FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Intermatic Inc/
  3. DGZ05200422

DGZ05200422Home Pool/Spa Monitor

Intermatic Inc
Home Pool/Spa Monitor - FCC ID DGZ05200422 - Intermatic Inc
Click to zoom

Application Details

Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Date of Grant
Mar 19, 2006
Application Purpose
Original Equipment
Date of Application
Mar 19, 2006
Equipment Note
Home Pool/Spa Monitor
Frequency Range
908.42000000 - 908.42000000
Company
Intermatic Inc
Country
United States

Documents & Files

Select a file to view

Users Manual

↗
↗

Cover Letter(s)

↗

External Photos

↗

ID Label/Location Info

↗

Internal Photos

↗

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

PE45343RC PE45343RCT1 PE45343RCT3 Installation and User Guide Wave Pool/Spa Combination Systems Pool Systems Spa Systems  I-Wave Installation Guide Copyright © 2006 Intermatic, Inc. Important Safety Instructions All electrical work must be performed by a licensed electrician and conform to all national, state, and local codes. When installing and using this electrical equipment, basic safety precautions should always be followed, including the following: DANGER: To reduce the risk of injury, do not remove the suction fittings of your spa or hot tub. Never operate a spa or hot tub if the suction fittings are broken or missing. Never replace a suction fitting with one rated less than the flow rate marked on the equipment assembly. WARNING: Prolonged immersion in hot water may induce hyperthermia. Hyperthermia occurs when the internal temperature of the body reaches a level several degrees above the normal body temperature of 98.6°F. The symptoms of hyperthermia include dizziness, fainting, drowsiness, lethargy, and an increase in the internal temperature of the body. The effects of hyperthermia include: 1) unawareness of impending danger; 2) failure to perceive heat; 3) failure to recognize the need to exit spa; 4) physical inability to exit spa; 5) fetal damage in pregnant women; 6) unconsciousness resulting in a danger of drowning. WARNING: To Reduce the Risk of Injury — The water in a spa should never exceed 104°F (40°C). Water temperatures between 100°F (38°C) and 104°F (40°C) are considered safe for a healthy adult. Lower water temperatures are recommended for young children and when spa use exceeds 10 minutes. Since excessive water temperatures have a high potential for causing fetal damage during the early months of pregnancy, pregnant or possibly pregnant women should limit spa water temperatures to 100°F (38°C). Before entering a spa or hot tub, the user should measure the water temperature with an accurate thermometer since the tolerance of water temperature-regulating devices varies. The use of alcohol, drugs, or medication before or during spa or hot tub use may lad to unconsciousness with the possibility of drowning. Obese persons and person with history of heart disease, low or high blood pressure, circulatory system problems, or diabetes should consult a physician before using a spa. Persons using medication should consult a physician before using a spa or hot tub since some medication may induce drowsiness while other medication may affect heart rate, blood pressure, and circulation. WARNING: Risk of electric shock – Install the control center at least five (5) feet (152.4cm) from the inside wall of the pool and/or hot tub using non-metallic plumbing. Canadian installations must be at least three (3) meters from the water. • • • • • • Safety  Providing a brighter solution.™ Children should not use spas or hot tubs without adult supervision. Do not use spas or hot tubs unless all suction guards are installed to prevent body and hair entrapment. People using medications and/or having an adverse medical history should consult a physician before using a spa or hot tub. People with infectious diseases should not use a spa or hot tub. To avoid injury, exercise care when entering or exiting the spa or hot tub. Do not use drugs or alcohol before or during the use of a spa or hot tub to avoid unconsciousness and possible drowning Pregnant or possibly pregnant women should consult a physician before using a spa or hot tub. Water temperature in excess of 100°F (38°C) may be injurious to your health. Before entering a spa or hot tub measure the water temperature with an accurate thermometer. Do nut use a spa or hot tub immediately following strenuous exercise. Prolonged immersion in a spa or hot tub may be injurious to your health. Do not permit any electric appliance (such as a light, telephone, radio, or television) within 5 feet (1.5m) of a spa or hot tub. The use of alcohol, drugs or medication can greatly increase the risk of fatal hyperthermia in hot tubs and spas. Water temperature in excess of 100°F (38°C) may be hazardous to your health. WARNING: A terminal bar marked “GROUND” is provided with the control center. To reduce the risk of electrical shock, connect this terminal bar to the grounding terminal of your electric service or supply panel with a continuous copper conductor having green insulation and one that is equivalent in size to the circuit conductors supplying this equipment, nut no smaller than no. 12 AWG (3.3mm). In addition, a second wire connector should be bonded with a no. 8 AWG (4.115mm) copper wire to any metal ladders, water pipes, or other metal within five (5) feet (1.52m) of the tub. WARNING: A ground-fault circuit-interrupter must be provided if this device is used to control underwater lighting fixtures. The conductors on the load side of the ground-fault circuit- interrupter shall not occupy conduit, boxes or enclosures containing other conductors unless the additional conductors are also protected by a ground-fault circuit-interrupter. Refer to local codes for complete details. • • • • • • • • • • • • • •  I-Wave Installation Guide Copyright © 2006 Intermatic, Inc. Contents Section 1: System Overview .............................................................................................................6 Additional Detail on Key Components .........................................................................................7 Three-Circuit Clock (P1353ME) ...............................................................................................7 Valve/Pump Switch (P42343ME) .............................................................................................8 24-Volt Valve Actuator (PE24VA) .............................................................................................8 Panel-Mounted Transceiver (PE650) and Antenna (0000000) ..................................................8 Wireless Hand-Held Transceiver (PE950…

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

Users Manual

 I-Wave Installation Guide Copyright © 2006 Intermatic, Inc. Identifying Connections and Selecting Proper Input Voltage Figure 4-2 below shows the reverse side of the Three-Circuit Clock Control Panel. Detailed connection information is provided below the diagram. CAUTION: If the Source Voltage Selector Jumper is in the wrong position, the F1 fuse will blow and you may damage the circuit board, voiding the warranty. Before making any connections: Set the Source Voltage Selector Jumper. The factory default position for this jumper is the 240 Volt position. If the input voltage for the clock is 120 Volts, change this jumper to the 120 Volt position. Connection Detail Freeze Probe Connection — For the Intermatic Freeze Sensor (178PA0001A), which is necessary for the freeze protection circuit and programming to work. Disconnect power when connecting the freeze sensor. Only an Intermatic sensor can be used. Refer to page 34 for programming information. Heater Firemen Switch Connection — For the firemen switch wires that connect to the Pool/ Spa heater. If installing with a Wireless Remote Control, use the two brown wires coming from the panel-mounted antenna to create the circuit between this switch and the heater. Connectors should be ¼” female spade connectors crimped to insulated-type wire. This connection is a simple SPST contact, and switches the supplied heater voltage. It does not supply voltage to the heater thermostat. In non-wireless installations, clip the “loop” supplied, then connect with wire nut connectors. Refer to page 33 for programming information. Remote Control Connection — For the Intermatic Remote Control (133PE1484A), which allows you to remotely turn On or Off all three available circuits. It also has status lights that indicate when a load is On, Off or delayed. If using the Three-Button Wired Remote Control (133PE1484A), it connects here as well. 1. 2. • • • Figure 4-2 Wired or Wireless Remote Control Connection Freeze Probe Connection Heater Fireman Switch Connection Source Voltage Selection Jumper Four: Programming the Three-Circult Clock Mechanism  Providing a brighter solution.™ Circuit Ratings CLOCK SOURCE VOLTAGE — 120/240VAC, 50/60 Hz. POWER CONSUMPTION — 6.0 Watts Max. CIRCUIT CONTACT CONFIGURATION — SPST CIRCUIT SWITCH RATINGS ALL MODES: 20A Resistive, 120/240 VAC., 50/60 Hz 20A FLA@120 VAC, 96A LRA@120 VAC, 50/60 Hz 17A FLA@240 VAC, 80A LRA@240 VAC, 50/60 Hz 5 Amps Tungsten, 120/240 VAC, 50/60 Hz 5 Amps Ballast, 120/240 VAC, 50/60 Hz EVENTS PER CIRCUIT — 3 On/Off Events Per Circuit INTERNAL BATTERY POWER 40 Year retention for all programmed settings Up to 24-hours Mode Selection/Definition IMPORTANT NOTE—There are five modes to choose from, depending on your pool or spa equipment pad configuration. Each mode has specific programming, timing, and lockout features that are designed to work with specific types of pool or spa equipment. Mode setting is generally done only once and usually during the initial installation. It is purposely difficult to enter the mode-changing program and should only be done by a Qualified Installer. Be sure you fully understand each mode definitions and installation, prior to selecting the proper mode. Mode 1 — (Aux1, Aux2, Aux3) Each of the three single pole circuits are defined generically, and can control any load within each of its individual circuit ratings. All three circuits act independent of each other. • • • • • • • Figure 4-3Figure 4-3 NOTE: This drawing illustrates that only one leg is broken, with the other leg going directly to load, whether 120V or 240V. NOTE: This drawing illustrates that only one leg is broken, with the other leg going directly to load, whether 120V or 240V.  I-Wave Installation Guide Copyright © 2006 Intermatic, Inc. Mode 2 — (Pump High, Pump Low, Aux3) Circuit one and two are dedicated single pole outputs for a two-speed pump load. Circuits one and two will never be ON at the same time, consistent with a two-speed pump application. Circuit three is single pole circuit for a generic load, and independent of circuits one and two.. Mode 3 — (Pump, Aux2, Cleaner Pump) Circuit one and three are dedicated single pole outputs for a single speed pump working with a pressure side cleaner pump. Circuit three will never come on unless circuit one is on for at least one minute, consistent with a pressure side cleaner pump. Circuit two is a single pole circuit for a generic load, independent of circuits one and three.. Figure 4-4Figure 4-4 NOTE: This drawing illustrates that only one leg is broken, with the other leg going directly to load, whether 120V or 240V. NOTE: This drawing illustrates that only one leg is broken, with the other leg going directly to load, whether 120V or 240V. Figure 4-5Figure 4-5 NOTE: This drawing illustrates that only one leg is broken, with the other leg going directly to load, whether 120V or 240V. NOTE: This drawing illustrates that only one leg is broken, with the other leg going directly to load, whether 120V or 240V. Four: Programming the Three-Circult Clock Mechanism  Providing a brighter solution.™ Mode 4 — (Pump High, Pump Low, Cleaner Pump) Circuit one and two are dedicated single pole outputs for a two-speed pump load. Circuits one and two will never be ON at the same time, consistent with a two-speed pump application. Circuit three is also a dedicated single pole output for a pressure side cleaner pump. Circuit three will never come on unless circuit one is on for at least one minute, consistent with a pressure side cleaner pump. Mode 5 — (Pump, Pump, Aux3) Circuit one and two are now coupled together making up one circuit capable of switching the power source to one pump. The On/Off button for circuit one now controls both circuit one and two simultaneously. The On/Off button for circuit two is disabled. Circuit three remains a single pole circuit for a generic load, and is independent of circuits one and two.. Figure 4-6Figure 4-6 NOTE: This drawing illustra…

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

Test Report

TABLE OF CONTENTS Engineering Test Report No. 35637-02 Measurement of RF Interference from a Model PE650 Transceiver For : Delta Mobile Software, Inc. Hoffman Estates, IL P.O. No. : DMS-196 Date Received : September 19, 2005 Date Tested : September 19, 2005 through September 30, 2005 Test Personnel : Mark E. Longinotti, NARTE® Certified EMC Test : Engineer, ATL-0154-E Specification : FCC "Code of Federal Regulations” Title 47 Part 15, Subpart B and Subpart C, Section 15.249 for Intentional Radiators Operating within the 902MHz to 928MHz band Test Report By : Mark E. Longinotti NARTE® Certified EMC Test Engineer, ATL-0154-E Approved By : Raymond J. Klouda Registered Professional Engineer of Illinois - 44894 Elite Electronic Engineering Inc. 1516 Centre Circle Downers Grove, IL 60515 Tel : (630) 495-9770 Fax: (630) 495-9785 www.elitetest.com Engineering Test Report No. 35637-02 Page 2 of 49 PARAGRAPH DESCRIPTION OF CONTENTS PAGE NO. 1.0 INTRODUCTION....................................................................................................................................3 1.1 Description of Test Item........................................................................................................................3 1.2 Purpose................................................................................................................................................3 1.3 Deviations, Additions and Exclusions......................................................................................................3 1.4 Applicable Documents...........................................................................................................................3 1.5 Subcontractor Identification....................................................................................................................3 1.6 Laboratory Conditions............................................................................................................................3 2.0 TEST ITEM SETUP AND OPERATION.................................................................................................4 2.1 Power Input..........................................................................................................................................4 2.2 Grounding.............................................................................................................................................4 2.3 Peripheral Equipment.............................................................................................................................4 2.4 Interconnect Cables...............................................................................................................................4 2.5 Operational Mode..................................................................................................................................5 2.6 Test Item Modifications.........................................................................................................................5 3.0 TEST EQUIPMENT.................................................................................................................................5 3.1 Test Equipment List...............................................................................................................................5 3.2 Calibration Traceability..........................................................................................................................5 3.3 Measurement Uncertainty......................................................................................................................5 4.0 REQUIREMENTS, PROCEDURES AND RESULTS...............................................................................6 4.1 Powerline Conducted Emissions.............................................................................................................6 4.1.1 Receiver........................................................................................................................................6 4.1.1.1 Requirements..........................................................................................................................6 4.1.1.2 Procedures..............................................................................................................................6 4.1.1.3 Results....................................................................................................................................7 4.1.2 Transmitter....................................................................................................................................7 4.1.2.1 Requirements..........................................................................................................................7 4.1.2.2 Procedures..............................................................................................................................8 4.1.2.3 Results....................................................................................................................................8 4.2 Radiated Measurements........................................................................................................................8 4.2.1 Receiver........................................................................................................................................8 4.2.1.1 Requirements..........................................................................................................................9 4.2.1.2 Procedures..............................................................................................................................9 4.2.1.3 Results..................................................................................................................................10 4.2.2 Transmitters.................................................................................................................................10 4.2.2.1 Requirements...…

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

Test Report

Engineering Test Report No. 35637-02 Page 26 of 49 Engineering Test Report No. 35637-02 Page 27 of 49 Engineering Test Report No. 35637-02 Page 28 of 49 Engineering Test Report No. 35637-02 Page 29 of 49 Engineering Test Report No. 35637-02 Page 30 of 49 Engineering Test Report No. 35637-02 Page 31 of 49 Engineering Test Report No. 35637-02 Page 32 of 49 Engineering Test Report No. 35637-02 Page 33 of 49 Engineering Test Report No. 35637-02 Page 34 of 49 Engineering Test Report No. 35637-02 Page 35 of 49 Engineering Test Report No. 35637-02 Page 36 of 49 Engineering Test Report No. 35637-02 Page 37 of 49 Engineering Test Report No. 35637-02 Page 38 of 49 Engineering Test Report No. 35637-02 Page 39 of 49 Engineering Test Report No. 35637-02 Page 40 of 49 Engineering Test Report No. 35637-02 Page 41 of 49 Engineering Test Report No. 35637-02 Page 42 of 49 Engineering Test Report No. 35637-02 Page 43 of 49 Engineering Test Report No. 35637-02 Page 44 of 49 Engineering Test Report No. 35637-02 Page 45 of 49 MANUFACTURER : Delta Mobile Software, Inc. TEST ITEM : Transceiver MODEL NO. : PE650 SERIAL NO. : Sample A TEST SPECIFICATION : FCC 15.109(a), Radiated Emissions MODE : Receive @ 908.3MHz TEST DATE : September 20, 2005 TEST DISTANCE : 3 meters Frequency MHz Antenna Polarity Meter Reading dBuV Ambient Cable Loss dB Antenna Factor dB Preamp Gain dB Total dBuV/m Total uV/m Limit uV/m 908.3 H 18.4 1.9 23.0 0.0 43.3 146.4 200.0 908.3 V 15.5 1.9 23.0 0.0 40.4 104.9 200.0 1816.6 H 46.4 Ambient 2.9 28.1 -36.3 41.0 112.6 500.0 1816.6 V 46.0 Ambient 2.9 28.1 -36.3 40.6 107.5 500.0 2724.9 H 43.6 Ambient 3.8 31.4 -35.9 42.9 139.2 500.0 2724.9 V 44.6 Ambient 3.8 31.4 -35.9 43.9 156.2 500.0 3633.2 H 43.1 Ambient 4.4 32.5 -35.6 44.4 166.7 500.0 3633.2 V 43.2 Ambient 4.4 32.5 -35.6 44.5 168.6 500.0 4541.5 H 43.1 Ambient 4.8 32.9 -35.3 45.5 189.4 500.0 4541.5 V 42.6 Ambient 4.8 32.9 -35.3 45.0 178.8 500.0 H – Horizontal V = Vertical Total = Meter Reading + Cable Loss + Antenna Factor + Preamp Gain Checked By : Engineering Test Report No. 35637-02 Page 46 of 49 Engineering Test Report No. 35637-02 Page 47 of 49 Engineering Test Report No. 35637-02 Page 48 of 49 MANUFACTURER : Delta Mobile Software, Inc. TEST ITEM : Transceiver MODEL NO. : PE650 SERIAL NO. : Sample B TEST SPECIFICATION : FCC 15.249(a), Radiated Emissions MODE : Transmit @ 908.4MHz TEST DATE : September 30, 2005 TEST DISTANCE : 3 meters Frequency MHz Antenna Polarity Meter Reading dBuV Ambient Cable Loss dB Antenna Factor dB Preamp Gain dB Total dBuV/m Total uV/m Limit uV/m 908.4 H 49.6 1.9 27.8 0.0 79.3 9278.5 50000.0 908.4 V 60.9 1.9 27.8 0.0 90.6 34077.3 50000.0 1816.8 H 48.8 2.9 28.1 -36.3 43.4 148.4 500.0 1816.8 V 49.4 2.9 28.1 -36.3 44.0 159.0 500.0 2725.3 H 45.7 3.8 31.4 -35.9 45.0 177.3 500.0 2725.2 V 44.9 3.8 31.4 -35.9 44.2 161.7 500.0 3633.7 H 44.7 Ambient 4.4 32.5 -35.6 46.0 200.5 500.0 3633.6 V 44.1 Ambient 4.4 32.5 -35.6 45.4 187.1 500.0 4542.1 H 43.1 Ambient 4.8 32.9 -35.3 45.5 189.4 500.0 4542.0 V 42.2 Ambient 4.8 32.9 -35.3 44.6 170.7 500.0 5450.5 H 40.2 Ambient 5.2 35.3 -35.2 45.6 189.8 500.0 5450.4 V 40.5 Ambient 5.2 35.3 -35.2 45.9 196.5 500.0 6358.9 H 29.2 Ambient 5.9 36.1 -35.3 35.9 62.6 500.0 6358.8 V 29.2 Ambient 5.9 36.1 -35.3 35.9 62.6 500.0 7267.4 H 28.8 Ambient 6.6 37.7 -35.6 37.5 75.4 500.0 7267.2 V 28.8 Ambient 6.6 37.7 -35.6 37.5 75.3 500.0 8175.8 H 29.9 Ambient 7.1 37.7 -35.8 38.9 87.9 500.0 8175.6 V 29.9 Ambient 7.1 37.7 -35.8 38.9 87.9 500.0 9084.2 H 30.3 Ambient 7.5 38.0 -36.2 39.6 95.5 500.0 9084.0 V 30.3 Ambient 7.5 38.0 -36.2 39.6 95.5 500.0 H – Horizontal V = Vertical Total = Meter Reading + Cable Loss + Antenna Factor + Preamp Gain Checked By : Engineering Test Report No. 35637-02 Page 49 of 49

Test Setup Photos

Engineering Test Report No. 35637-02 Page 14 of 49 Figure 2a – Receive at 908.3MHz Test Setup for Conducted Emissions – P4243ME Test Setup for Conducted Emissions – P1353ME Engineering Test Report No. 35637-02 Page 15 of 49 Figure 2b – Transmit at 908.4MHz Test Setup for Conducted Emissions – P4243ME Test Setup for Conducted Emissions – P1353ME Engineering Test Report No. 35637-02 Page 16 of 49 Figure 3a Receive at 908.3MHz Test Setup for Radiated Emissions, 30MHz to 1GHz – Horizontal Polarization Test Setup for Radiated Emissions, 30MHz to 1GHz – Vertical Polarization Engineering Test Report No. 35637-02 Page 17 of 49 Figure 3b Transmit at 908.4MHz Test Setup for Radiated Emissions 908.4MHz – Horizontal Polarization Test Setup for Radiated Emissions 908.4MHz – Vertical Polarization Engineering Test Report No. 35637-02 Page 18 of 49 Figure 3c Transmit at 908.4MHz Test Setup for Radiated Emissions, 1GHz to 9.1GHz – Horizontal Polarization Test Setup for Radiated Emissions, 1GHz to 9.1GHz – Vertical Polarization

Contact Information

Applicant

Kimberly Boland(Director of Engineering)
[email protected]815-675-7730Fax: 815-675-7785

Test Firm

Elite Electronic Engineering Inc.Kevin Halpin
[email protected]630-495-9770Fax: 630-495-9785

Technical Specifications

#Rule PartsFrequency RangePower Output
115C908.42 MHz - 908.42 MHz-
Confidentiality
Long Term

Other Applications from Intermatic Inc

DGZALC24B

Programmable Switches

Mar 17, 2024

Equipment Class

DTS - Digital Transmission System
5 Circuit Digital Control - FCC ID DGZPE000653 - Intermatic Inc
DGZPE000653

5 Circuit Digital Control

Apr 13, 2010

Equipment Class

DXT - Part 15 Low Power Transceiver, Rx Verified
Hand Held Transceiver - FCC ID DGZPE000953 - Intermatic Inc
DGZPE000953

Hand Held Transceiver

Apr 13, 2010

Equipment Class

DXT - Part 15 Low Power Transceiver, Rx Verified
In-Wall Toggle-Style Dimmer Switch - FCC ID DGZHA000020P2 - Intermatic Inc
DGZHA000020P2

In-Wall Toggle-Style Dimmer Switch

Mar 30, 2008

Equipment Class

DXX - Part 15 Low Power Communication Device Transmitter
In-Wall Dimmer Switch - FCC ID DGZHA000014P2 - Intermatic Inc
DGZHA000014P2

In-Wall Dimmer Switch

Mar 30, 2008

Equipment Class

DXX - Part 15 Low Power Communication Device Transmitter