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Delta DFWM-GIB00 User Manual
Delta DFWM-GIB00 User Manual

Delta DFWM-GIB00 User Manual

An ieee 802.11b low-power wireless system-on-chip module

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DFWM-GIB00
User Manual
DFWM-GIB00
An IEEE 802.11b Low-Power Wireless
System-On-Chip module
1
User Manual
Sheet
of 11
Mar. 27, 2012
Proprietary Information and Specifications are Subject to Change

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Summary of Contents for Delta DFWM-GIB00

  • Page 1 DFWM-GIB00 User Manual DFWM-GIB00 An IEEE 802.11b Low-Power Wireless System-On-Chip module User Manual Sheet of 11 Mar. 27, 2012 Proprietary Information and Specifications are Subject to Change...
  • Page 2 DFWM-GIB00 This document describes a simple method for characterizing DFWM-GIB00 WLAN module based RF parameters, such as transmitted spectra and receiver sensitivity. It will be described step by step below that how to control and setup. Step 1 : Extract to CDM20814_WHQL_Certified.zip, it is a USB to UART driver, then setup it.
  • Page 3 DFWM-GIB00 Step 6 : Now any legal command can be keyed in and if UTF-8 reply ok, the command is implemented successful like below figure. Figure 3 A series of legal command: Internal PA Transmitted Transmitted Tx at 11Mbps for every channel...
  • Page 4 DFWM-GIB00 at+rfwavetxstart=1,13,3,1,0,1,0,GainSpanDemo Continuous Tx Channel 13, 11Mbps at+rfwavetxstart=1,14,3,1,0,1,0,GainSpanDemo Continuous Tx Channel 14, 11Mbps At+rfstop Stop action Transmitted Tx at 5.5Mbps for every channel at+extpa=0 Start up internal Power Amplifier at+rfwavetxstart=1,1,2,1,0,1,0,GainSpanDemo Continuous Tx Channel 1, 5.5Mbps at+rfwavetxstart=1,2,2,1,0,1,0,GainSpanDemo Continuous Tx Channel 2, 5.5Mbps at+rfwavetxstart=1,3,2,1,0,1,0,GainSpanDemo Continuous Tx Channel 3, 5.5Mbps...
  • Page 5 DFWM-GIB00 Transmitted Tx at 1Mbps for every channel at+extpa=0 Start up internal Power Amplifier at+rfwavetxstart=1,1,0,1,0,1,0,GainSpanDemo Continuous Tx Channel 1, 1Mbps at+rfwavetxstart=1,2,0,1,0,1,0,GainSpanDemo Continuous Tx Channel 2, 1Mbps at+rfwavetxstart=1,3,0,1,0,1,0,GainSpanDemo Continuous Tx Channel 3, 1Mbps at+rfwavetxstart=1,4,0,1,0,1,0,GainSpanDemo Continuous Tx Channel 4, 1Mbps at+rfwavetxstart=1,5,0,1,0,1,0,GainSpanDemo Continuous Tx Channel 5, 1Mbps...
  • Page 6: Antenna Information

    DFWM-GIB00 Antenna Information PCB Antenna Frequency range 2400 MHz – 2500 MHz Peak gain -3.06 dBi EIRP(2450MHz)-XY cut EIRP(2450MHz)-XZ cut User Manual Sheet of 11 Mar. 27, 2012 Proprietary Information and Specifications are Subject to Change...
  • Page 7 DFWM-GIB00 EIRP(2450MHz)-YZ cut Antenna Location User Manual Sheet of 11 Mar. 27, 2012 Proprietary Information and Specifications are Subject to Change...
  • Page 8 DFWM-GIB00 Canada, Industry Canada (IC) Notices This Class B digital apparatus complies with Canadian ICES-003 and RSS-210. Operation is subject to the following two conditions : (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device.
  • Page 9 DFWM-GIB00 Canada, avis d'Industry Canada (IC) Cet appareil numérique de classe B est conforme aux normes canadiennes ICES-003 et RSS-210. Son fonctionnement est soumis aux deux conditions suivantes : (1) cet appareil ne doit pas causer d'interférence et (2) cet appareil doit accepter toute interférence, notamment les interférences qui peuvent affecter son fonctionnement.
  • Page 10 DFWM-GIB00 Federal Communications Commission (FCC) Statement You are cautioned that changes or modifications not expressly approved by the part responsible for compliance could void the user’s authority to operate the equipment. Section 15.105 (a) for Class Device For a Class A digital device or peripheral, the instructions furnished the user shall include the following...
  • Page 11 DFWM-GIB00 Part 15.19(a)(3) unlicensed project (WLAN Device) 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 of the device.