
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
- 1 - HAC-LN96 Low Power Radio Data Module I. Features of HAC-LN96 Low Power Radio Data Module 1. Low power transmission with the transmission power of 800mW 2. ISM frequency band, requiring no application of frequency point. Carrier frequency of 902~910MHz. 3. High anti-interference and low BER(Bit error Rate) Based on the FSK modulation mode, the high-efficiency forward error correction channel encoding technology is used to enhance data’s resistance to both burst interference and random interference and the actual bit error rate of 10 -5 ~ 10 -6 can be achieved when channel bit error rate is 10 -2 . 4. Long transmission distance Within the range of visibility, the reliable transmission distance is >1500m when the height is greater than 2m (BER=10 -3 /9600bps). Within the range of visibility, the reliable transmission distance is >2500m when the height is greater than 2m (BER=10 -3 /1200bps). 5. Transparent data transmission Transparent data interface is offered to suit any standard or nonstandard user protocol. Any false data generated in the air can be filtrated automatically (What has been received is exactly what has been transmitted). 6. Channel allocation and frequency: This module has 64 channels which are tagged through 0 to 63, channel alternation is 115.2KHz, initial channel 0 has the frequency of 902.3324MHz and the ending channel is working at 909.5900MHz. 7.Dual serial port, 3 interface modes HAC-LN96 provides 2 serial ports and 3 interfaces, with COM1 as the TTL level UART interface and COM2 as user defined standard RS-232/RS-485 interface (user only needs to plug/pull 1 bit short circuiter and energize it to make the definition). 8.Large data buffer zone Interface baud rate is 9600bps with format of 8N1/8E1 and user self-definition, allowing the transmission of long data frames at one time for more flexible programming by users. (If the user needs, it can also transmit the data in unlimited length at one time). 9.Intelligent data control and the user doesn’t need to prepare excessive programs Even for semi duplex communication, the user doesn’t need to prepare excessive programs, only receiving/transmitting the data from the interface. HAC-LN96 will automatically complete the other operations, such as transmission/receiving conversion in the air, control, etc. 10.Low power consumption and sleeping function Power Supply: 7.2VDC, Maximum Current: 500mA. Maximum Transmission Power: 800mW. Receiving Current: 50mA. 11.High reliability, small and light Single chip radio-frequency integrated circuit and single chip MCU are used for lessened peripheral circuits, high reliability, and low failure rate. - 2 - II. Application of HAC-LN96 Series low power Radio data module HAC-LN96 series low power radio data module is suitable for: Wireless meter reading Industrial remote control and remote test Automatic data collecting system Building automation, safety and security, powerhouse equipment wireless monitor, entrance control system POS system, wireless keyboard, mouse III. How to use HAC-LN96 series low power radio data module HAC-LN96 series low power radio data module provides three interface modes including standard RS-232, RS-485 and UART/TTL levels allowing direct connection with computer, user’s RS-485 device, monolithic processor and other UART components for application. The schematic circuit of HAC-LN96 is shown below: 1. Power supply HAC-LN96 uses DC power supply with voltage of 7.2V. Under working condition, transmission current is ≤500mA, receiving current is ≤ 50mA . 2. Definition of HAC-LN96 connecting terminal HAC-LN96 can supply one 9-pin connector (JP1), and its definitions as well as connection method for terminals are shown in Table 1. Table 1: Definition of connecting pins and connection method Pin No Pin Name Description Level Connected to the terminal Remarks 1 GND Grounding of power supply Grounding of power supply JP1/Pin1 2 Vcc Power supply DC 7.2V JP1/Pin2 3 RxD/TTL Serial data receiving end TTL TxD 4 TxD/TTL Serial data transmitting end TTL Rxd COM1 5 SGND Grounding of the signal 6 A(TxD) A of RS-485 or TxD of RS-232 A(RxD) 7 B(RxD) B of RS-485 or RxD of RS-232 B(TxD) COM2 See Page 3,4 8 SLEEP Sleep control (input) TTL Sleep signal Low efficiency t>15ms 9 RESET Reset (input) TTL Reset signal Negative impulse reset - 3 - 3. Sketch map of connection between HAC-LN96 and terminal equipment (see below) 4. Setting of channel, interface and data format: Before using HAC-LN96, the user needs to make simple configuration based on its own needs to determine the channel, interface mode and data format. There is one group of 5-bit short-circuit jumper wire (JP2) on the upper right corner of HAC-LN96, defined as ABCDE respectively. Assuming the open circuit of jumper wire (without short circuiter) is mode 1 and short circuit of jumper wire (with short circuiter) is mode 0, then the configuration is as follows: a. Channel configuration: Channel configuration is done through single byte command plus swap enabling signal. Detail is as following: Pin8 of JP1 is defined as CH_EN for swap enabling, it is used as an input signal to the wireless module and it usually is connected to one of the output ports on customer’s MCU. When this pin is set to 1, the wireless module will be transmitting data normally. On the other hand, when this pin is set to 0, then the module is waiting to be configured by the 1 byte channel command – which is the channel ID. As a confirmation, the wireless module will return the configured 1 byte channel ID within 2ms after it received the channel command. By resetting CH_EN to 1 the wireless module will exit from the configuration mode. The configuration timing sequence is as following: In Which:CH_EN is an input signal to the wireless module。 RxD is an input signal to the wireless module。 TxDis an output signal to the wireless module。 - 4 - b. Selection of interface mode: HAC-LN96 provides 2 serial ports. COM1 (Pin3 and Pin4 of JP1) is fixed as UAR…
Text truncated - open the document above for the full version.
CONFIDENTIALITY FORM Date: April 5, 2005 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Gentlemen: This letter is to comply with Section 0.457(d)(2)(i) pertaining to confidential material. Spatial Net, Inc. would like the following documents regarding this submission for FCC ID: S58-HACLN96K02G to be kept confidential. 1. Schematic 2. Block Diagram 3. Operational Description 4. Parts List The above material contains trade secrets or technical data, which would customarily be guarded from competitors. We do not want these documents to be accessible to the general public. Sincerely, Fred Lei / R&D Manager
Applicant: Spatial Net, Inc. FCC ID: S58-HACLN96K02G EUT top view EUT bottom view TLB-915-1200 Antenna TLB-915-2.5J Antenna
Applicant: Spatial Net, Inc. FCC ID: S58-HACLN96K02G FCC rules require the Original Equipment Manufacturer using the RF Module to place an appropriate label on the outside of the finished equipment. The label must be clearly visible and include the information shown below. 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. The Label must not be a stick-on paper label. 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 ID Label Location Contains Transmitter Module FCC ID: S58-HACLN96K02G WARNING: This device complies with Part 15 of the FCC Rules. Its operation is subject to the following conditions: (1) This device may not cause harmful interference. (2) This device must accept any received interference including interference that may cause undesired operation.
Applicant: Spatial Net, Inc. FCC ID: S58-HACLN96K02G EUT inside whole view Main & RF board component side Main & RF board solder side
The test report consists 45 pages in total. It may be duplicated completely for legal use with the allowance of the applicant. It shall not be reproduced except in full, without the written approval of Ke Mei Ou Laboratory Corporation. The test result in the report only applied to the tested sample. FCC TEST REPORT Under FCC 15 Subpart C, Paragraph 15.247: 2003 Frequency Hopping Spread Spectrum (FHSS) Operating in 902 - 928 MHz Band Prepared For : Spatial Net, Inc. 3322 South Memorial Pkwy Ste 421, Huntsville, AL 35801 March 12, 2005 FCC ID: S58-HACLN96K02G EUT: GIS/GPS Tracking Device Model: HAC-LN96K02G Report Type: Original Report Test Engineer: Peter Lin Test Date: January 3, 2005 Review By: Apollo Liu / Manager FEDERAL COMMUNICATIONS COMMISSION Registration Number: 125782 INDUSTRY CANADA Registration Number: IC4986 Ke Mei Ou Laboratory Co., Ltd. 7A, Jiaxiangge, Jiahuixincheng, No.3027, Shennan Rd., Futian, Shenzhen, Guangdong, P.R.China. Zip Code: 518033 Tel: + 86 755 83642690 Fax: + 86 755 83297077 www.kmolab.com Spatial Net, Inc. FCC ID: S58-HACLN96K02G KMO FCC ID Report Report #: KSZ2004120801J Page 2 of 45 TABLE OF CONTENTS 1. General Information....................................................................................................................................................3 1. 1 Notes......................................................................................................................................................................3 1. 2 Testing Laboratory..................................................................................................................................................3 1. 3 Details of Applicant................................................................................................................................................3 1. 4 Application Details..................................................................................................................................................3 1. 5 Test Item.................................................................................................................................................................3 1. 6 Test Standards.........................................................................................................................................................3 2. Technical Test...............................................................................................................................................................4 2. 1 Summary of Test Results.........................................................................................................................................4 2. 2 Antenna Requirement..............................................................................................................................................4 3. EUT Modifications.......................................................................................................................................................4 4. Conducted Power Line Test.........................................................................................................................................5 4. 1 Test Equipment.......................................................................................................................................................5 4. 2 Test Procedure........................................................................................................................................................5 4. 3 Test Setup...............................................................................................................................................................5 4. 4 Configuration of the EUT........................................................................................................................................6 4. 5 EUT Operating Condition........................................................................................................................................7 4. 6 Conducted Power Line Emission Limits..................................................................................................................7 4. 7 Conducted Power Line Test Result...........................................................................................................................8 5. Provisions for Frequency Hopping Systems..............................................................................................................10 5. 1 Test Equipment.....................................................................................................................................................10 5. 2 Test Procedure......................................................................................................................................................10 5. 3 Test Setup.............................................................................................................................................................10 5. 4 Configuration of the EUT......................................................................................................................................11 5. 5 EUT Operating Condition......................................................................................................................................11 5. 6 Limit....................................................................................................................................................................11 5. 7 Test Result............................................................................................................................................................11 6. Peak Output Power & Equivalent Isotropic Radiated Power (EIRP).......................................................................19 6. 1 Test Equipment.............................................................................................…
Text truncated - open the document above for the full version.
Applicant: Spatial Net, Inc. FCC ID: S58-HACLN96K02G Conducted emission test view Radiated emission test view – EUT with TLB-915-1200 Antenna Radiated emission test view – EUT with TLB-915-2.5J Antenna
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.3324 MHz - 909.59 MHz | 730.00 mW |