Instructions for DS-SUM models including: SUM-760S15AMGS 760W Programmable Driver with INV Digital Dimming, SUM-760S15AMGS, 760W Programmable Driver with INV Digital Dimming, Programmable Driver with INV Digital Dimming, Driver with INV Digital Dimming, INV Digital Dimming, Digital Dimming

DS-SUM-760SxxxMGS Rev.B

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Features Description Models


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DS-SUM-760SxxxMGS Rev.B
SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

Features
 Panel Mount Connectors Facilitates Installation  Hot-plugging Protection  Parallel LED Protection  Ultra High Efficiency (Up to 95.5%)  Full Power at Wide Output Current Range (Constant Power)  Adjustable Output Current (AOC)with Programmability  Isolated 0-10V/PWM/Resistor/3-Timer-Modes Dimmable  Adjustable Dimming Curve  INV Digital Dimming, UART Based Communication Protocol  Dim-to-Off with Standby Power  0.5W  Minimum Dimming Level with 5% or 10% Selectable  Hold Time Adjustable  Fade Time Adjustable  Always-on Auxiliary Power: 12Vdc, 250mA  Low Inrush Current  Output Lumen Compensation  End-of-Life Indicator  Input Surge Protection: DM 6kV, CM 10kV  All-Around Protection: IOVP, IUVP, OVP, SCP, OTP  IP66/IP67 and UL Dry/Damp/Wet Location  TYPE HL, for Use in a Class I, Division 2 Hazardous
(Classified) Location  5 Years Warranty

Description
The SUM-760SxxxMGS series is a 760W, constant-current, programmable and IP66/IP67 rated LED driver that operates from 90-305Vac input with excellent power factor. Created for many lighting applications including high mast, sports, UV-LED, aquaculture and horticulture, etc. It provides an auxiliary voltage and dim-to-off functionality for powering low voltage, wireless controls. The dimming control supports 0-10V dimming as well as two-way communication via Digital Dimming, a UART based communication protocol. The high efficiency of these drivers and compact metal case enables them to run cooler, significantly improving reliability and extending product life. To ensure trouble-free operation, protection is provided against input surge, input under voltage, input over voltage, output over voltage, short circuit, and over temperature.

Models
Adjustable Output Current
Range (A)
1.4-15.8

Full-Power Current Range (A)(1)
14-15.8

Default Output Current (A)
14

Output Voltage Range
(Vdc)
34-54

Max. Output Power
(W)
760

Typical Efficiency
(2)
95.5%

Typical Power Factor
120Vac 220Vac

Model Number
(3) (4)

0.99

0.96 SUM-760S15AMGS

Notes: (1) Output current range with constant power at 760W. (2) Measured at 100% load and 220Vac input (see below "General Specifications" for details). (3) Certified input voltage range: UL, FCC 100-277Vac; otherwise: 100-240Vac (4) SELV output

Specifications are subject to changes without notice.

1 / 16

All specifications are typical at 25C unless otherwise stated.

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SUM-760SxxxMGS
I-V Operation Area

Output Voltage(V)

Rev.B

760W Programmable Driver with INV Digital Dimming

60

54

(1400, 54)

(8400 , 54 )

(10%Ioset, 760/Ioset)

48

42

(14000 , 54 ) (Ioset, 760/Ioset)
(15800 , 48 )

36
30
24 0

(1580, 34)
Good Performance Area Programmed Operating Area

(15800 , 34 ) (Ioset, 34 )
Allowed Operating Area

3160

6320 9480 12640 15800
Output Current (mA) Note : 14000mAIoset15800mA

18960

Input Specifications
Parameter Input AC Voltage Input DC Voltage Input Frequency
Leakage Current
Input AC Current
Inrush Current(I2t) PF THD THD

Min. 90 Vac 127 Vdc 47 Hz
0.90 -

Typ. -

Max.

Notes

305 Vac

300 Vdc

63 Hz

0.75 MIU UL 8750; 277Vac/ 60Hz

0.70 mA IEC 60598-1; 240Vac/ 60Hz

7.54 A Measured at 100% load and 120 Vac input.

4.05 A 1.87 A2s
20% 10%

Measured at 100% load and 220 Vac input.
At 220Vac input, 25 cold start, duration=13.7 ms, 10%Ipeak-10%Ipeak.
At 100-277Vac, 50-60Hz, 60%-100% Load (456- 760W)
At 220-240Vac, 50-60Hz, 75%-100% Load (570- 760W)

Output Specifications

Parameter

Min.

Output Current Tolerance
Output Current Setting(Ioset Range)
SUM-760S15AMGS Output Current Setting Range with Constant Power
SUM-760S15AMGS

-5%Ioset 1400 mA 14000 mA

Typ. -
-

Max. 5%Ioset

100% load

15800 mA 15800 mA

Notes

Specifications are subject to changes without notice.

2 / 16

All specifications are typical at 25C unless otherwise stated.

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Fax: 86-571-86601139

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SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

Output Specifications (Continued)

Parameter

Min.

Typ.

Total Output Current Ripple

-

(pk-pk)

Output Current Ripple at < 200 Hz (pk-pk)

-

Startup Overshoot Current

-

No Load Output Voltage

SUM-760S15AMGS

-

Line Regulation

-

5%Iomax -
-

Load Regulation

-

-

Turn-on Delay Time

-

-

Temperature Coefficient of Ioset

-

0.03%/C

12V Auxiliary Output Voltage
12V Auxiliary Output Source Current
12V Auxiliary Output Transient Peak Current@ 6W

10.8 V 0 mA
-

12 V -

12V Auxiliary Output Transient Peak Current@10W

-

-

Max.

Notes

10%Iomax 100% load, 20 MHz BW

2%Iomax 70%-100% load

10%Iomax 100% load

60 V ±0.5% ±3.0% 0.5 s
13.2 V 250 mA
500 mA
850 mA

100% load
Measured at 120-277Vac input, 60%-100% Load Case temperature = 0C ~Tc max
Return terminal is "Dim-" 500mA peak for a maximum duration of 2.2ms in a 6.0ms period during which time the average should not exceed 250mA. 850mA peak for a maximum duration of 1.3ms in a 5.2ms period during which time the average should not exceed 250mA.

General Specifications

Parameter

Min.

Efficiency at 120 Vac input: SUM-760S15AMGS
Io= 14000 mA Io= 15800 mA
Efficiency at 220 Vac input: SUM-760S15AMGS
Io= 14000 mA Io= 15800 mA
Efficiency at 277 Vac input: SUM-760S15AMGS
Io= 14000 mA Io= 15800 mA

91.5% 91.0%
93.5% 93.0%
93.5% 93.5%

Standby Power

-

MTBF

-

Lifetime
-

Typ.
93.5% 93.0%
95.5% 95.0%
95.5% 95.5%
-
201,000 Hours
102,000 Hours 81,000 Hours

Max.
-
-
0.5 W -
-

Notes
Measured at 100% load and steady-state temperature in 25C ambient; (Efficiency will be about 2.0% lower if measured immediately after startup.) Measured at 100% load and steady-state temperature in 25C ambient; (Efficiency will be about 2.0% lower if measured immediately after startup.) Measured at 100% load and steady-state temperature in 25C ambient; (Efficiency will be about 2.0% lower if measured immediately after startup.)
Measured at 230Vac/50Hz; Dimming off
Measured at 220Vac input, 80%Load and 25C ambient temperature (MIL-HDBK217F) Measured at 220Vac input, 80%Load and 70C case temperature; See lifetime vs. Tc curve for the details Measured at 220Vac input, 100%Load and 40C ambient temperature

Specifications are subject to changes without notice.

3 / 16

All specifications are typical at 25C unless otherwise stated.

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Fax: 86-571-86601139

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SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

General Specifications (Continued)

Parameter
Operating Case Temperature for Safety Tc_s Operating Case Temperature for Warranty Tc_w
Storage Temperature
Dimensions Inches (L × W × H)
Millimeters (L × W × H)
Net Weight

Min. -40°C -40°C -40°C

Typ. -

Max. +90°C +80°C +85°C

15.35 × 4.25 × 1.91 390 × 108 × 48.5

-

3500 g

-

Notes
Case temperature for 5 years warranty Humidity: 10%RH to 95%RH Humidity: 5%RH to 95%RH With mounting ear
16.34 × 4.25 × 1.91 415 × 108 × 48.5

Dimming Specifications

Parameter

Absolute Maximum Voltage on the Vdim (+) Pin

Source Current on Vdim (+) Pin

Dimming

Output

SUM-760S15AMGS

Range with

10%-100% SUM-760S15AMGS (Default)

Dimming

Output

SUM-760S15AMGS

Range with

5%-100% SUM-760S15AMGS

(Settable)

Recommended Dimming Input

Range

Dim off Voltage

Min. -20 V 90 uA 10%Ioset 1400 mA 5%Ioset 700 mA 0 V 0.35 V

Dim on Voltage

0.55 V

Hysteresis

-

PWM_in High Level

3 V

PWM_in Low Level

-0.3 V

PWM_in Frequency Range

200 Hz

PWM_in Duty Cycle
PWM Dimming off (Positive Logic) PWM Dimming on (Positive Logic) PWM Dimming off (Negative Logic) PWM Dimming on (Negative Logic)
Hysteresis

1% 3% 5% 92% 90%
-

Typ. -
100 uA -
-
0.5 V 0.7 V 0.2 V 5% 7% 95% 93% 2%

Max. 20 V 110 uA Ioset
Ioset Ioset
Ioset 10 V 0.65 V 0.85 V
10 V 0.6 V 3 KHz 99% 8% 10% 97% 95%
-

Notes Vdim(+) = 0 V 14000mA  Ioset  15800 mA 1400mA  Ioset  14000 mA 14000mA  Ioset  15800 mA 1400mA  Ioset  14000 mA
Default 0-10V dimming mode.
Dimming mode set to PWM in Inventronics Programming Software.

Specifications are subject to changes without notice.

4 / 16

All specifications are typical at 25C unless otherwise stated.

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Tel: 86-571-56565800

Fax: 86-571-86601139

sales@inventronics-co.com

SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

Safety & EMC Compliance
Safety Category

Standard

UL/CUL CE CB

UL 8750, CAN/CSA-C22.2 No. 250.13 EN 61347-1, EN 61347-2-13 IEC 61347-1, IEC 61347-2-13

EMI Standards

Notes

EN IEC 55015 (1) EN IEC 61000-3-2
EN 61000-3-3
FCC Part 15(1)
EMS Standards

Conducted emission Test &Radiated emission Test
Harmonic current emissions
Voltage fluctuations & flicker
ANSI C63.4 Class B This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: [1] this device may not cause harmful interference, and [2] this device must accept any interference received, including interference that may cause undesired Operation.
Notes

EN 61000-4-2 EN 61000-4-3 EN 61000-4-4 EN 61000-4-5 EN 61000-4-6 EN 61000-4-8 EN 61000-4-11
EN 61547

Electrostatic Discharge (ESD): 8 kV air discharge, 4 kV contact discharge Radio-Frequency Electromagnetic Field Susceptibility Test-RS Electrical Fast Transient / Burst-EFT Surge Immunity Test: AC Power Line: Differential Mode 6 kV, Common Mode 10 kV Conducted Radio Frequency Disturbances Test-CS Power Frequency Magnetic Field Test Voltage Dips Electromagnetic Immunity Requirements Applies To Lighting Equipment

Note: (1) This LED driver meets the EMI specifications above, but EMI performance of a luminaire that contains it depends also on the other devices connected to the driver and on the fixture itself.

Specifications are subject to changes without notice.

5 / 16

All specifications are typical at 25C unless otherwise stated.

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SUM-760SxxxMGS
Derating

Load(%)

Rev.B

760W Programmable Driver with INV Digital Dimming

Derating

100

80

108 Vac, 100% load

60

40

20

0 90 120 150 180 210 240 270 300 330
Input Voltage(V)

Lifetime(kHours)

Lifetime vs. Case Temperature
Lifetime vs. Case Temperature
135 120 105
90 75 60 45 30 15
0 30 35 40 45 50 55 60 65 70 75 80 85 90
Case Temperature ()
Inrush Current Waveform
I
Ipeak

50% Ipeak

twidth

Input AC Voltage

Ipeak

twidth (@ 50% Ipeak)

220Vac

13.5A

4.16ms

t

Specifications are subject to changes without notice.

6 / 16

All specifications are typical at 25C unless otherwise stated.

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Fax: 86-571-86601139

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SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

Efficiency vs. Load

100%

SUM-760S15AMGS(lo=14000mA) Efficiency vs. Output Voltage

95%

90%

85%
80%
75% 60%

120Vac 220Vac 277Vac

70%

80%

90% 100%

Normalized Output Voltage

SUM-760S15AMGS(lo=15800mA)
Efficiency vs. Output Voltage 100%

95%

90%

85%
80%
75% 60%

120Vac 220Vac 277Vac

70%

80%

90% 100%

Normalized Output Voltage

Efficiency PF
Efficiency

Power Factor

1.00 0.95 0.90 0.85 0.80 0.75
60%

Total Harmonic Distortion
20%

15%

10%

PF vs. Load

70%

80%

Load

120Vac 220Vac 277Vac
90% 100%

THD vs. Load

120Vac 220Vac 277Vac

THD

5%

0% 60%

70%

80%

90% 100%

Load

Specifications are subject to changes without notice.

7 / 16

All specifications are typical at 25C unless otherwise stated.

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Tel: 86-571-56565800

Fax: 86-571-86601139

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SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

Hot-plugging Protection
This feature protects LEDs when connecting to a driver that is already powered on. This is disabled by default and can be enabled through the Inventronics Programing Software.

LED threshold voltage (Vth) is the minimum voltage required for current to flow through the LED load. After this threshold is met, the LED forward voltage (Vf) increases as the current increases.
Set Vth close to, but higher than the actual LED threshold voltage for optimized performance. The greater the difference between the Vth setting and the actual LED threshold voltage, the higher the overshoot current will be. The Vth setting must be lower than Vf.
Please test, program, and tune this feature for each LED load design.

Parameter

Hot-plugging Protection

LED Threshold Voltage Setting Range
Setting Tolerance

Min. 44 V -2%

Typ. -

Max. 54 V 2%

Notes
Set Vth close to, but higher than the actual LED threshold voltage

Parallel LED Protection
This feature helps protect parallel LEDs from a high, overcurrent condition by limiting the voltage. This is disabled by default and can be enabled through the Inventronics Programing Software.

Set V_overload close to, but higher than the maximum forward voltage for optimized performance. The greater the difference between the V_overload setting and the maximum forward voltage, the higher the overload stress will be. The V_overload setting must be higher than Vf.
Please test, program, and tune this feature for each LED load design.

Parameter

Parallel LED Protection

Overload Voltage Setting Range
Setting Tolerance

Min. 47 V -2%

Typ. -

Max. 56 V 2%

Notes
Set V_overload close to, but higher than the maximum LED forward voltage

Specifications are subject to changes without notice.

8 / 16

All specifications are typical at 25C unless otherwise stated.

www.inventronics-co.com

Tel: 86-571-56565800

Fax: 86-571-86601139

sales@inventronics-co.com

SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

Protection Functions

Parameter

Min.

Typ.

Max.

Notes

Over Voltage Protection

Short Circuit Protection

Over Temperature Protection

Input Under Voltage Protection (IUVP)
Input Over Voltage Protection (IOVP)

Input Under Voltage Protection Input Under Voltage Recovery Input Over Voltage Protection Input Over Voltage Recovery Max. of Input Over Voltage

Limits output voltage at no load and in case the normal voltage limit fails.
Auto Recovery. No damage will occur when any output is short circuited. The output shall return to normal when the fault condition is removed.
Decreases output current, returning to normal after over temperature is removed.

70 Vac

80 Vac

90 Vac

Turn off the output when the input voltage falls below protection voltage.

75 Vac

85 Vac

95 Vac

Auto Recovery. The driver will restart when the input voltage exceeds recovery voltage.

310 Vac 300 Vac
-

320 Vac 310 Vac
-

330 Vac 320 Vac 350 Vac

Turn off the output when the input voltage exceeds protection voltage.
Auto Recovery. The driver will restart when the input voltage falls below recovery voltage. The driver can survive for 8 hours with a stable input voltage stress of 350Vac.

 Input Under Voltage Protection Diagram

Io

Recovery

Protection 80 Vac

Vin 85 Vac

Specifications are subject to changes without notice.

9 / 16

All specifications are typical at 25C unless otherwise stated.

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SUM-760SxxxMGS

Rev.B

 Input Over Voltage Protection Diagram

760W Programmable Driver with INV Digital Dimming

Io

Recovery

Protection

310 Vac

Vin 320 Vac

Dimming

 0-10V Dimming
The recommended implementation of the dimming control is provided below.

lo/loset vs. Dimming Voltage

Inventronics LED Driver

100%
V+ 80%

VVaux Dim+

lo/loset

60% 40%

20%

Dimmer

Dim-

0% 012345678

Dimming Voltage (V)

Implementation 1: Positive logic

9 10

Inventronics LED Driver

lo/loset vs. Dimming Voltage

100% V+
80%

VVaux Dim+

lo/loset

60% 40% 20%

Dim-

Dimmer

0% 012345678

Dimming Voltage (V)

Implementation 2: Negative logic

9 10

Specifications are subject to changes without notice.

10 / 16 All specifications are typical at 25C unless otherwise stated.

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Tel: 86-571-56565800

Fax: 86-571-86601139

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SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

Notes:
1. Do NOT connect Dim- to the output V- or V+, otherwise the driver will not work properly. 2. The dimmer can also be replaced by an active 0-10V voltage source signal or passive components like zener. 3. When 0-10V negative logic dimming mode and Dim+ is open, the driver will dim to off and be standby.

 PWM Dimming
The recommended implementation of the dimming control is provided below.

lo/loset vs. PWM duty cycle

100% V+

V-
Inventronics Vaux LED Driver
Dim+
Dim-

PWM Signal

lo/loset

80% 60% 40% 20%

0% 0%

20% 40% 60% 80% 100% PWM duty cycle

Implementation 3: Positive logic

lo/loset vs. PWM duty cycle

Inventronics LED Driver

V+ VVaux Dim+
Dim-

100%

80%

lo/loset

60%

PWM Signal

40% 20%

0% 0%

20% 40% 60% 80% PWM duty cycle

Implementation 4: Negative logic

Note:
1. Do NOT connect Dim- to the output V- or V+, otherwise the driver will not work properly. 2. When PWM negative logic dimming mode and Dim+ is open, the driver will dim to off and be standby.

100%

Specifications are subject to changes without notice.

11 / 16 All specifications are typical at 25C unless otherwise stated.

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Tel: 86-571-56565800

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SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

 Resistor Dimming
The recommended implementation of the dimming control is provided below.

lo/loset vs. Rx

Inventronics LED Driver

V+ VVaux Dim+

100% 80% 60% 40%

lo/loset

Rx Dim-

20%

0% 0k 10k 20k 30k 40k 50k 60k 70k 80k 90k 100k Rx ()

Implementation 5: Positive logic

Inventronics LED Driver

V+ VVaux Dim+
Rx Dim-

lo/loset

100%

lo/loset vs. Rx

80%

60%

40%

20%

0% 0k 10k 20k 30k 40k 50k 60k 70k 80k 90k100k
Rx ()

Implementation 6: Negative logic
Notes: 1. Do NOT connect Dim- to the output V- or V+, otherwise the driver will not work properly. 2. When resistor negative logic dimming mode and Dim+ is open, the driver will dim to off and be standby.
 Adjustable Dimming Curve
0-10V dimming curve can be set as corresponding dimming voltage by Inventronics Multi Programmer. Take the positive logic dimming as an example, the recommended implementation of the dimming control is provided below.

Specifications are subject to changes without notice.

12 / 16 All specifications are typical at 25C unless otherwise stated.

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Tel: 86-571-56565800

Fax: 86-571-86601139

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SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

lo/loset vs. Dimming Voltage

Inventronics LED Driver

100%

Y

V+ 80%

VVaux Dim+
Dim-

Dimmer

lo/loset

60%
40%
20% X
0% 012345678 Dimming Voltage (V)

Implementation 7: Positive logic

9 10

Notes: 1. Do NOT connect Dim- to the output V- or V+, otherwise the driver will not work properly. 2. The dimmer can also be replaced by an active 0-10V voltage source signal or passive components like zener. 3. When dimming voltage X point is set to be smaller than Y point, the dimming curve is positive logic, conversely, when X point is set to be bigger than Y point, the dimming curve is negative logic. 4. For best dimming accuracy, the difference between X point and Y point is advised more than 4V. 5. Dimming off voltage adjustable.

 Time Dimming
Time dimming control includes 3 kinds of modes, they are Self Adapting-Midnight, Self AdaptingPercentage and Traditional Timer.  Self Adapting-Midnight: Automatically adjusts the dimming curve based on the on-time of past two
days (if difference <15 minutes), assuming that the center point of the dimming curve is midnight local time.  Self Adapting-Percentage: Automatically adjusts the on-time of each step by a constant percentage = (actual on-time for the past 2 days if difference <15 min) / (programmed on-time from the dimming curve).
 Traditional Timer: Follows the programmed timing curve after power on with no changes.

 Output Lumen Compensation
Output Lumen Compensation (OLC) may be used to maintain constant light output over the life of the LEDs by driving them at a reduced current when new, then gradually increasing the drive current over time to counteract LED lumen degradation.

 Minimum Dimming Level with 5% or 10% Selectable
The minimum dimming level can be set as 5% or 10% by Inventronics Multi Programmer,10% is default.

 Hold Time Adjustable
When AC power is first applied to the LED driver, enabling a "Hold" period can allow devices powered by the Auxiliary voltage to stabilize before the driver fades up to the maximum dimming level. During this period, the driver will not respond to external dimming commands but will respond again after the hold time ends. Both the initial dimming percentage and the duration of this hold period can be adjusted by the Inventronics Multi Programmer. This function is disabled by default

 Fade Time Adjustable
There is a "Fade" period after the "Hold" period. The soft-start time and dimming slope applied to all dimming transitions can be adjusted individually. It is adjusted by the Inventronics Multi Programmer. This function is disabled by default.

Specifications are subject to changes without notice.

13 / 16 All specifications are typical at 25C unless otherwise stated.

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Tel: 86-571-56565800

Fax: 86-571-86601139

sales@inventronics-co.com

SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

 End Of Life
End-of-Life (EOL) is providing a visual notification to a user that the LED module has reached the end of manufacturer-specified life and that the replacement is recommended. Once active, an indication is given at each power-up of the driver, which the driver indicates this through a lower light output during the first 1 minute before normal operation is continued.

 Digital Dimming
Inventronics Digital Dimming is a UART (Universal Asynchronous Receive Transmitter) based communication protocol. Please refer to Inventronics Digital Dimming file for details.

Programming Connection Diagram

Note: The driver does not need to be powered on during the programming process.
 Please refer to PRG-MUL2 (Programmer) datasheet for details.
Mechanical Outline
INPUT(Panel Connector 3P Male)
N
Tc
L

DIMMING(Panel Connector 3P Male)
Waterproof Cap

Dim+

DimVaux

V+ V-
OUTPUT(Panel Connector 3P Female)

PROJ:
Unspecified tolerance:±1

Specifications are subject to changes without notice.

14 / 16 All specifications are typical at 25C unless otherwise stated.

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Tel: 86-571-56565800

Fax: 86-571-86601139

sales@inventronics-co.com

SUM-760SxxxMGS

Rev.B

760W Programmable Driver with INV Digital Dimming

Note: This driver features UL Wet Location, IP67 panel mount connectors to streamline wiring in the field while still supporting stringent environmental conditions. The mating push-lock are not supplied by Inventronics. Please contact Wieland and Amphenol LTW or one of their suppliers for assistance sourcing the mating pushlock

Location Vin Vo Dim Dim

Series Wieland RST20i3

Rating voltage/current
600V/10A

PN of connector on driver 96.032.1055.7

ALTW X-Lok,C-Size

300V/20A

CC-03PMFS-QC800P

ALTW X-Lok,A-Size
ALTW X-Lok,A-Size Waterproof Cap

300V/5A /

AD-03PMMS-QC8001 CAP-WAAMQPC1

PN of mating push-lock 96.031.0055.7 (Spring)
or 96.031.4055.7 (Screw) CC-03BFMB-QL8APP
AD-03BFFB-QL8AP0
/

RoHS Compliance
Our products comply with reference to RoHS Directive (EU) 2015/863 amending 2011/65/EU, calling for the elimination of lead and other hazardous substances from electronic products.

Specifications are subject to changes without notice.

15 / 16 All specifications are typical at 25C unless otherwise stated.

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Tel: 86-571-56565800

Fax: 86-571-86601139

sales@inventronics-co.com

SUM-760SxxxMGS

Rev.B

Revision History

Change Date

Rev.

Item

2023-01-16 A Datasheet Release

Format

2023-12-28

Features B
Inrush Current Waveform

Dimming

760W Programmable Driver with INV Digital Dimming

Description of Change From
/ / / / /

To / Updated Updated Updated Updated

Specifications are subject to changes without notice.

16 / 16 All specifications are typical at 25C unless otherwise stated.

www.inventronics-co.com

Tel: 86-571-56565800

Fax: 86-571-86601139

sales@inventronics-co.com



References

Acrobat Distiller 20.0 (Windows)