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Technical content

Features

  • Single-phase high side drive • Monolithic structure
  • Allows simpli fi ed confi guration of driver circuit • Withstand voltage of 600V is assured
  • Fully compatible input to LSTTL/CMOS • High-speed switching
  • Output current: 170mA Source, 340mA Sink • Halogen free compliance Specifi cations Absolute Maximum Ratings at Ta=25°C (All voltage parameters are absolute voltage feferenced to GND) Parameter Symbol Conditions Ratings Unit High Side Floating Supply Voltage V H - -0.3 to 625 V High Side Floating Supply Offset Voltage V S VH- -25 to VH+0.3 V High Side Output Voltage V HOUT VS- -0.3 to VH+0.3 V Logic Supply Voltage V DD - -0.3 to 25 V Logic Input Voltage V HIN - -0.3 to VDD+0.3 V The Maximum Allowable Offset Voltage Supply dVS/dt 50 V/ns Allowable Power Dissipation P D 0.3 W When mounted on ceramic substrate (1200mm ×0.8mm) 1.1 W Junction Temperature Tj - -55 to +150 °C Storage Temperature Tstg - -55 to +150 °C Package Dimensions unit : mm (typ) 7072-004 Product & Package Information
  • Package : SOIC8
  • JEITA, JEDEC : SC-87, SOT-96
  • Minimum Packing Quantity : 2,500 pcs./reel Packing Type: TL Marking Block Diagram 4.9 0.22 6.0 3.9 1.375 0.4451.27 0.715 0.375 1.55 0.175 0.254 (GAGE PLANE) 1 : No Contact 2 : HIN 3 : VDD 4 : GND 5 : No Contact 6 : VS 7 : HOUT 8 : VH SOIC8 TL TND LOT No. 523 High Voltage Logic Level Shift UV Circuit Level Shift Pulse Gain Latch Circuit UV Circuit VDD GND HIN HOUT VS VH TND523SS-TL-2H

No.9005-2/12 Recommend Operating Conditions at Ta=25°C Parameter Symbol Conditions Ratings Unit High Side Floating Supply Voltage V H VS+10 to VS+20 V High Side Floating Supply Offset Voltage V S 0 to 600 V High Side Output Voltage V HOUT VS to VH V Logic Supply Voltage V DD 10 to 20 V Logic Input Voltage V HIN 0 to VDD V Ambient Temperature Topr - -40 to +125 °C AC Characteristics at Ta=25°C (VDD=VHS=15V , CL=1000pF) Parameter Symbol Conditions Ratings Unit min typ max Turn-ON Delay Time t on VS=0V 60 90 120 ns Turn-OFF Delay Time t off VS=0V 55 85 115 ns Turn-ON Rise Time t r 50 80 110 ns Turn-OFF Fall Time t f 20 35 55 ns DC Characteristics at Ta=25°C (VDD=VHS=15V) Parameter Symbol Conditions Ratings Unit min typ max Logic “1” Input Voltage V IH VDD=10 to 20V 3.0 V Logic “0” Input Voltage V IL VDD=10 to 20V 0.8 V High-level Output Voltage, VBIAS-VO VOH VHIN=VIH, IO=0A 0.1 V Low-level Output Voltage, VO VOL VHIN=VIL, IO=0A 0.1 V Offset Supply Leakage Current I LK VH=VS=600V 10 μA Quiescent VH Supply Current I QH VHIN=0V or VDD 70 120 μA Quiescent VDD Supply Current I QDD VHIN=0V or VDD 140 230 μA Logic “1” Input Bias Current I IN+V HIN=VDD 20 55 μA Logic “0” Input Bias Current I IN-V HIN=0V 1 μA VH Supply Undervoltage Positive Going Threshold VHUV+ 7.6 8.9 9.9 V VH Supply Undervoltage Negative Going Threshold VHUV- 6.7 8.1 9.5 V VDD Supply Undervoltage Positive Going Threshold VDDUV+ 7.6 8.9 9.9 V VDD Supply Undervoltage Negative Going Threshold VDDUV- 6.7 8.1 9.5 V Output High Short Circuit Pulsed Current I O+V HOUT=0V, VHIN=15V, PW≤10μs 170 200 mA Output Low Short Circuit Pulsed Current I O-V HOUT=15V, VHIN=0V, PW≤10μs 340 400 mA Switching Time Waveform Defi nition HOUT HIN tr 50% 50% 90%90% 10%10% ton tftoff

No.9005-3/12 Switching Time Test Circuit

Ordering Information

Devices Package Shipping memo TND523SS-TL-2H SOIC8 2,500pcs./reel Pb Free and Halogen Free HOUT 10μF 0.1 μF VDD=15V CL 0.1μF1 0 μF HIN 2 VH=15V VS=0V IT16457 VDD, VHS -- V ton -- VDD, VHSton -- Tc Turn-ON Delay Time, ton -- ns Turn-ON Delay Time, ton -- ns Case Temperature, Tc -- °C VDD, VHS -- V toff -- VDD, VHStoff -- Tc Turn-OFF Delay Time, toff -- ns Turn-OFF Delay Time, toff -- ns Case Temperature, Tc -- °C 100 200 150 10 16 20 14 1812 IT16461 200 100 150 --50 25 125 07 5 50 100--25 IT16460 200 100 150 10 16 20 14 1812 IT16459 VS=0V 200 100 150 --50 25 125 07 5 50 100--25 IT16458 max VS=0V VDD=VHS=15V typ min max typ min VS=0V VDD=VHS=15V max typ min VS=0V max typ min

No.9005-4/12 VIH -- VDDVIH -- Tc Case Temperature, Tc -- °C Logic Circuit Supply V oltage, V DD -- V Logic "1" Input V oltage, VIH -- V Logic "1" Input V oltage, VIH -- V VIL -- VDDVIL -- Tc Case Temperature, Tc -- °C Logic Circuit Supply V oltage, VDD -- V Logic "0" Input V oltage, VIL -- V Logic "0" Input V oltage, VIL -- V VDD, VHS -- V tr -- VDD, VHStr -- Tc Case Temperature, Tc -- °C Turn-ON Rise Time, tr -- ns Turn-ON Rise Time, tr -- ns VDD, VHS -- V tf -- VDD, VHStf -- Tc Turn-OFF Fall Time, tf -- ns Case Temperature, Tc -- °C Turn-OFF Fall Time, tf -- ns 2.0 1.5 0.5 1.0 IT16469 10 12 18 20 1614 max 0.5 2.0 1.0 1.5 --50 25 125 07 5 50 100--25 IT16468 VDD=10V to 20V max 10 12 18 20 1614 IT16467 min --50 25 125 07 5 50 100--25 IT16466 VDD=10V to 20V min 10 16 20 14 1812 IT16465 100 CL=1000pF 120 100 --50 25 125 07 5 50 100--25 IT16464 10 14 20 16 1812 100 200 150 IT16463 CL=1000pF 200 100 150 --50 25 125 07 5 50 100--25 IT16462 CL=1000pF VDD=VHS=15V max typ min max typ min CL=1000pF VDD=VHS=15V max typ min max typ min

No.9005-5/12 ILK -- VHILK -- Tc Case Temperature, Tc -- °C Offset Supply Leakage Current, ILK -- μA Offset Supply Leakage Current, ILK -- μA High Side Floating Supply V oltage, VH -- V VHS -- V IQH -- VHSIQH -- Tc Case Temperature, Tc -- °C Quiescent VH Supply Current, IQH -- μA Quiescent VH Supply Current, IQH -- μA VHS -- V VOH -- VHSVOH -- Tc Case Temperature, Tc -- °C High-level Output V oltage, VOH -- mV High-level Output V oltage, VOH -- mV VOL -- VHS VHS -- V VOL -- Tc Case Temperature, Tc -- °C Low-level Output V oltage, VOL -- mV Low-level Output V oltage, VOL -- mV VHIN=0V or VDD 10 14 20 16 1812 IT16477 max typ 100 125 175 150 200 225 200 100 150 125 175 --50 25 125 07 5 50 100--25 IT16476 VHIN=0V or VDD VHS=15V typ max 0 100 400 600 300 500200 IT16475 VH=VS=600V 100 120 max IT16474 10 16 20 14 1812 IT16473 VHIN=VIL IO=0A 100 125 150 175 200 100 125 150 175 200 max --50 25 125 07 5 50 100--25 IT16472 max VHIN=VIL IO=0A 10 14 20 16 1812 200 175 125 100 150 200 175 125 100 150 IT16471 max VHIN=VIH IO=0A --50 25 125 07 5 50 100--25 IT16470 max VHIN=VIH IO=0A 120 100 --50 25 125 07 5 50 100--25 VH=VS=600V max

No.9005-6/12 IIN(--) -- VDDIIN(--) -- Tc Case Temperature, Tc -- °C Logic Circuit Supply V oltage, VDD -- V Logic "0" Input Bias Current, IIN(--) -- μA Logic "0" Input Bias Current, IIN(--) -- μA VHUV(+) -- Tc VHUV(--) -- Tc Case Temperature, Tc -- °C Case Temperature, Tc -- °C VH Supply Undervoltage Positive Going Threshold, VHUV(+) -- V VH Supply Undervoltage Negative Going Threshold, VHUV(--) -- V IQDD -- VDDIQDD -- Tc Case Temperature, Tc -- °C Quiescent VDD Supply Current, IQDD -- μA Quiescent VDD Supply Current, IQDD -- μA Logic Circuit Supply V oltage, VDD -- V IIN(+) -- VDDIIN(+) -- Tc Logic Circuit Supply V oltage, VDD -- VCase Temperature, Tc -- °C Logic "1" Input Bias Current, IIN(+) -- μA Logic "1" Input Bias Current, IIN(+) -- μA IT116484 --50 0 25 75 125 50 100--25 max min typ --50 0 25 75 125 50 100--25 IT16485 min typ max IT16483 max 10 14 20 16 1812 VHIN=VDD IT16482 --50 0 25 75 125 50 100--25 VHIN=0V VDD=15V max IT16481 100 typ 10 14 20 16 1812 100 --50 25 125 07 5 50 100--25 IT16480 typ max VHIN=VDD=15V 100 150 200 250 400 300 350 VHIN=0V or VDD 10 14 20 16 1812 IT16479 max typ 400 100 200 300 150 250 350 --50 25 125 07 5 50 100--25 IT16478 typ max VHIN=0V or VDD VHIN=VDD max

No.9005-7/12 PD -- Ta Ambient Temperature, Ta -- °C Allowable Power Dissipation, PD -- W IO(--) -- VHS VHS -- V IO(--) -- Tc Output Low Short Circuit Pulsed Current, IO(--) -- mA Output Low Short Circuit Pulsed Current, IO(--) -- mA Case Temperature, Tc -- °C VDDUV(+) -- Tc VDDUV(--) -- Tc Case Temperature, Tc -- °C Case Temperature, Tc -- °C VDD Supply Undervoltage Positive Going Threshold, VDDUV(+) -- V VDD Supply Undervoltage Negative Going Threshold, VDDUV(--) -- V IO(+) -- VHS VHS -- V IO(+) -- Tc Output High Short Circuit Pulsed Current, IO(+) -- mA Output High Short Circuit Pulsed Current, IO(+) -- mA Case Temperature, Tc -- °C dVS/dt -- Tc Maximum Allowable Offset V oltage Supply, dVS/dt -- V/ns Case Temperature, Tc -- °C IT16493 --40 40--20 20 0 80 100 60 120 160 140 0.4 0.1 0.2 0.3 10 12 16 20 1814 200 800 600 400 IT16489 200 400 600 800 IT16491 --50 0 25 75 125 50 100--25 typ (VHS=20V) VHOUT=VHS VHIN=0V PW≤10μs typ (VHS=15V) typ (VHS10V) 10 12 16 20 1814 100 400 300 200 IT16488 100 200 300 400 IT16490 --50 0 25 75 125 50 100--25 typ (VHS=20V) VHOUT=0V VHIN=VIN PW≤10μs typ (VHS=15V) typ (VHS=10V) IT116486 --50 0 25 75 125 50 100--25 max min typ --50 0 25 75 125 50 100--25 IT16487 min typ max VHOUT=0V VHIN=VIN PW≤10μs min typ min typ VHOUT=VHS VHIN=0V PW≤10μs 1.0 0.1 100 IT16492 --50 0 25 75 125 50 100--25 max

No.9005-8/12 PD -- Ta Ambient Temperature, Ta -- °C Allowable Power Dissipation, PD -- W IT16996 --40 40--20 20 0 80 100 60 120 160 140 1.4 0.2 0.6 1.0 0.4 0.8 1.2 When mounted on ceramic substrate (1200mm2×0.8mm)

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No.9005-11/12 Outline Drawing Land Pattern Example TND523SS-TL-2H Mass (g) Unit 0.082 * For reference mm Unit: mm 1.75 1.27 0.65 5.60

PS No.9005-12/12 ON Semiconductor and the ON logo are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC owns the rights to a number of patents, trademarks, copyrights, trade secrets, and other intellectual property. A listing of SCILLC’s product/patent covera ge may be accessed at warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does SCILLC assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation sp ecial, consequential or incidental damages. “Typical” parameters which may be provided in SCILLC data sheets and/or specifications can and do vary in different ap plications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. SCILLC does not convey any license under its patent rights nor the rights of others. SCILLC products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life , or for any other application in which the failure of the SCILLC product could create a situation where personal injury or death may occur. Should Buyer purchase or use SCILLC products for any such unintended or unauthorized application, Buyer shall indemnify and hold SCILLC and its officers, employees, subsidiarie s, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that SCILLC was negligent regarding the design or manufacture of the part. SCILLC is an Equal Opportunity/Affirmative Action Employer. This literature is subject to all applicable copyright laws and is not for resale in any manner.