
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
INSTRUCTION MANUAL 1 Features • Digital wireless technology provides excellent image quality and clarity • Interference free, secure and private signal • Up to 450ft wireless transmission range ① • Listen in with exceptional sound clarity • Safety warning feature notifies you when out of range • Micro SD card recording • Music in 4 selections • System expandable up to 4 cameras ② ① Maximum open space transmission range. The actual range is dependent upon building materials and other obstructions in path of wireless signal. ② Additional cameras sold separately. • Two-way audio communication • Camera room temperature display on monitor Camera Features • VGA resolution camera • Night vision allows for low light viewing up to 15 feet / 4.5 meters ③ • Built-in microphone • Camera can be battery operated for true portable wireless operation ③ IR illumination range of 15ft./4.5m under ideal conditions. Objects at or beyond this range may be partially or completely obscured, depending on the camera application. Receiver Features •3.5” color LCD monitor/receiver with superior image quality • Auto recording, manual recording and schedule recording • Video/Audio output for viewing on TV/Monitor or recording on VCR/DVD recorder • Rechargeable lithium polymer battery for true portability • Convenient receiver cradle included • Audio level indicator and alarm • Displaying stored pictures in scan mode (screen saver) • Baby room temperature display 2 Wireless Receiver Front/Back Controls 1. Power/Audio Level LEDs – The green LED indicates the receiver power is ON or OFF. The red LEDs indicate the audio levels (low to high). 2. LCD Screen – Displays video from the camera. 3. SCAN Button – When the SCAN button is pressed, the LCD screen is turned off and the system continuously scans all available cameras while the monitor is dark. The scan feature can be used for the following two reasons: (1) to prevent you from being disturbed (i.e. when sleeping) by the bright LCD screen, or (2) to conserve battery power. If audio is detected above the preset audio trigger level on the camera(s)*, the receiver will beep and display the image from the triggered camera. The receiver will return to scan mode about 5 seconds after the alarm has completed. Press “A”, “M” or “SCAN” button on the front panel of monitor will exit scan mode. 4. Navigation Controls/OK Button – Use to controls in Viewing Mode and Menu Mode. Viewing Mode: The following controls are used while watching live video from the camera: • Press the UP/DOWN ▲▼ arrows to increase or decrease the volume. • Press the LEFT ◄ arrow to view cameras* in automatic switching mode. • Press the RIGHT ► arrow to manually switch between cameras*. Menu Mode: Use the UP/DOWN/LEFT/RIGHT ▲▼◄► arrows to navigate in Menu Mode. Press the OK button to confirm the menu selection. 5. MENU Button – Press to go into main the receiver menu, press to back to view mode in main menu, press to back to previous menu in submenus. 6. Record—Press the button to start recording, press it again to stop recording. In this manual recording mode, the OSD LCD will mark “Recording”. . 7. Antenna Locking Switch – Slide the switch to unlocking position, the receiver antenna will pop up. Then you can adjust the antenna to vertical position for better signal reception. 8. Microphone – Receives sounds from the area near the receiver and transmits sound from the receiver to the camera (only when TALK Button is pressed down and held). 9. A/V Out Port (Optional Use) – Connect the included A/V cable to view video from the receiver on a TV or monitor, or record on a DVD recorder/VCR. 3 NOTE: Using this feature will turn off the LCD screen. The LCD screen will turn back on when the A/V cable is disconnected. 10. DC 5V Power Input – Connect the included DC 5V power adaptor to power the receiver and/or charge the receiver battery (when the receiver is not in the cradle). 11. Charging Indication LED – Indicates the built-in battery is in charge when the LED is in yellow, and in green when it is full charged. 12. Night Light Button – Press to remotely turn on/off the night light on the camera (for the camera currently being displayed on the LCD screen). When the night light is on, an indication icon will be displayed on the LCD screen. 13. Alarm +/-Button – Press to increase or decrease the volume of the audio alarm. 14. / Button – Press the button to start or stop the lullaby. 15. Button – Press the button to play next lullaby. 16. TALK Button – Press and hold the button to talk to the camera currently being displayed on the LCD screen. 17. Power Slide Switch – Slide the switch to ON or OFF position to switch on/off the receiver. 18. SD Card Slot – Insert Micro SD card to this SD card slot for both video and audio recording. * You must have more than one camera configured on the system when using the functions that requires more than one camera. 19. Receiver Antenna – receives & sends signals from or to the cameras*. 20. Speaker – Produces the sound transmitted from the camera(s) *. Receiver Cradle Inputs 21. DC 5V Power Input – Connect the DC 5V power adaptor (included) to the receiver cradle to power the receiver and/or charge the receiver (when docked). NOTE: When the receiver is docked, and the A/V cable is connected (power cable as needs to be connected), the LCD screen on the receiver will be blacked out. The LCD screen will turn back on when the A/V cable is disconnected. 4 Wireless Receiver Installation Determine if you will be using the receiver cradle, or connecting the cables directly to the receiver before installation: 1. Place the receiver cradle or receiver in a place that will have clear reception with your camera(s). 2. Plug the AC adaptor power output cable into the 5V POWER input of the cradle or receiver. Plug the power plug into a wall outlet or surge protector. 3. Leave the receiver to charge for several hours prior to first time use so the built-in rechargeable receiver battery is f…
Text truncated - open the document above for the full version.
2.1 Product View 2.2 EUT – Appearence View
Page:43 of 43 Egerium BV FCC ID: Z5M-LUVGEMON WALTEK SERVICES Reference No.: WT11105438-S-E-F 17 FCC Label This device complies with Part 15 of the FCC Rules. 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. The Label must not be a stick-on paper. The Label on these products must be permanently affixed to the product and readily visible at the time of purchase and must last the expected lifetime of the equipment not be readily detachable. Proposed Label Location on EUT EUT Bottom View/ proposed FCC Label Location FCC ID: Z5M-LUVGEMON 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.
FCC ID Label Sample for Model: GRAND ELITE MONITOR FCC ID: Z5M-LUVGEMON 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.
2.1 EUT – Open View 2.2 EUT - PCB View 2.3 RF Module – View 2.4 Adapter – Open View 2.5 Adapter – PCB View
Grand Elite Monitor Architecture: Grand Elite Monitor is a low cost and high performance digital Wireless monitor which integrates M-JPEG codec , FHSS base band , RF transceiver ,CMOS sensor color processing unit , ADPCM codec, LCD display engine. The base- band implement a Bluetooth like frequency adaptive hopping technology to prevent being jammed by microwave oven and other 2.4GHz devices. It can co-existence with Bluetooth, WLAN and other 2.4GHz digital-modulated devices. Grand Elite Monitor hardware architecture is show in Block diagram z Auto ACK & retransmit On the air max. data rate 2Mpbs z Software selectable channel form 2400MHz to 2483.5MHz (37 Selectable channels) z Intelligent frequency hopping (change RF channel automatically) z Support AV Out z Support Sound level indicate z Microphone z Audio amplifier nRF24L01 is a single chip radio transceiver for the world wide 2.4 -2.5 GHz ISM band. The transceiver consists of a fully integrated frequency synthesizer, a power amplifier, a crystal oscillator, a demodulator, modulator and Enhanced ShockBurst™ protocol engine. Output power, frequency channels, and protocol setup are easily programmable through a SPI interface. Current consumption is very low, only 9.0mA at an output power of -6dBm and 12.3mA in RX mode. Built-in Power Down and Standby modes makes power saving easily realizable. A simplified block diagram of the nRF24L01 is shown in figure 2 Figure 2 : nRF24L01 Block Diagram Packet Handling Methods nRF24L01 has the following Packet Handling Methods: ShockBurst™ (compatible with nRF2401, nRF24E1, nRF2402 and nRF24E2 with 1Mbps data rate, see page 24) Enhanced ShockBurst™ ShockBurst™ ShockBurst™ makes it possible to use the high data rate offered by nRF24L01 without the need of a costly, high-speed microcontroller (MCU) for data processing/clock recovery. By placing all high speed signal processing related to RF protocol on-chip, nRF24L01 offers the application microcontroller a simple SPI compatible interface, the data rate is decided by the interface-speed the micro controller itself sets up. By allowing the digital part of the application to run at low speed, while maximizing the data rate on the RF link, ShockBurst™ reduces the average current consumption in applications. In ShockBurst™ RX, IRQ notifies the MCU when a valid address and payload is received respectively. The MCU can then clock out the received payload from an nRF24L01 RX FIFO. In ShockBurst™ TX, nRF24L01 automatically generates preamble and CRC, see Table 12. IRQ notifies the MCU that the transmission is completed. All together, this means reduced memory demand in the MCU resulting in a low cost MCU, as well as reduced software development time. nRF24L01 has a three level deep RX FIFO (shared between 6 pipes) and a three level deep TX FIFO. The MCU can access the FIFOs at any time, in power down mode, in standby modes, and during RF packet transmission. This allows the slowest possible SPI interface compared to the average datarate, and may enable usage of an MCU without hardware SPI. Enhanced ShockBurst™ Enhanced ShockBurst™ is a packet handling method with functionality that makes bi-directional link protocol implementation easier and more efficient. In a typical bi-directional link, one will let the terminating part acknowledge received packets from the originating part in order to make it possible to detect data loss. Data loss can then be recovered by retransmission. The idea with Enhanced ShockBurst™ is to let nRF24L01 handle both acknowledgement of received packets and retransmissions of lost packets, without involvement from the microcontroller. Figure 3: nRF24L01 in a star network configuration An nRF24L01 configured as primary RX (PRX) will be able to receive data trough 6 different data pipes, see Figure 3. A data pipe will have a unique address but share the same frequency channel. This means that up to 6 different nRF24L01 configured as primary TX (PTX) can communicate with one nRF24L01 configured as PRX, and the nRF24L01 configured as PRX will be able to distinguish between them. Data pipe 0 has a unique 40 bit configurable address. Each of data pipe 1-5 has an 8 bit unique address and shares the 32 most significant address bits. All data pipes can perform full Enhanced ShockBurst™ functionality. nRF24L01 will use the data pipe address when acknowledging a received packet. This means that nRF24L01 will transmit ACK with the same address as it receives payload at. In the PTX device data pipe 0 is used to received the acknowledge, and therefore the receive address for data pipe 0 has to be equal to the transmit address to be able to receive the acknowledge. See Figure 5 for addressing example. Figure 4: Example on how the acknowledgement addressing is done An nRF24L01 configured as PTX with Enhanced ShockBurst™ enabled, will use the ShockBurst™ feature to send a packet whenever the microcontroller wants to. After the packet has been transmitted, nRF24L01 will switch on its receiver and expect an acknowledgement to arrive from the terminating part. If this acknowledgement fails to arrive, nRF24L01 will retransmit the same packet until it receives an acknowledgement or the number of retries exceeds the number of allowed retries given in the SETUP_RETR_ARC register. If the number of retries exceeds the number of allowed retries, this will show in the STATUS register bit MAX_RT and gives an interrupt. Whenever an acknowledgement is received by an nRF24L01 it will consider the last transmitted packet as delivered. It will then be cleared from the TX FIFO, and the TX_DS IRQ source will be set high. With Enhanced ShockBurst™ nRF24L01 offers the following benefits: Highly reduced current consumption due to short time on air and sharp timing when operating with acknowledgement traffic Lower system cost. Since the nRF24L01 handles all the high-speed link layer operations, like re-transmission of lost packet and generating acknowledgement to received pac…
Text truncated - open the document above for the full version.
Page: 1 of 47 FCC TEST REPORT WALTEK SERVICES Reference No.: WT11105438-S-E-F FCC ID : Z5M-LUVGEMON Applicant : Egerium BV Address : Kleveringweg 25, 2616ZL Delft Netherlands Equipment Under Test (EUT) : Product Name : Digital wireless camera and monitor system Model No. : GRAND ELITE MONITOR Standards : FCC CFR47 Part 15 Section 15.247:2009 Date of Test : October 13, 2011 ~ October 26, 2011 Date of Issue : October 29, 2011 Test Engineer : Hunk yan Reviewed By : Philo zhong Test Result : PASS Prepared By: Waltek Services (Shenzhen) Co., Ltd. 1/F, Fukangtai Building, West Baima Rd., Songgang Street, Baoan District, Shenzhen 518105, China Tel :+86-755-27553488 Fax:+86-755-27553868 The sample detailed above has been tested to the requirements of Council Directives ANSI C63.4:2003. The test results have been reviewed against the Directives above and found to meet their essential requirements. Page:2 of 47 Egerium BV FCC ID: Z5M-LUVGEMON WALTEK SERVICES Reference No.: WT11105438-S-E-F 2 Test Summary Test Items Test Requirement Result Radiated Spurious Emissions (9kHz to 25GHz) 15.205(a) 15.209 15.247(d) PASS Conduct Emission 15.207 PASS 20dB Bandwidth 15.247(a)(1) PASS Maximum Peak Output Power 15.247(b)(1) PASS Frequency Separation 15.247(a)(1) PASS Number of Hopping Frequency 15.247(a)(1)(iii) PASS Dwell time 15.247(a)(1)(iii) PASS Maximum Permissible Exposure (Exposure of Humans to RF Fields) 1.1307(b)(1) PASS Page:3 of 47 Egerium BV FCC ID: Z5M-LUVGEMON WALTEK SERVICES Reference No.: WT11105438-S-E-F 3 Contents 1 COVER PAGE........................................................................................................................................................ 1 2 TEST SUMMARY .................................................................................................................................................. 2 3 CONTENTS............................................................................................................................................................. 3 4 GENERAL INFORMATION ................................................................................................................................ 4 4.1 CLIENT INFORMATION........................................................................................................................................... 4 4.2 GENERAL DESCRIPTION OF E.U.T. ........................................................................................................................ 4 4.3 DETAILS OF E.U.T................................................................................................................................................. 4 4.4 DESCRIPTION OF SUPPORT UNITS.......................................................................................................................... 4 4.5 STANDARDS APPLICABLE FOR TESTING................................................................................................................ 4 4.6 TEST FACILITY...................................................................................................................................................... 5 4.7 TEST LOCATION.................................................................................................................................................... 5 5 EQUIPMENT USED DURING TEST .................................................................................................................. 6 6 CONDUCTED EMISSION .................................................................................................................................... 7 7 RADIATED SPURIOUS EMISSIONS ............................................................................................................... 12 8 RADIATED EMISSIONS WHICH FALL IN THE RESTRICTED BANDS................................................. 23 9 20 DB BANDWIDTH MEASUREMENT........................................................................................................... 28 10 MAXIMUM PEAK OUTPUT POWER ............................................................................................................. 30 11 HOPPING CHANNEL SEPARATION .............................................................................................................. 31 12 NUMBER OF HOPPING FREQUENCY .......................................................................................................... 34 13 DWELL TIME ...................................................................................................................................................... 35 14 ANTENNA REQUIREMENT ............................................................................................................................. 38 15 RF EXPOSURE .................................................................................................................................................... 38 16 PHOTOGRAPHS - CONSTRUCTIONAL DETAILS...................................................................................... 40 16.1 PRODUCT VIEW.............................................................................................................................................. 40 16.2 EUT – APPEARENCE VIEW............................................................................................................................. 41 16.3 EUT – OPEN VIEW......................................................................................................................................... 42 16.4 EUT - PCB VIEW........................................................................................................................................... 42 16.5 RF MODULE – VIEW....................................................................................................................................... 43 16.6 ADAPTER – OPEN VIEW..............................................................................................................…
Text truncated - open the document above for the full version.
Photograph – Conducted Emission Test Setup Photograph – Radiation Spurious Emission Test Setup Below 1GHz Above 1GHz
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 13.00 mW |

PREMIUM DIGITAL BABY MONITOR
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
PREMIUM DIGITAL CAMERA
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
DIGITAL WIRELESS CAMERA AND MONITOR SYSTEM
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter