FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Murata Manufacturing Co., Ltd./
  3. VPYABF

VPYABFwifi module

Murata Manufacturing Co., Ltd.
wifi module - FCC ID VPYABF - Murata Manufacturing Co., Ltd.
Click to zoom

Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Sep 05, 2013
Application Purpose
Original Equipment
Date of Application
Sep 04, 2013
Equipment Note
wifi module
Frequency Range
2412.00000000 - 2462.00000000
Company
Murata Manufacturing Co., Ltd.
Country
Japan

Documents & Files

Select a file to view

Users Manual

↗
↗

Attestation Statements

↗
↗

Cover Letter(s)

↗
↗

External Photos

↗

ID Label/Location Info

↗

Internal Photos

↗

RF Exposure Info

↗

Test Report

↗
↗
↗

Test Setup Photos

↗
↗

Document Text

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

Users Manual

CMWC1ZZABF EVK User Guide Author: Kenichi Shibano Version: 1.0 Release Date: July 13, 2012 CMWC1ZZAAF/ABF User Guide CMWC1ZZABF EVK User Guide CHANGE HISTORY Version Date Remarks Name 1.0 2012-7-13 Release V1.0; Shibano CMWC1ZZABF EVK User Guide This document explains how to control Murata CMWC1ZZAAF. 1. Module introduction CMWC1ZZAAF, CMWC1ZZABF is a hostless wifi module which integrate wifi drvier and TCP/IP stack. The operation temperature is -20~+75degree. 2. Operation Manual EVK set up is shown in figure1. Figure1 <Set up> 1. Connect EVK and PC through USB cable Type AAF UART WiFi module UART-USB converter board USB cable to PC PC CMWC1ZZABF EVK User Guide 2. Install USB-UART converter driver (FTDI D2xx driver). Customer can download from below website. http://www.ftdichip.com/Drivers/D2XX.htm 3. Please open device manager. Customer can see USB Serial Port if driver install is succeeded. 4. Please open properties of USB serial port and change port setting as below. CMWC1ZZABF EVK User Guide CMWC1ZZABF EVK User Guide Page 6 of 17 5. Please open UART communication tool on PC such as hyper terminal. And use same port setting as 4. After connection is done, enter “help”, then module responds console command list. Customer can refer to command list and change setting by themselves. CMWC1ZZABF EVK User Guide Page 7 of 17 <Sample application 1> Module control by console mode and webpage 1. If customer enters “start_prov”, EVK starts default access point(AP) mode setting. SSID: muRata_Hostless_Wifixxxxxxxxxxxx, xxxxxxxxxxxx is EVK mac address Security: none DHCP: available IP address: 192.168.1.1 If customer wants to change setting by themselves, pls enter “stop_prov”. 2. Customer can connect EVK from WiFi client(PC or smartphone, etc). Password is 12345678. CMWC1ZZABF EVK User Guide Page 8 of 17 3. Customer can access webpage inside EVK. And change EVK setting to connect with other AP. URL: 192.168.1.1 Click “Scan and select network”. CMWC1ZZABF EVK User Guide Page 9 of 17 4. Join AP network. Join “WUART-Demo” in this document, password is “1234567890” First, please enter AP password then click “join”. In actual case, customer can select any AP. After you joined WiFi network, EVK is not in AP mode and changed to client, so EVK and WiFi client will be disconnected. CMWC1ZZABF EVK User Guide Page 10 of 17 5. You will see attached message from UART port after joined network after joined AP. EVK connects to AP now then EVK becomes client mode. EVK owns IP: 192.168.1.103 in this document. (Different IP address may be assigned in actual case, please confirm IP address.) Customer can check IP address at EVK through AP’s setting webpage too. 6. Connect to same AP with EVK(WUART-Demo) from other client(ex. PC), CMWC1ZZABF EVK User Guide Page 11 of 17 7. Access 192.168.1.103 and you will see attached web page. Click any button then you will see received message from UART. CMWC1ZZABF EVK User Guide Page 12 of 17 <Sample application 2> TCP Server – Client demo 0. Please follow same procedure as <sample application 1>, 8. Connect to same AP with EVK(WUART-Demo) from other client(ex. PC), 1. Murata provides TCP server-client demo tool. (CAsySocket_s.exe) Please open the .exe file and you will see below GUI. 2. Please enter PC side IP address, it’s 192.168.1.101 in this document and please input server port number in random(1234 in this document). And click 接听 3. Please send tcp_connect to EVK. tcp_connect [server ip] [sever port], server ip and server port should be same as the one which you enter into CAsySocket_s. CMWC1ZZABF EVK User Guide Page 13 of 17 4. After connection success, CAsySocket_s receives the packet from EVK via WiFi AP. 5. Customer can receive packet from server to EVK via AP. This case, enter “muRata China” then click 发送 button in CAsySocket_s. Then customer can check EVK received packed by “tcp_read” CMWC1ZZABF EVK User Guide Page 14 of 17 6. Customer can send packet from EVK to server. CMWC1ZZABF EVK User Guide Page 15 of 17 <Appendix> Console Commands: help [<command> [<example_num>]] - Print help message or command example. dhcpc - Perform DHCP as a client to obtain an IP address. get_mac_addr - Get the device MAC address. get_rssi - Get the received signal strength of the AP (client mode only). join <ssid> <open|wpa|wpa2> [key] [ip netmask gateway] - Join an AP. DHCP assumed if no IP address provided join_default - Join the AP 'YOUR_AP_SSID' and obtain an IP address using DHCP join_specific <ssid> <bssid> <channel> <open|wpa|wpa2> <key> [ip netmask gateway] - Join a specific AP. DHCP assumed if no IP address provided leave - Leave an AP. powersave <1|0> - Enable/disable powersave mode. scan - Scan all enabled channels and print a list of APs found. set_ip <ip> <netmask> <gateway> - Set a static IP. set_tx_power <0-32> - Set the tx power in dBm. get_tx_power - Gets the tx power in dBm. status - Print status of the Wi-Fi and network interfaces. start_ap <ssid> <open|wpa|wpa2> <key> <channel> - Start AP mode. stop_ap - Stop AP mode. wifi_on - Turn Wi-Fi device on. wifi_off - Turn Wi-Fi device off. wifi_reset - Reset the Wi-Fi device. antenna <0|1|3> - Antenna selection. 3 = Auto set_country <country code> CMWC1ZZABF EVK User Guide Page 16 of 17 - Set country. ping <destination> - Pings the specified IP or Host. start_dhcpd - Starts a DHCP daemon. stop_dhcpd - Stops the DHCP daemon. get_random - Get a random number. join_wps <pbc|pin> [pin] [<ip> <netmask> <gateway>] - Join an AP using WPS tcp_test_tx_server - Waits for connection then sends TCP packets. tcp_test_rx_server - Waits for connection then receives TCP packets. tcp_test_tx_client [server ip] - Connects to a server then sends TCP packets. tcp_test_rx_client [server ip] - Connects to a server then receives TCP packets. tcp_connect [server ip] [sever port] - Connects to a server then receives TCP packets. tcp_disconnect - Connects to a server then receives TCP packets. tcp_write [payload] - Write to the server throug the TCP …

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

Users Manual

CMWC1ZZABF EVK User Guide Author: Kenichi Shibano Version: 1.0 Release Date: July 13, 2012 CMWC1ZZAAF/ABF User Guide CMWC1ZZABF EVK User Guide CHANGE HISTORY Version Date Remarks Name 1.0 2012-7-13 Release V1.0; Shibano CMWC1ZZABF EVK User Guide This document explains how to control Murata CMWC1ZZAAF. 1. Module introduction CMWC1ZZAAF, CMWC1ZZABF is a hostless wifi module which integrate wifi drvier and TCP/IP stack. The operation temperature is -20~+75degree. 2. Operation Manual EVK set up is shown in figure1. Figure1 <Set up> 1. Connect EVK and PC through USB cable Type AAF UART WiFi module UART-USB converter board USB cable to PC PC CMWC1ZZABF EVK User Guide 2. Install USB-UART converter driver (FTDI D2xx driver). Customer can download from below website. http://www.ftdichip.com/Drivers/D2XX.htm 3. Please open device manager. Customer can see USB Serial Port if driver install is succeeded. 4. Please open properties of USB serial port and change port setting as below. CMWC1ZZABF EVK User Guide CMWC1ZZABF EVK User Guide Page 6 of 17 5. Please open UART communication tool on PC such as hyper terminal. And use same port setting as 4. After connection is done, enter “help”, then module responds console command list. Customer can refer to command list and change setting by themselves. CMWC1ZZABF EVK User Guide Page 7 of 17 <Sample application 1> Module control by console mode and webpage 1. If customer enters “start_prov”, EVK starts default access point(AP) mode setting. SSID: muRata_Hostless_Wifixxxxxxxxxxxx, xxxxxxxxxxxx is EVK mac address Security: none DHCP: available IP address: 192.168.1.1 If customer wants to change setting by themselves, pls enter “stop_prov”. 2. Customer can connect EVK from WiFi client(PC or smartphone, etc). Password is 12345678. CMWC1ZZABF EVK User Guide Page 8 of 17 3. Customer can access webpage inside EVK. And change EVK setting to connect with other AP. URL: 192.168.1.1 Click “Scan and select network”. CMWC1ZZABF EVK User Guide Page 9 of 17 4. Join AP network. Join “WUART-Demo” in this document, password is “1234567890” First, please enter AP password then click “join”. In actual case, customer can select any AP. After you joined WiFi network, EVK is not in AP mode and changed to client, so EVK and WiFi client will be disconnected. CMWC1ZZABF EVK User Guide Page 10 of 17 5. You will see attached message from UART port after joined network after joined AP. EVK connects to AP now then EVK becomes client mode. EVK owns IP: 192.168.1.103 in this document. (Different IP address may be assigned in actual case, please confirm IP address.) Customer can check IP address at EVK through AP’s setting webpage too. 6. Connect to same AP with EVK(WUART-Demo) from other client(ex. PC), CMWC1ZZABF EVK User Guide Page 11 of 17 7. Access 192.168.1.103 and you will see attached web page. Click any button then you will see received message from UART. CMWC1ZZABF EVK User Guide Page 12 of 17 <Sample application 2> TCP Server – Client demo 0. Please follow same procedure as <sample application 1>, 8. Connect to same AP with EVK(WUART-Demo) from other client(ex. PC), 1. Murata provides TCP server-client demo tool. (CAsySocket_s.exe) Please open the .exe file and you will see below GUI. 2. Please enter PC side IP address, it’s 192.168.1.101 in this document and please input server port number in random(1234 in this document). And click 接听 3. Please send tcp_connect to EVK. tcp_connect [server ip] [sever port], server ip and server port should be same as the one which you enter into CAsySocket_s. CMWC1ZZABF EVK User Guide Page 13 of 17 4. After connection success, CAsySocket_s receives the packet from EVK via WiFi AP. 5. Customer can receive packet from server to EVK via AP. This case, enter “muRata China” then click 发送 button in CAsySocket_s. Then customer can check EVK received packed by “tcp_read” CMWC1ZZABF EVK User Guide Page 14 of 17 6. Customer can send packet from EVK to server. CMWC1ZZABF EVK User Guide Page 15 of 17 <Appendix> Console Commands: help [<command> [<example_num>]] - Print help message or command example. dhcpc - Perform DHCP as a client to obtain an IP address. get_mac_addr - Get the device MAC address. get_rssi - Get the received signal strength of the AP (client mode only). join <ssid> <open|wpa|wpa2> [key] [ip netmask gateway] - Join an AP. DHCP assumed if no IP address provided join_default - Join the AP 'YOUR_AP_SSID' and obtain an IP address using DHCP join_specific <ssid> <bssid> <channel> <open|wpa|wpa2> <key> [ip netmask gateway] - Join a specific AP. DHCP assumed if no IP address provided leave - Leave an AP. powersave <1|0> - Enable/disable powersave mode. scan - Scan all enabled channels and print a list of APs found. set_ip <ip> <netmask> <gateway> - Set a static IP. set_tx_power <0-32> - Set the tx power in dBm. get_tx_power - Gets the tx power in dBm. status - Print status of the Wi-Fi and network interfaces. start_ap <ssid> <open|wpa|wpa2> <key> <channel> - Start AP mode. stop_ap - Stop AP mode. wifi_on - Turn Wi-Fi device on. wifi_off - Turn Wi-Fi device off. wifi_reset - Reset the Wi-Fi device. antenna <0|1|3> - Antenna selection. 3 = Auto set_country <country code> CMWC1ZZABF EVK User Guide Page 16 of 17 - Set country. ping <destination> - Pings the specified IP or Host. start_dhcpd - Starts a DHCP daemon. stop_dhcpd - Stops the DHCP daemon. get_random - Get a random number. join_wps <pbc|pin> [pin] [<ip> <netmask> <gateway>] - Join an AP using WPS tcp_test_tx_server - Waits for connection then sends TCP packets. tcp_test_rx_server - Waits for connection then receives TCP packets. tcp_test_tx_client [server ip] - Connects to a server then sends TCP packets. tcp_test_rx_client [server ip] - Connects to a server then receives TCP packets. tcp_connect [server ip] [sever port] - Connects to a server then receives TCP packets. tcp_disconnect - Connects to a server then receives TCP packets. tcp_write [payload] - Write to the server throug the TCP …

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

Attestation Statements

Declaration Date: Aug 20, 2013 To: Federal Communications Commission, Authorization & Evaluation Division, 7435 Oakland Mills Road, Columbia, MD 21046 According to the designer, Murata Manufacturing Co.,Ltd, we hereby declare that the FCC ID: VPYABF, the PCB antenna is not available (marker :red) And the FCC ID: VPYABF only use a external antenna , the reverse SMA connector will be used for the final assembly. the antenna conditions are not fulfilled. Because this is a Limited Modular Transmitter Approval, it is requested, instead of Modular Transmitter Approval, because the following condition is not met: 1. The module does not have its own RF shielding.

Attestation Statements

Declaration Date: Aug 20, 2013 To: Federal Communications Commission, Authorization & Evaluation Division, 7435 Oakland Mills Road, Columbia, MD 21046 According to the designer, Murata Manufacturing Co.,Ltd, we hereby declare that the FCC ID: VPYABF, the PCB antenna is not available (marker :red) And the FCC ID: VPYABF only use a external antenna , the reverse SMA connector will be used for the final assembly. the antenna conditions are not fulfilled. Because this is a Limited Modular Transmitter Approval, it is requested, instead of Modular Transmitter Approval, because the following condition is not met: 1. The module does not have its own RF shielding.

Cover Letter(s)

Part Number: CMWC1ZZABF FCC ID: VPYABF Request for Modular Approval 28.08.2013 In accordance with FCC Part 15, we, Murata Manufacturing Co.,Ltd hereby request a modular level approval as outlined in FCC document DA 00 – 1407, for the device listed above. In support of the Limited Modular Transmitter Approval, the following is stated: 1) The module does have buffered modulation / data inputs. 2) The module does regulate its own power supply. 3) The module can be tested as a stand-alone device. 4) The module is labeled with the proper FCC ID, and labeling instructions are provided to OEM end users for external product labels. 5) The module does have instruction for proper use. 6) The module does meet the FCC RF regulations. Limited Modular Transmitter Approval, is requested, instead of Modular Transmitter Approval, because the following condition is not met: 1) The module does not have its own RF shielding. 2) the antenna conditions are not met Signature:

External Photos

Prüfbericht - Nr.: 15064154 001 Test Report No.: 1. Photographs of EUT Photograph 1: Module with PCB kit Prüfbericht - Nr.: 15064154 001 Test Report No.: Photograph 2:

ID Label/Location Info

Label Location and Artwork- FCC ID: VPYABF FCC ID is marked on AAD metalcase by laser

Internal Photos

Prüfbericht - Nr.: 15064154 001 Test Report No.: 1. Photographs of EUT Photograph 1: Photograph 2: Prüfbericht - Nr.: 15064154 001 Test Report No.:

RF Exposure Info

Produkte Products RF Exposure Statement: Page 1 of 1 Client: Murata Manufacturing Co.,Ltd 10-1, Higashikotari 1-chome Nagaokakyo-shi ,Kyoto ,Japan Test item: WIFI Module Identification: Mode name :CMWC1ZZABF FCC ID: VPYABF FCC Requirement According to FCC 2.1091, mobile equipment must comply with the following applicable limit for maximum permissible exposure (MPE) specified in FCC 1.1310: Equipment Use Frequency Range Power Density [mW/cm 2 ] Average Time [min] General Population / Uncontrolled Exposure 1.5 – 100GHz 1 6 IC Requirement According to RSS-102 (Issue 4), clause 2.5.2, no routine RF exposure evaluation is required if the transmitter power (e.i.r.p.) is below the following threshold: Frequency Range SAR Limitation [W] Above 1.5GHz 5 Measurement Result The maximum measured transmitter power is the following: Conducted Output Power P out [mW] Maximum Antenna Gain [dBi] P out EIRP [mW] Power Density at 20cm [mW/cm 2 ] 140 2.2 232 0.046 Note: The power density S in mW/cm 2 is calculated according to the Friis formula: S = (P S = power density in mW/cm 2 P out = antenna conducted output power in mW G = antenna gain in linear scale (here: 2.2dBi=10log(G)) D = distance between observation point and radiating structure in cm (here: 20cm) out · G) / (4π · D 2 ), where Conclusion The device complies with the FCC and IC RF exposure requirements since the maximum transmitter power density is below the FCC limit and the e.i.r.p. power is below the IC RF exposure evaluation exemption threshold. Refer to test report 15064154 001 for more details. TÜV Rheinland (Shanghai) Co., Ltd. 10-15/F, Huatsing Building, No.88, Lane 777, Guangzhong Road West, Shanghai 200072, P.R. China

Test Report

Produkte Products TÜV Rheinland LGA Products GmbH  Tillystraße 2  D - 90431 Nürnberg  Tel.: +49 911 655 5225  Fax: +49 911 655 5226 Mail: [email protected]  Web: www.tuv.comom Prüfbericht-Nr.: Test Report No.: 15064154 001 Auftrags-Nr.: Order No.: 154031369 Seite 1 von 65 Page 1 of 65 Kunden-Referenz-Nr.: Client Reference No.: 488459 Auftragsdatum: Order date: 2013.7.24 Auftraggeber: Client: Murata Manufacturing Co.,Ltd 10-1, Higashikotari 1-chome Nagaokakyo-shi ,Kyoto ,Japan Prüfgegenstand: Test item: wifi module Bezeichnung / Typ-Nr.: Identification / Type No.: Model Name : CMWC1ZZABF FCC ID : VPYABF Auftrags-Inhalt: Order content: Complete test Prüfgrundlage: Test specification: FCC CFR47 Part 15, Subpart C, §15.247 ANSI C63.10-2009 KDB 558074 D01 DTS Meas Guidance v03 Wareneingangsdatum: Date of receipt: 09.08.2013 Prüfmuster-Nr.: Test sample No.: N.A Prüfzeitraum: Testing period: 09.08.2013 – 27.08.2013 Ort der Prüfung: Place of testing: QuieTek Technology(Suzhou)Co., Ltd. Prüflaboratorium: Testing laboratory: TÜV Rheinland (Shanghai) Co., Ltd. Prüfergebnis*: Test result*: Pass geprüft von / tested by: 28.08.2013 ShiLi / PE kontrolliert von / reviewed by: 28.08.2013 Jesse huang / PM Datum Date Name / Stellung Name / Position Unterschrift Signature Datum Date Name / Stellung Name / Position Unterschrift Signature Sonstiges / Other: Zustand des Prüfgegenstandes bei Anlieferung: Condition of the test item at delivery: Prüfmuster vollständig und unbeschädigt Test item complete and undamaged * Legende: 1 = sehr gut 2 = gut 3 = befriedigend 4 = ausreichend 5 = mangelhaft P(ass) = entspricht o.g. Prüfgrundlage(n) F(ail) = entspricht nicht o.g. Prüfgrundlage(n) N/A = nicht anwendbar N/T = nicht getestet Legend: 1 = very good 2 = good 3 = satisfactory 4 = sufficient 5 = poor P(ass) = passed a.m. test specification(s) F(ail) = failed a.m. test specification(s) N/A = not applicable N/T = not tested Dieser Prüfbericht bezieht sich nur auf das o.g. Prüfmuster und darf ohne Genehmigung der Prüfstelle nicht auszugsweise vervielfältigt werden. Dieser Bericht berechtigt nicht zur Verwendung eines Prüfzeichens. This test report only relates to the a. m. test sample. Without permission of the test center this test report is not permitted to be duplicated in extracts. This test report does not entitle to carry any test mark. Produkte Products Prüfbericht - Nr.: Test Report No.: 15064154 001 Seite 2 von 65 Page 2 of 65 TEST SUMMARY 3.2.1 VOLTAGE REQUIREMENTS, FCC 15.31(E) RESULT: PASS 3.2.2 ANTENNA REQUIREMENTS, FCC 15.203, FCC 15.204 AND RSS-GEN 7.1.4 RESULT: PASS 5.1.1 CONDUCTED OUTPUT POWER, FCC 15.247(B)(3) AND RSS-210 A8.4(4) RESULT: PASS 5.1.2 6DB BANDWIDTH, FCC 15.247(A)(2) AND RSS-210 A8.2(A) 5.1.3 CONDUCTED SPURIOUS EMISSION, FCC 15.247(C) AND RSS-210 A8.5 RESULT: PASS 5.1.4 POWER SPECTRAL DENSITY (PSD), FCC 15.247(E) AND RSS-210 A8.2 RESULT: PASS 5.1.5 BAND EDGE COMPLIANCE OF RF CONDUCTED EMISSION, FCC 15.247(C) AND RSS-210 A8.5 RESULT: PASS 6.1.1 BAND EDGE RADIATED EMISSION, FCC 15.205, FCC 15.209, FCC 15.247(C), RSS-210 2.2, RSS-210 2.6 AND RSS-210 A8.5 RESULT: PAss 6.1.2 RADIATED SPURIOUS EMISSION OF TRANSMITTER, FCC 15.205, FCC 15.209, FCC 15.247(C), RSS-210 2.2, RSS-210 2.6 AND RSS-210 A8.5 RESULT: PASS Produkte Products Prüfbericht - Nr.: Test Report No.: 15064154 001 Seite 3 von 65 Page 3 of 65 CONTENTS 1. GENERAL REMARKS ................................................................................................ 5 1.1 COMPLEMENTARY MATERIALS ................................................................................. 5 2. TEST SITES ............................................................................................................. 5 2.1 TEST FACILITIES ..................................................................................................... 5 2.2 LIST OF TEST AND MEASUREMENT INSTRUMENTS ...................................................... 6 2.3 MEASUREMENT UNCERTAINTY ................................................................................. 6 3. GENERAL PRODUCT INFORMATION ........................................................................... 7 3.1 PRODUCT FUNCTION AND INTENDED USE .................................................................. 7 3.2 SYSTEM DETAILS .................................................................................................... 7 3.2.1 Voltage Requirements, FCC 15.31(e) .......................................................................................... 7 3.2.2 Antenna Requirements, FCC 15.203, FCC 15.204 and RSS-Gen 7.1.4 ..................................... 7 3.3 INDEPENDENT OPERATION MODES ........................................................................... 8 3.4 NOISE SUPPRESSING PARTS .................................................................................... 8 4. TEST SET-UP AND OPERATION MODES ..................................................................... 9 4.1 TEST METHODOLOGY .............................................................................................. 9 4.2 PHYSICAL CONFIGURATION FOR TESTING ................................................................. 9 4.3 TEST OPERATION AND TEST SOFTWARE ................................................................... 9 4.4 SPECIAL ACCESSORIES AND AUXILIARY EQUIPMENT.................................................. 9 4.5 COUNTERMEASURES TO ACHIEVE EMC COMPLIANCE .............................................. 10 5. TEST RESULTS OF CONDUCTED MEASUREMENTS AT ANTENNA PORT ..................... 11 5.1 TRANSMITTER PARAMETERS .................................................................................. 11 5.1.1 Conducted Output Power, FCC 15.247(b)(3) and RSS-210 A8.4(4) ......................................... 11 5.1.2 6dB Bandwidth, FCC 15.247(a)(2) and RSS-210 A8.2(a) ......................................................... 20 5.1.3 Conducted Spurious Emission, FCC 15.247(c) and RSS-210 A8.5 …

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

Test Report

15064154 001 APPENDIX1 1 Profile: 2013.08.22 Page No.: 43 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:17 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Horizontal EUT: ABF Power: AC 120V/60Hz Note: Mode1:transmit at channel 2412 MHz by b No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4824.000 38.405 45.475 -35.595 74.000 -7.069 PK 2 7236.000 39.476 41.223 -34.524 74.000 -1.747 PK 3 * 9648.000 39.844 35.522 -34.156 74.000 4.321 PK 15064154 001 APPENDIX1 2 Profile: 2013.08.22 Page No.: 44 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:19 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Vertical EUT: ABF Power: AC 120V/60Hz Note: Mode1:transmit at channel 2412 MHz by b No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4824.000 39.430 46.581 -34.570 74.000 -7.151 PK 2 7236.000 39.330 41.088 -34.670 74.000 -1.758 PK 3 * 9648.000 40.381 36.000 -33.619 74.000 4.381 PK 15064154 001 APPENDIX1 3 Profile: 2013.08.22 Page No.: 45 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:20 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Horizontal EUT: ABF Power: AC 120V/60Hz Note: Mode1:transmit at channel 2437 MHz by b No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4874.000 37.116 44.127 -36.884 74.000 -7.010 PK 2 * 7311.000 41.238 42.819 -32.762 74.000 -1.581 PK 3 9748.000 40.698 36.217 -33.302 74.000 4.482 PK 15064154 001 APPENDIX1 4 Profile: 2013.08.22 Page No.: 46 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:23 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Vertical EUT: ABF Power: AC 120V/60Hz Note: Mode1:transmit at channel 2437 MHz by b No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4874.000 36.980 43.992 -37.020 74.000 -7.012 PK 2 * 7311.000 40.895 42.476 -33.105 74.000 -1.581 PK 3 9748.000 40.302 35.724 -33.698 74.000 4.579 PK 15064154 001 APPENDIX1 5 Profile: 2013.08.22 Page No.: 47 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:25 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Horizontal EUT: ABF Power: AC 120V/60Hz Note: Mode1:transmit at channel 2462 MHz by b No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4924.000 36.773 43.853 -37.227 74.000 -7.080 PK 2 7386.000 40.426 41.762 -33.574 74.000 -1.336 PK 3 * 9848.000 40.934 36.018 -33.066 74.000 4.915 PK 15064154 001 APPENDIX1 6 Profile: 2013.08.22 Page No.: 48 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:26 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Vertical EUT: ABF Power: AC 120V/60Hz Note: Mode1:transmit at channel 2462 MHz by b No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4924.000 36.434 43.434 -37.566 74.000 -7.000 PK 2 7386.000 40.584 41.920 -33.416 74.000 -1.336 PK 3 * 9848.000 41.113 36.137 -32.887 74.000 4.975 PK 15064154 001 APPENDIX1 7 Profile: 2013.08.22 Page No.: 49 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:27 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Horizontal EUT: ABF Power: AC 120V/60Hz Note: Mode2:transmit at channel 2412 MHz by g No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4824.000 38.168 45.238 -35.832 74.000 -7.069 PK 2 7236.000 39.042 40.789 -34.958 74.000 -1.747 PK 3 * 9648.000 39.989 35.667 -34.011 74.000 4.321 PK 15064154 001 APPENDIX1 8 Profile: 2013.08.22 Page No.: 50 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:37 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Vertical EUT: ABF Power: AC 120V/60Hz Note: Mode2:transmit at channel 2412 MHz by g No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4824.000 36.392 43.543 -37.608 74.000 -7.151 PK 2 7236.000 39.112 40.870 -34.888 74.000 -1.758 PK 3 * 9648.000 39.473 35.092 -34.527 74.000 4.381 PK 15064154 001 APPENDIX1 9 Profile: 2013.08.22 Page No.: 51 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:38 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Horizontal EUT: ABF Power: AC 120V/60Hz Note: Mode2:transmit at channel 2437 MHz by g No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4874.000 37.557 44.568 -36.443 74.000 -7.010 PK 2 7311.000 40.859 42.440 -33.141 74.000 -1.581 PK 3 * 9748.000 41.137 36.656 -32.863 74.000 4.482 PK 15064154 001 APPENDIX1 10 Profile: 2013.08.22 Page No.: 52 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:41 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Vertical EUT: ABF Power: AC 120V/60Hz Note: Mode2:transmit at channel 2437 MHz by g No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4874.000 37.047 44.059 -36.953 74.000 -7.012 PK 2 * 7311.000 41.026 42.607 -32.974 74.000 -1.581 PK 3 9748.000 40.562 35.984 -33.438 74.000 4.579 PK 15064154 001 APPENDIX1 11 Profile: 2013.08.22 Page No.: 53 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:42 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Horizontal EUT: ABF Power: AC 120V/60Hz Note: Mode2:transmit at channel 2462 MHz by g No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4924.000 36.952 44.032 -37.048 74.000 -7.080 PK 2 7386.000 39.774 41.110 -34.226 74.000 -1.336 PK 3 * 9848.000 41.430 36.514 -32.570 74.000 4.915 PK 15064154 001 APPENDIX1 12 Profile: 2013.08.22 Page No.: 5…

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

Test Report

15064154 001 APPENDIX1 1 Profile: 2013.08.22 Page No.: 43 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:17 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Horizontal EUT: ABF Power: AC 120V/60Hz Note: Mode1:transmit at channel 2412 MHz by b No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4824.000 38.405 45.475 -35.595 74.000 -7.069 PK 2 7236.000 39.476 41.223 -34.524 74.000 -1.747 PK 3 * 9648.000 39.844 35.522 -34.156 74.000 4.321 PK 15064154 001 APPENDIX1 2 Profile: 2013.08.22 Page No.: 44 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:19 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Vertical EUT: ABF Power: AC 120V/60Hz Note: Mode1:transmit at channel 2412 MHz by b No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4824.000 39.430 46.581 -34.570 74.000 -7.151 PK 2 7236.000 39.330 41.088 -34.670 74.000 -1.758 PK 3 * 9648.000 40.381 36.000 -33.619 74.000 4.381 PK 15064154 001 APPENDIX1 3 Profile: 2013.08.22 Page No.: 45 Engineer: PIG Site: AC5 Time: 2013/08/22 - 16:20 Limit: FCC_Part15.209_RE(3m) Margin: 0 Probe: Horn_3117_988(1-18GHz) Polarity: Horizontal EUT: ABF Power: AC 120V/60Hz Note: Mode1:transmit at channel 2437 MHz by b No Fla g Ma rk Frequency (MHz) Measure Level (dBuV/m) Reading Level (dBuV) Over Limit (dB) Limit (dBuV/m) Factor Type 1 4874.000 37.116 44.127 -36.884 74.000 -7.010 PK 2 * 7311.000 41.238 42.819 -32.762 74.000 -1.581 PK 3 9748.000 40.698 36.217 -33.302 74.00…

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

Contact Information

Applicant

KENJI HAYASHIKOSHI(SENIOR MANAGER)
[email protected]81-75-955-6173Fax: 81-75-955-7097

Test Firm

DEKRA Testing and Certification (Suzhou) Co., Ltd.Jerry Pan
[email protected]86-512-62515088Fax: 86-512-62515098

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz232.00 mW
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. This grant is valid only when the device is sold to OEM integrators and installation is done under the control of the Grantee. This transmitter is restricted for use with the specific antenna(s) tested in this application for Certification and must not be co-located or operating in conjunction with any other antenna or transmitters within a host device, except in accordance with FCC multi-transmitter product procedures. The antenna of this transmitter must be installed to provide a separation distance of at least 20cm from all persons.

Other Applications from Murata Manufacturing Co., Ltd.

VPYLB2EA003

Communication Module

Sep 01, 2026

Equipment Class

NII - Unlicensed National Information Infrastructure TX
VPYLBWA0ZZ2JM

Communication Module

Mar 11, 2026

Equipment Class

DTS - Digital Transmission System
Wireless Vibration Sensor Unit - FCC ID VPYLB2TG - Murata Manufacturing Co., Ltd.
VPYLB2TG

Wireless Vibration Sensor Unit

May 20, 2025

Equipment Class

DTS - Digital Transmission System
VPYLBEE5WV2GF

Communication Module

Jun 20, 2024

Equipment Class

DTS - Digital Transmission System
LoRa Module - FCC ID VPYLB2GT - Murata Manufacturing Co., Ltd.
VPYLB2GT

LoRa Module

Mar 25, 2024

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter