ZXBM5408Q DIODES | Alldatasheet

Document overview

  • Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
  • PDF pages: 16

Technical content

Features

  • Servo DC Motor Drive
  • Wide Operating Voltage Range: 8V to 18V
  • Built-In H-Bridge with Low RDSON Resistance
  • Output Drive Current capability of 0.8A (Peak Current of 1.5A)
  • Fault Protection—RANGE Short to GND, Supply or Broken Wires
  • Overvoltage and Undervoltage Shutdown
  • Overcurrent Protection
  • Thermal Protection
  • Green Molding in PDIP-8 (Type A1) and SO -14 (Type A1) packages  Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2)  Halogen and Antimony Free. “Green” Device (Note 3)  The ZXBM5408Q is suitable for automotive applications requiring specific change control; this part is AEC -Q100 qualified, PPAP capable, and manufactured in IATF 16949 certified facilities. https://www.diodes.com/quality/product- definitions/ Pin Assignments (Top View) FB RANGE OUT1 VDD REF GND OUT2 HYST 4 5 PDIP-8 (Type A1) (Top View) FB RANGE NC HYST REF NC GNDGND GND OUT1 NC GND VDD OUT2 SO-14 (Type A1)

Applications

  • Automotive Headlight Position Servo Motor
  • 8V/12V/18V Servo DC Motors Mechanical Data
  • Moisture Sensitivity: Level 1 per JSD-020
  • Terminal Finish – Matte Tin Plated Leads, Solderable per JEDEC- J-STD-002.
  • Weight: ZXBM5408Q-N-U 0.496 grams (Approximate) ZXBM5408Q-S14-13 0.150 grams (Approximate) Notes: 1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS), 2011/65/EU (RoHS 2) & 2015/863/EU (RoHS 3) compliant . 2. See https://www.diodes.com/quality/lead-free/ for more information about Diodes Incorporated’s definitions of Halogen - and Antimony-free, "Green" and Lead-free. 3. Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and <1000ppm antimony compounds.

Document number: DS44356 Rev. 2 - 2 2 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Typical Applications Circuit (Notes 4, 5, 6, and 7) Notes: 4. The C1 capacitor is for power stabilization and to strengthen the noise immunity, and the recommended value is 100nF. The capacitor is placed next to the VDD pin. The value of the capacitor can be optimized depending on the motor current. The value of C1 must be checked in the motor design in its operating conditions if reduced from the recommended value. 5. The C2 capacitor is for power supply filtering, and the recommended value is 47µF to 100µF. C3 is output motor noise decoupling capacitor, and the recommended value is 100nF (range of 10nF to 100nF). If strengthening OCP short function (O1 and O2 short directly), the recommended value of C2 is 10µF (range of 10µF to 20µF) for SMD type. 6. The resistor values R1 and R2 define the VREFIN. The resistors RHH and RHL define the hysteresis window. 7. Diode D1 is for the reverse connection protection. The zener diode Dz is used to clamp the regenerative voltage spike from the motor operation to a safe level when reverse blocking diode D1 is used. If a reverse blocking diode is not used, the use of zener clamp Dz depends on the supply voltage capability to effectively sink the regenerative energy and voltage spike. Pin Descriptions 1. Package Type: PDIP-8 (Type A1) Pin Number Pin Name Description

1 FB Position Feedback Input: Voltage Input

2 HYST Hysteresis I/O

3 OUT1 Output1 Drive Sourcing & Sinking Pin

4 VDD Power Supply Input Pin

5 OUT2 Output2 Drive Sourcing & Sinking Pin

6 GND Ground Pin

7 RANGE Range Input

8 REF Reference Input

  1. Package Type: SO-14 (Type A1) Pin Number Pin Name Description

4, 5, 10, 11 GND Ground pin

6 O1 Output drive sourcing & sinking pin

3, 7, 12 NC No Connection

8 VDD Power supply input pin

9 OUT2 Output2 drive sourcing & sinking pin

13 RANGE Range Input

14 REF Reference Input

Document number: DS44356 Rev. 2 - 2 3 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Functional Block Diagram OUT2 FB GND OUT1 HYST Servo Amp Hyst Amp REF Range Amp UVLO and OVP Power CONTROL LOGIC Full Bridge Drive Over current protection TSD VDD 4(8) RANGE 7(13) 8(14) 1(1) 2(2) 6(4,5,10,11) 5(9) 3(6) A(B) A for PDIP-8 (Type A1) B for SO-14 (Type A1)

Document number: DS44356 Rev. 2 - 2 4 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Absolute Maximum Ratings (Note 8) @TA = +25°C, unless otherwise specified.) Symbol Characteristics Rating Unit VDD_MAX Maximum Supply Voltage (Note 9) 45 V VDD_REVERSE VREVERSE Reverse Voltage on VDD and All Pins -0.3 V VFB_MAX VHYST_MAX VREF_MAX Maximum Voltage on FB, HYST, REF Pins 20 V VRANGE_MAX Maximum Voltage on RANGE Pin 20 V VFB_REVERSE VREF_REVERSE VHYST_REVERSE VRANGE_REVERSE Reverse Supply Voltage on All Pins -0.3 V IFB_MAX Maximum Current on FB Pin ±6 mA IHYST_MAX Maximum Current on HYST Pin ±6 mA IREF_MAX Maximum Current on REF Pin ±6 mA IRANGE_MAX Maximum Current on RANGE Pin ±6 mA PD Power Dissipation (Note 10) PDIP-8 (Type A1) (Note 11) 1.61 W SO-14 (Type A1) (Note 12) 1.66 W TSTG Storage Temperature Range -65 to +150 °C TJ Maximum Junction Temperature +150 °C ESD HBM Human Body Model ESD Capability PDIP-8 (Type A1) 8 kV SO-14 (Type A1) 3.5 CDM Charged Device Model (CDM) PDIP-8 (Type A1) 1.5 kV SO-14 (Type A1) 1.5 Notes: 8. Stresses greater than the Absolute Maximum Ratings specified above can cause permanent damage to the device. These are stress ratings only; functional operation of the device at these or any other conditions exceeding those indicated in this specification is not im plied. Device reliability may be affected by exposure to absolute maximum rating conditions for extended periods of time. 9. The absolute maximum VDD of 45V is a transient stress rating and is not meant as a functional operating condition. It is not recommended to operate the device at the absolute maximum rated conditions for any period of time. 10. For thermal de-rating curves under different PCB size and layout conditions, see Thermal Performance section. 11. PDIP-8 (Type A1) soldered to minimum recommended landing pads (see Package Outline Dimensions section) on 2” × 2” two-layer 2oz.copper FR-4 PC (1.6mm thickness) .See Thermal Performance section. 12. SO-14 (Type A1) soldered to minimum recommended landing pads (see Package Outline Dimension section) on 2” × 2” two-layer 2oz.copper FR4 PCB (1.6mm thickness) . See thermal performance section. Recommended Operating Conditions Symbol Characteristic Conditions Min Max Unit VDD Supply Voltage Operating 8 18 V TA Operating Ambient Temperature Range Operating -40 +125 °C TJ Operating Junction Temperature Range Operating -40 +150 °C

Document number: DS44356 Rev. 2 - 2 5 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Electrical Characteristics (Note 13) (@TA = -40°C to +125°C, VDD = 8V to 18V, unless otherwise specified.) Symbol Characteristics Conditions Min Typ Max Unit IDD Supply Current (Excluding Load Current) No Load — 1.45 2.5 mA VUVLO_ON Under Voltage Protection Release Threshold Voltage Increasing — 7.4 8 V VUVLO_OFF Under Voltage Protection Threshold for Shutdown to Standby Mode Voltage Decreasing 6.3 6.9 — V VOVP_ON Over Voltage Protection Threshold for Shutdown to Standby Mode Voltage Increasing 18.5 20.5 23 V VOVP_OFF Over Voltage Release Threshold Voltage Decreasing 17.5 20 22 V VOH Output Voltage High IOUT = 800mA VDD - 1.66 VDD - 0.86 — V IOUT = 500mA VDD – 1.05 VDD - 0.54 — V VOL Output Voltage Low IOUT = 800mA — 0.56 1.12 V IOUT = 500mA — 0.35 0.7 V RON_TOTAL Combined NMOS and PMOS RDSON Including Bond Wire Resistance IOUT = 800mA — 1.8 3.46 Ω IOUT = 500mA — 1.8 3.46 Ω VREFQ REF Quiescent Voltage IREF = 0 185 200 215 mV RREF_IN REF Pin Input Resistance 0 < VREF < 0.5V 4.5 6 7.5 kΩ VFBQ FB Quiescent Voltage IFB = 0 185 200 215 mV RFB_IN REF Pin Input Resistance 0 < VFB < 0.5V 4.5 6 7.5 kΩ IHYST_IO_250 Current Offset IREF = IFB = 250µA, VHYST = VDD/2 -2 0.35 3 µA IHYST_IO_40 IREF = IFB = 40µA, VHYST = VDD/2 -1.3 0 1.3 µA VHYST_H/VS Threshold Voltage High — — 52 — % VDB_H/VS Deadband Voltage High — — 50.4 — % VDBL/VS Deadband Voltage Low — — 49.6 — % VHYST_L/ VS Threshold Voltage Low — — 48 — % VHYST_W/ VS Hysteresis Window (VHYH – VHYL) / VDD 3 4 5 % VDB_W/ VS Deadband Window (VDBH – VDBL) / VDD 0.4 0.8 1.2 % IRANGE Range Pin Input Current 0V < VRANGE <VDD -1 — 1 µA VOFFH Range Pin Input Voltage Monitor Switch-Off Voltage High Referred to VDD -100 0 150 mV VOFFL Range Pin Input Voltage Monitor Switch-Off Voltage Low Referred to GND 300 400 500 mV IOCP Overcurrent protection — 1.5 — — A TJ_SDN_TH IC Junction Temperature Thermal Shutdown Threshold — 150 +170 190 °C TJ_SDN_HYST IC Junction Temperature Thermal Shutdown Hysteresis — — +30 — °C Note: 13. Typical data is measured at TA = +25°C, VDD = 12V. The maximum and minimum parameters values over operating temperature range are not tested in production, and they are guaranteed by design, characterization, and process control.

Figure 1. Hysteresis, Deadband, and Rotation Directions

Figure 2. Rotation Directions with Respect to VREF, VFB, Hysteresis, and Deadband Settings

Document number: DS44356 Rev. 2 - 2 8 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Application Note REF and FB Pin The REF and FB pins are servo AMP input, and the voltage difference between REF/FB terminals are based on the OUT1 and OUT2 operating status (like CW/CCW or Brake status on page 6 and 7). For normal operating, the voltage applied to REF/FB terminals does not exceed 1.5V (= 6k × 250µA; refer to Electrical Characteristics section). The two pins both have a series resistor with same value to degrade applied voltage. 1.5V is the maximum voltage at REF/FB pin, so RREF/RFB resistor is calculated as below: Assuming VDD = 12V and 1.5V maximum on FB/REF pin, the minimum RREF/RFB is equal to 1.5V= {6K / (6K + RREF)} × 12V; RREF = 42kΩ. HYST Pin The hysteresis window can be set via input at HYST pin. If the two resistances RHYH and RHYL are equal, the hysteresis window is located symmetrically at 50 ± 2% relative to the supply voltage. The position of the window can be adjusted by varying the ratio of RHYH to RHYL. The size of the window tolerance can be adjusted by changing the ratio of the hysteresis resistances to the resistances RREF and RFB on the other. For example, if the resistances RHYH and RHYL are both halved in comparison to RREF and RFB, the window tolerance doubles in size (i.e. to 50 ± 4%). RANGE Pin If the potentiometer or the connecting leads reference input to V REF are shorted or open connected , uncontrolled movements of the servo motor must not occur. For this reason, two additional switch -off thresholds VOFFL and VOFFH are provided. The corresponding window comparator for these thresholds behind the RANGE input has a typical low threshold of 0.4V and a typical high threshold of VDD. If the voltage VREFIN falls below 0.4V typical, which will be the case if the reference potentiometer input is shorted to ground, the motor will be switched off. Similarly, if the voltage VREFIN rises above VDD typical, which will be the case if the reference potentiometer input is open circuited, the motor will be switched off. Undervoltage Lockout To make sure the minimum voltage required to operate the driver is supplied, the ZXBM5408Q has an undervoltage lockout. At start up the device only starts if the supply voltage is typically over VUVLO_RLTH. During normal operation, the device will switch off all the output switches and power down if the supply voltage drops below VUVLO_TH typical. When the supply voltage drops below undervoltage lockout threshold, VUVLO_TH_R, the ZXBM5408Q shuts down all the output drive switches and enters standby mode to help prevent overvoltage stress on the coil. Overvoltage Shutdown of Output Drive When the supply voltage exceeds the overvoltage shutdown threshold, VOV_TH, the ZXBM5408Q shuts down all the output drive switches and enters standby mode to help prevent overvoltage stress on the coil. The driver return s to normal condition if the supply voltage drops below VOV_RLTH provided no other fault condition or signals are preventing it to enter normal operation. Overcurrent Protection The internal overcurrent protection (OCP) threshold is 1.5A minimum at 12V supply +25°C. When the motor current exceeds the OCP threshold for longer than 4µs typical on any of the H -Bridge switches, the device switch es off all the output switches and remains off for 260µs typical. The IC returns to normal operation after the 260µs if overcurrent condition has gone away. If the motor current is still higher than the OCP threshold, the device enters another 260µs standby mode. Thermal Shutdown Protection The device has an internal thermal shutdown to prevent a thermal runaway scenario. The thermal shutdown is triggered when the junction temperature of the device reaches +170°C. It will remain in standby mode until the junction temperature falls by +30°C.

Document number: DS44356 Rev. 2 - 2 9 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Typical Operating Characteristics Supply Current UVLO and OVP Threshold 1.00 1.10 1.20 1.30 1.40 1.50 1.60 1.70 1.80 6 8 10 12 14 16 18 20 Supply Current Idd (mA) Supply Voltage (V) Supply Current vs Supply Voltage 1.00 1.10 1.20 1.30 1.40 1.50 1.60 1.70 1.80 -50 -25 0 25 50 75 100 125 150 Supply Current Idd (mA) Temperature (°C) Supply Current vs Temperature 12V 18V 6.00 6.20 6.40 6.60 6.80 7.00 7.20 7.40 7.60 7.80 8.00 -50 -25 0 25 50 75 100 125 150 UVLO(V) Temperature (°C) UVLO vs Temperature VUVLO_ON VUVLO_OFF 18.00 18.50 19.00 19.50 20.00 20.50 21.00 21.50 22.00 -50 -25 0 25 50 75 100 125 150 OVP(V) Temperature (°C) OVP vs Temperature VOVP_OFF VOVP_ON TA=+25℃

Document number: DS44356 Rev. 2 - 2 10 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Typical Operating Characteristics (continued) Total H-Bridge Path Resistance – Total RDS(ON) of High-Side and Low-Side Switches 0.80 1.00 1.20 1.40 1.60 1.80 2.00 2.20 2.40 6 8 10 12 14 16 18 20 Rds(Ω) Supply Voltage (V) Total RDS(ON) vs Supply Voltage IOUT=500mA IOUT=800mA TA=+25℃ 0.80 1.00 1.20 1.40 1.60 1.80 2.00 2.20 100 200 300 400 500 600 700 800 900 1000 Rds(Ω) IOUT (mA) Total RDS(ON) vs IOUT TA=+25℃ , VDD=12V 0.20 0.40 0.60 0.80 1.00 1.20 1.40 1.60 1.80 2.00 2.20 2.40 2.60 2.80 -50 -25 0 25 50 75 100 125 150 Rds(Ω) Temperature (°C) Total RDS(ON) vs Temperature IOUT=500mA 0.20 0.40 0.60 0.80 1.00 1.20 1.40 1.60 1.80 2.00 2.20 2.40 2.60 2.80 -50 -25 0 25 50 75 100 125 150 Rds(Ω) Temperature (°C) Total RDS(ON) vs Temperature IOUT=800mA

Document number: DS44356 Rev. 2 - 2 11 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Typical Operating Characteristics (continued) VOFFH : Range pin input voltage referred to VDD VOFFL : Range Pin input voltage referred to GND 0.0 2.0 4.0 6.0 8.0 10.0 6 8 10 12 14 16 18 20 VOFFH(mV) Supply Voltage(V) VOFFH vs Supply Voltage 0.0 2.0 4.0 6.0 8.0 10.0 -50 -25 0 25 50 75 100 125 150 VOFFH(mV) Temperature (°C) VOFFH vs Temperature VDD=12V 300.0 320.0 340.0 360.0 380.0 400.0 420.0 440.0 460.0 480.0 500.0 6 8 10 12 14 16 18 20 VOFFL(mV) Supply Voltage(V) VOFFL vs Supply Voltage TA=+25℃ 300.0 320.0 340.0 360.0 380.0 400.0 420.0 440.0 460.0 480.0 500.0 -50 -25 0 25 50 75 100 125 150 VOFFL(mV) Temperature (°C) VOFFL vs Temperature VDD=12V TA=+25℃

Document number: DS44356 Rev. 2 - 2 12 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Thermal Performance (1) Package Type: PDIP-8 (Type A1) PDIP-8 (Type A1) Power Dissipation De-rating Curve 1 (Note 14) Note: 14. PDIP-8 (Type A1) soldered to minimum recommended landing pads on 2” × 2” two-layer 2oz.copper FR-4 PCB (1.6mm thickness). (2) Package Type: SO-14 (Type A1) SO-14 Power Dissipation De-rating Curve 1 (Note 15) Note: 15. The SO-14 pad is soldered to the minimum recommended landing pads (see Package Outline Dimension section) on a 2” x 2” 2oz. copper FR4 PCB (1.6mm thickness) with no copper flood connecting to the landing pattern or on the bottom layer. 200 400 600 800 1000 1200 1400 1600 1800 -50 -25 0 25 50 75 100 125 150 Power Dissipation (mW) Temperature (°C) Rthja = 77.11oC/W 200 400 600 800 1000 1200 1400 1600 1800 -50 -25 0 25 50 75 100 125 150 Power Dissipation (mW) Temperature (°C) Rthja = 75.86oC/W

Document number: DS44356 Rev. 2 - 2 13 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Ordering Information (Note 16) ZXBM5408Q - X - X U : Tube Product Name PackingPackage N : PDIP-8 (Type A1) S14 : S0-14 (Type A1) 13 : Tape & Reel Part Number Package Code Packaging (Note 17) Tube(Note 19) 13” Tape and Reel Compliance (Note 18) Quantity Part Number Suffix Quantity Part Number Suffix ZXBM5408Q -N-U N PDIP-8 (Type A1) 60 -U NA NA Automotive Grade Compliant ZXBM5408Q -S14-13 S14 SO-14 (Type A1) NA NA 2,500/Tape & Reel -13 Automotive Grade Compliant Notes: 16. For packaging details, go to our website at https://www.diodes.com/design/support/packaging/diodes -packaging/. 17. Pad layout as shown on Diodes Incorporated’s Suggested pad layout can be found at https://www.diodes.com/design/support/packaging. 18. ZXBM5408Q -N-U is classified as “Automotive Compliant” and supports PPAP documentation. 19 There are 60 tubes in a box and the standard order quan tity is 3600 pcs. Marking Information 1. Package Type: PDIP-8 (Type A1) BM5408Q (Top View) YY WW X X Marking ID Logo WW : Week : 01~52; 52 YY : Year : 18,19,20 ~ X X : Internal Code 8 7 6 5 1 2 3 4 represents 52 and 53 week 2. Package Type: SO-14 (Type A1) ( Top View ) ZXBM5408Q YY WW X X Logo Part Number WW : Week : 01~52; 52 YY : Year : 12, 13,14~ X X : Internal Code represents 52 and 53 week

Document number: DS44356 Rev. 2 - 2 14 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Package Outline Dimensions (All dimensions in mm.) Please see https://www.diodes.com/design/support/packaging/ for the latest version. 1. Package Type: PDIP-8 (Type A1) 2. Package Type: SO-14 (Type A1) PDIP-8 (Type A1) Dim Inches Millimeters Min Max Typ Min Max Typ E 0.300 BSC 7.62 BSC Controlling dimensions are in inches SO-14 (Type A1) Dim Min Max Typ A -- 1.75 -- A1 0.10 0.25 -- A2 1.25 -- -- b 0.31 0.51 -- c 0.10 0.25 -- D 8.65 BSC E 6.00 BSC E1 3.90 BSC e 1.27 BSC h 0.25 0.50 -- L 0.40 1.27 --  0 8 -- All Dimensions in mm A2 A L A1 b D c e eBE a be Ø L Seating Plane Gauge Plane D E A 0.25A2 hx45° c

Document number: DS44356 Rev. 2 - 2 15 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q Suggested Pad Layout Please see https://www.diodes.com/design/support/packaging/ for the latest version. SO-14 (Type A1) Dimensions Value (in mm) C 1.27 C1 5.40 X 0.60 Y 1.50 C X Y

Document number: DS44356 Rev. 2 - 2 16 of 16 www.diodes.com September 2022 © Diodes Incorporated ZXBM5408Q IMPORTANT NOTICE 1. DIODES INCORPORATED (Diodes) AND ITS SUBSIDIARIES MAKE NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, WITH REGARDS TO ANY INFORMATION CONTAINED IN THIS DOCUMENT, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICUL AR PURPOSE OR NON -INFRINGEMENT OF THIRD PARTY INTELLECTUAL PROPERTY RIGHTS (AND THEIR EQUIVALENTS UNDER THE LAWS OF ANY JURISDICTION). 2. The Information contained herein is for informational purpose only and is provided only to illustrate the operation of Diodes’ products described herein and application examples. Diodes does not assume any liability arising out of the application or use of this document or any product described herein. This document is intended for skilled and technically trained engin eering customers and users who design with Diodes’ products. Diodes’ products may be used to facilitate safety-related applications; however, in all instances customers and users are responsible for (a) selecting the appropriate Diodes products for their applications, (b) evaluating the suitability of Diodes’ products for their intended applications, (c) ensuring their applications, which incorporate Diodes’ products, comply the applicable legal and regulatory requirements as well as safety and functional-safety related standards, and (d) ensuring they design with appropriate safeguards (including testing, validation, quality con trol techniques, redundancy, malfunction prevention, and appropriate treatment for aging degradation) to minimize the risks associ ated with their applications. 3. Diodes assumes no liability for any application -related information, support, assistance or feedback that may be provided by Diodes from time to time. Any customer or user of this document or products described herein wi ll assume all risks and liabilities associated with such use, and will hold Diodes and all companies whose products are represented herein or on Diodes’ websites, harmless against al l damages and liabilities. 4. Products described herein may be covered by one or more United States, international or foreign patents and pending patent applications. Product names and markings noted herein may also be covered by one or more United States, international or fore ign trademarks and trademark applications. Diodes does not convey any license under any of its intellectual property rights or the rights of any third parties (including third parties whose products and services may be described in this document or on Diodes’ website) under this document. 5. Diodes’ p roducts are provided subject to Diodes’ Standard Terms and Conditions of Sale (https://www.diodes.com/about/company/terms-and-conditions/terms-and-conditions-of-sales/) or other applicable terms. This document does not alter or expand the applicable warranties provided by Diodes. Diodes does not warrant or accept any liability whatsoever in r espect of any products purchased through unauthorized sales channel. 6. Diodes’ products and technology may not be used for or incorporated into any products or systems whose manufacture, use or sa le is prohibited under any applicable laws and regulations. Should customers or users use Diodes’ products in contraven tion of any applicable laws or regulations, or for any unintended or unauthorized application, customers and users will (a) be solely responsible for any da mages, losses or penalties arising in connection therewith or as a result thereof, and (b) indemnify and hold Diodes and its representatives and agents harmless against any and all claims, damages, expenses, and attorney fees arising out of, directly or indirectly, any claim relating to any noncompliance with the applicable laws and regulations, as well as any unintended or unauthorized application. 7. While efforts have been made to ensure the information contained in this document is accurate, complete and current, it may c ontain technical inaccuracies, omissions and typographical errors. Diodes does not warrant that information contained in this document is error -free and Diodes is under no obligation to update or otherwise correct this information. Notwithstanding the foregoing, Diodes reserves the right to make modifications, enhancements, improvem ents, corrections or other changes without further notice to this document and any product described herein. This document is written in English but may be translated into multiple languages for reference. Only the English version of this document is the final and determinative format released by Diodes. 8. Any unauthorized copying, modification, distribution, transmission, display or other use of this document (or any portion her eof) is prohibited. Diodes assumes no responsibility for any losses incurred by the customers or users or any third parties arising from any such unauthorized use. 9. This Notice may be periodically updated with the most recent version available at https://www.diodes.com/about/company/terms-and- conditions/important-notice DIODES is a trademark of Diodes Incorporated in the United States and other countries. The Diodes logo is a registered trademark of Diodes Incorporated in the United States and other countries. © 2022 Diodes Incorporated. All Rights Reserved. www.diodes.com