
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
® User Guide Why use a modlet? Homes and offices now have more plugged-in devices than ever before, and the number is growing. These plugged-in devices make up 50% of home electricity bills and more than 20% of commercial energy bills! And much of this energy consumption occurs when devices are unused or off. A cable box uses almost as much energy when it’s off as when it’s on. So what’s the point of the “off” button then? The modlet helps you take control of your plug load energy consumption by allowing you to see how much energy each device consumes and then automatically schedule when devices are on or off. Implementing schedules with the modlet system is easy and your savings are clearly displayed via ThinkEco’s Web app – which is accessible through your computer or mobile device. Start saving now! For more information on how the modlet saves you energy, visit our website: www.themodlet.com Hardware The modlet plugs directly into any dual socket 3-pin outlet. The modlet’s integrated intelligence tracks energy consumption and wirelessly transmits the data to your computer through the USB receiver. modlet USB receiver Red LED indicator light Outlet 1 Outlet 2 Modlet Button Quick setup Go to www.mymodlet.com to create an account and begin the installation. Enter the registration key found on the inside cover of the modlet box. Create a user profile and then download and save the installer to your desktop. Double click on the installer icon to begin the wizard and follow the onscreen instructions. If required to reboot during the pr ocess, click back on the ThinkEco Installer to continue the installation. 1. Software 2. Hardware Plug your USB receiver into your computer when prompted by the Installer. Depending on your computer, you may see some ‘found new hardware’ or ‘install new hardware’ prompts. If so, be sure to accept all of them. If the USB receiver is not found on your first try, reinsert into the USB slot and push it in all the way. Turn off and unplug the electronic device closest to your computer that you want to monitor. Click ‘Search’ on the Installer first, then plug the modlet into the outlet. The spinning LED light will stop when your modlet joins the network. Plug your electronic device back into the modlet and complete the set up on the Installer. 4. Optional - Add more modlets More modlets can be added at any time. To do so, right click on the ThinkEco Icon in your computer tray and select Open Modlet Manager. Then click the Add Modlet button first, and then plug your next modlet into an outlet so it can join the n etwork. To build robust wireless networks, it’s best to work your way outward from your PC. Finish setting up your account and then start viewing your energy consumption through the Energy Usage tab. Keep in mind that it may take a few minutes after setting up your modlet to begin seeing data. To set a schedule, visit the Savings Plan tab to control when your devices are on and off. Please note, during the initial baseline period scheduling is not available. To view your account from any computer simply visit www.mymodlet.com or download the ThinkEco App for Android or iPhone. 3. Monitor & Control Troubleshooting If you are connected to the internet and logged into your account, but you’re not seeing the latest data, try these tips. 1. Check USB • Make sure your USB receiver is plugged in all the way. • Next unplug it and then plug it back into your computer. • Check the status of your USB by clicking on the Modlet Network link in the top right of your screen and then clicking on USB Receiver. 2. Be patient • When you first set up your network, or if your computer has been off for a while, the data may take a few minutes to load onto the interface. Check back in 15 minutes. 3. Refresh • Try hitting the refresh button on the Energy Usage tab or your browser. 4. Verify parameters • Check the variables you selected for the graph: does the start and end date match when you plugged in your modlet? • Do you have at least one device selected? Click on the name of the devices you want to graph or select all to see total energy consumption. 5. Check devices • Check the status of your devices on the energy usage tab. A green light next to your device means it has reported data to your computer in the last 24 hours. • If the light is red, first unplug and re-plug in your USB receiver. Next, verify your devices are labeled correctly and assigned to the correct outlet by clicking Modlet Network and then Modlets. For more troubleshooting information, call the modlet tech support center at 1-800-682-0152. Software tips Displays total power consumption for all devices as well as individual power traces for up to 5 devices at a time. 1. Energy Usage Customize the time period displayed on the graph View up to 5 individual power traces as separate lines or the total power consumption for more than 5 devices Click and drag your mouse across a section of the graph to zoom in Click on the names of one or more devices to display their consumption on the graph Export current data displayed to a file for more analysis Allows you to set up schedules for turning devices on and off. Choose from a template plan or create your own custom plan. This feature is available after the initial two-week baseline period.* 2. Savings Plans *The default setting for the baseline period is the first two weeks after you set up your modlets. The baseline period monitors the typical energy consumption of your devices. This information helps you create plans and calculate savings. You can create more than one plan – such as one for week- days and one for weekends View an overview of the schedules planned for today Create a plan for as little as one day or for many years Select days and times for your device to turn on Select which devices the plan applies to. You can create a separate plan for each device View total energy consumed and saved for all the devices in your Modlet Network. Check the status o…
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MC1322x Introduction MC1322x Reference Manual, Rev. 1.4 Freescale Semiconductor1-3 1.1Features This section provides a simplified block diagram and highlights MC1322x features. 1.1.1Block Diagram Figure 1-2 shows a simplified block diagram of the MC1322x. Figure 1-2. MC1322x Simplified Block Diagram 1.1.2Features Summary •IEEE 802.15.4 standard compliant on-chip transceiver/modem — 2.4GHz — 16 selectable channels — Programmable transmitter output power (-30 dBm to +4 dBm typical) — World-class receiver sensitivity – < -96 dBm typical receiver sensitivity using DCD mode (<1% PER, 20-byte packets) – < -100 dBm typical receiver sensitivity using NCD mode (<1% PER, 20-byte packets) •Hardware acceleration for IEEE 802.15.4 applications — MAC accelerator (sequencer and DMA interface) — Advanced encryption/decryption hardware engine (AES 128-bit) •Supports standard IEEE 802.15.4 signalling with 250 kbps data rate •32-bit ARM7TDMI-S CPU core with programmable performance up to 26 MHz (24 MHz typical) •Extensive on-board memory resources TIMER MODULE (TMR) (4 Tmr Blocks) UART MODULE (UART0) UART MODULE (UART1) SYNC SERIAL INTERFACE (SSI/i2S) KEYBOARD INTERFACE (KBI) INTER-IC BUS MODULE (I2C) SERIAL PERIPHERAL INTERFACE (SPI) DUAL 12-BIT ADC MODULE GPIO and IO CONTROL UP TO 64 IO PINS ARM7 TDMI-S 32-BIT CPU BUS INTERFACE & MEMORY ARBITRATOR ARM INTERRUPT CONTROLLER (AITC) JTAG/ Nexus DEBUG ADVANCED SECURITY MODULE (ASM) CLOCK & RESET MODE (CRM) RADIO INTERFACE MODULE (RIF) 96KBYTE SRAM (24K WORDS x 32 BITS) 80KBYTE ROM (20KWORDS x 32 BITS) RF OSCILLATOR & CLOCK GENERATION SPI FLASH MODULE (SPIF) 802.15.4 MAC ACCELERATOR (MACA) DIGITAL MODEM TX MODEM RX MODEM 128KBYTE NON-VOLATILE MEMORY (SERIAL FLASH) ANALOG TRANSMITTER ANALOG RECEIVER RF TX/RX SWITCH IEEE 802.15.4 TRANSCEIVER BALUN ANALOG POWER MANAGEMENT & VOLTAGE REGULATION MC1322x System on Chip Ext PLL Filter 24 MHz 32.768 KHz (optional) BATTERY DETECT
Northwest EMC TCB Compliance Opinion Rev. 7/1/10 THKE0001 Information about the Applicant Grantee (Company Name) ThinkEco, Inc. FCC Contact Person Ben Burns Address 148 Madison Ave 8th Floor City, State, Zip New York, NY 10016 Job Number THKE0001 Model TE1001 FCC ID Y38TE1001 Agent Approval Type Original Equipment Class DTS Digital Transmission System Rule Part 15.247 Overview The model TE1001 is a Zigbee compliant USB radio device used as a receiver for a wireless network to control household appliances and monitor power usage. Confidentiality requested for allowed files. Request is properly addressed and referenced. Recommendation All items have been resolved and completed to my satisfaction; therefore I recommend this application for approval. Signature Dave Tolman, TCB Committee 2/1/2012
Antenna Info As shown in the photograph below, the USB Receiver uses a permanently affixed monopole ceramic chip antenna which is inaccessible to the user, as the PCB is encased in a glued plastic housing. The Freescale MC1322x chip limits power to 3 dBm. The antenna components used are: Standard antenna (shown below) Johanson Technology 2.45 GHz Antenna, P/N 2450AT43A100. Peak gain 2.0 dBi, average gain .5 dBi. Backup antenna component (not shown) Würth Elektronik part # 7488940245, Peak gain 2.0 dBi, average gain .5 dBi.
Compliance with 47 CFR 15.247(i) “Systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy levels in excess of the Commission's guidelines. See § 1.1307(b)(1) of this chapter.” The EUT is a USB dongle that contains a Zigbee transceiver. It can be considered a portable transmitter per 47 CFR 2.1093 because it can be connected to a notebook computer that is placed in the user’s lap. This configuration may place the remote within 20cm of the user’s torso. The antenna is internal to the unit and permanently attached. The antenna is a monopole ceramic chip antenna with 2.0 dBi of gain. The maximum peak conducted output power is 0.46 mW. The maximum peak radiated power is 0.73 mW eirp for FCC ID: Y38TE1001. The transmit frequency is 2405 to 2480MHz, therefore the EUT does not require routine SAR evaluation because it falls below the low power threshold of 60/f(GHz)mW. Please see this excerpt from KDB 447498D01 Mobile Portable RF Exposure v04, item 2)(a)(i): "a device may be used in portable exposure conditions with no restrictions on host platforms when either the source-based time-averaged output power is <=60/f(GHz)mW or all measured 1-g SAR are <0.4W.kg." The applicant’s wireless radio, FCC ID: Y38TE1001, is compliant with the requirements of FCC 15.247(i).
ThinkEco, Inc. ThinkEco USB Receiver Model: TE1001 Report No. THKE0001 Rev 01 Report Prepared By www.nwemc.com 1-888-EMI-CERT © 2010 Northwest EMC, Inc 22975 NW Evergreen Parkway Suite 400 Hillsboro, Oregon 97124 Certificate of Test Last Date of Test: January 21, 2011 ThinkEco, Inc. Model: TE1001 Emissions Test Description Specification Test Method Pass/Fail Occupied Bandwidth FCC 15.247:2011 ANSI C63.10:2009 Pass Output Power FCC 15.247:2011 ANSI C63.10:2009 Pass Band Edge Compliance FCC 15.247:2011 ANSI C63.10:2009 Pass Spurious Conducted Emissions FCC 15.247:2011 ANSI C63.10:2009 Pass Power Spectral Density FCC 15.247:2011 ANSI C63.10:2009 Pass Spurious Radiated Emissions FCC 15.247:2011 ANSI C63.10:2009 Pass AC Powerline Conducted Emissions FCC 15.207:2011 ANSI C63.10:2009 Pass Duty Cycle FCC 15.247:2011 ANSI C63.10:2009 Pass Modifications made to the product See the Modifications section of this report Test Facility The measurement facility used to collect the data is located at: Northwest EMC, Inc. 22975 NW Evergreen Parkway, Suite 400 Hillsboro, OR 97124 Phone: (503) 844-4066 Fax: 844-3826 This site has been fully described in a report filed with and accepted by the FCC (Federal Communications Commission) and Industry Canada (Site filing #2834D-1). Approved By: Tim O’Shea, Operations Manager NVLAP Lab Code: 200630-0 This report must not be used to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the federal government of the United States of America. Product compliance is the responsibility of the client, therefore the tests and equipment modes of operation represented in this report were agreed upon by the client, prior to testing. This Report may only be duplicated in its entirety. The results of this test pertain only to the sample(s) tested. The specific description is noted in each of the individual sections of the test report supporting this certificate of test. Northwest EMC Revision History Revision 06/29/09 Barometric Pressure The recorded barometric pressure has been normalized to sea level. Revision Number Description Date Page Number 01 Corrected Duty Cycle Correction Factor value in Spurious Radiated Emissions data 1/30/12 31-32 01 Corrected numbering of Samples in Duty Cycle data 1/30/12 41 Accreditations and Authorizations FCC Accredited by NVLAP for performance of FCC radio, digital, and ISM device testing. Our Open Area Test Sites, certification chambers, and conducted measurement facilities have been fully described in reports filed with the FCC and accepted by the FCC in letters maintained in our files. Northwest EMC has been accredited by ANSI to ISO / IEC Guide 65 as a product certifier. We have been designated by the FCC as a Telecommunications Certification Body (TCB). This allows Northwest EMC to certify transmitters to FCC specifications in accordance with 47 CFR 2.960 and 2.962. NVLAP Northwest EMC, Inc. is accredited under the National Voluntary Laboratory Accreditation Program (NVLAP) for satisfactory compliance with the requirements of ISO/IEC 17025 for Testing Laboratories. NVLAP is administered by the National Institute of Standards and Technology (NIST), an agency of the U.S. Commerce Department. The NVLAP accreditation encompasses Electromagnetic Compatibility Testing in accordance with the European Union EMC Directive 2004/108/EC, and ANSI C63.4. Additionally, Northwest EMC is accredited by NVLAP to perform radio testing in accordance with the European Union R&TTE Directive 1999/5/EEC, the requirements of FCC, and the RSS radio standards for Industry Canada. Industry Canada Accredited by NVLAP for performance of Industry Canada RSS and ICES testing. Our Open Area Test Sites and certification chambers comply with RSS-Gen, Issue 2 and have been filed with Industry Canada and accepted. Northwest EMC has been accredited by ANSI to ISO / IEC Guide 65 as a product certifier. We have been designated by NIST and recognized by Industry Canada as a Certification Body (CB) per the APEC Mutual Recognition Arrangement (MRA). This allows Northwest EMC to certify transmitters to Industry Canada technical requirements. (Site Filing Numbers - Hillsboro: 2834D-1, 2834D-2, Sultan: 2834C-1, Irvine: 2834B-1, 2834B-2, Brooklyn Park: 2834E-1) CAB Designated by NIST and validated by the European Commission as a Conformity Assessment Body (CAB) to conduct tests and approve products to the EMC directive and transmitters to the R&TTE directive, as described in the U.S. - EU Mutual Recognition Agreement. Australia/New Zealand The National Association of Testing Authorities (NATA), Australia has been appointed by the ACA as an accreditation body to accredit test laboratories and competent bodies for EMC standards. Accredited test reports or assessments by competent bodies must carry the NATA logo. Test reports made by an overseas laboratory that has been accredited for the relevant standards by an overseas accreditation body that has a Mutual Recognition Agreement (MRA) with NATA are also accepted as technical grounds for product conformity. The report should be endorsed with the respective logo of the accreditation body (NVLAP). Accreditations and Authorizations VCCI Accepted as an Associate Member to the VCCI, Acceptance No. 564. Conducted and radiated measurement facilities have been registered in accordance with Regulations for Voluntary Control Measures, Article 8. (Registration Numbers. - Hillsboro: C-1071, R-1025, G-84, C-2687, T- 1658, and R-2318, Irvine: R-1943, G-85, C-2766, and T-1659, Sultan: R-871, G-83, C-1784, and T-1511, Brooklyn Park: R-3125, G-86, G-141, C-3464, and T-1634). BSMI Northwest EMC has been designated by NIST and validated by C-Taipei (BSMI) as a CAB to conduct tests as described in the APEC Mutual Recognition Agreement (US0017). GOST Northwest EMC, Inc. has been assessed and accredited by the Russian Certification bodies Certinform VNIINMASH, CERTINFO, SAMTES, and Federal CHEC, to perform EMC and Hygienic te…
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NORTHWEST EMC EV063.jpg EV062.jpg OCCUPIED BANDWIDTH XMit 2010.11.03 NORTHWEST EMC EV061.jpg OCCUPIED BANDWIDTH XMit 2010.11.03 NORTHWEST EMC EV063.jpg EV062.jpg OUTPUT POWER XMit 2010.11.03 NORTHWEST EMC EV061.jpg OUTPUT POWER XMit 2010.11.03 NORTHWEST EMC EV063.jpg EV062.jpg BAND EDGE COMPLIANCE XMit 2010.11.03 NORTHWEST EMC EV061.jpg BAND EDGE COMPLIANCE XMit 2010.11.03 NORTHWEST EMC EV063.jpg EV062.jpg SPURIOUS CONDUCTED EMISSIONS XMit 2010.11.03 NORTHWEST EMC EV061.jpg SPURIOUS CONDUCTED EMISSIONS XMit 2010.11.03 NORTHWEST EMC EV063.jpg EV062.jpg POWER SPECTRAL DENSITY XMit 2010.11.03 NORTHWEST EMC EV061.jpg POWER SPECTRAL DENSITY XMit 2010.11.03 NORTHWEST EMC Spurious Radiated Emissions PSA 2008.07.21 NORTHWEST EMC Spurious Radiated Emissions PSA 2008.07.21 NORTHWEST EMC CE 01.JPG CE 02.JPG Conducted Emissions PSA-ESCI 2010.04.06 NORTHWEST EMC Duty 001.jpg Duty 002.jpg DUTY CYCLE XMit 2010.11.03
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 460.00 µW |

TE5010, TE5011, TE5012, TE5013
Equipment Class
DTS - Digital Transmission System
modlet gateway
Equipment Class
PCB - PCS Licensed Transmitter
modlet gateway
Equipment Class
DTS - Digital Transmission System
modlet IQ
Equipment Class
DTS - Digital Transmission System
TE6010
Equipment Class
DTS - Digital Transmission System