FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Data Critical Corporation/
  3. BQI02DR-10110

BQI02DR-10110WMTS OPENNET LAN

Data Critical Corporation
WMTS OPENNET LAN - FCC ID BQI02DR-10110 - Data Critical Corporation
Click to zoom

Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Mar 23, 2003
Application Purpose
Original Equipment
Date of Application
Mar 23, 2003
Equipment Note
WMTS OPENNET LAN
Frequency Range
1427.40000000 - 1429.10000000
Company
Data Critical Corporation
Country
United States

Documents & Files

Select a file to view

Users Manual

↗
↗
↗

Attestation Statements

↗

Cover Letter(s)

↗
↗

External Photos

↗

ID Label/Location Info

↗

Internal Photos

↗
↗

Operational Description

↗

RF Exposure Info

↗

Test Report

↗

Test Setup Photos

↗

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

WMTS OPENNET LAN PROGRAMMING AND DIAGNOSTICS PatientNet Administrator’s Guide, v1.04, 10001003-004, Revision B 101 All information contained herein is subject to the rights and restrictions on the title page. WMTS OPENNET LAN PROGRAMMING AND DIAGNOSTICS Note:The information in this section is only applicable for Wireless Medical Telemetry Service (WMTS) version of PatientNet. About this Section This section includes instructions for the following tasks: •defining the Device Master (page 103) •viewing OpenNet diagnostics (page 116) •configuring the OpenNet LAN (page 104) •setting Access Point parameters (page 106) •assigning transceivers (page 135) Accessing the OpenNet LAN screen To access the OpenNet LAN screen: 1. Access the Service Screen (page 63). 2. Click the Service button on the System Setup screen. 3. Click the OpenNet button on the Service screen to open the OpenNet LAN screen. If the OpenNet LAN is not enabled on your system, then the OpenNet Status screen (page 136) will display instead of the OpenNet LAN screen. Fig. 60. OpenNet LAN Screen 4. Click the Exit button to close the OpenNet LAN screen and return to the Service screen. WMTS OPENNET LAN PROGRAMMING AND DIAGNOSTICS 102 PatientNet Administrator’s Guide, v1.04, 10001003-004, Revision B All information contained herein is subject to the rights and restrictions on the title page. Description of Buttons and Functions The following section describes the buttons and functions of the OpenNet LAN Screen. Subsequent sections will discuss each function in detail. ButtonFunction MasterDesignates the system as the Device Master, which controls the user defined parameters on systems throughout the OpenNet LAN (page 103). DiagnosticsDisplays the OpenNet Diagnostics screen (page 116). SystemDisplays the OpenNet System Configuration screen (page 104). Assign TXDisplays the Assign Transceiver screen. (page 135) Program ATDisplays the Ambulatory Transceiver (AT), programming screen. (page 123). See the Programming Transceivers (page 122) section for details. Program ITDisplays the Instrument Transceiver (IT), programming screen. (page 129). See Programming Transceivers (page 122) for details. Print DMPrints the Device Master report, which displays the global, as well as indi- vidual, parameters for each Access Point. LANDisplays the OpenNet LAN Configuration screen, which is allows you to set the OP Band, Ext Sync, and update Access Points (page 104). • This button is only available on the Device Master system. Access PointDisplays the Access Point Settings screen, which allows you to configure the Access Point settings (page 106). • This button is only available on the Device Master system. RF ModuleDisplays the RF Module screen, which allows you to configure the RF Mod- ule settings (page 111). • This button is only available on the Device Master system. WMTS OPENNET LAN PROGRAMMING AND DIAGNOSTICS PatientNet Administrator’s Guide, v1.04, 10001003-004, Revision B 103 All information contained herein is subject to the rights and restrictions on the title page. Designating a Device Master The Device Master is the system on the OpenNet LAN that controls the user defined parameters. To designate the system as the Device Master: 1. Click the Master button to toggle between Enabled and Disabled (see fig. 60 on page 101). •Selecting Enabled defines the system as the Device Master. Note:Only one Device Master is allowed on the network at one time. To enable a new Device Master, you must first disable the original Device Master, then enable the new Device Master. •Selecting Disabled defines the system as not being the Device Master. 2. Click the Exit button to close the OpenNet LAN screen and return to the Service screen. Printing the Device Master Report The Device Master Report displays the global, as well as individual, parameters for each Access Point. To print the Device Master Report: 1. Click the Print DM button on the OpenNet LAN screen to print the Device Master Report. 2. Click the Exit button to close the OpenNet LAN screen and return to the Service screen. WMTS OPENNET LAN PROGRAMMING AND DIAGNOSTICS 104 PatientNet Administrator’s Guide, v1.04, 10001003-004, Revision B All information contained herein is subject to the rights and restrictions on the title page. Configuring the Device Master You can configure global parameters for the Device Master in the OpenNet LAN Con- figuration screen. To configure the OpenNet LAN parameters: Note:In order to view the LAN button, the Central Station must be designated as the device master (see “Designating a Device Master” on page 103). 1. Click the LAN button to open the OpenNet LAN Configuration screen (fig. 61). Fig. 61. OpenNet LAN Configuration Screen 2. Click the Ext Sync button to toggle the Access Point synchronization source between Yes and No. •Selecting Yes will designate an external source for providing the synchroni- zation of each Access Point. •Selecting No will designate a single Access Point the task of providing its own synchronization. Note:You can only set the Ext Sync to No for a single Access Point system. WMTS OPENNET LAN PROGRAMMING AND DIAGNOSTICS PatientNet Administrator’s Guide, v1.04, 10001003-004, Revision B 105 All information contained herein is subject to the rights and restrictions on the title page. 3. Click the OP Band button to set the operating band that will be used by the Access Point. •Typically, the 608.5-613.0 OP Band is selected. However, where the Patient- Net System operates in the same hospital as another system (or systems) that also use(s) the 608-614 MHz WMTS band, it will be necessary to select one of the sub-bands. The sub-band should coordinate with the hospital’s spec- trum policy. •Additional sub-bands include: 608.5-609.7, 609.6-610.8, 610.7-611.9, and 611.8-613.0 WARNING: All transceivers must be programmed to the same OP Band as the Access Points. This is an administrative procedure only. Do not attempt to program the transceivers with t…

Text truncated - open the document above for the full version.

Users Manual

WMTS TRANSCEIVERS PatientNet Operator’s Manual, v1.04, 10001001-003, Revision B 183 All information contained herein is subject to the rights and restrictions on the title page. WMTS TRANSCEIVERS Note:The information in this section is only applicable for Wireless Medical Telemetry Service (WMTS). About Transceivers Wireless Medical Telemetry Services (WMTS) Remote Transceivers provide the link between the patient and the Central Station through the newly approved 608 - 614 MHz Medical Telemetry frequency band. The ambulatory and bedside device trans- ceivers communicate data to the Central Station through the Access Point transceiver. In addition, the transceivers are capable of receiving control commands for self-use or connection transfer. The PatientNet ambulatory transceiver is the DT-4500. This transceiver is worn by the patient and usually carried in a gown pocket or pouch, and used with a 3, 4, or 5-wire leadset connected to the electrodes on the patient. The DT-4500 is IPX7 compliant, so it can be submerged in 1m of water for up to 30 minutes. The DT-7000 and DT-7001 are the PatientNet bedside-device transceivers and are physically connected to bedside monitors (other manufacturers’ bedside monitors and NPB 7200 series ventilator). The DR-10000 Access Point transceiver collects data from the ambulatory and bed- side transceivers, sends that data to the Central Station, and transmits control data to the transceiver devices. WARNING: Remove transceivers from patients before MRI and CAT scan procedures, and store the transceivers outside the room where such equipment is located. Close proximity to MRI or CAT scan equipment may result in damage to transceivers. Programming Transceivers Before a transceiver can be used with the PatientNet System, it must first be pro- grammed with a Network Number and Monitor I.D. number to match the correspond- ing Central Station. Consult your facility’s system administrator to perform these functions. WARNING: When programming the DT-4500 through the External Serial Device (I/O) con- nector, it must be disconnected from the patient. The accessory connector shall be kept covered when not in use with the supplied protective cover. Failure to follow these instructions could lead to excessive voltages and cur- rents being applied to the patient, resulting in cardiac arrest. The corresponding Central Station must also be programmed to this Network Number and Monitor Identification number. If you have any questions about the programming status, contact your system adminis- trator. WMTS TRANSCEIVERS 184 PatientNet Operator’s Manual, v1.04, 10001001-003, Revision B All information contained herein is subject to the rights and restrictions on the title page. Displaying Transceiver Status You can view transceiver status on the Central Station, but not on the PatientNet Viewers (also known as the IRVS and RVS). 1. Press System on the Main screen. 2. Press OpenNet button on the Passcode screen to display the OpenNet Status screen (fig. 90). Fig. 90. OpenNet Status screen Your System Administrator enables or disables the Assign TX, Program AT, and Program IT buttons. Check with your System Administrator for more information. The columns in the OpenNet Status screen are described below. Ch channel number Module ID Transceiver ID that the channel is currently set to Device ID Device ID of the transceiver from which the channel receives data Batt battery voltage of the ambulatory transceiver LL left leg electrode impedance value RA right arm electrode impedance value LA left arm electrode impedance Va chest electrode impedance value Vb, Vc miscellaneous electrode impedance value Freq Resp frequency response programmed into each transceiver Link link between the transceiver and the Central Station: OK: the Central Station is receiving data from the transceiver OFF: the Central Station is not receiving data Device Type transceiver or bedside monitor associated with the channel Version TX the download firmware version currently in the transceiver Version RX the RF Module firmware version currently in the transceiver Ch channel number WMTS TRANSCEIVERS PatientNet Operator’s Manual, v1.04, 10001001-003, Revision B 185 All information contained herein is subject to the rights and restrictions on the title page. Impedance Values The DT-4500 Ambulatory Transceivers electrode impedance values, which are displayed on the OpenNet Transceiver Status screen, indicate the quality of the signal connection and are not the actual impedance values that are measured by the system. The electrode impedance values range from 100 to 200 (optimal). The typical values range between 180 and 200. If the electrode’s impedance value is greater than the defined Quality Threshold value, then its LED is illuminated. The DT-4500 stores the Quality Threshold value and uses this value to determine whether or not the electrode LED should be illuminated when the Attendant Present buttons are pressed. See Figure 91 on page 190 for details on the DT-4500 Buttons and LED indicators. Note:A Lead Off alarm will occur when an electrode’s impedance value drops to 150 (150 is the default Loose Lead Threshold value). User Warnings, Cautions, and Notes Before operating the WMTS transceivers, read and follow all warnings and cautions presented in this section. Warnings 1. Do not use the output of the DT-4500 as a synchronization source for car- diac defibrillation. Delays in presentation of the R-Wave may be as much as 40 milliseconds. 2. Do not monitor pacer patients with a 3 wire leadset when reliable pacer detection is required. Pacer pulse detection can be erratic when only a single vector is monitored. Always use a 5 wire leadset when reliable pacer detection is required. 3. The DT-4500 is a type BF patient applied device. It is not suitable for direct cardiac application, for use in the operating room, or during car- diac surgery. Use in these environments could cause hazardous voltages and currents bein…

Text truncated - open the document above for the full version.

Users Manual

FCC ID: BQI02DR-10110

Attestation Statements

FCC ID: BQI02DR-10110

Cover Letter(s)

FCC ID: BQI02DR-10110

Cover Letter(s)

Response for Request for information for Re: FCC ID: QLBPTSS2003 Applicant: Cirronet Correspondence Reference Number: N/A 731 Confirmation Number: N/A 1) You state that there is no tune up procedure except for establishing the center frequencies. How is the power out of the device set at the time of manufacture so as not to exceed the limits as reported in the application? The RF transmitter chain in the DR-10110 submission has been designed to produce a maximum power of 24 dBm or 250 mW. The unit sent to US-Tech for certification had the same peak output power. Measured field strength data for that unit shows our emissions are far below the allowed 740mV/m limit. 2) Please provide the parts list as required by 2.1033. This has been uploaded. 3) A note on the external photos states that you do not use the two antenna terminals on the back right of the unit. However, the schematics are not clear as to which antenna terminals are selected (i.e. which jumpers are used in this device). Also, the manual indicates that selection is possible between antenna sets A and B. This appears to be selecting the four possible antenna connectors. Please clarify which jumpers on the schematics are used and which are not. Please clarify what the designations in the manual mean in relation to actual selectable antennae. Also, please explain how the two unused antenna connectors are prevented from use at the time of manufacture. Alternately, please show photos of this device without the unused connectors. Some background about this product first. This device can contain two different radios. In December of 2002, we submitted and received certification of this device with a 608-614 MHz radio inside (FCC ID: BQI02DR-10100). When in this configuration, the device only uses the two antenna ports on the right side of the photo. These ports are clearly labeled as 608 MHz. This submission uses the same product but with a different WMTS radio operating over the 1395-1432.5 MHz band. When in this configuration, the device uses only the two antenna ports used on the left side of the photo and labeled as 1400 MHz. In either case, this product only has one or the other radio inside - never both. Therefore only two of the antenna jacks are usable at any time. To state again, only the two antenna jacks shown on the left-most side of the unit in photo 2 of the EUT are used in this submission. Two RF ports, labeled 1 and 2, are provided for diversity purposes - i.e. the radio inside the unit can select either port 1 or 2 to transmit or receive with. These two ports are clearly labeled underneath showing operation at 1400 MHz. The other two ports, labeled not used in this device are not connected to any radiating device and are attached only for manufacturing convenience. 4) Please note that there appears to be a shielded section on the top of the transceiver board. Please remove this shield and provide photos of the circuitry underneath. Alternately, if this is not a shield, please explain what it is. This has been uploaded 5) Please note that the data in the fundamental field strength table on page does not match your sample calculation. Please note that the calculated field strength would seem to be antilog(-0.2+107+29.4)/20=antilog(106.8+29.4)=antilog(136.4/20)=6.6V. Please also note that the cable and antenna factors in the first table do not match those in the other tables. Please provide your cable and antenna factors so a correct evaluation of the correct field strengths can be made. Alternately, please correct your report to provide accurate measurement data for the fundamental field strengths of the EUT. A corrected Test report has been uploaded 6) Please define what your ‘slow’ hopping statement means more clearly. You state the device is a Frequency Hopping Spread Spectrum type” transmitter. What does this mean? Is it a Spread Spectrum device? If it is a spread spectrum device, please provide evidence of the pseudo random frequency generation? IF it is not a spread spectrum, please clearly identify the type. This device has been designed for WMTS only - not 15.247. The device does utilize slow frequency hopping as an access technique. However, the unit has been designed for WMTS requirements and is being submitted as such. The information required in 15.247 submissions regarding hop tables, pseudorandom operation and the like does not apply here. 7) The plots provided would tend to say that the emissions designator may not be accurate. Please provide measurement data using correct Res BW to justify the emissions designator. A mistake was made and data from the previous submission (BQI02DR-10100) was inadvertently used. The correct designator for this device should be: 600KFXD 8) Please note that your temperature data is insufficient to show compliance to 2.1055 and 95.1115e. 2.1055b states, “Frequency measurements shall be made at the extremes of the specified temperature range and at intervals of not more than 10° centigrade through the range.” The range of operation has not been specified in the documentation provided and therefore you are responsible to show compliance to the temperatures in the generic temperature stability section in 2.1055. Please provide temperature measurements for every 10 degrees C for the full range of temperature variations. Alternately, please provide the technical specifications from the manufacturer giving the temperature range of the device and provide temperature stability measurements for every 10 degrees in that range as specified in CFR 47. A new report including this has been uploaded.

External Photos

FCC ID: BQI02DR-10110 Photo 1. EUT, Front View FCC ID: BQI02DR-10110 Photo 2. EUT, Rear View These ports not used in this version of the device FCC ID: BQI02DR-10110 Photo 9. Monopole Antenna FCC ID: BQI02DR-10110 Photo 10. Omnidirectional Antenna FCC ID: BQI02DR-10110 Photo 11. OEM Antenna

ID Label/Location Info

FCC ID: BQI02DR-10110 SECTION 3 LABELING INFORMATION FCC ID: BQI02DR-10110 FCC ID: BQI02DR-10110 FCC ID: BQI02DR-10110 Label

Internal Photos

FCC ID: BQI02DR-10110 Photo 3. EUT, Top View, Cover Opened FCC ID: BQI02DR-10110 Photo 4. EUT, Bottom View, Cover Opened FCC ID: BQI02DR-10110 Photo 5. EUT, Transceiver Module, Top View FCC ID: BQI02DR-10110 Photo 6. EUT, Transceiver Module, Bottom View FCC ID: BQI02DR-10110 Photo 7. EUT, Top View of Transceiver Board FCC ID: BQI02DR-10110 Photo 8. EUT, Bottom View of Transceiver Board

Internal Photos

FCC ID: BQI02DR-10110 Photo 3. EUT, Top View, Cover Opened FCC ID: BQI02DR-10110 Photo 4. EUT, Bottom View, Cover Opened FCC ID: BQI02DR-10110 Photo 5. EUT, Transceiver Module, Top View FCC ID: BQI02DR-10110 Photo 6. EUT, Transceiver Module, Bottom View FCC ID: BQI02DR-10110 Photo 7. EUT, Top View of Transceiver Board FCC ID: BQI02DR-10110 Photo 8. EUT, Bottom View of Transceiver Board

Operational Description

FCC ID: BQI02DR-10110 GENERAL INFORMATION Product Description The Equipment Under Test (EUT) is a Data Critical Corporation, DR-10110. The DR-10110 is a wireless Access Point (AP) designed for use in medical monitoring applications. The DR-10110 receives patient monitoring data from similar radios attached to the patients in that hospital. The DR-10110 is linked to other DR-10110's, DR-10100 or DR-10000’s through a 10Base-T Ethernet backbone. This backbone allows the AP's to pass patient data back to the end user of the system - a nurses monitoring station. The DR-10110 is composed of a 1400 MHz wireless transceiver and Ethernet conversion circuitry that passes data from the transceiver to the Ethernet backbone. The DR-10110 may operate with three different types of antennas: a 0 dBi monopole to provide omni-directional coverage, a 3 dB omnidirectional antenna, and a 1.5 dB OEM antenna. The unit requires external DC power but has its own internal voltage regulation. The DR-10110 is self contained in a plastic package and is designed to be installed on the ceiling of a hospital hallway. Related Submittal(s)/Grant(s) Additionally, the EUT will be used with patient monitor transceivers FCC ID: BQI03DT- 4700.

RF Exposure Info

FCC ID: BQI02DR-10110 7.0 RF Safety Requirements to 2.1091/95.1125 for Mobile Transmitters Part 95 transmitters are considered categorically excluded from routine environmental evaluation as given in 47 CFR 2.1091. However, the following information is presented to prove compliance with the limits. Power Output The EUT’s maximum output power as measured directly from the transmitter module according to the manufacturers theory of operation is +23.0 dBm (200 mW). The EUT may utilize 2 different types of antenna’s (0 dBi monopole, +1.5 dBi omnidirectional, +3.0 dBi OEM). Frequency of Fundamental (MHz) Measurement (Watt) Antenna Gain (dBi) P EIRP (Watt) 1395.4 – 1429.1 0.2003.00.398 Source Based Time Averaging Source Time Averaging has not been evaluated regarding this product. MPE Calculations The limits for this unit (uncontrolled exposure) are 0.9333 mW/cm 2 . Taking the RF Density Field Equation: S = (EIRP in mW)/(4πR 2 ) and solving for Distance R R = SQRT (EIRP in mW)/(S4π) Solving the above equation yields R (cm) = SQRT (398(mw))/(0.9333(mW/cm 2 )*4*π) = 5.8 cm Since the EUT is designed only for mobile applications (where the expected separation distance between antenna and humans is greater than 20 cm), all manual instructions have specified 20 cm as the minimum exposure distance.

Test Report

Data Critical Corporation FCC Part 95 Application Model DR-10110 February 25, 2003 FCC ID: BQI02DR-10110 MEASUREMENT/TECHNICAL REPORT COMPANY NAME:Data Critical Corporation MODEL:DR-10110 FCC ID:BQI02DR-10110 DATE:February 25, 2003 This report concerns (check one): Original grant X Class II change ____ Equipment type: Low Power Transmitter (for Biomedical Applications) Deferred grant requested per 47 CFR 0.457(d)(1)(ii)? yes_____ No X If yes, defer until:_________________ date N.A. agrees to notify the Commission by N.A. date of the intended date of announcement of the product so that the grant can be issued on that date. Report prepared by: United States Technologies, Inc. 3505 Francis Circle Alpharetta, GA 30004 Phone Number: (770) 740-0717 Fax Number: (770) 740-1508 FCC ID: BQI02DR-10110 TABLE OF CONTENTS LETTER OF CONFIDENTIALITY SECTION 1 GENERAL INFORMATION Product Description SECTION 2 TESTS AND MEASUREMENTS Configuration of Tested Test Facility Modifications Test Equipment Modifications Antenna Description Field Strength of Fundamental Field Strength of Spurious Emissions Radiated Digital Device Emissions Power Line Conducted Emissions for Digital Device, Transmitter, and Receiver Emissions Type Frequency Stability SECTION 3 LABELING INFORMATION SECTION 4 BLOCK DIAGRAM(S)/SCHEMATICS / PARTS LIST SECTION 5 THEORY OF OPERATION / TUNE UP PROCEDURE SECTION 6 PHOTOGRAPHS SECTION 7 RF EXPOSURE INFORMATION SECTION 8 USER'S MANUAL FCC ID: BQI02DR-10110 LIST OF FIGURES AND TABLES FIGURES Test Configuration Photograph(s) for Fundamental, Spurious, and Digital Device Emissions Photograph(s) for Conducted Emissions Field Strength of Fundamental Emission Field Strength of Spurious Emissions TABLES EUT and Peripherals Test Instruments Field Strength of Fundamental Emission Field Strength of Spurious Emissions Radiated Digital Device Emissions Power Line Conducted Emissions for Digital Device, Transmitter, and Receiver FCC ID: BQI02DR-10110 SECTION 1 GENERAL INFORMATION FCC ID: BQI02DR-10110 GENERAL INFORMATION Product Description The Equipment Under Test (EUT) is a Data Critical Corporation, DR-10110. The DR-10110 is a wireless Access Point (AP) designed for use in medical monitoring applications. The DR-10110 receives patient monitoring data from similar radios attached to the patients in that hospital. The DR-10110 is linked to other DR-10110's, DR-10100 or DR-10000’s through a 10Base-T Ethernet backbone. This backbone allows the AP's to pass patient data back to the end user of the system - a nurses monitoring station. The DR-10110 is composed of a 1400 MHz wireless transceiver and Ethernet conversion circuitry that passes data from the transceiver to the Ethernet backbone. The DR-10110 may operate with three different types of antennas: a 0 dBi monopole to provide omni-directional coverage, a 3 dB omnidirectional antenna, and a 1.5 dB OEM antenna. The unit requires external DC power but has its own internal voltage regulation. The DR-10110 is self contained in a plastic package and is designed to be installed on the ceiling of a hospital hallway. Related Submittal(s)/Grant(s) Additionally, the EUT will be used with patient monitor transceivers FCC ID: BQI03DT- 4700. FCC ID: BQI02DR-10110 SECTION 2 TESTS AND MEASUREMENTS FCC ID: BQI02DR-10110 TESTS AND MEASUREMENTS Configuration of Tested System Since Part 95 stipulates radiated field strength limits and not dBc limits. Therefore as allowed by 2.947(a)(3), the sample was tested per ANSI C63.4, Methods of Measurement from Low-Voltage Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz (1992). Please note that the FCC has also shown a history of accepting other applications using ANSI C63.4 as the test methodology for devices tested under 95.1115. Conducted and radiated emissions data were taken with the test receiver or spectrum analyzer's resolution bandwidth adjusted to 9 kHz and 120 kHz, respectively. All measurements are peak unless stated otherwise. The video filter associated with the spectrum analyzer was off throughout the evaluation process. Interconnecting cables were manipulated as necessary to maximize emissions. A block diagram of the tested system is shown in Figure 1. Test configuration photographs for spurious and fundamental emissions are shown in Figure 2. Test Facility Testing was performed at US Tech's measurement facility at 3505 Francis Circle, Alpharetta, GA. This site has been fully described and submitted to the FCC, and accepted in their letter marked 31040/SIT. Additionally this site has also been fully described and submitted to Industry Canada (IC), and has been approved under file number IC2982. Modifications To bring the EUT into compliance with FCC Part 95 limits for the transmitter portion of the EUT and the Part 15 Digital Device Requirements, the following modifications were made (See following letter from Cirronet): FCC ID: BQI02DR-10110 FCC ID: BQI02DR-10110 FCC ID: BQI02DR-10110 Test Equipment Table 2 describes test equipment used to evaluate this product. FCC ID: BQI02DR-10110 FIGURE 1a TEST CONFIGURATION Transceiver (EUT) AC Adapter #1 Laptop Computer AC Adapter #2 Monopole Antenna 120 VAC/ 60 Hz Direct Plug In 6' U 120 VAC / 60 Hz 3' S 6’ S 1 m U Ethernet Term 6' U 6’ S 50 Ohm Term 6' S Printer 6’ U Alternatively, the Monopole antenna may be replaced by an OEM or omnidirectional antenna 6' U 120 VAC / 60 Hz FCC ID: BQI02DR-10110 FIGURE 1b TEST CONFIGURATION Transceiver (EUT) Desk Top Computer AC Adapter Monopole Antenna 120 VAC/ 60 Hz Direct Plug In 3' S 6’ S 1 m U Ethernet Term 6' U 6’ S 50 Ohm Term 6' S Printer Alternatively, the Monopole antenna may be replaced by an OEM or omnidirectional antenna 6' U 120 VAC / 60 Hz 6' U 120 VAC / 60 Hz Keyboard Mouse Monitor 6' U 120 VAC / 60 Hz 6' S 6' S 6' S FCC ID: BQI02DR-10110 FIGURE 2a Photograph(s) for Fundamental, Spurious and Digital Devices Emissions Monopole Configuration FCC ID: BQI02DR-10110 FIGURE 2b Photograph(s) for Fundamental, S…

Text truncated - open the document above for the full version.

Test Setup Photos

FCC ID: BQI02DR-10110 FIGURE 2a Photograph(s) for Fundamental, Spurious and Digital Devices Emissions Monopole Configuration FCC ID: BQI02DR-10110 FIGURE 2b Photograph(s) for Fundamental, Spurious and Digital Devices Emissions Omnidirectional Configuration FCC ID: BQI02DR-10110 FIGURE 2c Photograph(s) for Fundamental, Spurious and Digital Devices Emissions OEM Configuration FCC ID: BQI02DR-10110 FIGURE 2c Photograph(s) for Conducted Emissions

Contact Information

Applicant

Sharon Untz
[email protected]414-362-2436Fax: 414-371-3711

Technical Contact

U.S. TechnologiesTimothy R Johnson
[email protected]770-740-0717

3505 Francis Circle · Alpharetta, Georgia · United States

Test Firm

US TechSandy McEnery
lll@mm.770-740-0717Fax: 770-740-1508

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
295H1.43 GHz - 1.43 GHz200.00 mW600KFXD30 ppm
Confidentiality
Long Term
Grant Notes
Power Output listed is Peak Conducted. The antenna used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. This device must be professionally installed. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. This device must be professionally installed.

Other Applications from Data Critical Corporation

WMTS OPENNET LAN - FCC ID BQI02DR-10100 - Data Critical Corporation
BQI02DR-10100

WMTS OPENNET LAN

Dec 12, 2002

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
PATIENTNET - FCC ID BQI02DT-7000 - Data Critical Corporation
BQI02DT-7000

PATIENTNET

Dec 08, 2002

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
Ambulatory Tranceiver, DT-4500 - FCC ID BQI01DT-4500 - Data Critical Corporation
BQI01DT-4500

Ambulatory Tranceiver, DT-4500

Sep 04, 2002

Equipment Class

TNT - Licensed Non-Broadcast Transmitter Worn on Body
V-Link II (one way wireless communication) - FCC ID BQI99DT-5100 - Data Critical Corporation
BQI99DT-5100

V-Link II (one way wireless communication)

Sep 03, 2002

Equipment Class

DXX - Part 15 Low Power Communication Device Transmitter
OpenNet Transceiver - FCC ID BQIOODT-4500 - Data Critical Corporation
BQIOODT-4500

OpenNet Transceiver

Aug 13, 2002

Equipment Class

DXX - Part 15 Low Power Communication Device Transmitter