
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
ThvTvt TQ%$Y Tr vr Dhyyhv Bvqr Wr v Published August 2004 Part number 805-04001-001 Rev. A Documentation for Savi Signpost SP-65X Series version 1.0 Copyright © 2004 Savi Technology, Inc. All rights reserved. Information in this manual is subject to change without notice and does not represent a commitment from the vendor. The software and/or databases described in this document are furnished under a license agreement or nondisclosure agreement. The software and/or databases may be used or copied only in accordance with the terms of the agreement. It is against the law to copy the software on any medium except as specifically allowed in the license or nondisclosure agreement. Savi, Savi SmartChain, SmartChain, and Batch Collection are registered trademarks, and EchoPoint, Savi GateReader, Savi MobileReader, Savi Retriever, SaviReader, SaviTag, Savi Technology, SmartSeal, UDAP, and Universal Data Appliance Protocol and are trademarks of Savi Technology, Inc. Other product names mentioned in this guide may be trademarks or registered trademarks of their respective owners and are hereby acknowledged. Savi Technology, Inc. 615 Tasman Drive Sunnyvale, CA 94089-1707 Phone: 1-408-743-8000 Facsimile: 1-408-543-8650 www.savi.com ThvTvtTQ%$YTr vrDhyyhvBvqr" 8r 1D qpv Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 Savi Signpost SP-65X Series Description . . . . . . . . . . . . . . . . . . . 8 Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10 Contacting Customer Support . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 2Ch qh rDhyyhv Materials and Equipment . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14 Signpost Connectors and LEDs . . . . . . . . . . . . . . . . . . . . . . . . . . 15 Preparing the Site . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16 Mounting the Savi Signpost SP-65X Series . . . . . . . . . . . . . . . . 17 Mounting the Signpost with Hardware . . . . . . . . . . . . . . . . . . 17 Mounting the Signpost with Mounting Feet . . . . . . . . . . . . . . 18 Installing External Ferrite Antennas . . . . . . . . . . . . . . . . . . . . 20 Connecting Power Cables to Savi Signpost SP-65X Series . . . . 20 Connecting Sync Cables to Savi Signpost SP-65X Series . . . . . . 21 #ThvTvtTQ%$YTr vrDhyyhvBvqr 3Tvt8svt hv Communicating with the Signpost Using RS-232 . . . . . . . . . . . . 23 Adding and Configuring the Signpost in SmartChain Site Manager . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24 Discovering a Signpost . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24 Adding a Signpost Manually Using an Ethernet Connection . . 26 Configuring Operation Settings Using Configuration Software . . 26 Configuring the UHF Reader Module in SmartChain Site Manager . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27 Setting the Host IP Address and Synchronizing Time . . . . . . . 27 Sending UDAP Commands . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28 ThvTvtTQ%$YTr vrDhyyhvBvqr$ Avt r 2-1 Removable link . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 2-2 Attaching chain . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18 2-3 Mounting foot and attachment screw. . . . . . . . . . . . . . . . . . . 19 2-4 Mounting foot attached to signpost . . . . . . . . . . . . . . . . . . . . 19 3Signpost connections with mounting hardware . . . . . . . . . . . 20 3-1 Signpost power connection . . . . . . . . . . . . . . . . . . . . . . . . . . 21 3-1 Signpost RS-232 port . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23 %ThvTvtTQ%$YTr vrDhyyhvBvqr 8C6QU@S ThvTvtTQ%$YTr vrDhyyhvBvqr& D qpv Savi Signpost SP-65X Series are short-range transmitters that provide their identity information to all models of Savi® EchoPoint™ Series tags that are within range. A tag uses this information to relay positional information about itself to all models of Savi EchoPoint Series readers. The reader forwards the collected data to the Savi SmartChain® Site Manager or SmartChain Client Tools host platforms. Savi Signpost SP-65X Series include a number of signpost models with different capabilities and connectivity ranges. This series comprises the basic signpost, signpost with network adapter, and signpost with network adapter, reader, and ultra-high frequency (UHF) antenna. Working with Savi readers, Savi Signpost SP-65X Series provide a complete radio frequency identification (RFID) solution for real-time, end-to-end visibility of goods and critical assets moving through the supply chain. Arh r For specific models: ◆A short-range, low frequency inductive loop field generator triggers a UHF transmission from Savi tags that pass through the field. ◆An optional UHF reader plug-in provides most Savi reader functionality including UHF transmission of wake-up and command signals and reception Savi tags responses. ◆An external ferrite rod antenna allows usage in compact, indoor areas and for special applications. ◆An included network adapter allows the signpost to transmit reader data to a local server, display diagnostics, and perform network maintenance functions, such as firmware downloading. The network adapter is a microprocessor module with RS-232 and Ethernet ports and runs SaviNet, TCP/IP, and UDAP protocols. 8C6QU@S D qpv 'ThvTvtTQ%$YTr vrDhyyhvBvqr ThvTvtTQ%$YTr vr 9rp vv The following components comprise the Savi Signpost SP-65X Series: ◆Controller and network adapter unit ◆Antenna option that consists of: ❖Short-range ferrite rod inside controller unit; 8-foot (2.45 meters) range ❖Mid-range air coil; 10-foot (3.05 meters) range ❖Long-range air coil; 12-…
Text truncated - open the document above for the full version.
Savi Signpost SP-65X Series U.S. Regulatory Approvals Compliance Notice 1 Keep This Document Savi P/N 805-04683-001 (Rev. A) Federal Communications Commission (FCC) Notice The Federal Communications Commission has established technical standards regarding radio frequency energy emitted by computer devices. This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference with radio/TV reception. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. Warning: Changes or modifications to this equipment that are not expressly approved by Savi Technology could void the warranty and the authority to operate this equipment. Savi Technology is not responsible for radio/TV interference caused by using unauthorized cable or by making unauthorized changes to this equipment. Product Safety The Savi Signpost SP-65X Series are ETL listed (UL 1950/UL60950) Copyright © 2005, Savi Technology, Inc. All rights reserved. Published January 2005. Copyright protection claimed includes all forms and matters of copyrightable material and information, now allowed by statutory or judicial law or hereinafter granted. Information in this guide is subject to change without notice and does not represent a commitment from the vendor. Savi is a registered trademark of Savi Technology, Inc. Other product names mentioned in this guide may be trademarks or registered trademarks of their respective owners and are hereby acknowledged. Federal Communications Commission (FCC) Label Statement This device complies with Part 15 of the FCC Rules. Operation is subject to the following conditions: • This device may not cause harmful interference, and • This device must accept any interference received, including interference that may cause undesired operation. The label statement corresponds to the following devices: Savi Technology, Inc. 615 Tasman Drive Sunnyvale, CA 94089-1707 Phone:(408) 743-8000 Fax:(408) 543-8650 E-mail:[email protected] Web site:www.savi.com DeviceModelFCC ID Savi SignpostSP-65X Series (models SP-650-001, SP-650-011, SP-650-101, SP-650-111, SP-650-201, SP-650-211, SP-650-301, SP-650-311, SP-651-001, SP-651-011, SP-651-101, SP-651-111, SP-651-201, SP-651-211, SP-651-301, SP-651-311, SP-652-001, SP-652-011, SP-652-101, SP-652-111, SP-652-201, SP-652-211, SP-652-301, and SP-652-311) KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V1 KL7-65XSP-V2 KL7-65XSP-V2 KL7-65XSP-V2 KL7-65XSP-V2 KL7-65XSP-V2 KL7-65XSP-V2 KL7-65XSP-V2 KL7-65XSP-V2
RE: Savi Technology, Inc. FCC ID: KL7-65XSP-V1 1) Please confirm placement of the label. The location exhibit does not appear to define the placement for the FCC label. According to page 6 of the label location pdf, the label is item #34. the drawing of the location is on page 18 2) The operational description mentions that the 433.92 MHz TX is optional. Please note that a system consisting of just the 123/132 kHz TX alone without the 433.92 MHz TX installed would require a separate FCC ID since the device is not considered to be electronically identical, even though it may be considered a sub-set configuration. Information regarding interpretations regarding similar situations have been provided in a separate email. Please note that this application will only cover the composite application of the 2 (i.e Model 652 series only). Understood, please note the new FCC ID for the combination devices containing a low frequency transmitter and UHF transceiver. The two Form 731 for the composite application have been revised with the new FCC ID. In addition the Industry Canada RSP 100 form has been updated to reflect new test data. It is our understanding that the one Industry Canada Unique Product Number (UPN) will cover all versions of the device. 3) This device appears to contain a dual 433.92 MHz TX’s. Please explain if these may TX at the same time as all testing information implies only one 433.92 MHz appears to be active. The two transmitters cannot operate simultaneously – they operate consecutively. For example, the 5 second wake-up pulse consists of a 2.5 second signal from transmitter #1 followed by a 2.5 second transmission from transmitter #2. 4) The user’s manual does not appear to contain the proper information for 15.105 or 15.21. Please revise. The compliance statement has been uploaded. 5) The duty cycle pulses show a 3.64 ms Hello pulse and 6.56 ms sleep pulse. However, when showing the pulses over 100 ms, the pulses appear to be much larger (about 7 ms for Hello and 10 ms for sleep. Please explain. Plots have been re-taken and uploaded. 6) Section 3.3 of the operational description mentions 30% duty cycle for data signals, but the report page 9 of 84 mentions 10%. Please review. See answer to question 7 below. 7) The test report uses 10% for data pulse duty cycle correction (pages 53 and 57), but the duty cycle plots show a duty cycle of 23.2 msec per 100 ms which would be a 12.7 dB correction factor, not 20 dB. Note that this appears to cause the current results to exceed the limits (page 53 and 57 of 84). The worst-case (highest) duty cycle for pulsed transmissions is 30% and data has been re-taken. The data for both data and control signals has been compared to the 15.231(e) limit, demonstrating compliance with both 15.231(a) limit for control signals and 15.231(e) limit for data signals. The report has been revised and uploaded. 8) Page 53 also appears to show results of the fundamental in excess of the limits specified already on this page. This may be for adjustment of the power level prior to actual test but is not documented. Please review. The initial measurements were made at the highest output setting, prior to configuring the transmitters to transmit at the maximum level permitted by 15.231(e). The test data has been revised to remove these adjustment measurements. 9) From the description on the pages, it appears that 10 meters may have been the test distance and not 3 meters on page 60. Please review as the FCC expects this to be 3 meters. All measurements of the 433 MHz transmitter-related emissions were made at a test distance of 3m. The test report has been amended. 10) Page 10 of 84 only mentions UHF for antenna connection. I believe this section also meant to mention LF as the UHF appear to be SMA connectors. Please review. The first reference to UHF should be LF. The report has been corrected. 11) It appears from notes in the report that ferrites were necessary on certain cables. Please explain how installation of these will be insured. Is the system professionally installed or do the ferrites come preinstalled on certain cables? Does the installer have instructions to properly implement this? The ferrites will be internally mounted, within the enclosure. The label location exhibit contains detailed assembly instructions showing the ferrite and its placement. 12) For the first set of AC line conducted tests, it appears one of the line or neutral plots is missing for 120V/60Hz. The missing graph is for 120V, line. The image was lost when transferring it between EMI receiver and computer. The other plots show there to be no significant differences between the levels of emissions from line and neutral conductors and the tabular data accounts for both lines. 13) Conducted power measurements appear to be provided twice. It is assumed that one may be for Receiver/idle mode and the other for TX. However this does not appear to be clarified with the data. Please review. The first set of data was taken with the LF transmitter operating at 132 kHz, the second set with the transmitter operating at 123 kHz. The test notes at the start of each run identify the operating frequency. 14) Note 3 on page 64 and remaining Note 3’s throughout the report appear incorrect for the 30 meter limit given. Shouldn’t this be 36.4 dBuV @ 490 kHz? Additionally, please note the limit various dependent on measurement frequency as well. The note incorrectly references a measurement distance of 20m. The distance should have been 3m (as used during preliminary testing against the European standard). All note 3’s have been corrected. 15) Page 64 title states 123 kHz, while the measurements appear for 132 kHz. The title has been corrected. 16) Are notes 1 and 2 for the top table still applicable for page 69? No, they only apply to fundamental emission measurements. The test tables have all been updated to better describe the measurements made.
January 26, 2005 RE: Savi Technology, Inc. FCC ID: KL7-65XSP-V2 Tim, In response to your questions: 1) Revised sample labels do not show FCC ID. Please note that sample labels must display the proper FCC ID. Revised and uploaded 2) For the label placement exhibit, please provide only the necessary page(s) to show this. A 22 page documents was provided. Please revise. Revised and uploaded 3) Your response in regards to item 11 mentions that data and control signals were compared to 15.231(e) limits. This does not appear true as it appears data is compared to 15.231(e) and control to 15.231(a). Note the control exceeds the average limits of 15.231(e) and appears to meet only 15.231(a). Please provide further details or explanations as necessary. The response to item (11) in the previous response was related only to the pulsed data/control signals and not to the wake-up signal. The pulsed signals meet the lower field strength limits of 15.231(e). The wake-up signal is a control signal and was measured against the 15.231(a) limits. 4) Are notes 1 and 2 for the top table still applicable for page 51? This configuration appears to be a single antenna large loop configuration. Notes 1 and 2 for the top table on page 51 are not applicable. We’ve removed these references from the report and have uploaded a revised report. Sincerely, Mark Briggs Vice President of Engineering MB/dmg
January 27, 2005 RE: Savi Technology, Inc. FCC ID: KL7-65XSP-V2 Tim, In response to your questions: 1) The labeling exhibit just provided is not high enough resolution to clearly read. Please revise. Revised and uploaded. 2) FYI....Please note that pulsed control signals (hello and sleep) do not meet with the 15.231(e) timing limitation requirements as well and are subject to 15.231(a). Noted. Sincerely, Mark Briggs Vice President of Engineering MB/dmg
FCC ID: KL7-65XSP-V2 The operation under 15.231(a) and 15.231(e) is detailed on pages 3 and 4 of the operational description (which gives approximate timing information) and reflected in the duty cycle plots (providing the actual signal timing) submitted with the application. There are four types of transmissions as follows: z Wake-up control signal to activate tags in the vicinity of the reader. The command is initiated by the end user. This signal has a total duration of 5 seconds (2.5 seconds sequentially from each of the transmitters). This signal marks the start of an acquisition cycle and is followed by the Hello command and then multiple sleep commands. This signal operates under 15.231(a). z Hello control signal to initiate a response from all tags activated by the wake-up command. This signal is a single pulse of 3.6ms duration to meet 15.231(a). The hello signal is initiated by the end user. z Sleep control signal to de-activate a tag that has responded to the Hello control signal. The command is triggered by responses from the tags to the "hello" signal. This signal is a burst of pulses, each pulse has a 6.6ms duration with no more than 3 transmissions per 100ms (duty cycle < 30%). The total duration of the burst is less than 5 seconds to meet 15.231(a). z Data mode signal to send or request data to/from a tag. This (rarely used) command is initiated by the end user. This signal is a single pulse of 23.2ms duration with no more than 1 transmission per 100ms (23% duty cycle) and a total duration of less than 1 second. Note that the test data uses a duty cycle correction factor for a duty cycle of <=30%. Transmissions are limited to a one second burst in any 30 second period to meet 15.231(e). Page 1 of 1Savi KL7-65XSP-V2 6/13/2005Printed for "Timothy R. Johnson" <[email protected]>
From: Rod Thorne, Savi Technology, Inc. To: Joe Dichoso, FCC Equipment Authorization Branch Re:FCC ID: KL7-65XSP-V2 Subject: Correspondence Reference Number: 20996 731 Confirmation Number: TC138909 Date of Original Email: 06/16/2005 Dear Mr. Dichoso, Here are our answers to the questions you provided on 16 June 2005. 1) What is the sequence of transmissions? Is it wake up, hello, data, then sleep? Response: (1.) In the case of the Batch Collection Operation the sequence is: a. Wakeup 2.4 secs duration on Antenna 1 b. Wakeup 2.4 secs duration on Antenna 2 c. Hello 10 msec duration after 90 msec silence on Antenna 2. Total transmission time less than 5.0 seconds then ceases. (2.) The Sleep Operation is a separate activity initiated by a Tag requesting service by sending its ID and being logged in a Service Queue. Once the responses from the Tags have been logged in a Service Queue, the Sign Post Reader is then automatically triggered by the arrival of these Tag IDs to transmit a Sleep packet to each Tag as it appears in the queue. Each transmission to a tag lasts 10 msec. (3.) In the case of a Tag Data Write Operation to the Tag from a Reader the sequence assumes the tag is awake. The Reader sends a Write Data packet to the Tag which acknowledges receipt if present and awake. If not present and awake, the Reader wakes up the desired tag and performs the Write Data operation. In this case, the Tag automatically goes back to sleep 30 seconds after the last activity without any further operation by the Reader. Are the wake up and hello transmissions manually activated individually or are they all activated together? Response: They are activated together. Is the data signal activated by the end user separately activated from the wake up and hello activation or are all three activated? In other words, is the end user pressing a button three times or one time for all three transmissions? Response: As described above in item (3), the Operator makes a single entry of the Tag Data Write command through the keyboard and the Server Software and Reader Firmware perform the required operations automatically. What is the time between each different type of transmission in the sequence? For instance, what is the time between, the wake up signal and the hello signal? Response: 90msec between the end of the Wakeup and the beginning of the 10 msec long Hello signal is used in the Batch Collection Operation. What is the time between the hello signal and the data signal? Ans: the Hello signal is not used for Point-to-Point data transactions. After the control sequence, a data sequence under Section 15.231(e) limits begins to transmit data packets from Reader to Tag for either 330msec followed by 10 seconds of silence or 1,000msec followed by 30 seconds of silence. What is the time between the data signal and the sleep signal? Ans: Ans: A sleep signal is not sent from the Sign Post Reader to the Tag for Point-to-Point transmissions such as data transmission to the tag or a command that the tag send data (other than its ID) to the reader. The tag automatically goes to sleep after 30 seconds. Refer to the summary in item (3) above. There are several types of transactions between Readers and Tags, three of which are summarized above. It is difficult to cover all operational cases by e-mail. More detail and clarity can be provided if desired. Additionally, we enclose a 1992 theory of operation along with a letter from the Technical Standards Branch, stating that the 1992 concept of operations appears to comply with 15.231. This product was tested and a grant issued. Hopefully, this information assists a better understanding of how Savi products operate. Please let us know what additional information you need. Yours truly, Rod Thorne Vice President, Hardware Engineering Savi Technology, Inc.
To: Joe Dichoso [email protected] FCC Equipment Authorization Branch From: Rod Thorne, Savi Technology Re: FCC ID: KL7-65XSP-V2 Applicant: Savi Technology Inc Correspondence Reference Number: 21793 731 Confirmation Number: TC138909 Date of Original Email: 07/21/2005 Subject: FCC Equipment Authorization System Dear Mr. Dichoso: In response to your request, we are pleased to submit as a separate exhibit a set of diagrams as a supplement to the Theory of Operation illustrating the several modes of operation compliant with Sections 15.231(a) and 15.231(e). We respectfully request that these diagrams be treated under our Request for Confidentiality. In addition, we would like to affirm the following operational behavior in compliance with the appropriate sections of the regulation: (1.) The device transmits bursts of commands under 15.231(a) and data transmissions under 15.231(e). (2.) With regard to command transmission bursts under 15.231(a), all command transmissions bursts are less than 5 seconds and are independently triggered. For example, the "wake up / hello" and the "find tag" commands that each total less than 5 seconds are initiated by the user or by an external trigger such as a vehicle proximity sensor, and subsequent tag/write commands that total less than 5 seconds are separately triggered by the random tag responses. The random tag responses cause subsequent command transmissions to occur at random intervals. (3.) With regard to the data transmission bursts under 15.231(e), the entire burst varies from 330 msec to 1000 msec with each burst followed by a silent period from 10 seconds to 30 seconds as appropriate. The silent period is 30 times the duration but is never less than 10 seconds. In no case does another transmission, either another data transmission or a command transmission, occur during the silent period. We trust that this information will clarify the issues under discussion. Please do not hesitate to contact me if any additional questions arise. Yours truly, Rod Thorne VP, Hardware Engineering Savi Technology
C O D E S C A L E : N / A D R A W I N G N o : S H E E T 2 O F 3 R E V : F I L E N A M E : E P S P 7 3 5 - 0 4 3 2 3 - T A B S I Z E A 0 9 F I L E N A M E : 7 3 5 0 4 3 2 3 _ 0 9 . T C W F C C I D : KL7-65XSP-V2 - 0 0 1 & - 0 0 6 3 . 0 0 0 T h i s d e v i c e c o m p l i e s w i t h P a r t 1 5 o f t h e F C C r u l e s . O p e r a t i o n i s s u b j e c t t o t h e f o l l o w i n g t w o c o n d i t i o n s : ( 1 ) t h i s d e v i c e m a y n o t c a u s e h a r m f u l i n t e r f e r e n c e , a n d ( 2 ) t h i s d e v i c e m u s t a c c e p t a n y i n t e r f e r e n c e r e c e i v e d , i n c l u d i n g i n t e r f e r e n c e t h a t m a y c a u s e u n d e s i r e d o p e r a t i o n . This Class A digital apparatus complies with Canadian ICES-003. Cet appareil numérique de la classes A est conforme à la norme NMB-003 du Canada. I C : 2 4 0 4 A - 6 5 0 S P S E E C O N F I G U R A T I O N T A B L E 1 . 5 0 0 I n f o r m a t i o n T e c h n o l o g y E q u i p m e n t 9 8 0 0 5 4 0 0 8 8 9 S a v i T e c h n o l o g y , S u n n y v a l e C A 9 4 0 8 9 1 0 0 - 2 4 0 V A C , 5 0 - 6 0 H z , 0 . 3 A 1 2 . 8 - 3 0 V D C , 1 . 2 A N E M A 4 , I P 6 6 L I S T E D R U S C S E E C O N F I G U R A T I O N T A B L E T h i s d e v i c e c o m p l i e s w i t h P a r t 1 5 o f t h e F C C r u l e s . O p e r a t i o n i s s u b j e c t t o t h e f o l l o w i n g t w o c o n d i t i o n s : ( 1 ) t h i s d e v i c e m a y n o t c a u s e h a r m f u l i n t e r f e r e n c e , a n d ( 2 ) t h i s d e v i c e m u s t a c c e p t a n y i n t e r f e r e n c e r e c e i v e d , i n c l u d i n g i n t e r f e r e n c e t h a t m a y c a u s e u n d e s i r e d o p e r a t i o n . F C C I D : KL7-65XSP-V2 1 . 3 0 0 3 . 0 0 0 - 0 0 2 & - 0 0 7 S a v i T e c h n o l o g y , S u n n y v a l e C A 9 4 0 8 9 1 0 0 - 2 4 0 V A C , 5 0 - 6 0 H z , 0 . 3 A 1 2 . 8 - 3 0 V D C , 1 . 2 A N E M A 4 , I P 6 6 L I S T E D R U S C I n f o r m a t i o n T e c h n o l o g y E q u i p m e n t 9 8 0 0 5 4 0 - 0 0 3 & - 0 0 8 F C C I D : KL7-65XSP-V2 3 . 0 0 0 T h i s d e v i c e c o m p l i e s w i t h P a r t 1 5 o f t h e F C C r u l e s . O p e r a t i o n i s s u b j e c t t o t h e f o l l o w i n g t w o c o n d i t i o n s : ( 1 ) t h i s d e v i c e m a y n o t c a u s e h a r m f u l i n t e r f e r e n c e , a n d ( 2 ) t h i s d e v i c e m u s t a c c e p t a n y i n t e r f e r e n c e r e c e i v e d , i n c l u d i n g i n t e r f e r e n c e t h a t m a y c a u s e u n d e s i r e d o p e r a t i o n . This Class A digital apparatus complies with Canadian ICES-003. Cet appareil numérique de la classes A est conforme à la norme NMB-003 du Canada. I C : 2 4 0 4 A - 6 5 0 S P S E E C O N F I G U R A T I O N T A B L E 1 . 5 0 0 I n f o r m a t i o n T e c h n o l o g y E q u i p m e n t 0 8 8 9 S a v i T e c h n o l o g y , S u n n y v a l e C A 9 4 0 8 9 1 0 0 - 2 4 0 V A C , 5 0 - 6 0 H z , 0 . 3 A 1 2 . 8 - 3 0 V D C , 1 . 2 A N E M A 4 , I P 6 6 L I S T E D R U S C 9 8 0 0 5 4 0 I C : 2 4 0 4 A - 6 5 0 S P N E M A 4 , I P 6 6 F C C I D : KL7-65XSP-V2 3 . 0 0 0 T h i s d e v i c e c o m p l i e s w i t h P a r t 1 5 o f t h e F C C r u l e s . O p e r a t i o n i s s u b j e c t t o t h e f o l l o w i n g t w o c o n d i t i o n s : ( 1 ) t h i s d e v i c e m a y n o t c a u s e h a r m f u l i n t e r f e r e n c e , a n d ( 2 ) t h i s d e v i c e m u s t a c c e p t a n y i n t e r f e r e n c e r e c e i v e d , i n c l u d i n g i n t e r f e r e n c e t h a t m a y c a u s e u n d e s i r e d o p e r a t i o n . I n f o r m a t i o n T e c h n o l o g y E q u i p m e n t S E E C O N F I G U R A T I O N T A B L E 1 . 5 0 0 S a v i T e c h n o l o g y , S u n n y v a l e C A 9 4 0 8 9 1 0 0 - 2 4 0 V A C , 5 0 - 6 0 H z , 0 . 3 A 1 2 . 8 - 3 0 V D C , 1 . 2 A L I S T E D R U S C 9 8 0 0 5 4 0 - 0 0 4 & - 0 0 9 This Class A digital apparatus complies with Canadian ICES-003. Cet appareil numérique de la classes A est conforme à la norme NMB-003 du Canada. C O D E S C A L E : N / A D R A W I N G N o : S H E E T 3 O F 3 R E V : F I L E N A M E : E P S P 7 3 5 - 0 4 3 2 3 - T A B S I Z E A 0 9 F I L E N A M E : 7 3 5 0 4 3 2 3 _ 0 9 . T C W T A B T E X T M O D E L N O . T A B L E 1 2 3 K H z T A B T E X T M O D E L N O . T A B L E 1 3 2 K H z T A B - 0 0 1 t h r u - 0 0 5 C O N F I G U R A T I O N T A B L E F C C I D : K L 7 - 6 5 X S P - V 1 T E X T S P - 6 5 0 - 1 1 1 S P - 6 5 0 - 2 1 1 S P - 6 5 0 - 3 1 1 - 0 0 5 S P - 6 5 0 - 0 1 1 - 0 0 5 - 0 0 5 - 0 0 5 S P - 6 5 1 - 2 1 1 S P - 6 5 1 - 3 1 1 S P - 6 5 1 - 0 1 1 - 0 0 5 - 0 0 5 - 0 0 5 - 0 0 5 - 0 1 0 - 0 1 0 S P - 6 5 2 - 2 1 1 S P - 6 5 2 - 0 1 1 S P - 6 5 1 - 1 1 1 S P - 6 5 2 - 1 1 1 - 0 1 0 S P - 6 5 2 - 3 1 1 - 0 1 0 3 . 0 0 0 T h i s d e v i c e c o m p l i e s w i t h P a r t 1 5 o f t h e F C C r u l e s . O p e r a t i o n i s s u b j e c t t o t h e f o l l o w i n g t w o c o n d i t i o n s : ( 1 ) t h i s d e v i c e m a y n o t c a u s e h a r m f u l i n t e r f e r e n c e , a n d ( 2 ) t h i s d e v i c e m u s t a c c e p t a n y i n t e r f e r e n c e r e c e i v e d , i n c l u d i n g i n t e r f e r e n c e t h a t m a y c a u s e u n d e s i r e d o p e r a t i o n . This Class A digital apparatus complies with Canadian ICES-003. Cet appareil numérique de la classes A est …
Text truncated - open the document above for the full version.
684 West Maude Ave. · Sunnyvale, California · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15.231(e) | 433.92 MHz - 433.92 MHz | - |

RFID Reader
Equipment Class
DSR - Part 15 Remote Control/Security Device Transceiver
RFID TAG
Equipment Class
DXT - Part 15 Low Power Transceiver, Rx Verified
RFID Tag
Equipment Class
DXT - Part 15 Low Power Transceiver, Rx Verified
RFID Tag
Equipment Class
DSR - Part 15 Remote Control/Security Device Transceiver
Active RF ID Tag
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter