0.9 mm Table 1 Technical Features. Measures from the evaluation board. See Figure 1. Please contact support@ignion.io if you require additional information on antenna integration or optimization on your PCB. Last Update: January 2021 5 USER MANUAL Slim Reach XtendTM (NN01-104) ELECTRICAL PERFORMANCE 3.1. EVALUATION BOARD The Ignion configuration used in testing the Slim Reach XtendTM chip antenna is displayed in Figure 1. Measure mm A 34.0 B 20.0 C 40.0 D 6.4 E 20.0 F 6.0 Tolerance: ±0.2mm Material: The evaluation board is built on FR4 substrate. Thickness is 1.0mm. Clearance Area: 20.0 mm x 6.0 mm (BxF) Figure 1 EB_NN01-104. Slim Reach XtendTM Evaluation Board. 3.2. MATCHING NETWORK The specs of a Ignion standard antenna 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 PI matching network as close as possible to the antenna feeding point. Do it in the ground plane area, not in the clearance area. This is a degree of freedom to tune the antenna once the design is finished and taking into account all elements of the system (batteries, displays, covers, etc). Please notice that different devices with different ground planes and different components nearby the Slim Reach XtendTM chip antenna may need a different matching network. To ensure optimal results, the use of high Q and tight tolerance components is highly recommended (Murata components). If you need assistance to design your matching network, please contact support@ignion.io, or try our free-of-charge1 NN Wireless Fast-Track design service, you will get your chip antenna design including a custom matching network for your device in 24h1. Other related to NN's range of R&D services is available at: https://www.ignion.io/rdservices/ 1 See terms and conditions for a free NN Wireless Fast-Track service in 24h at: https://www.ignion.io/fast-track-project/ Last Update: January 2021 6 USER MANUAL Slim Reach XtendTM (NN01-104) 3.3. VSWR AND EFFICIENCY VSWR (Voltage Standing Wave Ratio) and Total Efficiency versus Frequency (GHz). Figure 2 VSWR and Efficiency (%) vs. Frequency (GHz). NOTE: the frequency performance is centred in between 2.4 GHz and 2.5 GHz in headset designs. The effect of the device casing and the human body are taken into account. Last Update: January 2021 7 USER MANUAL Slim Reach XtendTM (NN01-104) 3.4. RADIATION PATTERNS (2.4 2.5 GHz), GAIN AND EFFICIENCY Orientation: Antenna in Plane ZY Azimuth Cut = 90º Plane XY Elevation Cut = 0 Plane XZ Elevation Cut = 90 Plane YZ Peak Gain 1.1 dBi Gain Average Gain across the band 0.7 dBi Gain Range across the band (min, max) 0.4 <> 1.1 dBi Peak Efficiency 66.0 % Efficiency Average Efficiency across the band 61.0 % Efficiency Range across the band (min, max) 57.0 66.0 % Table 2 Antenna Gain and Efficiency within the 2.4 2.5 GHz band. Measures made in the evaluation board and in the Satimo STARGATE 32 anechoic chamber. Last Update: January 2021 8 USER MANUAL Slim Reach XtendTM (NN01-104) 3.5. CAPABILITIES AND MEASUREMENT SYSTEMS Ignion specializes in the design and manufacture of optimized antennas for wireless applications, and with the provision of RF expertise to a wide range of clients. We offer turn-key antenna products and antenna integration support to minimize your time requirements and maximize return on investment throughout the product development process. We also provide our clients with the opportunity to leverage our in-house testing and measurement facilities to obtain accurate results quickly and efficiently. Agilent E5071B VSWR & S Parameters Re turn Lo s s (dB) 0 Le ft Ante nna -2 Rig ht Ante nna Is o latio n -4 -6 -8 VSWR=2 -10 -12 -14 -16 -18 -20 2 2.5 3 3.5 4 4.5 5 5.5 6 Fre que nc y (GHz) Radiation Pattern & Efficiency SATIMO STARGATE 32 Anechoic chambers and full equipped in-house lab Last Update: January 2021 9 USER MANUAL Slim Reach XtendTM (NN01-104) MECHANICAL CHARACTERISTICS 4.1. DIMENSIONS AND TOLERANCES TOP SIDE BOTTOM The black circle located on the top side of the antenna indicates the feed pad. Measure A B C D mm 7.0 0.2 3.0 0.2 0.9 ± 0.2 0.4 ± 0.15 Measure E F G mm 1.1 0.1 2.2 0.1 4.0 ± 0.2 Figure 3 Antenna Dimensions and Tolerances. The Slim Reach XtendTM chip antenna is compliant with the restriction of the use of hazardous substances (RoHS). The RoHS certificate can be downloaded from www.ignion.io. 4.2. SPECIFICATIONS FOR THE INK Next figure shows the correct colors of the antenna: Acceptable color range Last Update: January 2021 10 USER MANUAL Slim Reach XtendTM (NN01-104) 4.3. ANTENNA FOOTPRINT This antenna footprint applies for the reference evaluation board described on page 6 of this User Manual. Feeding line dimensions over the clearance zone described in Figure 4 apply for a 1.0 mm thickness FR4 PCB. Measure mm A 7.0 B 3.0 C 1.5 D 0.2 E 2.6 F 3.6 G 3.0 H 0.5 I 4.7 J 1.5 Tolerance: ±0.2mm Figure 4 Antenna Footprint Details. Other PCB form factors and configurations may require a different feeding configuration, feeding line dimensions and clearance areas. If you require support for the integration of the antenna in your design, please contact support@ignion.io. ASSEMBLY PROCESS Figure 5 shows the back and front view of the Slim Reach XtendTM chip antenna, and indicates the location of the feeding point and the mounting pads: Figure 5 Pads of the Slim Reach XtendTM chip antenna. Last Update: January 2021 11 USER MANUAL Slim Reach XtendTM (NN01-104) As a surface mount device (SMD), this antenna is compatible with industry standard soldering processes. The basic assembly procedure for this antenna is as follows: 1. Apply a solder paste to the pads of the PCB. Place the antenna on the board. 2. Perform a reflow process according to the temperature profile detailed in Table 3, Figure 7 on page 13. 3. After soldering the antenna to the circuit board, perform a cleaning process to remove any residual flux. Ignion 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: Figure 6 Soldering Details. NOTE(*): Solder paste thickness after the assembly process will depend on the thickness of the soldering stencil mask. A stencil thickness equal to or larger than 127 microns (5 mils) is required. The Slim Reach XtendTM antenna should be assembled following either Sn-Pb or Pb-free assembly processes. 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) PREHEAT - Temperature Min (Tsmin) - Temperature Max (Tsmax) - Time (tsmin to tsmax) REFLOW - Temperature (TL) - Total Time above TL (tL) PEAK - Temperature (Tp) - Time (tp) RAMP-DOWN Rate Time from 25 ºC to Peak Temperature 3 ºC / second (max.) 150 ºC 200 ºC 60-180 seconds 217 ºC 60-150 seconds 260 ºC 20-40 seconds 6 ºC/second max 8 minutes max Table 3 Recommended soldering temperatures. Last Update: January 2021 12 USER MANUAL Slim Reach XtendTM (NN01-104) Next graphic shows temperature profile (grey zone) for the antenna assembly process in reflow ovens. Figure 7 Temperature profile. Last Update: January 2021 13 USER MANUAL Slim Reach XtendTM (NN01-104) PACKAGING The Slim Reach XtendTM chip antenna is available in tape and reel packaging. Measure mm W 16.0 ± 0.3 A0 3.4 ± 0.1 B0 7.4 ± 0.1 K0 1.2 ± 0.1 B1 8.0 ± 0.1 D 1.55 ± 0.05 D1 1.55 ± 0.05 Wmax 16.3 E 1.7 ± 0.1 F 7.5 ± 0.1 K 1.5 ± 0.1 P 8.0 ± 0.1 P0 4.0 ± 0.1 P2 2.0 ± 0.1 Figure 8 Tape Dimensions and Tolerances. Figure 9 Image of the tape. Measure A max G t max mm 330.0 ± 1.0 17.5 ± 0.2 21.5 ± 0.2 Reel Capacity: 2500 antennas Figure 10 Reel Dimensions and Capacity. Last Update: January 2021 14 USER MANUAL Slim Reach XtendTM (NN01-104) PRODUCT CHANGE NOTIFICATION This document is property of Ignion, Not to disclose or copy without prior written consent PCN Number: NN18090001 Notification Date: August 29th, 2019 Part Number identification: Part Number changes, it will be applied in all the document of the company (User Manual, Data Sheet, ...) Previous Part New Part Number Number FR05-S1-N-0-104 NN01-104 Reason for Change: Specs (electrical/mechanical) User Manual/Data Sheet Material/Composition Processing/Manufacturing Manufacturing location Quality/Reliability Logistics X Other: Logo, product color and Part Number Change description 1.- Part Number: From FR05-S1-N-0-104 FRACTUS to NN01-104 IGNION in the User Manual 2.- Color: From blue/white to white/black OLD NEW Comments: 1.- Electrical and Mechanical specs remain the same 2.- Footprint in the PCB to solder the chip antenna remains the same Identification method 1.- The color and the logo are different User Manual X Available from: January 2019 Samples X Available from: December 2019 Ignion Contact: Sales Name: Josep Portabella Email: josep.portabella@ignion.io Supply Chain Albert Vidal albert.vidal@ignion.io Last Update: January 2021 15 USER MANUAL Slim Reach XtendTM (NN01-104) Contact: support@ignion.io +34 935 660 710 Barcelona Av. Alcalde Barnils, 64-68 Modul C, 3a pl. Sant Cugat del Vallés 08174 Barcelona Spain Shanghai Shanghai Bund Centre 18/F Bund Centre, 222 Yan'an Road East, Huangpu District Shanghai, 200002 China New Dehli New Delhi, Red Fort Capital Parsvnath Towers Bhai Veer Singh Marg, Gole Market, New Delhi, 110001 India Tampa 8875 Hidden River Parkway Suite 300 Tampa, FL 33637 USA Last Update: January 2021 16