SFH7779 AMSCO | Alldatasheet
Document overview
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- PDF pages: 42
Technical content
1 | Version 1.7 | 2023-05-24 Discontinued www.osram-os.com SFH 7779 Datasheet Discontinued Published by ams-OSRAM AG Tobelbader Strasse 30, 8141 Premstaetten, Austria Phone +43 3136 500-0 ams-osram.com © All rights reserved
2 | Version 1.7 | 2023-05-24 Discontinued Chip on board SFH 7779 Ambient Light and Proximity Sensor with Integrated 940nm IR Emitter
Applications
- 3D Sensing
Features
- ESD: 2 kV acc. to ANSI/ESDA/JEDEC JS-001 (HBM, Class 2) - PS and ALS Interrupt function - I2C interface (max. 400kHz) - Miniature package
3 | Version 1.7 | 2023-05-24 Discontinued
Ordering Information
4 | Version 1.7 | 2023-05-24 Discontinued Application diagram - Bypass capacitors for VDD and VLED are required for proper operation of the device. - Proposed size for the pull-up resistors are Rp1, Rp2 and Rp3 are 10kOhm
5 | Version 1.7 | 2023-05-24 Discontinued Pin description Pin Name Function
1 VDD Power supply pin
2 SCL I2C bus serial clock pin
3 GND Ground pin
4 LED_A Anode of the LED
5 LED_C Cathode of the LED
6 LDR LED driver pin
7 INT Interrupt pin; open drain output; configured via I2C bus
8 SDA I2C bus serial data pin
0x42 0x3F set LED pulse current to 200mA and ALS gain to x128 0x41 0x06 activate ALS & PS with a measurement repetition time of 100ms Wait 100ms 0x44 read data read LSB of proximity measurement data 0x45 read data read MSB of proximity measurement data 0x46 read data read LSB of ambient light measurement of VIS diode 0x47 read data read MSB of ambient light measurement of VIS diode 0x48 read data read LSB of ambient light measurement of IR diode 0x49 read data read MSB of ambient light measurement of IR diode I2C interface - I/O-pins are open drain type and logic high level is set with external pull-up resistor - SFH 7779 operates in slave mode. Slave address is 0111001 (0x39h) - Designed for the I2C Fast mode (400 kb/s) - Interrupt pin (INT): open-drain output (like SDA and SCL)
6 | Version 1.7 | 2023-05-24 Discontinued Block diagram
7 | Version 1.7 | 2023-05-24 Discontinued Measurement modes Mode Description OFF The device is inactive. Other units may use the I2C bus without any restrictions; I/O pins and INT are in high Z state. There is no sink current through the LED activated by I2C bus communication. Data registers can be read and written. ALS / PS free running Measurements are triggered internally by the SFH 7779. Stand-by / active mode for ALS and PS, measurement times, interrupt options and LED current can be adjusted via I2C register. Measurement results can be read from the data register, the status from the interrupt register If VDD exceeds the threshold voltage, the sensor will switch from OFF mode to STAND-By mode. As shown in the transition-diagram above it is possible to switch between all modes without any restriction.
8 | Version 1.7 | 2023-05-24 Discontinued Maximum Ratings TA = 25 °C Parameter Symbol Values Storage temperature range Tstg min. max. -40 °C 100 °C Operating temperature range Top min. max. -40 °C 85 °C Maximum supply voltage between VDD and GND VDD max. 4.5 V Maximum voltage of SDA, SCL to GND Vdig max. 4.5 V Maximum voltage of INT to GND Vint max. 7 V Maximum voltage of VLED to GND VLED max. 7 V Maximum Current of INT and SDA IINT / ISDA max. 7 mA ESD withstand voltage acc. to ANSI/ESDA/JEDEC JS-001 HBM, Class 2 VESD max. 2 kV
9 | Version 1.7 | 2023-05-24 Discontinued Operating conditions Parameter Symbol Values Supply voltage VDD min. typ. max. 2.3 V 2.5 V 3.6 V Ripple on supply voltage VDDmin and VDDmax must stay in the VDD range, DC … 100 MHz VDD,rip max. 200 mV VDD threshold voltage voltage to initiate the start-up procedure VDD,th typ. max. 1.7 V 2.3 V Voltage for INT VINT max. 5.5 V Voltage for SCL and SDA VSCL; VSDA min. max: 1.65 V 3.6 V SDA and SCL input low level voltage VSCL_low VSDA_low max. 0.54 V SDA and SCL input high level voltage VSCL_high VSDA_high min. 1.26 V SDA and SCL input current ISCL_low ISDA_low min. max. -10 µA 10 µA INT output low level voltage (IINT = 3 mA) When INT is active VINT = low. When INT is inactive VINT = high. VINT_low max. 0.4 V Supply voltage LED VLED min. typ. max. 2.3 V 3.5 V 5.5 V Ripple VLED VLED,rip max. 200mV
10 | Version 1.7 | 2023-05-24 Discontinued Characteristics TA = 25 °C Parameter Symbol Values Conditions for OFF mode VDD,off typ. 0.5 V Current consumption in OFF mode VDD < 0.5 V IDD,off typ. 0 µA STAND-BY mode current consumption Mode_control(41h) = 0x00; VDD = 2.5 V IDD,stby typ. max. 0.8 µA 1.5 µA Proximity Sensor (PS) LED centroid wavelength (ILED = 100mA) λcentroid typ. 940 nm LED Spectral bandwidth (ILED = 100mA) Δλ typ. 30 nm Temperature coefficient of optical power of LED TC typ. -0.5 %/K ILED ON time for one measurement tLED ON min. typ. max. 80 µs 200 µs 300 µs LED current, programmable VLED > 2.3V for ILED < 100mA VLED > 3.0V for ILED > 100mA ILED min. max. 25 mA 200 mA Accuracy of LED current source ALS_PS_CONTROL: LED Current (00b ILED min. typ. max. 22.5 mA 25 mA 27.5 mA Mean current consumption in PS mode current consumption of the pulsed LED is not included; MODE_CONTROL(0x41h) = 0x03h; all other registers are default; VDD = 2.5 V IDD typ. max. 60 µA 150 µA Mean current consumption in PS mode during the 200 µs LED pulse (tLED ON) current consumption of the pulsed LED is not included IDD typ. max. 6.5 mA 8.5 mA Typical detection distance KODAK grey card 100x130mm2, R = 90% ILED = 200mA, VDD = 2.5V, EV = 0lx; high threshold = 11 counts hon typ. 10 cm Typical none detection distance KODAK grey card 100x130mm2, R = 90% ILED = 200mA, VDD = 2.5V, EV = 0lx; high threshold = 8 counts hoff typ. 12 cm
11 | Version 1.7 | 2023-05-24 Discontinued Characteristics (continued) TA = 25 °C Parameter Symbol Values PS sensor output with human skin reflector ILED = 200mA, VDD = 2.5, h = 0mm: skin directly on top of the sensor PSout typ. 850 counts Temperature coefficient of the PS signal ILED = 200mA, VDD = 2.5V, R = 90%, AReflector = 10x13cm2, h = 4cm TKPS typ. 0.15 %/K Example of PS Hysteresis The switching distance h is specified from top sensor surface to the reflector.
12 | Version 1.7 | 2023-05-24 Discontinued Dimensions of proposed optical aperture (optical aperture: IR transmitting opening in cover glass)
13 | Version 1.7 | 2023-05-24 Discontinued Characteristics TA = 25 °C Parameter Symbol Values Ambient Light Sensor: ALS_VIS and ALS_ IR diode Wavelength of max. sensitivity for ALS VIS λ Smax typ. 560 nm Spectral range of sensitivity (10 % of Smax) of ALS VIS λ S10% min. max. 450 nm 950 nm Wavelength of max. sensitivity of ALS IR λ Smax typ. 880 nm Spectral range of sensitivity (10 % of Smax) of ALS IR λ S10% min. max. 830 nm 1050 nm Illuminance measurement range is programmable the maximum ALS sensitivity can be reached with the ALS high sensitivity mode → 400ms ALS integration time MODE_CONTROL (0x41h) = 0Ah or 0Bh min. max. 0.0022 lx 73000 lx ALS VIS sensor output 1000lx; white LED; VDD = 2.5V MODE_CONTROL (0x41h) = 08h ALS_PS_CONTROL (0x42h): Gain X1 ALSVIS_out min. typ. max. 750 counts 900 counts 1080 counts ALS IR sensor output 324µW/cm2; IRED 850 nm; VDD = 2.5V) (MODE_CONTROL (0x41h) = 08h ALS_PS_CONTROL (0x42h): Gain = X1 ALSIR_out min. typ. max. 460 counts 550 counts 660 counts ALS_VIS sensor output at darkness MODE_CONTROL (0x41h) 08h ALS_PS_CONTROL (0x42h): Gain = X1 ALSVIS_out min. typ. max. 0 counts 0 counts 2 counts ALS_IR sensor output at darkness MODE_CONTROL (0x41h) = 08h ALS_PS_CONTROL (0x42h): Gain = X1 ALSIR_out min. typ. max. 0 counts 0 counts 2 counts
14 | Version 1.7 | 2023-05-24 Discontinued Characteristics TA = 25 °C Parameter Symbol Values Ambient Light Sensor: ALS_VIS and ALS_ IR diode Resolution of the digital output signal based on gain settings for ALS VIS: MODE_CONTROL (0x41h) = 08h; tint ALS = 100ms Gain X1 Gain X2 Gain X64 Gain X128 High sensitive mode: MODE_CONTROL (0x41h) = 0Ah; tint ALS = 400ms Gain X128 VDD = 2.5V; white LED - Gain settings at ALS_PS_CONTROL (0x42h) ALSVIS_out typ. typ. typ. typ. typ. 1.1 lx/count 0.55 lx/count 0.018 lx/count 0.009 lx/count 0.002 lx/count Typical temperature coefficient for ALS measurement 1000lx; white LED; VDD = 2.5V TCEv typ. 0.2 % / K Mean current consumption MODE_CONTROL (0x41h) = 08h other registers are default IDD typ. max. 90 µA 150 µA Typical error by Flicker noise caused by bulbs (f=50 or 60 Hz) or fluorescent lamps max. 3 %
15 | Version 1.7 | 2023-05-24 Discontinued Radiation Characteristics 1), 2) IR Emitter Irel = f(φ) OHF05605 100˚ 90˚ 80˚ 70˚ 60˚ 50˚ 0.2 0.4 0.6 0.8 1.0ϕ
16 | Version 1.7 | 2023-05-24 Discontinued Relative Spectral Sensitivity 1), 2) ALS VIS Srel_VIS = f(λ) 400 nm OHF05597 100 λ relS 500 600 700 800 900 1100 Relative Spectral Sensitivity 1), 2) ALS IR Srel_IR = f(λ); 100% = maximum sensitivity of ALS VIS diode 400 nm OHF05606 100 λ relS 500 600 700 800 900 1100
17 | Version 1.7 | 2023-05-24 Discontinued Directional Characteristics 1), 2) ALS Vis Diode Srel = f(φ) OHF05605 100˚ 90˚ 80˚ 70˚ 60˚ 50˚ 0.2 0.4 0.6 0.8 1.0ϕ Current Consumption 1), 2) standby mode IDD = f(VDD); Register 0x41 = 0x00 2.2 I OHF05602 DD VDD µA V 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.5 Current Consumption 1), 2) PS mode IDD = f(VDD); Register 0x41 = 0x03 2.2 I OHF05603 DD VDD µA V 100 120
18 | Version 1.7 | 2023-05-24 Discontinued Current Consumption 1), 2) ALS mode IDD = f(VDD); Register 0x41 = 0x08 2.2 I OHF05604 DD VDD µA V 100 120 160
19 | Version 1.7 | 2023-05-24 Discontinued ALS VIS sensitivity ranges ALS VIS output(Ev); white LED; f(sensitivity settings); Tint: integration time (register 0x41h); X: gain settings (register 0x42h) PS sensitivity f(R = reflectivity) VDD=2.5V; ILED=200mA; Trep=100ms; AReflector=10x13cm2
20 | Version 1.7 | 2023-05-24 Discontinued PS sensitivity f(ILED) VDD=2.5V; Trep=100ms; R=90%; AReflector=10x13cm2 Typical crosstalk free range VDD=2.5V; ILED=200mA; Trep=100ms; glass without ink and one single IR transmissive opening
21 | Version 1.7 | 2023-05-24 Discontinued Typical crosstalk free range VDD=2.5V; ILED=200mA; Trep=100ms; glass without ink and a two separate IR transmissive openings for emitter and detector Note for crosstalk free range: The displayed crosstalk free ranges for a single or two hole IR transmissive opening are measured with a clear cover. Depending on the used ink the crosstalk level can differ and needs to be measured. OSRAM OS provides costumer related application support and measurements – please contact your OSRAM OS marketing or sales partner, if support is required. As the measurement results show the typical performance of the sensor OSRAM OS recommends to design inn a additional safety guard in the distance of the cover bottom surface to the top of the sensor of 200µm. e.g.: for a 0.5mm thick cover window with two holes and an acceptable crosstalk level of 0 counts the distance of the cover window bottom surface to the top of the sensor should not exceed 0.6mm (typ. it would be 0.8mm)
22 | Version 1.7 | 2023-05-24 Discontinued SYSTEM_CONTROL register (0x40h) The SYSTEM_CONTROL register is used to control the software (SW) reset and the interrupt function (INT). Manufacturer ID and Part ID can be read. R/W-Register 0x40 Bit 7 6 5 4 3 2 1 0 SW reset INT reset Manufacturer ID (Read only) Part ID (Read only) default 0 Initial reset is not started 0 INT pin status is not initialized 001 001
0 Initial reset is not
started 0 INT pin status is not initialized
1 Initial reset started 1 INT pin become inactive (high
impedance)
23 | Version 1.7 | 2023-05-24 Discontinued MODE_CONTROL register (0x41h) CONTROL of PS and ALS operating modes and time settings. Repetition time is the time between two separate measurements. Integration time is the duration for one measurement. ALS high sensitivity modes are 1010 and 1011 with an increas ed integration time of 400ms. In PS operating mode: “normal mode” only one PS measurement is performed during one PS repetition time. In PS operating mode: “twice mode” two independent PS measurement are performed within one PS repetition time. Both measurements are independent and can trigger the interrupt. This feature can be used to decrease the interru pt update time if the persistence function (register 0x43h) is used. R/W-Register 0x41 Bit 7 6 5 4 3 2 1 0 Repetition / Integration time Repetition time Reserved PS operating mode ALS PS default 0 normal mode 0000 standby standby 0 normal mode 0000 standby standby 1 twice mode 0001 standby 10ms 0010 standby 40ms 0011 standby 100ms 0100 standby 400ms 0101 100ms / 100ms standby 0110 100ms / 100ms 100ms 0111 100ms / 100ms 400ms 1000 400ms / 100ms standby 1001 400ms / 100ms 100ms 1010 400ms / 400ms standby 1011 400ms / 400ms 400ms 1100 50ms / 50ms 50ms Rest forbidden
24 | Version 1.7 | 2023-05-24 Discontinued ALS_PS_CONTROL register (0x42h) ALS and PS Control of set the PS output mode, the ALS gain and the LED current. In the “Infrared DC level output” PS mode (bit <6> = 1) the sensor measures the infrared DC ambient level. The proximity value of the reflected signal is not available in this mode. R/W-Register 0x42 Bit 7 6 5 4 3 2 1 0 Reserved (read only) PS output ALS Gain for ALS VIS and ALS IR LED current default write 0 0 proximity output 0000 X1 X1 11 200mA 0 proximity output 0000 X1 X1 00 25 mA
1 Infrared DC level output 0100 X2 X1 01 50 mA
0101 X2 X2 10 100 mA
1010 X64 X64 11 200 mA
1110 X128 X64
1111 X128 X128
25 | Version 1.7 | 2023-05-24 Discontinued PERSISTENCE Register (0x43h) Setting of persistence interrupt function. Persistence function is only valid for the PS interrupt. R/W-Register 0x43 Bit 7 6 5 4 3 2 1 0 Reserved (read only) Persistence default 0000 0001 Interrupt status is updated after each measurement
0000 Interrupt becomes active after each measurement
(The mode indicates that a PS or ALS measurement has been finished and can be read via the register. It is independent of the ALS & PS measurement value and threshold settings)
0001 Interrupt status is updated after each measurement
(The interrupt status is updated independently after each measurement. Active or Inactive status of the interrupt is depending on the values of the last measurement in combination with the interrupt settings: “interrupt mode” (register 0x4Ah) and “thresholds” register 0x4Ch and following.)
0010 Interrupt status is updated if two consecutive threshold judgement are the
(The interrupt status only changes if the interrupt judgement of 2 consecutive measurement results are the same and different to the current interrupt status.) 0011 … 1111 Interrupt status is updated if threshold judgement are the same over consecutive set times (3 …15) (This is the same procedure like in the 0010 persistence mode, but instead of 2 consecutive threshold judgments more are needed (3 to 15 depending on the setting) to change the interrupt status.) e.g.: 1010: 10 measurement results in a row need to fulfill the interrupt judgement to update the interrupt status
26 | Version 1.7 | 2023-05-24 Discontinued PS_DATA_LSBs Register (0x44h) LSB of the PS output. R-Register 0x44 Bit 7 6 5 4 3 2 1 0 27 26 25 24 23 22 21 20 default 0 0 0 0 0 0 0 0 PS_DATA_MSBs Register (0x45h) MSB of the PS output. R-Register 0x45 Bit 7 6 5 4 3 2 1 0 not used not used not used not used 211 210 29 28 default 0 0 0 0 0 0 0 0
27 | Version 1.7 | 2023-05-24 Discontinued ALS_VIS_DATA_LSBs Register (0x46h) LSB of the ALS VIS output. R-Register 0x46 Bit 7 6 5 4 3 2 1 0 27 26 25 24 23 22 21 20 default 0 0 0 0 0 0 0 0 ALS_VIS_DATA_MSBs Register (0x47h) MSB of the ALS VIS output. R-Register 0x47 Bit 7 6 5 4 3 2 1 0 215 214 213 212 211 210 29 28 default 0 0 0 0 0 0 0 0 ALS_IR_DATA_LSBs Register (0x48h) LSB of the ALS IR output. R-Register 0x48 Bit 7 6 5 4 3 2 1 0 27 26 25 24 23 22 21 20 default 0 0 0 0 0 0 0 0 ALS_IR_DATA_MSBs Register (0x49h) MSB of the ALS IR output. R-Register 0x49 Bit 7 6 5 4 3 2 1 0 215 214 213 212 211 210 29 28 default 0 0 0 0 0 0 0 0
28 | Version 1.7 | 2023-05-24 Discontinued INTERRUPT_CONTROL register (0x4Ah) Setting of the interrupt functions. R/W-Register 0x4A Bit 7 6 5 4 3 2 1 0 PS INT status (read only) ALS INT status (read only) PS INT mode INT assert INT latch INT trigger default 0 inactive 0 inactive 00 PS_TH is only active 0 INT “L” is stable 0 INT is latched 00 inactive 0 inactive 0 inactive
00 PS_TH (PS high
threshold 0x4B & 0x4C) is only active
0 INT “L” is stable if newer
measurement results is also interrupt active
0 INT is latched until
00 INT pin
01 PS_TH & PS_TL
(PS high & low threshold) are active as hysteresis
1 INT “L” is de-assert and re-
assert if newer measurement results is also interrupt active
1 INT is updated after
10 PS_TH & PS_TL
(PS high & low threshold) are active as outside detection 10 triggered by ALS only 11 forbidden 11 triggered by PS or ALS PS INT and ALS INT status (bit <7;6>): Directly after reading the register the interrupt status for PS and ALS and the INT Pin of the sensor is automatically set back to inactive status independent on the measurement results. PS INT mode (bit <5;4>): The INT modes are only valid for the PS interrupt function. For description please see extra chapter “PS INT Modes” (at the end of the register chapter). INT assert (bit <3>): Is used to adjust the sensor behavior to the used micro controller trigger settings. In case a repeated trigger in low state is needed the INT assert can be set to 1. INT trigger (bit <2>): defines the source / sources for the interrupt. INT latched (bit <1>): In latched mode the interrupt status stays active after the first activation. It is only released by reading the status are performing an interrupt reset.
29 | Version 1.7 | 2023-05-24 Discontinued PS_TH_LSBs register (0x4Bh) LSB for the PS threshold “HIGH”. R/W-Register 0x4B Bit 7 6 5 4 3 2 1 0 27 26 25 24 23 22 21 20 default 1 1 1 1 1 1 1 1 PS_TH_MSBs register (0x4Ch) MSB for the PS threshold “HIGH”. R/W-Register 0x4C Bit 7 6 5 4 3 2 1 0 211 210 29 28 default 0 0 0 0 1 1 1 1 PS_TL_LSBs register (0x4Dh) LSB for the PS threshold “LOW”. R/W-Register 0x4D Bit 7 6 5 4 3 2 1 0 27 26 25 24 23 22 21 20 default 0 0 0 0 0 0 0 0 PS_TL_MSBs register (0x4Eh) MSB for the PS threshold “LOW”. R/W-Register 0x4E Bit 7 6 5 4 3 2 1 0 211 210 29 28 default 0 0 0 0 0 0 0 0
30 | Version 1.7 | 2023-05-24 Discontinued ALS_VIS_TH_LSBs register (0x4Fh) LSB for the ALS VIS threshold “HIGH”. R/W-Register 0x4F Bit 7 6 5 4 3 2 1 0 27 26 25 24 23 22 21 20 default 1 1 1 1 1 1 1 1 ALS_VIS_TH_MSBs register (0x50h) MSB for the ALS VIS threshold ”HIGH”. R/W-Register 0x50 Bit 7 6 5 4 3 2 1 0 215 214 213 212 211 210 29 28 default 1 1 1 1 1 1 1 1 ALS_VIS_TL_LSBs register (0x51h) LSB for the ALS VIS threshold “LOW”. R/W-Register 0x51 Bit 7 6 5 4 3 2 1 0 27 26 25 24 23 22 21 20 default 0 0 0 0 0 0 0 0 ALS_VIS_TL_MSBs register (0x52h) MSB for the ALS VIS threshold ”LOW”. R/W-Register 0x52 Bit 7 6 5 4 3 2 1 0 215 214 213 212 211 210 29 28 default 0 0 0 0 0 0 0 0
31 | Version 1.7 | 2023-05-24 Discontinued INT modes The Interrupt function compares ALS and PS measurement values with the current interrupt threshold level. PS and ALS VIS Interrupt status is readable via register 0x4Ah or at the INT pin of the sensor. The Interrupt persistence function is only valid for PS measurements and is defined in register (0x43h). The INT pin of the SFH 7779 is open drain output and should be pulled up to VI/O by an external resistor. When VDD is supplied the INT pin is high impedance (inactive). The INT status becomes inactive by writing INT reset command, reading the INT status register or performing a software reset. The INT status stays in its last state when the sensor is set to the standby mode. In the INT active state “low” the sensor consumes ~25µA extra current. Therefore OSRAM recommends to set the INT state to high impedance before setting the sensor in standby mode. Following ALS and PS INT modes are described for the unlatched mode. In latched mode the switching back to the “inactive” INT state is depending on a interrupt reset or the read of the INT status register. ALS INT mode: The ALS VIS threshold levels high (register 0x4Fh & 0x50h) and low (register 0x4Fh & 0x50h) are only valid for the ALS VIS measurement values. The ALS VIS INT mode is fixed and can not be adapted via register. The thresholds define a window with following functionality: ALS INT is active, if the ALS VIS measurement values are outside the window. ALS INT is inactive, if the ALS VIS measurement results are inside the window. PS INT Modes: Bit <5;4> of INTERRUPT_CONTROL register (0x4Ah)
00 PS_TH is only active:
The INT state is active it the PS measurement result is equal or higher than the set PS_TH high threshold. The INT state is inactive, if the PS measurement result is lower than the set PS_TH high threshold.
01 PS_TH & PS_TL (PS high & low threshold) are active as hysteresis:
PS_TH and PS_TL are working as a hysteresis. If the PS measurement signal is higher than the PS high threshold (PS_TH) the INT state is switched to active. If the PS measurement signal is lower than the PS low threshold (PS_TL) the INT state is inactive. If once interrupt signal becomes active, INT status is kept active until measurement result becomes less than PS_TL register value.
10 PS_TH & PS_TL (PS high & low threshold) are active as outside detection:
In case of “PS outside detection” mode interrupt signal inactive means that measurement result is within registered threshold level and interrupt signal active means measurement result is out of registered threshold level.
32 | Version 1.7 | 2023-05-24 Discontinued
33 | Version 1.7 | 2023-05-24 Discontinued Dimensional Drawing 3) Further Information: Approximate Weight: 15.0 mg
34 | Version 1.7 | 2023-05-24 Discontinued Recommended Solder Pad 3)
35 | Version 1.7 | 2023-05-24 Discontinued Reflow Soldering Profile Product complies to MSL Level 3 acc. to JEDEC J-STD-020E 00 s OHA04525 100 150 200 250 300 50 100 150 200 250 300 t T St t Pt Tp240 ˚C 217 ˚C 245 ˚C 25 ˚C L Profile Feature Symbol Pb-Free (SnAgCu) Assembly Unit Minimum Recommendation Maximum Ramp-up rate to preheat*) 25 °C to 150 °C 2 3 K/s Time tS TSmin to TSmax tS 60 100 120 s Ramp-up rate to peak*) TSmax to TP 2 3 K/s Liquidus temperature TL 217 °C Time above liquidus temperature tL 80 100 s Peak temperature TP 245 260 °C Time within 5 °C of the specified peak temperature TP - 5 K tP 10 20 30 s Ramp-down rate* TP to 100 °C 3 6 K/s Time 25 °C to TP 480 s All temperatures refer to the center of the package, measured on the top of the component * slope calculation DT/Dt: Dt max. 5 s; fulfillment for the whole T-range
36 | Version 1.7 | 2023-05-24 Discontinued Taping 3)
37 | Version 1.7 | 2023-05-24 Discontinued Tape and Reel 4) Reel Dimensions A W Nmin W1 W2 max Pieces per PU 180 mm 12 + 0.3 / - 0.1 mm 60 mm 12.4 + 2 mm 18.4 mm 2000
38 | Version 1.7 | 2023-05-24 Discontinued Barcode-Product-Label (BPL) Dry Packing Process and Materials 3) OHA00539 OSRAM Moisture-sensitive label or print Barcode label Desiccant Humidity indicator Barcode label OSRAM Please check the HIC immidiately after bag opening. Discard if circles overrun. Avoid metal contact. WET Do not eat. Comparator check dot parts still adequately dry. examine units, if necessary examine units, if necessary 15% 10%bake units bake units If wet, change desiccant If wet, Humidity Indicator MIL-I-8835 If wet, M oisture Level 3 Floor tim e 168 Hours M oisture Level 6 Floor tim e 6 Hours a) Hum idity Indicator Card is > 10% when read at 23 ˚C ± 5 ˚C, or reflow, vapor-phase reflow, or equivalent processing (peak package 2. After this bag is opened, devices that will be subjected to infrared 1. Shelf life in sealed bag: 24 m onths at < 40 ˚C and < 90% relative hum idity (RH). M oisture Level 5a at factory conditions of (if blank, seal date is identical with date code). a) M ounted within b) Stored at body tem 3. Devices require baking, before m ounting, if: Bag seal date M oisture Level 1 M oisture Level 2 M oisture Level 2a4. If baking is required, b) 2a or 2b is not m et. Date and tim e opened: reference IPC/JEDEC J-STD-033 for bake procedure. Floor tim e see below If blank, see bar code label Floor tim e > 1 Year Floor tim e 1 Year Floor tim e 4 W eeks10% RH. M oisture Level 4 M oisture Level 5 ˚C). OPTO SEMICONDUCTORS MOISTURE SENSITIVE This bag contains CAUTION Floor tim e 72 Hours Floor tim e 48 Hours Floor tim e 24 Hours 30 ˚C/60% RH. LEVEL If blank, see bar code label Moisture-sensitive product is packed in a dry bag containing desiccant and a humidity card according JEDEC-STD-033.
39 | Version 1.7 | 2023-05-24 Discontinued Disclaimer Attention please! The information describes the type of component and shall not be considered as assured characteristics. Terms of delivery and rights to change design reserved. Due to technical requirements components may contain dangerous substances. For information on the types in question please contact our Sales Organization. If printed or downloaded, please find the latest version on our website. Packing Please use the recycling operators known to you. We can also help you – get in touch with your nearest sales office. By agreement we will take packing material back, if it is sorted. You must bear the costs of transport. For packing material that is returned to us unsorted or which we are not obliged to accept, we shall have to invoice you for any costs incurred. Product and functional safety devices/applications or medical devices/applications Our components are not developed, constructed or tested for the application as safety relevant component or for the application in medical devices. Our products are not qualified at module and system level for such application. In case buyer – or customer supplied by buyer – considers using our components in product safety devices/ applications or medical devices/applications, buyer and/or customer has to inform our local sales partner immediately and we and buyer and /or customer will analyze and coordinate the customer-specific request between us and buyer and/or customer.
40 | Version 1.7 | 2023-05-24 Discontinued Glossary 1) Typical Values: Due to the special conditions of the manufacturing processes of semiconductor devic- es, the typical data or calculated correlations of technical parameters can only reflect statistical figures. These do not necessarily correspond to the actual parameters of each single product, which could dif- fer from the typical data and calculated correlations or the typical characteristic line. If requested, e.g. because of technical improvements, these typ. data will be changed without any further notice. 2) Testing temperature: TA = 25°C (unless otherwise specified) 3) Tolerance of Measure: Unless otherwise noted in drawing, tolerances are specified with ±0.1 and dimensions are specified in mm. 4) Tape and Reel: All dimensions and tolerances are specified acc. IEC 60286-3 and specified in mm.
41 | Version 1.7 | 2023-05-24 Discontinued
Revision History
1.4 2021-10-11 New Layout 1.5 2022-03-22 New Layout 1.6 2022-09-29 Applications Not for new design 1.7 2023-05-24 Discontinued
42 | Version 1.7 | 2023-05-24 Discontinued Discontinued Published by ams-OSRAM AG Tobelbader Strasse 30, 8141 Premstaetten, Austria Phone +43 3136 500-0 ams-osram.com © All rights reserved