Tridonic 89800190 EMconverterLED ST 104 90V – Limited Stock
89800190
Tridonic 89800190 EMconverterLED ST 104 90V
The Tridonic 89800190 is an emergency lighting LED driver designed for self-contained systems.
£52.44
Ex.VAT Inc.VAT£62.93
Less Than 10 Available!
Description
Tridonic 89800190 EMconverterLED ST 104 90V
89800190 Description
Emergency lighting LED driver with selftest function
For self-contained emergency lighting
For LED modules with a forward voltage of 40 – 97 V
SELV for output voltage < 120 V DC
Low profile casing (21 x 30 mm cross-section)
Nominal lifetime up to 50,000 h
5 years guarantee (conditions at https://www.tridonic.com/en/int/services/manufacturerguarantee-conditions)
89800190 Properties
Non maintained operation
Self-test as per IEC 62034
1 or 3 h rated duration
Operating time selectable with plug (duration link)
Compatible with all dimmable and non-dimmable constant current LED driver (see data sheet, LED driver compatibility)
3-pole technology: 2-pole LED module changeover and delayed power switching for the LED driver
Automatic shutdown of output if LED load is out of range
Constant power output
Maximum light output for all LED modules
Two-colour status display LED
“Rest mode” function
Electronic multi-level charge system
Intermittent charge for NiMH batteries (pulse charge)
Deep discharge protection
Short-circuit-proof battery connection
Polarity reversal protection for battery
Self-test:
Status of the battery
Status of the LED
Charge condition
Function test
Duration test
89800190 Batteries
High-temperature cells
NiCd (4DH4-0L4) or NiMH batteries (B904)
D, Cs or LA cells
4 year design life
1 year guarantee (conditions at https://www.tridonic.com/en/int/services/manufacturerguarantee-conditions)
For battery compatibility refer to data sheet
89800190 Common Data
Ordering data EM converterLED ST 104 90V 89800190
89800190 Technical data
Rated supply voltage 220 – 240 V
AC voltage range 198 – 264 V
Mains frequency 50 / 60 Hz
Forward voltage range LED module 40 – 97 V
Output current Refer to data sheet
Starting time < 0.25 s from detection of emergency event
Overvoltage protection 320 V (for 1 h)
Max. output voltage (U-OUT) 120 V
Max. open circuit voltage 120 V
Battery charging time 20 h
Ambient temperature ta -25 … +55 °C
Max. casing temperature tc 75 °C
Mains voltage changeover threshold According to EN 60598-2-22
Mains surge capability (between L – N) 1 kV
Mains surge capability (between L/N – PE) 2 kV
Type of protection IP20
Rest mode max. number of emergency units 100
Rest mode max. wiring distance 1,000 m
Functional test Weekly 5s test
Duration test Jährlich 1/3 h Test
Lifetime up to 50,000 h
Dimensions L x W x H 179 x 30 x 21 mm
Standards
• EN 61347-1
• EN 61347-2-13
• EN 61347-2-7
• EN 55015
• EN 61000-3-2
• EN 61000-3-3
• EN 61547
• EN 60068-2-64
• EN 60068-2-29
• EN 60068-2-30
• EN 62384
• according to EN 50172
• according to EN 60598-2-22
• according to EN 62034
Glow-wire test
according to EN 61347-1 with increased temperature of 850 °C passed.
Insulation and electric strength testing of luminaires
Electronic LED-Drivers can be damaged by high voltage. This has to be considered during the routine testing of the luminaires in production.
According to IEC 60598-1 Annex Q (informative only!) or ENEC 303-Annex A, each luminaire should be submitted to an insulation test with 500VDC for 1 second. This test voltage should be connected between the interconnected phase and neutral terminals and the earth terminal. The insulation resistance must be at least 2 MΩ.
As an alternative, IEC 60598-1 Annex Q describes a test of the electrical strength with 1,500VAC (or 1,414 x 1,500VDC). To avoid damage to the electronic devices this test must not be conducted.
Thermal details and life-time
Life-time
Average life-time 50,000 hours under rated conditions with a failure rate of less than 10 %. Average failure rate of 0.2 % per 1000 operating hours.
Installation / Wiring
Wiring diagram
One or more LED modules with a total forward voltage of 50 to 90 V can be connected to the 89800190. These LED module(s), marked with “Emergency” are operated in emergency mode from the associated battery. In normal mains mode all LED modules are operated by the mains LED Driver.
Wiring type and cross section
Solid wire with a cross section of 0.5 – 1.5 mm². Strip 8 – 9 mm of insulation from the cables to ensure perfect operation of terminals.
Wiring: LED module/LED Driver/supply
Loose wiring
Wiring guidelines
• The LED terminals, battery, indicator LED and test switch terminals are classified as SELV (output voltage < 120 V DC). Keep the wiring of the input terminals separated from the wiring of the SELV equivalent terminals or consider special wiring (double insulation, 6 mm creepage and clearance) when these connections should be kept SELV.
• The output to the LED is DC but has high frequency content, which should be considered for good EMC compliance.
• LED leads should be separated from the mains and DALI connections and wiring for good EMC performance.
• Maximum lead length on the LED terminals is 3 m. For a good EMC performance keep the LED wiring as short as possible.
• The secondary wires (LED module) should be routed in parallel to ensure good EMC performance.
• Maximum lead length for the Test switch and Indicator LED connection is 1 m. The test switch and Indicator LED wiring should be separated from the LED leads to prevent noise coupling.
• Battery leads are specified with 0.5 mm cross section and a length of 1.3 m
• DALI terminals are mains proof
• To avoid the damage of the control gear, the wiring must be protected against short circuits to earth (sharp edged metal parts, metal cable clips, louver, etc.)
To ensure that a luminaire containing LED emergency units complies with EN 55015 for radio frequency conducted interference in both normal and emergency mode it is essential to follow good practice in the wiring layout.
Within the luminaire the switched and unswitched 50Hz supply wiring must be routed as short as possible and be kept as far away as possible from the LED leads. Through wiring may affect the emc performance of the luminaire.
The length of LED leads to the LED module must not be exceeded. Note that the length of the 89800190 leads to the LED module is added to the length of the leads from the LED Driver to the 89800190 module when considering the max. permitted lead length of the LED Driver.
Maximum lead length
LED 3 m (6 m loop)1
Status indication LED 1 m
Batteries 1.3 m
Note: The length of LED leads to the LED module must not be exceeded. Note that the length of the 89800190 leads is added to the length of the leads from the LED Driver to the 89800190 module when considering max. permitted lead length of the LED Driver. Leads should always be kept as short as possible.
Use of different phases
The use of different phases for switched line and unswitched line is allowed. When using different phases, the unswitched line must fail if the switched line fails. This is required to assure correct switching into emergency mode. It can be realised with a relay.
Mechanical values
Housing properties
• Casing manufactured from polycarbonate.
• Type of protection: IP20
• Max. torque at the mounting screws: 0.8 Nm
Mechanical data accessories
LED status indicator
• Bi-colour
• Mounting hole 6.5 mm diameter, 1 – 1.6 mm thickness
• Lead length 0.3 m / 1.0 m
• Insulation rating: 90 °C
• Plug connection
Test switch
• Mounting hole 7.0 mm diameter
• Lead length 0.55 m
• Plug connection
Battery leads
• Quantity: 1 red and 1 black
• Length: 1.3 m
• Wire type: 0.5 mm2 solid conductor
• Insulation rating: 90 °C
Battery end termination
Push on 4.8 mm receptacle to suit battery spade fitted with insulating cover
Module end termination
8.0 mm stripped insulation
Two-piece batteries are supplied with a 200 mm lead with 4.8 mm receptacle at each end and insulting covers to connect the separate sticks together.
LED Driver compatibility
The 89800190 emergency unit use 3 pole technology and is compatible with most LED Drivers on the market, however it is important to check that the rating of the LED Driver does not exceed the values specified below:
• The max. allowed output current rating of the associated LED Driver is 2.4 A peak (current rating of switching relays of 89800190)
• The max. allowed inrush current rating of the associated LED Driver is 60 A peak for 1 ms or 84 A for 255 μs (inrush current rating of switching relay of 89800190)
• The max. allowed output voltage of the associated LED Driver applied to the 89800190 output is 450V (voltage withstand between adjacent contact of the single switching relay of the 89800190)
• The max. allowed LED load of the associated LED Driver is 150 W in operation. The load must be an LED module. Check compatibility with the carried out function test (duration at least 5
seconds) individually for each device.
Functions
Commissioning
After installation of the luminaire and initial connection of the mains supply and battery supply to the 89800190 the unit will commence charging the batteries for 20 hours (initial charge). The 20 hours recharge occurs also if a new battery is connected or the module exits the rest mode condition.
The following automatic commissioning duration test is only performed when a battery is replaced and fully charged (after 20 hours).
Testing
Commissioning test
A full commissioning test is carried out automatically after permanent connection of the supply for 5 days. The easy commissioning feature will set the initial test day and time to ensure random testing of units.
Functional test
Functional tests are carried out for 5 seconds on a weekly basis under the control of the Micro controller. Initiation and timing of these tests is set during the commissioning of the luminaire.
Duration test
A full duration test is carried out yearly to check the capacity of the batteries. For a full description of commissioning and test features please refer to application notes.
Test switch
An optional test switch can be wired to each 89800190. This can be used to to:
• Initiate a 5 seconds function test: press 200 ms < T < 1s
• Execute function test as long as switch pressed: press > 1s
• Reset selftest timer (adjust local timing): press > 10 s
Timer reset functionality
The timer for function and duration test can be set to a particular time of the day by either pressing the test switch for longer than 10 seconds or cycling the unswitched line supply 5 times within 1 minute. The timer adjustment will enable the test start time to be defined manually at time in day when the timer was reset. It will also disable the adaptive test algorithm thereby
forcing the unit to perform the test at the same time rather than it being defined by the adaptive algorithm.
This function will only work provided the interval time is greater than zero (automatic test mode enabled). The delay timer value set when the unit was commissioned will be reloaded in order to randomise the tests between adjacent units.
Rest Mode / Inhibit Mode
Emergency operation is automatically started when the mains supply is switched off. If the Rest Mode is activated, the discharging of the battery will be minimized by switching off the LED output. If the Inhibit Mode has been activated before the mains supply is switched off, Rest Mode will be automatically activated if the mains supply is switched off within 15 minutes.
Rest Mode and Inhibit Mode can be initiated by applying a short pulse between 9.5 and 22.5 VDC in amplitude for a period of 150 to 1,000 ms. This pulse shall be applied to terminals marked Rest.
After a mains reset the 89800190 exits the Rest Mode. Rest Mode and Inhibit Mode can both be disabled by applying a voltage pulse of 1,000 to 2,000 ms to the terminals marked as Rest to send the RE-LIGHT/RESET INHIBIT command.
Wiring batteries
Connection method: 4.8 x 0.5 mm spade tag welded to end of cell.
For stick packs this connection is accessible after the battery caps have been fitted.
To inhibit inverter operation disconnect the batteries by removing the connector from the battery spade tag.
For further information refer to corresponding battery datasheet.
Storage, installation and commissioning
Relevant information about storage conditions, installation and commissioning are provided in the battery datasheets.
Miscellaneous
Maximum number of switching cycles
All LED Drivers are tested with 50,000 switching cycles. The actually achieved number of switching cycles is significantly higher.
Battery replacement
After a battery replacement and a subsequent full charge cycle (24 h) a duration test is mandatory to prove that with the new battery the rated duration is achieved.
Self-Test LED emergency modules are intelligent, automated battery and inverter packs that attach to LED luminaires. They bypass the need for manual testing by automatically running mandatory functional and duration tests, saving labour costs and reducing human error.
These modules offer a smart, hands-off approach to fire safety and emergency lighting compliance. Key aspects include:
How They Work
Automated Scheduling: Using an internal clock, the module automatically initiates short monthly functional tests and annual full-duration (usually 3-hour) battery discharge tests.
Staggered Testing: The tests are staggered so that adjacent lights do not test at the same time, ensuring your building never goes completely dark.
No Extra Wiring: Standalone self-test modules operate independently and do not require central control panels, data cables, or wall key-switches.
Tridonic are a Zumtobel Group company, founded in 1956 in Dornbirn, Austria. For more than 60 years, they have been a driving force in the development of professional lighting solutions.
Today, Tridonic is a world-leading provider of lighting technology for professional applications, including office buildings, and retail outlets, hotels and restaurants, the education industry and outdoor lighting sectors.
In Tridonics’ extensive range of energy-efficient dimmable and non-dimmable LED drivers they offer the right products for every indoor and outdoor application – from cost-efficient LED drivers in proven Tridonic quality to premium products that give you maximum flexibility and convenience.
Tridonics’ dimmable LED drivers can be controlled with different analog and digital dimming signals. Tridonic basicDIM Wireless products allow wireless control without additional wiring.
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