
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
NJJ-200 Handy Search Users Guide (For FCC and CE Version) i I. Preface Thank you very much for purchasing JRC NJJ-200 Handy Search. This product nondestructively locates, detects, and displays the depths and positions of rebars in reinforced concrete structures. ●Before starting to use this product read this manual carefully to ensure correct and trouble-free operations. ●Keep this manual handy for reference. Refer to the manual when facing uncertainties or when experiencing troubles during operation. DC20-NJJ-200 Firust Edition Nov 2013 ii II. Before Operation Pictorial Indication Various icons are indicated in this manual and are labeled on this product to ensure your safe and correct operations and to prevent any danger to you and/or other persons and any damage to your property during operation. Such indications and their meanings are as follows. Please understand them before reading this manual. Examples of Pictorial Indication y JRC assumes no liability for any damage (such as damage caused to rebars, electrical pipes, gas pipes, etc.) arising from scan results using this product. y JRC assumes no liability for any damage arising from the disappearance of scan results stored in memory cards. y Make sure to select and use Smartphone which is confirmed that it can be connected to the sensor unit by referring to Smartphone’s manual. For the requirements to Smartphone, refer to Section 13.4 Smartphone. JRC assumes no liability for any damage (such as damage caused to Smartphone and the senor unit, etc.) arising from the incorrect operation different from the operation described in this manual. WARNING This indication is shown when danger of being killed or seriously injured is possible if this indication is neglected and this product is not operated correctly. CAUTION This indication is shown when injury or property damage is possible if this indication is neglected and this product is not operated correctly. Electric shock A △ mark indicates CAUTION (including DANGER and WARNING). Detailed content of the specific CAUTION (“Electric Shock” in the example on the left.) is shown in the mark. Disassembling Prohibited Prohibition A mark indicates prohibition. Detailed content of the prohibited action (“Disassembling Prohibited” in the example on the left.) is shown in the mark. Disconnect the power plug Instruction A ●mark indicates instruction. Detailed content of the instruction (“Disconnect the power plug” in the example on the left.) is shown in the mark. iii III. Precautions for Use WARNING Do not use any battery pack other than the recommended battery packs. Doing so may cause fire, electric shock, or breakdown. Do not short-circuit the terminals of the battery charger or battery pack. Doing so may cause fire, explosion, or breakdown. Do not insert metallic or flammable objects into the CF memory slot. Doing so may cause injury, fire, electric shock, or breakdown. Do not disassemble, modify, heat, or place battery pack in fire. Doing so may cause fire, explosion, or breakdown. Do not use any charger other than the recommended battery charger to charge the battery pack. Doing so may cause fire, electric shock, or breakdown. Do not disassemble, modify, or repair this product by yourself. Doing so may cause fire, electric shock, or breakdown. If the power cord is damaged (exposure of the core wire, open circuit failure, or break in the sheath), contact our nearest branch office (See Section 14), sales outlet, or service station for a rep lacement power cord. Use of a damaged power cord may cause fire or electric shock. Do not connect/disconnect the power plug by wet hands. Doing so could cause an electric shock. Do not use (place) this product in a location where it is exposed to flammable or corrosive gas. Doing so could cause fire, personal injury, or breakdown. This product has a waterproof construction but must not be dipped in water. Do not expose this product to water or moisture, and do not use it in rainy weather. Doing so could cause an electric shock or breakdown. Stop using this product immediately when a sign of malfunctioning is detected, and follow only the instruction described in Section 9.3 Troubleshooting. If it cannot be restored to normal operation, con tact our nearest branch office (See Section 14), sales outlet, or service station. Use of this product in an abnormal state could cause fire or breakdown. Should this product emit an abnormal sound, odor, or smoke, immediately turn off the power switch, remove the battery pack, disconnect the power plug from the socket outlet, and contact our nearest branch office (See Section 14), sales outlet, or service st ation. Use of this product in an abnormal state could cause fire, electric shock, or breakdown. iv CAUTION Before disposing of the used lithium ion battery, insulate the charging terminals by taping or the like. Otherwise, the battery could cause fire or explosion if short-circuited. Judge the scan result with considering the depth sensing capability of this product. Since the depth scan capability of this product is subject to the conditions of the object of investigation, judging the scan result with no consideration of the depth scan capability may cause the cutting of rebars. Put your hand through the hand strap and hold this product. Dropping of this product may cause an accident such as a device breakdown or personal injury. When disconnecting the power cord, hold the plug. Pulling the power cord by itself may cause cord damage, fire, or electric shock. Do not place this product on an unstable place such as a wobbly table or sloping surface. Doing so may cause a personal injury or breakdown when it drops or falls. Do not use (place) this product in a humid or dusty location, or a location where water, oil, or chemical may splash onto this product. Doing so may cause fire, electric shock, or breakdown. Do not use (place) this product in a location where it is subject to vibration or shock. Doing so may cause…
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35 4. NJJ-200 application functions Here is a screen-by-screen description of all functions of NJJ-200 application. 4.1. Main screen Figure 4-1 shows the name of each part which appears on the main screen of NJJ-2000 application. Figure 4-1 Main screen of NJJ-200 application ①[Start] icon ②[Mark] icon ③[File/Print] icon ④[Parameter] icon ⑤[Image processing] icon ⑥[Sensitivity] icon ⑦[View range] icon ⑧[Relative permittivity] icon ⑨[Display mode] icon ⑩Marker list ⑪Folder ⑫Cursor distance ⑬Sensor unit battery capacity ⑭Cursor depth ⑮Data number ⑯Distance scale ⑰Depth scale ⑱Smartphone battery capacity 36 Table 4-1 Functions of the main screen (1/2) Ref # NameFunction ① [Start] icon Tapping this icon start or stop the scan. ② [Mark] icon By tapping this icon, you can place an antenna mark or a marker on the main screen. For this detail, refer to Section 4.3 [Mark] icon. Also by long tapping this icon you can access to the marker operation screen. For this detail, refer to Section 4.13 Marker operation. ③ [File/Print] icon By tapping this icon, you can save the scan result into a file or to print out the scan result to the external printer. For this detail, refer to Section 4.4 [File/Print] icon. Also by long t apping this icon you can access to the external output setup screen. For this detail, refer to Section 5 External output. ④ [Parameter] icon By tapping this icon, you can set the color and unit displayed on the main screen. For this details, refer to Section 4.5 [Parameter] icon. Also by long tapping this icon, you can access the parameter setup screen. For this details, refer to Section 4.11 Parameter setup. ⑤ [Image Processing] icon Shows the current setting of the image processing. By tapping this icon, you can access the image processing screen. For this detail, refer to Section 4.10 [Image processing] icon. For the the image processing used during the scan, refe r to Section 4.11.4 Device setting: [Image processing] menu. ⑥ [Sensitivity] icon Shows the current setting of the sensitivity. By tapping this icon, you can set the sensitivity. For this detail, refer to 4.9 [Sensitivity] icon. For the sensitivity used during the san, refer to Section 4.11.2 Device setting: [Sensitivity] menu. ⑦ [View range] icon Show the current setting of the view range. By tapping this icon, you can set the view range. For this detail, refer to Section 4.8 [View range] icon. For the view range used during the scan, refer to Section 4.11.3 Device setting: [View range] menu. ⑧ [Relative permittivity] icon Shows the current setting of the relative permittivity. By tapping this icon, you can set the relative permittivity. For this detail, refer to Section 4.7 [Relative permittivity] icon. For the relative permit tivity used during the scan, refer to Section 4.11.1 Device setting: [Relative permittivity] menu. ⑨ [Display mode] icon Shows the current setting of the display mode. By tapping this icon, you can set the display mode. For this detail, refer to Section 4.6 [Display mode] icon. 37 Table 4-1 Functions of Main screen (2/2) Ref # Name Function ⑩ Maker list Shows the coordinate of each registered marker. For this detail, refer to Section 4.3.3 Marker list. ⑪ Folder Shows the current setting of the folder. The file operation (saving and recalling) are performed for the file under the selected folder. For this detail, refer to Section 4.12.3 [Select Folder] menu. ⑫ Cursor distance Shows the distance coordinate of the cursor. ⑬ Sensor unit battery capacity Shows the remained capacity of the sensor unit’s battery roughly. ⑭ Cursor depth Shows the depth coordinate of the cursor. ⑮ Data number Shows the current setting of the data number. The scan result is saved into the file whose name is decided by the data number. For this detail, refer to Section 4.12.4 [Data number setting] menu. ⑯ Distance scale Is the moving distance scale. Antenna markers and the line marker of the image processing are shown on this scale. ⑰ Depth scale Is the depth scale. This scale changes in accordance with the depth calibration (relative permittivity setting). For the depth calibration, refer to Sections 4.7 [Relative permittivity] icon and 4.11.1 Device setting: [Relative permittivity] menu. ⑱ Smartphone battery capacity Shows the remained capacity of Smartphone’s battery roughly. 38 4.2. Cursor and scroll At the idle state (not scanning), by tapping the B mode screen at the desired position, you can show the cursor at the tapped position. The cursor consists of horizontal and vertical lines. The coordinate of the cursor (cross point of the horizontal and vertical lines) is shown at the cursor distance and the cursor depth (Refer to Figure 4-1 ⑫ an d ⑭). By long tapping the B mode screen, you can show the fine tuning arrow on the B mode screen. Then you can move the cursor exactly on the desired position by tapping the arrow (up, down, right, or left). After 3 seconds of no operation to the arrow, the arrow disappears automatically. The B mode screen can be scrolled by sliding the finger toward right or left direction on the B mode screen. 1) Cursor 2) Fine tuning arrow 3) After fine tuning Figure 4-2 Cursor ) ) 39 4.3. [Mark] icon At the idle state (not scanning), by tapping [Mark] icon (refer to Figure 4-1 ②), you can add or delete a marker at the cursor position (cross point of the cursor’s horizontal and vertical lines). Added markers can be grouped into three marker groups. You can register maximum 99 markers in one marker group. For the procedure to set the marker group, refer to Section 4.13.6 [Marker group setting] menu. 4.3.1. Marker addition You can add a marker with the following procedure. (1) Tap a position on the B mode screen nearby the position where you want to place a marker. Then the cursor appears at the tapped position. (2) Long tap B mode screen anywhere to show fine tuning arrow. Then move the cursor at the desired position on the B mode screen by tapping the fine tuning arrow. (3) Tap [Mark] icon. Then…
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120 6. Application 6.1. Relative permittivity setup The relative permittivity setup is made by detecting an embedded steel bar with a known covering depth or the wall with the known width and adjusting the relative permittivity value so as to get the measured depth or width of the object matched with the known value. This section provides the setup procedure using the wall with a known width. (1) Confirm the wall width Confirm the width of the wall by using the scale. Figure 6-1 shows an example of the width 140 mm. Figure 6-1 Confirmation of the wall width 121 (2) Scan the wall Scan the wall with the relative permittivity 8.0 of the sensor unit. For the procedure to set the relative permittivity of the sensor, refer to Section 4.11.1 Device setting: [Relative permittivity] menu) The reflection wave from the opposite side of the wall appears on the main screen as the shape of the horizontal band as shown in Figure 6-2 . Move the horizontal cursor on the edge of the horizontal band. The depth value of the cursor is displayed in the cursor coordinate. (In the example of Figure 6-2, the depth is 127 mm.) Figure 6-2 Scan of the wall The reflection from the wall is shown as a horizontal band. Align the cursor on the reflection from the wall. The depth value of the cursor shows the width of the wall. 122 (3) Show the relative permittivity setup screen. Tap [Relative permittivity] icon to show the relative permittivity setup screen. The current depth of the cursor position is shown in the screen. Figure 6-3 Relative permittivity setup screen Here shows the depth of the current cursor position. ) 123 (4) Set the relative permittivity value. Tap the value of the relative permittivity, then the list of the available values appears. When the cursor depth is wider than the confirmed width of the wall, increase the relative permittivity value. Decrease the value when cursor depth is narrower than the confirmed width. (You can scroll the list upward and downward, and you can select a value in the range from 2.0 to 20.0) Adjust the relative permittivity value so as to get the depth value (measured width of the wall) matched with the known value (the confirmed known width of the wall). Figure 6-4 Relative permittivity setup Set the relative permittivity so as to get the depth value same as the known width of the wall. ) 124 (5) Register the relative permittivity in the device setup screen. Tap [□Applies to the measurement], then confirm a mark 9 is shown in the [□]. With this, the relative permittivity value is registered to [Device setup: Relative permittivity] menu in the parameter setup screen. Then tap [OK] to complete the relative permittivity setup, then the screen returns to the main screen. Figure 6-5 Relative permittivity setup y When tapping [OK] without putting 9 into [□Applies to the measurement], the new relative permittivity is applied only to the scan image displayed currently, but not to the relative permittivity of the device setup which is used in scanning. The next scanning is made by using the original relative permittivity in the [Device setup: Relative permittivity] menu, but not using the new value defined in the procedure above. ) ) Caution 125 6.2. Procedure to mark the rebar This product is equipped with a chalk guide at the front and rear edge of the sensor unit. By using the chalk guide, you can easily mark the rebar position on the concrete during the scan. The marking is made at the position where the fixed cursor position is matched with the rebar position (peak of the inverse U shape shown in the B mode display). This section describes the procedure to mark the rebar on the concrete. 6.2.1. Forward scan marking When scanning forward, the chalk guide at the rear panel is used to mark the rebar position. Move the sensor unit so as for to superpose the rebar position (peak of the inverse U shape shown in the B mode display) on the fixed cursor. Then mark a line on the concrete along the rear chalk guide. Figure 6-6 Forward scan marking Adjust the sensor unit position to superpose the fixed cursor on the rebar position. Make a line along the rear chalk guide. 126 6.2.2. Backward scan marking When scanning backward, the chalk guide at the front panel is used to mark the rebar position. Move the sensor unit so as to superpose the rebar position (peak of the inverse U shape shown in the B mode display) on the fixed cursor. Then mark a line on the concrete along the front chalk guide. Figure 6-7 Backward scan marking y This product supports the back scroll capability. The marking can be made by confirming the rebar position while moving the sensor unit forward and backward. y This product does not have the imitation of the scan distance. Therefore, you can make the marking without considering the distance limitation. The scan data shown on the main screen and saved into the file is maximum 15 m data of the latest scan data from the scan stop point. Make a line along the rear chalk guide. Adjust the sensor unit position to superpose the fixed cursor on the rebar position. Note 127 6.3. AutoMark function AutoMark is the function which automatically analyzes the scan data, detects the position of the embedded object, and adds a marker on each of all detected objects. This function improves the work efficiency of adding markers on the rebar position for the relatively easily analyzable scan data (in which the detected objects has wide pitch and is located at shallow area) at the field. This function is aimed to add markers on the rebar of the upper level, so that this function may not add markers correctly on the cavity position or the lower level rebar. (This function provides good detection performance for the rebar with the cover width (depth) ≤ 100 mm and the rebar pitch ≥ 75 mm). You can use this function with the procedure described below. y AutoMark function provides a guide of detecting the rebar in the scan data. It may cause wrong detection or detection failure of the rebar…
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HX0BD14031(1/1) 6.24.2014 Japan Radio Co., Symptom: Sensor ID does not show up in the sensor select screen of [Sensor select] menu The symptom happens when wireless LAN is not established between Smartphone and the sensor unit. The three possible causes and solutions are listed below. Cause 1: The sensor select screen was selected before establishing wireless LAN communication after turning on. Solution: Wait two or three minutes and see if the sensor ID appears in the sensor select screen. Cause 2: The sensor unit is turned off. Solution: Confirm that the sensor unit’s Power LED turns on in red. If the Power LED turned off, check if the charged battery pack is installed and the sensor unit is switched to N position. in 3 m near by the sensor unit, then check if the sensor ID appears in ensor select screen. tphone and the sensor unit. And please send back Smartphone and e sensor unit to us. O Cause 3: The distance between Smartphone and the sensor unit exceeds 3 m. Solution: Confirm that the distance does not exceed 3 m. If the distance exceeded 3 m, move Smartphone with s If any solutions above did not solve the symptom, it may be caused by the failure of Smartphone or the sensor unit. In this case, please let us know the status, then we will send the substitute of Smar th
Japan Radio Co.,Lad. TOP VIEWBOTTOM VIEW LEFT SIDE VIEWRIGHT SIDE VIEW FRONT VIEWREAR VIEW
NJJ-200 Internal Photo Parts side Solder side Figure 1 Control Circuit Parts side Solder side Figure 2 Antenna Circuit TX Parts side Solder side Figure 3 Antenna Circuit RX Parts side Solder side Figure 4 Control Switch Circuit Front Figure 5 Control Circuit Front Figure 7 Antenna Circuit TX / Antenna Circuit RX Front Figure 8 Control Switch Circuit
FCC ID : CKENJJ-200 Test report No. : 10042776Y-B-R1 Page : 2 of 17 Issued date : January 28, 2014 UL Japan, Inc. Yokowa EMC Lab. 108 Yokowa-cho, Ise-shi, Mie-ken, 516-1106 JAPAN Telephone: +81 596 39 1485 Facsimile: +81 596 39 0232 13-EM-F0429 REVISION HISTORY Original Test Report No.: 10042776Y-B Revision Test report No. Date Page revised Contents - (Original) 10042776Y-B September 24, 2013 - - 1 10042776Y-B-R1 January 28, 2014 All pages - FCC ID : CKENJJ-200 Test report No. : 10042776Y-B-R1 Page : 3 of 17 Issued date : January 28, 2014 UL Japan, Inc. Yokowa EMC Lab. 108 Yokowa-cho, Ise-shi, Mie-ken, 516-1106 JAPAN Telephone: +81 596 39 1485 Facsimile: +81 596 39 0232 13-EM-F0429 CONTENTS PAGE Section 1 : Customer information 4 Section 2 : Equipment under test (E.U.T.) 4 Section 3 : Test specification, procedures and results 5 Section 4 : Operation of E.U.T. during testing 7 Section 5 : UWB bandwidth & Occupied bandwidth (99%) 8 Section 6 : Transmitter Timeout 8 Section 7 : Radiated Emission and Peak level of the Emission 9 Appendix 1 : Data of Radio test 10 UWB bandwidth & Occupied bandwidth (99%) Transmitter Timeout Radiated Emission and Peak level of the Emission Appendix 2 : Test Instruments 15 Appendix 3 : Photographs of test setup 16 FCC ID : CKENJJ-200 Test report No. : 10042776Y-B-R1 Page : 4 of 17 Issued date : January 28, 2014 UL Japan, Inc. Yokowa EMC Lab. 108 Yokowa-cho, Ise-shi, Mie-ken, 516-1106 JAPAN Telephone: +81 596 39 1485 Facsimile: +81 596 39 0232 13-EM-F0429 Section 1 : Customer information Company Name : Japan Radio Co., Ltd. Address : 1-1, Shimorenjaku 5 Chome Mitaka-shi, Tokyo, 181-8510, Japan Telephone Number : +81-422-45-9791 Contact Person : Hiroshi Iida Telephone and Facsimile Number of Contact Person : TEL: +81-422-45-9102 FAX: +81-422-45-9956 Section 2 : Equipment under test (E.U.T.) 2.1 Identification of E.U.T. Type of Equipment : Handy Search Model No. : NJJ-200 Serial No. : CS003 Rating : DC 7.4V (Rating range: 8.4 V to 6 V), 2.75 W Country of Mass-production : Japan Condition of EUT : Engineering prototype (Not for Sale: This sample is equivalent to mass-produced items.) Modification of EUT : No modification by the test lab. Receipt Date of Sample : August 6, 2013 2.2 Product description Model: NJJ-200 (referred to as the EUT in this report) is a Handy Search. Equipment type : Transceiver Frequency of operation : 600 to 3400 MHz Center frequency: 2000MHz (used only 1ch) Clock frequency : 100 MHz (Max) Effective Bandwidth (not 10dB Bandwidth) : 2800 MHz Type of modulation : Pulse Antenna type : λ/2 Dipole antenna Antenna connector type : No connector Antenna gain : -9.23dBi at 600MHz (Lowest of frequency range) -4.47dBi at 2000MHz (Middle of frequency range) 3.09dBi at 3400MHz (Highest of frequency range) Operation temperature range : 0 – 50 deg. C Duty cycle : 0.006 % FCC 15.31 (e) The EUT is only battery operated equipment. EUT was used a new battery during the tests, therefore, the equipment complies power supply regulation. FCC 15.203 The EUT does not have antenna connector. Therefore the equipment complies with the requirement. NJJ-200 does not have data port in the radio terminal. FCC ID : CKENJJ-200 Test report No. : 10042776Y-B-R1 Page : 5 of 17 Issued date : January 28, 2014 UL Japan, Inc. Yokowa EMC Lab. 108 Yokowa-cho, Ise-shi, Mie-ken, 516-1106 JAPAN Telephone: +81 596 39 1485 Facsimile: +81 596 39 0232 13-EM-F0429 Section 3 : Test specification, procedures and results 3.1 Test specification Test Specification : FCC Part 15 Subpart F: 2013, final revised on June 11, 2013 and effective July 11, 2013 Title : Subpart F Ultra-Wideband Operation Section 15.509 Technical requirements for ground penetrating radars and wall imaging systems. 3.2 Procedures & Results This EUT is Ground penetrating radar (GPR) system. (Clause 15.509 of FCC Part 15 Subpart F) Item Test Procedure Specification DeviationWorst Margin Results Conducted Emission ANSI C63.4:2003 FCC 15.505(a) FCC 15.207 N/A *1) N/A N/A UWB Bandwidth ANSI C63.4:2003 FCC 15.503 (a) FCC 15.503 (d) FCC 15.509 (a) N/A - Complied Transmitter Timeout ANSI C63.4:2003 FCC 15.509 (c) N/A - Complied Radiated Emission ANSI C63.4:2003 FCC 15.521 (d) 15.509 (d) (e) FCC 15.209 N/A 13.5dB (1165.50MHz, Horizontal) Complied Peak level of the Emission ANSI C63.4:2003 FCC 15.521 (e) (g) FCC 15.509 (f) N/A 44.8dB (1868.36 MHz, Vertical) Complied *1) The test is not applicable since the EUT does not have AC ports. * These tests were also referred to FCC OET KDB No.393764, "Frequently Asked Questions (FAQ) Regarding Ultra wide Band Compliance Measurements”. Note: UL Japan's EMI Work Procedures No. 13-EM-W0420 3.3 Addition to standard Item Test Procedure Specification Worst Margin Results Occupied Bandwidth (99%) ANSI C63.4:2003 RSS-Gen 4.6.1 RSS-Gen 4.6.1 - N/A * Other than above, no addition, exclusion nor deviation has been made from the standard. FCC ID : CKENJJ-200 Test report No. : 10042776Y-B-R1 Page : 6 of 17 Issued date : January 28, 2014 UL Japan, Inc. Yokowa EMC Lab. 108 Yokowa-cho, Ise-shi, Mie-ken, 516-1106 JAPAN Telephone: +81 596 39 1485 Facsimile: +81 596 39 0232 13-EM-F0429 3.4 Uncertainty The following uncertainties have been calculated to provide a confidence level of 95% using a coverage factor k=2. Bandwidth Measurement uncertainty (with a 95% confidence level) for this test was (±) 9.6 %. Radiated emission test The data listed in this test report has enough margin, more than site margin. 3.5 Test Location UL Japan, Inc. Yokowa EMC Lab. 108 Yokowa-cho, Ise-shi, Mie-ken, 516-1106 JAPAN Telephone : +81 596 39 1485 Facsimile : +81 596 39 0232 FCC Registration Number IC Registration Number Width x Depth x Height (m) Size of reference ground plane (m) / horizontal conducting plane Other rooms No.1 open area test site 90412 2973A-1 - 40 x 18 - No.2 open area test site 90411 2973A-2 - 20 x 18 - No.3 open area test site 90412 2973A-3 - 20 x 18 - No.1 shielded room - - 5.5 x 6.4 x 2.7 5.5 x 6.4 - No.2 s…
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FCC ID : CKENJJ-200 Test report No. : 10042776Y-B-R1 Page : 10 of 17 Issued date : January 28, 2014 UL Japan, Inc. Yokowa EMC Lab. 108 Yokowa-cho, Ise-shi, Mie-ken, 516-1106 JAPAN Telephone: +81 596 39 1485 Facsimile: +81 596 39 0232 13-EM-F0429 Appendix 3: Photographs of test setup Except Transmitter Timeout Below 960 MHz Above 960 MHz FCC ID : CKENJJ-200 Test report No. : 10042776Y-B-R1 Page : 11 of 17 Issued date : January 28, 2014 UL Japan, Inc. Yokowa EMC Lab. 108 Yokowa-cho, Ise-shi, Mie-ken, 516-1106 JAPAN Telephone: +81 596 39 1485 Facsimile: +81 596 39 0232 13-EM-F0429 Transmitter Timeout End of Report
108 Yokowa-cho, Ise-Shi · Mie-Ken · Japan
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15F | 600 MHz - 3.40 GHz | - |

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