Tridonic 87500710 LCO 60/200-1050/100 o4a NF C EXC3 (28003168) – DALI 2 Certified
87500710
Tridonic 87500710 LCO 60/200-1050/100 o4a NF C EXC3
87500710 Description
NEW: lumDATA (DALI-2 part ext. 251, 252 and 253)
Dimmable built-in constant current outdoor LED driver
Dimming range 5 – 100 % (min. 10 mA)
Article number 28003168: Made in Europe, article number 87500710: Made in China.
£44.11
Ex.VAT Inc.VAT£52.93
Less Than 10 Available!
Description
Tridonic 87500710 LCO 60/200-1050/100 o4a NF C EXC3
87500710 Description
NEW: lumDATA (DALI-2 part ext. 251, 252 and 253)
Dimmable built-in constant current outdoor LED driver
Dimming range 5 – 100 % (min. 10 mA)
For luminaires of protection class I and protection class II
Temperature protection as per EN 61347-2-13 C5e
Output current adjustable between 200 – 1,050 mA via NFC, DALI or ready2mains Programmer
Max. output power 60 W
Up to 92 % efficiency
Lowest power input on stand-by < 0.16 W
Article number 28003168: Made in Europe, article number 87500710: Made in China.
Nominal lifetime of 100,000 h
87500710 Interfaces
Near field communication (NFC)
one4all (DALI-2 DT 6, DSI, switchDIM, corridorFUNCTION)
ready2mains (configuration via mains)
U6Me2 (configuration of chronoSTEP via mains and ready2mains Programmer)
Terminal blocks: 45° / 0° push terminals
87500710 Functions
Adjustable output current in 1-mA-steps (NFC, DALI, ready2mains)
Programmable chronoSTEP: times and levels (NFC, DALI, U6Me2)
Fulfills DALI-2 parts: 251 (Luminaire data), 252 (Energy reporting) and 253 (Diagnostics & Maintenance)
Dimming through mains voltage (inputDIM)
Enhanced constant light output function (eCLO)
Protective features (overtemperature, short-circuit, overload, noload, input voltage range, reduced surge amplification)
Configurable external temperature management (ETM)
Intelligent Temperature Guard (ITG)
Intelligent Voltage Guard Plus (IVG+)
Suitable for emergency escape lighting systems acc. to EN 50172
87500710 Benefits
Flexible configuration via companionSUITE (NFC, DALI, ready2mains™) or U6Me2 programmer
Application-oriented operating window for maximum compatibility
Best energy savings due to low stand-by losses and high efficiency
In-field programming possible after installation with NFC interface and ready2mains
High overvoltage protection: up to 10 kV asymmetric (protection class I and II)
Integrated ESD protection
Typical applications for the 87500710
Road, street and industry
87500710 Common Data
Article number 87500710
87500710 Electrical Data
Rated supply voltage 220 – 240 V
AC voltage range 198 – 264 V
inputDIM voltage range 170 – 250V
DC voltage range 176 – 280 V
Mains frequency 0 / 50 / 60 Hz
Overvoltage protection 320 V AC, 48 h
Typ. current (at 230 V, 50 Hz, full load) 12 77 – 289 mA
Typ. current (220 V, 0 Hz, full load, 15 % dimming level) 2 15 – 54 mA
Leakage current (at 230 V, 50 Hz, full load) 12 < 325 µA
Touch current (equipotential connected) 3 480 µA
Max. input power 68 W
Output power range (P_rated) 9.6 – 60 W
Typ. efficiency (at 230 V, 50 Hz, full load) 24 92 %
λ (at 230 V, 50 Hz, full load) 1 0.97
Typ. power consumption on stand-by 5 < 0.16 W
In-rush current (peak / duration) 32 A / 355 µs
THD (at 230 V, 50 Hz, full load) 1 < 8 %
Starting time (AC mode) < 750 ms
Starting time (DC mode) < 800 ms
Switchover time (AC/DC) 6 < 300 ms
Turn off time (at 230 V, 50 Hz, full load) < 500 ms
Output current tolerance 17 ± 3 %
Max. output current peak (non-repetitive) ≤ output current + 15 %
Output LF current ripple (< 120 Hz) ± 3.3 %
Output P_ST_LM (at full load) ≤ 1
Output SVM (at full load) ≤ 0.4
Max. output voltage (U-OUT) 130 V
Max. output voltage (HV) 130 V
Max. output voltage (LV) 80 V
Dimming range 5 – 100 % (min. 10 mA)
Mains surge capability (between L – N) 8 6 kV / 3 kA
Mains surge capability (between L/N – PE) 6 kV
Mains surge capability up to (between L/N – PE) without DALI connection 9 10 kV
Burst protection 10 6 kV
Surge voltage at output side (against PE) < 1 kV
Type of protection IP20
Lifetime up to 100,000 h
Dimensions L x W x H 133 x 77 x 31 mm
87500710 Standards
EN 55015
EN 61000-3-2
EN 61000-3-3
EN 61000-4-4
EN 61000-4-5
EN 61347-1
EN 61347-2-13
EN 62384
EN 61547
EN 62386-101 (DALI-2)
EN 62386-102 (DALI-2)
EN 62386-207 (DALI-2, including part 251, 252, 253)
According to EN 50172 for use in central battery systems
According to EN 60598-2-22 suitable for emergency luminaire
87500710 Glow wire test
according to EN 61347-1 with increased temperature of 850 °C passed.
Light modulation
according to IEEE 1789 device fulfils “no observable effect level”.
87500710 Installation / wiring
87500710 Circuit diagram
875000710 Wiring type and cross section
Input side:
For wiring use solid wire from 0.5 – 2.5 mm².
Strip 10 – 11 mm of insulation from the cables to ensure perfect operation of terminals.
Output side:
For wiring use solid wire from 0.2 – 1.5 mm².
Strip 8.5 – 9.5 mm of insulation from the cables to ensure perfect operation of terminals.
87500710 Wiring guidelines
• Run the secondary lines separately from the mains connections and lines to achieve good EMC performance.
• The max. secondary cable length (NTC, LED) is 2 m (4 m circuit).
• For good EMC performance, keep the LED wiring as short as possible.
• Secondary switching is not permitted.
• The LED driver has no inverse-polarity protection on the secondary side.
Wrong polarity can damage LED modules with no inverse-polarity protection.
• Wrong wiring of the LED driver can lead to malfunction or irreparable damage.
• To avoid damage of the Driver, the wiring must be protected against short circuits to earth (sharp edged metal parts, metal cable clips, louver, etc.).
Hot plug-in
Hot plug-in is not supported due to residual output voltage of > 0 V.
When connecting an LED load, restart the device to activate the LED output. This can be done via mains reset or via interface (DALI, DSI, ready2mains).
Earth connection
The earth connection is conducted as function earth (FE). There is no earth connection required for the functionality of the LED driver. Earth connection is recommended to improve following behaviour:
• Electromagnetic interferences (EMI)
• LED glowing at standby
• Transmission of mains transients to the LED output
87500710 Installation note
Max. torque at the clamping screw: 0.5 Nm / M4
87500710 Electrical values
Make sure that the LED driver is operated within the given window under all operating conditions. Special attention needs to be paid at dimming and DC emergency operation as the forward voltage of the connected LED modules varies with the dimming level, due to the implemented amplitude dimming technology. Coming below the specified minimum output voltage of the LED driver may cause the device to shut-down. See chapter “6.6 Light level in DC operation” for more information.
87500710 Software / Programming / Interfaces
87500710 Software / programming
With appropriate software and interface different functions can be activated and various parameters can be configured in the LED driver. The Driver supports the following software and interfaces:
Software / hardware for configuration:
• companionSUITE (deviceGENERATOR, deviceCONFIGURATOR, deviceANALYSER)
• masterCONFIGURATOR
• ready2mains Programmer
Interfaces for data transfer:
• NFC
• Control input DALI
• Control input switchDIM
• Control input ready2mains
• U6Me2
87500710 Nearfield communication (NFC)
The NFC Interface allows wireless communication with the LED driver. This interface offers the option to write configuration and to read configuration, errors and events with the companionSUITE. A correct communication between the LED driver and the NFC antenna can only be guaranteed if the antenna is placed directly on the Driver. Any material placed between the LED driver and the NFC antenna can cause a deterioration of the communication quality.
After programming the device via NFC power up the device one time for one second till the deviceANALYSER can read out the parameters. We recommend the use of following NFC antenna: www.tridonic.com/nfc-readers
NFC is complied with ISO/IEC 15963 standard.
Changing parameters via NFC shall be done by qualified engineers only
Control input DALI
The control input is non-polar for digital control signals (DALI, DSI). The control signal is not SELV. The control cable has to be installed in accordance to the requirements of low voltage installations.
Digital control with:
• DSI signal: 8 bit
• DALI signal: 16 bit
Dimming is realized by amplitude dimming.
Control Input switchDIM
A standard pushbutton (switchDIM) can be wired on the terminals (DA/N and DA/L). Integrated switchDIM function allows a direct connection of a pushbutton for
dimming and switching.
Brief push (< 0.6 s) switches LED driver ON and OFF. The dimm level is saved at power-down and restored at power-up. When the pushbutton is held, LED modules are dimmed. After repush the LED modules are dimmed in the opposite direction.
In installations with LED drivers with different dimming levels or opposite dimming directions (e.g. after a system extension), all LED drivers can be synchronized to 50 % dimming level by a 10 s push. Use of pushbutton with indicator lamp is not permitted.
Control input ready2mains (L, N)
The digital ready2mains protocol is modulated onto the mains signal which is wired to the mains terminal (L and N). The configuration is done via the ready2mains Programmer, either directly at the Programmer itself or via a respective software tool. For details on the configuration via ready2mains see the technical information of the Programmer and its tools.
Following tools can be used:
• deviceCONFIGURATOR (companionSUITE)
• masterCONFIGURATOR
• ready2mains Programmer
U6Me2
Settings of chronoSTEP function could be done via switching mains commands. For detailed description for timings and intervals see product manual.
Key features:
• Auto-dimming with 8 sequences
• Every sequence can hold 8 parameter pairs
• Separate dim-level for each time parameter
• Various commands + parameter for extensions
87500710 Functions
LED current
The LED output current must be adapted to the connected LED module. The value is limited by the current range of the respective device. The priority for current adjustment methods is NFC / DALI (highest priority) and ready2mains (lowest priority).
corridorFUNCTION
A motion detector (corridorFUNCTION) can be wired on the terminals DA/N and DA/L). With the corridorFUNCTION and a commercially available motion detector,
it is easy to adapt the lighting in one area to its use.
That is, when the area is entered by a person, the lighting dims instantly to a certain brightness and is available in desired strength. After the area is left by the person, the brightness dims slowly to a smaller value or switches off completely.
The individual parameters of the desired profile, such as brightness values or delay times, can be adjusted flexibly and individually. To activate the corridorFUNCTION without using software a voltage of 230V has to be applied at the DA/N and DA/L connection.
The unit will then switch automatically to the corridorFUNCTION. corridorFUNCTION is a very simple tool for controlling gears with conventional pushbuttons or motion sensors.
To ensure correct operation a sinusoidal mains voltage with a frequency of 50 Hz or 60 Hz is required at the control input. Special attention must be paid to achieving clear zero crossings.
Serious mains faults may impair the operation of corridorFUNCTION.
chronoSTEP (Virtual Midnight)
In the outdoor lighting and street lighting sector it often makes sense to dim the lighting level during night hours in order to save energy. The chronoSTEP function is a tool that makes this easy to do.
The device automatically measures the switch-on and switch-off times of the lighting installation over the past three days. The switch-on and switch-off times are typically the times at which the sun sets and rises. The midpoint of these two reference points is the time referred to as Virtual Midnight. The overall time interval between switch-on and switch-off points is called On Time.
Notice
Overall there are 8 profiles, 5 are predefined by factory and 3 can be programmed by the customer. When calculating the On-Time, only values between 4 and 24 hours are
counted. Values less than 4 hours could indicate a power failure and are therefore not saved. For settings longer than 24 hours, 24 hours is saved as the maximum possible value.
External temperature management (ETM + NTC)
ETM protects the LED module against thermal overstress. An external temperature sensor (NTC) detects the LED module temperature and the LED driver will limit the output current according to this temperature:
If the temperature is between the limits T1 (normal condition) and T2 (overload), the LED output current will be decreased. If the temperature exceeds the limit T3 (critical temperature), the device will switch to the shutdown level.
The shutdown level will be active until the module temperature decreases below T1 or until the LED driver is restarted (switch off or mains reset). The LED module’s temperature is only measured if the output is active (lamp is on).
The allowed NTC resistor value is between 0 to 2 MΩ. By default there are three predefined values that can be set via programming software, up to five individual values can be added.
Enhanced Constant Light Output (eCLO)
With this function the light output of the LED module can be kept equal over the lifetime. The light output of an LED module reduces over the course of its lifetime.
The Constant Light Output (eCLO) function compensates for this natural decline by constantly increasing the output current of the LED driver throughout its lifetime.
Enhanced eCLO shall be achieved by limitation of the LED current at the commissioning of the LED driver and providing a linear interpolation of the current over the time, depending on the data points given by the user. The user has to insert up to eight pairs of data (time, level). The output curve is the result of connecting the user data points linear. Detailed description for
eCLO see product manual.
Light level in DC operation
In emergency light systems with a central battery supply the DC recognition function uses the input voltage to detect if emergency mode is present. The LED driver then automatically switches to DC mode and dims the light to the defined DC level.
Without DC recognition different and more complex solutions would have to be applied in order to detect emergency mode. DC recognition is integrated in the device as standard.
No additional commissioning is necessary for activation. This is a safety-relevant parameter.
The setting is relevant for the dimensioning of the central battery system. The LED driver is designed to operate on DC voltage and pulsed DC voltage. For a reliable operation, make sure that also in DC emergency operation the LED driver is run within the specified conditions as stated in chapter “4.1 operating window”.
Light output level in DC operation: programmable 5 – 100 % (factory default = 15 %, EOFi = 0.13).
The voltage-dependent input current of Driver incl. LED module is depending on the used load.
The voltage-dependent no-load current of Driver (without or defect LED module) is for:
AC: < 21 mA
DC: < 7 mA
In DC operation dimming mode can be activated. If Dimming on DC is activated the requirements of the DC recognition function are ignored. Even if DC is detected, the LED driver continues to behave as in AC mode
• The present dimming level is retained
• An emergency light level defined for the DC recognition function (DC level) is ignored
• Control signals via DALI und DSI continue to be executed
If Dimming on DC is activated then emergency mode is not recognised. The device no longer automatically switches to the emergency light level.
87500710 Intelligent Temperature Guard (ITG)
The intelligent temperature guard protects the LED driver from thermal overheating by reducing the output power or switching off in case of operation above the thermal limits of the luminaire or ballast.
Depending on the luminaire design, the ITG operates at about 5 to 10 °C above tc temperature. If temperature threshold values are exceeded, the LED output current is limited.
These limits can be adjusted using the programming software. Even the current ITG temperature in the device can be read out. With this function, the sensitivity of the temperature control can be adjusted.
inputDIM
Dimming with varation of mains voltage between 170 and 250 V AC. With appropriate software the max. / min. dimming level can be set. The associated voltage for the max. / min. dimming level can be set individually within the voltage range stated above.
Intelligent Voltage Guard Plus (IVG+) has higher priority than inputDIM. If min. dimming level set by inputDIM function is higher than max. allowed dimming level of Intelligent Voltage Guard Plus (IVG+) the value of IVG+ has priority.
Power-up fading
The power-up function offers the opportunity to modify the on behavior. The time for fading on can be adjusted in a range of 0.2 to 16 seconds. According to this value, the device dims either from 0 % up to the power-on level.
By factory default no fading time is set (= 0 seconds).
Memory bank 1 extension
This function provides an extension to memory bank 1 to enable asset management functionality. Several internal values from the driver could be read out from this memory bank.
For example luminaire year, week and description. Also power levels, AC mains voltages and light output can be read out.
87500710 Energy reporting
This function provides the information related to energy reporting accessible through memory banks in this driver. Several functions and values could be read out to gain access in Content management systems.
Report and values for Active power, Active Energy and many more can be read out.
87500710 Diagnostics & Maintenance
This function provides the information related to diagnostics and maintenance information accessible through memory banks. Several functions and values could be read out to gain access in Content management systems.
Report and values for failure behaviour, driver conditions and malfunctions trigger points can be read out. Note for chapter 6.10 to 6.12: Accuracy of readout measured values is �10 % running the device in HV mode within a load range of 50 – 100 %. Running the device in other load range or in LV mode results in not useable values.
87500710 Protective features
87500710 Overtemperature protection
The LED driver is protected against temporary thermal overheating. If the temperature limit is exceeded the output current of the LED module(s) is reduced. The temperature protection is activated above tc max.
The activation temperature differs depending on the LED load. On DC operation this function is deactivated to fulfill emergency requirements.
Short-circuit behaviour
In case of a short-circuit at the LED output the LED output is switched off. After restart of the LED driver the output will be activated again. The restart can either be done via mains reset or via interface (DALI, DSI, ready2mains).
No-load operation
The LED driver will not be damaged in no-load operation. The output will be deactivated and is therefore free of voltage. If a LED load is connected, the device has to be restarted before the output will be activated again.
87500710 Overload protection
If the maximum load is exceeded by a defined internal limit, the LED driver turns off the LED output. After restart of the LED driver the output will be
activated again.
The restart can either be done via mains reset or via interface (DALI, DSI, ready2mains).
IVG+ – Intelligent Voltage Guard Plus
In some cases mains voltage is not stabilized and has some voltage peaks which are lower or higher than the nominal voltage range. Between 192 V and 80 V input voltage, the LED driver operates in undervoltage mode and dims the secondary side linearly down to 10 %.
Below 80 V input voltage, the LED driver shuts down, restarts at 90 V (without a reset) and dims linearly up back to 100 %. Above 280 V input voltage, the LED driver shuts down. If input voltage drops below 270 V, the LED driver restarts (without a reset).
Intelligent Voltage Guard Plus (IVG+) has a higher priority than inputDIM
87500710 Miscellaneous
87500710 Insulation and electric strength testing of luminaires
Electronic devices 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 500V DC 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 2MΩ. As an alternative, IEC 60598-1 Annex Q describes a test of the electrical strength with 1500V AC (or 1.414 x 1500V DC). To avoid damage to the electronic devices this test must not be conducted.
The equipotential terminal is used to connect the heat sink and the LED driver to reduce transients.
87500710 Conditions of storage and use
Humidity: 5 % up to max. 95 %, not condensed
Storage temperature: -40 °C up to max. +80 °C
The devices have to be acclimatised to the specified temperature range (ta) before they can be operated. The LED driver is declared as inbuilt LED controlgear, meaning it is intended
to be used within a luminaire enclosure.
If the product is used outside a luminaire, the installation must provide suitable protection for people and environment (e.g. in illuminated ceilings).
87500710 Maximum number of switching cycles
All LED driver are tested with 50,000 switching cycles. The actually achieved number of switching cycles is significantly higher
Other information for the 87500710
Constant current DALI LED drivers for street lighting provide precise, stable current (e.g., 250mA-700mA) to ensure consistent LED brightness, long lifespan, and energy efficiency. Utilizing the DALI protocol (IEC62386), they offer 0-100% dimming, remote control, diagnostics, and high IP ratings (IP65/IP67) for outdoor durability.
Key Features and Benefits
Constant Current Technology: Ensures LEDs receive a fixed, stable current, critical for performance and longevity, preventing fluctuations that cause premature failure.
DALI Protocol: Enables intelligent, two-way communication for dimming, grouping, and monitoring of lighting fixtures.
Street Lighting Suitability: Designed with high IP ratings (IP65/IP67) for protection against dust and moisture, as well as robust metal housing for outdoor,, harsh environments.
Dimming & Control: Offers 0%–100% dimming range, allowing for energy-saving, tailored light levels, such as reducing brightness during late-night hours.
Efficiency: High power factors (up to 0.98) and high efficiency (75%–80%) help reduce energy consumption.
Flexibility & Safety: Often feature multi-current outputs (e.g., 250mA to 700mA) adjustable via DIP switches, along with protections against short circuits and over-temperature.
Reliability: Typically come with a 5-year warranty, designed for over 50,000 hours of use.
Technical Specifications
Input Voltage: Usually ranges from 100V-265VAC to 220V-240V, suitable for mains connection.
Power Output: Common wattages for street lighting applications range from 15W to 240W.
Configuration: Some models support NFC configuration for setting output current, addresses, and dimming curves (linear or logarithmic).
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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