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7.5" ePaper Display 800x480 - SPI

SKU: DMAYE0750WVNA
Angebot$69.00
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7.5" ePaper Display 800x480 - SPI
7.5" ePaper Display 800x480 - SPI Angebot$69.00

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7.5-Inch Active-Matrix ePaper Display

DMAYE0750WVNA 7.5-Inch 800×480 ePaper Display

Pure Reflective AM EPD with Selectable 4-Wire or 3-Wire SPI

DMAYE0750WVNA is a 7.5-inch active-matrix electrophoretic display with 800(H)×480(V) pixels, a 163.2(H)×97.92(V) mm active area, and a 170.2(H)×111.2(V)×1.02(D) mm outline. The specification identifies the panel as pure reflective and bi-stable.

The module supports hardware-selectable 4-wire SPI and 3-wire 9-bit SPI. Integrated functions listed in the specification include gate and source buffers, an MCU interface, timing-control logic, an oscillator, a DC-DC converter, SRAM, LUT, and VCOM circuitry. The documented application is an electronic shelf label system.

Key Specifications

Documented values for product selection and integration.

800×480Display resolution
163.2×97.92 mmActive area
2.8-3.6 VLogic supply range
0°C to 50°COperating range

Document reference: DMAYE0750WVNA Product Specification, V1.0.0, dated July 1, 2025. Use the linked specification and its mechanical drawing for component selection and PCB release.

Product Specifications

The values below are taken from the DMAYE0750WVNA Product Specification V1.0.0. Minimum, typical, and maximum values are shown only where the document defines them.

Parameter Specification
SKU DMAYE0750WVNA
Display Technology Active Matrix Electrophoretic Display (AM EPD)
Screen Size 7.5 inch
Resolution 800(H)×480(V) pixels
Active Area 163.2(H)×97.92(V) mm
Pixel Pitch 204(H)×204(V) µm
Pixel Configuration Rectangle
Module Outline 170.2±0.2(H)×111.2±0.2(V)×1.02±0.1(D) mm
Weight 41 g
Display Mode Pure reflective, bistable electrophoretic display
MCU Interface 4-wire SPI or 3-wire 9-bit SPI, selected by the BS pin
Serial Access Write-only in both SPI modes
Pin Count 24 pins
Logic Supply Voltage 2.8 V minimum, 3.0 V typical, 3.6 V maximum
Operating Temperature 0°C to 50°C
Operating Illuminance Indoor only; 2000 lux maximum
Storage Temperature -25°C to 60°C
Storage Relative Humidity 30%RH to 60%RH
White Reflectivity 45% minimum, 48% typical
Contrast Ratio 20:1 minimum, 25:1 typical
Full Refresh Time 500 ms minimum, 750 ms typical at 25°C with the specified waveform
Partial Refresh Time 250 ms typical at 25°C with the specified waveform
Panel Operating Power 45 mW typical, 450 mW maximum under the datasheet transition test condition
Panel Operating Current 15 mA typical, 150 mA maximum at VDD = 3.0 V
Sleep Current 35 µA typical at VDD = 3.0 V with DC-DC off, no clock, and no output load
Deep-Sleep Current 1 µA typical at VDD = 3.0 V with DC-DC off, no clock, no output load, and RAM data not retained
Deep-Sleep Power 3 µW typical
Temperature-Sensor Interface TSCL and TSDA provide an I2C master interface for an external digital temperature sensor
RoHS Marked as compliant in the supplied specification

Document limits: The specification does not identify a controller part number, mating connector part number, or touch-panel configuration. CE and FCC are marked as not certified. The 45 mW typical panel-power value is measured during the documented two-gray-scale transition test; electrical and optical characteristics are guaranteed only with the controller and waveform specified by the panel provider.

Display and Refresh Characteristics

The display operates in pure reflective mode. Optical and refresh performance must be evaluated under the measurement conditions and waveform requirements stated in the datasheet.

Reflective Optical Performance

White reflectivity is specified at 45% minimum and 48% typical. Contrast ratio is specified at 20:1 minimum and 25:1 typical. The feature list states an ultra-wide viewing angle, but no numeric viewing-angle range is provided.

Bi-Stable Operation

The specification identifies the panel as bi-stable and separately lists operating, sleep, and deep-sleep power or current values.

Full Refresh

Full refresh is specified at 500 ms minimum and 750 ms typical at 25°C. The screen flickers several times during the refresh process, and the specified waveform is required.

Partial Refresh

Partial refresh is specified at 250 ms typical at 25°C. The specification states that the screen does not flicker during the partial-refresh process, and the specified waveform is required.

Optical test method: Measurements are made with illumination at 45 degrees and detection perpendicular to the panel unless otherwise stated. White reflectivity is measured with an Eye-One Pro spectrophotometer, and contrast ratio is calculated from all-white and all-black surface reflectance.

SPI Interface Options and Control Signals

The module supports two hardware-selected serial interfaces. Both modes are write-only. CSB must be low for MCU communication, and the host must not send commands while BUSYN is high.

Interface Selection

BS = Low: 4-wire SPI using SDIN, SCLK, CSB, D/C, and RSTN.

BS = High: 3-wire 9-bit SPI using SDIN, SCLK, CSB, and RSTN. Each transfer contains the D/C bit followed by D7 through D0.

Serial data is shifted into the controller on the rising edge of SCLK.

SDA / SDINSerial data input.
SCL / SCLKSerial clock input.
CSBActive-low chip-select input.
D/CData/command control for 4-wire SPI.
RSTNActive-low reset input.
BUSYNBusy-state output. Do not interrupt waveform output, OTP programming, or temperature-sensor communication while BUSYN is high.
TSCL / TSDAI2C clock and data for an external digital temperature sensor.

24-Pin Assignment

Use the pin numbering and FPC orientation shown in the official mechanical drawing. NC pins must not be connected to each other.

Pin Name Function
1 NC No connection. Do not connect to other NC pins.
2 GDR N-channel MOSFET gate-drive control output.
3 RESE Current-sense input for the control loop.
4 NC No connection. Do not connect to other NC pins.
5 VDHR Positive source-driving voltage 1 capacitor pin.
6 TSCL I2C clock output for an external digital temperature sensor.
7 TSDA I2C bidirectional data for an external digital temperature sensor.
8 BS Bus-interface selection input: low for 4-wire SPI; high for 3-wire 9-bit SPI.
9 BUSYN Busy-state output.
10 RSTN Active-low reset input.
11 D/C Data/command control input for 4-wire SPI.
12 CSB Active-low chip-select input.
13 SCL SPI serial-clock input.
14 SDA SPI serial-data input.
15 VDD Power supply for interface logic pins.
16 VDD Power supply for the controller chip.
17 VSS Ground.
18 VDDD Core-logic power pin. A capacitor must be connected between VDDD and VSS under all circumstances.
19 VPP Power supply for OTP programming.
20 VSH Positive source-driving voltage 2 capacitor pin.
21 VGH Positive gate-driving voltage capacitor pin.
22 VSL Negative source-driving voltage capacitor pin.
23 VGL Negative gate-driving voltage capacitor pin.
24 VCOM VCOM driving-voltage capacitor pin.

Electrical Limits and Serial Timing

Recommended operating values must be used for normal operation. Absolute maximum ratings identify limits beyond which device damage may occur and are not normal operating conditions.

Electrical Item Documented Value
Absolute Maximum Logic Supply -0.5 V to +4.0 V
Absolute Maximum Logic Input -0.5 V to VDD + 0.5 V
Absolute Maximum Logic Output -0.5 V to VDD + 0.5 V
Recommended VDD 2.8 V minimum, 3.0 V typical, 3.6 V maximum
High-Level Input Voltage 0.8×VDD minimum
Low-Level Input Voltage 0.2×VDD maximum
High-Level Output Voltage 0.9×VDD minimum at IOH = -100 µA
Low-Level Output Voltage 0.1×VDD maximum at IOL = 100 µA
OTP Programming Voltage 7.5 V typical at VPP; this is not the normal VDD supply
Serial Timing Parameter Specification
Timing Conditions VDD - VSS = 2.4 V to 3.3 V, TOPR = 25°C, CL = 20 pF
Clock Cycle Time, tcycle 250 ns minimum
Address Setup Time, tAS 150 ns minimum
Address Hold Time, tAH 150 ns minimum
Chip-Select Setup Time, tCSS 120 ns minimum
Chip-Select Hold Time, tCSH 60 ns minimum
Write-Data Setup Time, tDSW 50 ns minimum
Write-Data Hold Time, tDHW 15 ns minimum
Clock Low Time, tCLKL 100 ns minimum
Clock High Time, tCLKH 100 ns minimum
Rise Time, 20%-80% 15 ns maximum
Fall Time, 20%-80% 15 ns maximum

Operating, Storage, and Handling Requirements

The EPD module contains fragile glass and plastic materials. Handle the panel carefully and follow the documented operating, storage, cleaning, and environmental requirements.

Specified Environment

Operate the panel from 0°C to 50°C. Store it from -25°C to 60°C at 30%RH to 60%RH. The operating illuminance entry is listed as indoor only, with 2000 lux as the maximum.

Mechanical Handling

Protect the panel from drops. Do not bend, twist, press, disassemble, reassemble, or stack panels. Do not connect or disconnect the interface while the panel is operating.

Surface Cleaning

Use a soft, dry cloth without chemicals. The protection film is soft and has no hard coating; pressure or abrasive cleaning may cause dents or scratches.

Moisture and Light Exposure

Prevent moisture penetration, frost, and condensation. Do not expose an unprotected panel to high temperature, high humidity, sunlight, or fluorescent light for extended periods.

Recommended Warehouse Storage

Keep the panel in its original packaging without sunlight or condensation at 15°C to 35°C and 30%RH to 60%RH.

Chemical Environment

Do not expose the module to harmful acid or alkali gases that may corrode electronic components.

Reliability Test Conditions

The following values are qualification stress conditions stated in the datasheet. They are not continuous-use ratings and do not replace the specified operating and storage ranges.

Test Documented Condition Method / Remark
High-Temperature Operation +50°C, 30%RH for 168 hours IEC 60068-2-2Bp
Low-Temperature Operation 0°C for 168 hours IEC 60068-2-2Ab
High-Temperature Storage +70°C, 23%RH for 168 hours IEC 60068-2-2Bp
Low-Temperature Storage -25°C for 168 hours IEC 60068-2-1Ab
High-Temperature, High-Humidity Operation +40°C, 90%RH for 168 hours IEC 60068-2-3CA
High-Temperature, High-Humidity Storage +60°C, 80%RH for 168 hours IEC 60068-2-3CA
Thermal Shock 100 cycles; -25°C for 30 minutes followed by +70°C for 30 minutes per cycle IEC 60068-2-14
Package Vibration 1.04G, 10-500 Hz, X/Y/Z directions, one hour in each direction Fully packed for shipment
Package Drop Impact 122 cm onto concrete; one corner, three edges, and six faces, one drop each Fully packed for shipment
Non-Operating Electrostatic Effect Machine-model test at ±250 V IEC 62179 and IEC 62180
Post-Test Requirement Electrical, mechanical, and optical specifications must remain satisfied after the stated tests Applies to the reliability tests above

Selection and Integration Checks

Before ordering or releasing a PCB, review the mechanical drawing, pin assignment, electrical limits, SPI timing, waveform requirement, block diagram, and typical application circuit. The specification does not identify a mating connector part number, controller part number, or touch-panel configuration.

Mechanical fit: Verify the 170.2±0.2×111.2±0.2×1.02±0.1 mm outline, active area, FPC orientation, and enclosure clearances.

Power circuit: Follow the typical application circuit for GDR, RESE, VDHR, VSH, VGH, VSL, VGL, VCOM, VDDD, and the required external components.

Firmware: Validate reset, SPI timing, BUSYN monitoring, the specified waveform, full and partial refresh, and sleep-mode entry.

Optical evaluation: Evaluate reflectivity and contrast under the intended lighting, and protect the panel from moisture, condensation, prolonged sunlight, and prolonged fluorescent-light exposure.

Common Questions

Is the panel specified as bi-stable?

The specification identifies the panel as bi-stable and lists separate operating, sleep, and deep-sleep power or current values.

Is this panel specified for outdoor use?

No outdoor rating is stated. The operating table lists indoor-only use with 2000 lux as the maximum, and the handling section warns against prolonged sunlight exposure of an unprotected panel.

Which SPI mode is supported?

BS low selects 4-wire SPI. BS high selects 3-wire 9-bit SPI. Both modes are write-only.

What conditions apply to the 250 ms partial-refresh value?

The documented value is 250 ms typical at 25°C and requires the specified waveform.

Is a touch panel included?

No touch-panel specification is provided in the supplied datasheet. Confirm separately before ordering if touch functionality is required.

What controller IC is used?

The supplied V1.0.0 specification describes integrated controller functions but does not identify a controller part number. Confirm with DisplayModule when the exact controller identification is required.

Download Official Datasheet

Review the official DMAYE0750WVNA specification for the mechanical drawing, 24-pin assignment, electrical limits, SPI timing, optical measurement method, reliability conditions, block diagram, and typical application circuit.

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