33432G High Power LED DC Electronic Load Simulator 600V, 24A, 3600W
- Each 33430G Series has its own control and display panel, LED/CC/CR/CV/CP/ Dynamic modes, panel with 150 sets Store/Recall memory which provides load set-up more efficiently,also can be controlled intranet via RS232、Ethernet、USB and GPIB interface.
- Short circuit test by external relay ( there is an optional fixture for short ), Short Time can be set and Short Voltage can be measured.
- Built-in dimming control signal output is for PWM dimming test of LED driver.
- Simulate LED forword Bias voltage (Vd) and Resistance (Rd).
- Programmable Load ON/OFF voltage, GO/NG meter check, Voltage meter display “ + “ or “ – “ is selectable and 150 sets Store/Recall larger memory is much advance feature for each different application.
- 150 sets test parameter and status storage function can call the storage memory real time in accordance with the auto sequence requirement.
- How to test the LED Driver using the 3340G / 33430G Series LED DC Electronic Load Simulator

- LED mode load for LED Power Driver test.
- CC, CR, CV, CP, LED and Dynamic mode.
- Simulate LED Forward Bias Voltage (Vd) and Resistance (Rd).
- Not only CC, CR, and CP mode have parallel operation functions, but CV mode also has parallel operation functions.
- Fast Response for PWM dimming test.
- Built-in dimming control signal for PWM dimming test.
- Short circuit test by external relay (built-in short relay driver circuit).
- 5 digital V / A / W Meter.
- Protections against V, I, W, and ℃.
- Optional Interface:GPIB、RS232、USB、LAN.
- New waveform generator plug in model 9923 adds user programmable battery dischargecurrent waveform simulation to Prodigit DC Loads
- LED Driver
- Voltage / Current source
- SMPS transient response
- Current limit testing and battery emulation
- Battery charger
- Battery discharge
- R&D / Quality Control
- ATE system
- Production testing
How to test the LED Driver using the 3340G / 33430G Series LED DC Electronic Load Simulator
3341G SeriesLED mode DC Electronic Load Module
3342G 300W LED mode DC Electronic Load Module + 3302F Single Mainframe
33430G Series High Power LED mode DC Electronic Load Module
Features
- Suitable for LED power supply and general power supply。
- CC, CR, CV, CP, LED and Dynamic mode。
- Simulate LED Forward Bias Voltage (Vd) and Resistance (Rd) 。
- LED mode has six ranges, suitable for all kinds of LED series and parallel applications。
- >100KHz fast voltage / current response, to meet the PWM dimming test。
- Built-in isolated dimming control signal。
- Built-in short-circuit test relay to control voltage, optional short-circuit fixture board (containing high-voltage high-current short - circuit relays).
- Applicable to the 3300F / 3302F / 3305F Quad / Single / Dual module frame.
- Up to 600V LED load voltage is optional.
6010 Power supply products automatic test system (ATE)
Figure 1 illustrates the use of a current source to drive LED lights. The LED equivalent circuit consists of two parts, a series resistance Rd and a series voltage Vd shown in Figure 2. The LED characteristic curve is shown in Figure 3. When the two ends voltage of the LED are greater than the LED equivalent series voltage Vd, the current flows through the LED Io is (V - Vd) / Rd that is the equivalent resistance.

When the lumen output of a single LED is insufficient, you can choose a higher power LED or use multiple LEDs in series. Since multiple LEDs in series can increase the output brightness, multi-unit LED array packaged products are already available. In this case, Vd and Rd will be multiplied by the number of LEDs in series. Figure 4 through 6 show the equivalent circuit and the corresponding characteristic curve for a variety of LED series configurations and their various LED lighting applications :
For LED Driver output voltages higher than 500V, there is a 600V option available when placing the order. For more details please refer to Prodigit's website or contact Prodigit’s sales department.
Typical specification of general type LED driver
The following describes the actual LED load and electronic load test, using the electronic LED loads in CC, CR, CV, LED mode. The difference between the actual LED load (3W / 3.85V / 700mA LED string 10).
Figure 13 the actual LED’s V, A waveform, where Vd = 25.8V, Rd = (Vo-Vd) / Io = 18Ω
The various operating modes description of Electronic Load
The CC mode of electronic load; only needs to set one parameter required for use as the load of the voltage source. Since the LED Driver has a current source output, the load cannot used in CC mode (constant current).
The CR mode of electronic load; only need to set one parameter, setting CR mode and R = Vo / Io, is used as a voltage source or current load, although the CR mode may be used to test LED Driver, but the equivalent circuit is different from the same characteristics as the LED and cannot achieve the effectiveness of LED simulation.
The CV mode of electronic load; only need to set one parameter, setting CV mode and V = Vo are used as the current source of the load, although the CV mode may be used to test the LED Driver, the equivalent circuit is different from the same characteristics as the LED and cannot achieve the effectiveness of LED simulation.
Figure 14 is 3341G LED MODE electronic load voltage Vo and current Io waveform, when the output voltage reaches 25.8V, Io current begin to increase, the same as the LED equivalent circuit.
and LED monitor
Press the Config key to enter Config mode, LED indicator ON , it operates to set the order to display Rd and Io。
As shown below:
At this time, press Mode key to LED Mode, then ON.
How to set 3341G series Vo, Vd, Rd, No
As shown above, at first select LED MODE
Press the PRESS key to set the LED series or LED strings in parallel quantity (initial value is 1, in general LED Driver output specification have been listed in the final value of Vo, it is generally set to 1 ).
Vo & Io setting and actual output :
LED Driver short-circuit test :
The LED Driver output is constant current. As such, unlike other voltage sources using the same general electronic load short circuit function, for short-circuit test the short-circuit impedance of an electronic load is not low enough. This means the led to LED Driver short-circuit protection cannot be used.
The dimming test of Analog/PWM dimming mode is to use a set of control signals to the LED Driver's dimming control input to control the LED Driver output current working cycle to achieve LED dimming, the LED Driver verification test must have a set of control signals to do dimming control, 3341G series LED mode Load provides a set of DIM control output voltage signal which is isolated from the electronic load module, adjustable voltage level 0 ~ 12V, Duty Cycle 1 ~ 99%, Frequency DC ~ 1KHz, by using the module to achieve the function of the system that can be simulated 0 ~ 12V analog dimming voltage signal or digital PWM dimming signal, these can be adjusted and controlled by 3341G series load module, operation is very convenient, when the verification test the dimming capacity of LED Driver, the use of the standard dimming control, you do not need an additional signal generator as the dimming control signal.
Generally, the electronic load which is not dedicated to LEDs is too slow for the LED driver to adjust the output current modulation. The dimming test of LED driver can not be performed. Through specially processed, Prodigit 3341G series LED mode load has up to 100 kHz or higher bandwidth, with sufficient response speed that can be stable operation in the dimmer, and configuration up to 6 Vd and Rd range design, can simulate a variety of LED combination conditions.
• DIM : Io (Level) control by analog voltage control
• DIM : PWM Io by analog voltage control
• PWM Freq. DC~1 KHz, Duty 0.01~0.99(1~99%)
With the implementation of PWM dimming, the LED Driver output voltage and current are variable. This may lead to the meter reading of 3341G series LED electronic load to be not stable enough. However, the 3341G series LED electronic load has built-in voltmeter and ammeter averaging. The user can freely set 1, 2, 4, 8, 16, 32, 64 times averaging reading value of the meter. Of course, the more readings are selected, the value of the average reading value will be more stable, but the relative reaction time will be longer. Set the averaging value so that the value can be stable and the reaction speed can be acceptable.
6010 ATE for LED Driver System Diagram
6010 ATE for Adapter / Charger System Diagram
6010 ATE for Quick Charger System Diagram
6010 ATE for 2 paths output AC / DC power supply System Diagram
6010 ATE for 4 paths output AC / DC power supply System Diagram
33432G High Power LED DC Electronic Load Simulator 600V, 24A, 3600W GPIB Card
RS-232 Card USB Card
LAN Card Fixture for short
Optional function:9923 programmable DC load current waveform