TDS mm Seven Segment Display. Vishay Telefunken. Description. Features. Applications

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1 mm Seven Segment Display TDS.3.. Color Type Circuitry TDSR35. Common anode TDSR36. Common cathode Orange red TDSO35. Common anode Orange red TDSO36. Common cathode TDSY35. Common anode TDSY36. Common cathode TDSG35. Common anode TDSG36. Common cathode Description The TDS.3.. series are mm character seven segment LED displays in a very compact package. The displays are designed for a viewing distance up to 6 meters and available in four bright colors. The grey package surface and the evenly lighted untinted segments provide an optimum on-off contrast. All displays are categorized in luminous intensity groups. That allows users to assemble displays with uniform appearence. Typical applications include instruments, panel meters, point-of-sale terminals and household equipment Features Evenly lighted segments Grey package surface Untinted segments Luminous intensity categorized and green categorized for color Wide viewing angle Suitable for DC and high peak current Applications Panel meters Test- and measure- equipment Point-of-sale terminals Control units Document Number 8325 Rev. A, 2-Jun-99 FaxBack (9)

2 TDS.3.. Absolute Maximum Ratings T amb = 25 C, unless otherwise specified TDSR35. /TDSR36., TDSO35. /TDSO36., TDSY35. /TDSY36., TDSG35. /TDSG36., / Parameter Test Conditions Type Symbol Value Unit Reverse voltage per V R 6 V segment or DP DC forward current per TDSR35./36. I F 3 ma segment or DP TDSO35./36. I F 2 ma TDSY35./36. I F 2 ma TDSG35./36. I F 2 ma Surge forward current per seg- t p s TDSR35./36. I FSM.5 A ment or DP (non repetitive) TDSO35./36. I FSM.5 A TDSY35./36. I FSM.5 A TDSG35./36. I FSM.5 A Power dissipation T amb 45C P V 48 mw Junction temperature T j C Operating temperature range T amb 4 to + 85 C Storage temperature range T stg 4 to + 85 C Soldering temperature t 3 sec, 2mm T sd 26 C below seating plane Thermal resistance LED junction/ambient R thja 2 K/W Optical and Electrical Characteristics T amb = 25 C, unless otherwise specified (TDSR35., TDSR36. ) Parameter Test Conditions Type Symbol Min Typ Max Unit Luminous intensity per segment I F = ma TDSR I V 8 cd (digit average) ) 35/36 Dominant wavelength I F = ma d 655 nm Peak wavelength I F = ma p 66 nm Angle of half intensity I F = ma ϕ ±5 deg Forward voltage per segment or DP I F = 2 ma V F.6 2 V Reverse voltage per segment or DP I R = A V R 6 5 V ) I Vmin and I V groups are mean values of segments a to g FaxBack Document Number (9) Rev. A, 2-Jun-99

3 TDS.3.. Orange red (TDSO35., TDSO36. ) Parameter Test Conditions Type Symbol Min Typ Max Unit Luminous intensity per segment I F = ma TDSO I V 45 cd (digit average) ) 35/36 Dominant wavelength I F = ma d nm Peak wavelength I F = ma p 63 nm Angle of half intensity I F = ma ϕ ±5 deg Forward voltage per segment or DP I F = 2 ma V F 2 3 V Reverse voltage per segment or DP I R = A V R 6 5 V ) I Vmin and I V groups are mean values of segments a to g (TDSY35., TDSY36. ) Parameter Test Conditions Type Symbol Min Typ Max Unit F TDSY I V 45 cd ) 35/36 F d nm F p 585 nm F ϕ ±5 deg F V F V R V R 6 5 V ) Vmin V (TDSG35., TDSG36. ) Parameter Test Conditions Type Symbol Min Typ Max Unit Luminous intensity per segment I F = ma TDSG I V 45 cd (digit average) ) 35/36 Dominant wavelength I F = ma d nm Peak wavelength I F = ma p 565 nm Angle of half intensity I F = ma ϕ ±5 deg Forward voltage per segment or DP I F = 2 ma V F V Reverse voltage per segment or DP I R = A V R 6 5 V ) I Vmin and I V groups are mean values of segments a to g Document Number 8325 Rev. A, 2-Jun-99 FaxBack (9)

4 TDS.3.. Typical Characteristics (T amb = 25 C, unless otherwise specified) P V Power Dissipation ( mw ) Figure. Power Dissipation vs. Ambient Temperature I Forward Current ( ma ) F Figure 2. Forward Current vs. Ambient Temperature Figure 3. Rel. Luminous Intensity vs. Angular Displacement I Forward Current ( ma ) F t p /T=. t p =s V F Forward Voltage ( V ) Figure 4. Forward Current vs. Forward Voltage I F =ma Figure 5. Rel. Luminous Intensity vs. Ambient Temperature.4 I FAV =ma, const Figure 6. Rel. Lumin. Intensity vs. Forw. Current/Duty Cycle I F (ma) t p /T FaxBack Document Number (9) Rev. A, 2-Jun-99

5 TDS Figure 7. Relative Luminous Intensity vs. Forward Current Orange- I F =ma Figure. Rel. Luminous Intensity vs. Ambient Temperature Wavelength ( nm ) 72 Figure 8. Relative Luminous Intensity vs. Wavelength Orange-.4 I FAV =ma, const Figure. Rel. Lumin. Intensity vs. Forw. Current/Duty Cycle I F (ma) t p /T I Forward Current ( ma ) F Orange- t p /T=. t p =s V F Forward Voltage ( V ) Figure 9. Forward Current vs. Forward Voltage. Orange Figure 2. Relative Luminous Intensity vs. Forward Current Document Number 8325 Rev. A, 2-Jun-99 FaxBack (9)

6 TDS Orange Wavelength ( nm ) 69 Figure 3. Relative Luminous Intensity vs. Wavelength Figure 6. Rel. Lumin. Intensity vs. Forw. Current/Duty Cycle I F (ma) t p /T I Forward Current ( ma ) F t p /T=. t p =s V F Forward Voltage ( V ) Figure 4. Forward Current vs. Forward Voltage I F =ma Figure 5. Rel. Luminous Intensity vs. Ambient Temperature Figure 7. Relative Luminous Intensity vs. Forward Current Wavelength ( nm ) 65 Figure 8. Relative Luminous Intensity vs. Wavelength FaxBack Document Number (9) Rev. A, 2-Jun-99

7 TDS.3.. t p /T=. t p =s V F Forward Voltage ( V ) Figure 9. Forward Current vs. Forward Voltage I F =ma Figure 2. Rel. Luminous Intensity vs. Ambient Temperature Figure 22. Relative Luminous Intensity vs. Forward Current Wavelength ( nm ) 62 Figure 23. Relative Luminous Intensity vs. Wavelength I v rel Specific Luminous Intensity Figure 2. Specific Luminous Intensity vs. Forward Current Document Number 8325 Rev. A, 2-Jun-99 FaxBack (9)

8 TDS.3.. Dimensions in mm Pin connections a 2 f b g 3 e c 4 d DP g 2 f 3 A ( C ) 4 e 5 d 6 DP 7 c 8 A ( C ) 9 b a FaxBack Document Number (9) Rev. A, 2-Jun-99

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