TPT71050 3PEAK | Alldatasheet

Document overview

  • Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
  • PDF pages: 30

Technical content

Features

  • Meet ISO11898 Standard
  • Support CAN FD and Data Rates up to 5 Mbps
  • Typical Loop Delay: 110 ns
  • 5-V Power Supply, 2.25-V to 5.5-V IO Interface
  • Receiver Common-Mode Input Voltage: ±30 V
  • Bus Fault Protection: ±42 V
  • Up to 5-kV RMS Isolation Rating (WSOP)
  • ±200-kV/μs typ Static CMTI, ±150-kV/μs typ Dynamic CMTI
  • Junction Temperatures from −40°C to 150°C
  • SMP8 and Wide-SOP (WSOP8, WSOP16)
  • BUS pin ESD Protection (between Bus pins and GNDB) – ±15-kV IEC 61000-4-2 Contact Discharge
  • Safety-Related Certifications: – VDE Certification according to DIN VDE V 0884-17 (IEC60747-17) – 5000-VRMS (WSOP16, WSOP8), 3750-VRMS (SMP8) Isolation Rating per UL 1577 – CQC Certification per GB 4943.1 – CSA, TUV, and CB Certifications

Applications

  • Industrial Automation
  • Motor Control
  • Solar Inverters
  • Battery Charging and Management

Description

The TPT710xx device is an isolated CAN transceiver that meets the ISO11898 High-speed CAN (Controller Area Network) physical layer standard. The device is designed to be applied in CAN FD networks up to 5 Mbps and to enhance timing margin and higher data rates in long and high-loading networks. As the design, the device features cross-wire, overvoltage, and loss of ground protection from −42 V to +42 V, overtemperature shutdown, and a −30 V to +30 V common-mode range. The VCCA is the power supply input for RXD and TXD I/O pins which support a wide range from 2.25 V to 5.5 V. The 2 nd power supply VCCB of CAN BUS side which supports the range from 4.5 V to 5.5 V. The devices integrate high-performance digital isolators with 5000 VRMS (WSOP8, WSOP16 packages), 3750 VRMS (SMP8 package), and isolation ratings per UL 1577. These devices are also to be certified by VDE, UL, CSA, and CQC. TPT710xx family is available in WSOP8, WSOP16, and SMP8 packages, and is characterized from −40°C to +125°C. Functional Block Diagram VCCA VCCB GNDA GNDB Isolation Capacitor Isolation Capacitor TXD CANH CANL RXD TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 1 / 30 CA20230908A2

Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 2 / 30 CA20230908A2

Revision History

2022-02-07 Rev.Pre.0 Preliminary version. 2022-11-01 Rev.A.0 Released version. 2022-12-21 Rev.A.1 Updated Order Information. 2022-12-27 Rev.A.2 Updated EC table. TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 3 / 30 CA20230908A2

Table 1. Pin Functions: TPT71044

Table 2. Pin Functions: TPT71050

Absolute Maximum Ratings (1) Parameter Min Max Unit VCC Supply Voltage, VCCA, VCCB (2) −0.5 6 V IO Output Current −15 15 mA TJ Operating Virtual Junction Temperature - 150 °C Tstg Storage Temperature −65 150 °C (1) Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. Exposure to any Absolute Maximum Rating condition for extended periods may affect device reliability and lifetime. (2) This data was taken with the JEDEC low effective thermal conductivity test board. (3) This data was taken with the JEDEC standard multilayer test boards. ESD, Electrostatic Discharge Protection Parameter Condition Minimum Level Unit IEC IEC-61000-4-2, Contact Discharge Bus pin to GNDB ±15 kV IEC-61000-4-2, Air-Gap Discharge Bus pin to GNDB ±15 kV HBM HBM, per ANSI/ESDA/JEDEC JS-001 (1) Bus pin to GNDB ±15 kV All pins except bus Pin ±6 kV CDM CDM, per ANSI/ESDA/JEDEC JS-002 (2) All pins ±1.5 kV LU Latch up, per JESD78 All pins ±600 mA (1) JEDEC document JEP155 states that 500-V HBM allows safe manufacturing with a standard ESD control process. (2) JEDEC document JEP157 states that 250-V CDM allows safe manufacturing with a standard ESD control process. Recommended Operating Conditions Parameter Min Typ Max Unit VCCB Supply Voltage, VCCB 4.5 5.5 V VCCA Supply Voltage, VCCA 2.25 5.5 V VIH High-level Input Voltage (data input) 2 VCC V VIL Low-level Input Voltage (data input) 0 0.8 V fdata Data Rate (1) 0 5 Mbps TA Operating Ambient Temperature −40 25 125 °C (1) 5 Mbps is the maximum specified data rate, although higher data rates are possible. TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 6 / 30 CA20230908A2

Package Type θJA θJC Unit WSOP8 85 43 °C/W WSOP16 75 41 °C/W SMP8 74 65 °C/W Insulation Specifications Parameter Conditions Value Unit SMP8 WSOP8 WSOP16 CLR External clearance Shortest terminal-to-terminal distance through air > 6.5 > 8.0 > 8.0 mm CPG External creepage Shortest terminal-to-terminal distance across the package surface > 6.5 > 8.0 > 8.0 mm DTI Distance through the insulation Minimum internal gap (internal clearance) > 22 > 22 > 22 μm DTC Distance through the Molding compound Minimum internal distance across the conductors inside the package 0.45 0.8 0.8 mm CTI Comparative tracking index > 600 > 600 > 600 V Material group I I I Over-voltage category For Rated Mains Voltage ≤ 150 VRMS I-IV I-IV I-IV For Rated Mains Voltage ≤ 300 VRMS I-III I-IV I-IV For Rated Mains Voltage ≤ 600 VRMS I-II I-IV I-IV For Rated Mains Voltage ≤ 1000 VRMS I I-III I-III Climatic category 40/125/21 40/125/21 40/125/21 Pollution degree 2 2 2 DIN V VDE V 0884-17 (1)(2) VIORM Maximum repetitive isolation voltage AC voltage 637 1414 1414 VPK VIOWM Maximum working isolation voltage AC voltage; TDDB Test 450 1000 1000 VRMS DC voltage 637 1414 1414 VDC VIOTM Maximum transient isolation voltage VTEST= VIOTM, t = 60 s (qualification); VTEST= 1.2 x VIOTM, t = 1 s (100% production) 5300 7070 7070 VPK VIOSM Maximum surge isolation voltage(3) Test method per IEC 62368-1, 1.2/50 μs waveform, VTEST= 1.3 × VIOSM(qualification) 5980 6500 6500 VPK TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 7 / 30 CA20230908A2

Method a, After Input/Output safety test subgroup 2/3, Vini= VIOTM, tini= 60 s; Vpd(m) = 1.2 × VIORM, tm= 10 s ≤ 5 ≤ 5 ≤ 5 pC Method a, After environmental tests subgroup 1, Vini= VIOTM, tini= 60 s; Vpd(m) = 1.6 × VIORM, tm= 10 s ≤ 5 ≤ 5 ≤ 5 Method b1; At routine test (100% production) and preconditioning (type test), Vini= 1.2 x VIOTM, tini= 1 s; Vpd(m)= 1.875 × VIORM, tm = 1 s ≤ 5 ≤ 5 ≤ 5 CIO Isolation capacitance VIO= 0.4 × sin (2πft), f = 1 MHz ~0.5 ~0.5 ~0.5 pF RIO Isolation resistance VIO= 500 V, T A= 25°C > 1012 > 1012 > 1012 Ω VIO= 500 V, 100°C ≤ T A≤ 125°C > 1011 > 1011 > 1011 Ω VIO= 500 V at T S= 150°C > 109 > 109 > 109 Ω UL 1577 VISO Withstanding isolation voltage VTEST= VISO, t = 60 s(qualification); VTEST= 1.2 × VISO, t = 1 s (100% production) 3750 5000 5000 VRMS (1) All pins on each side of the barrier are tied together creating a two-terminal device. (2) This coupler is suitable for safe electrical insulation only within the safety operating ratings. Compliance with the safety ratings shall be ensured by means of suitable protective circuits. (3) Testing must be carried out in oil. TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 8 / 30 CA20230908A2

Safety-Related Certifications VDE UL TUV CQC CSA CB Certified according to DIN EN IEC 60747-17 (VDE 0884-17) Certified according to UL 1577 and CSA Component Acceptance Service No. 5A Certified according to EN IEC 62368-1 and EN IEC 61010-1 Certified according to GB 4943.1 Certified CSA C22.2 No. 62368-1 and CAN/CSA- C22.2 No. 60601-1 Certified according to EN IEC 62368-1 Basic insulation (WSOP) VIORM = 1414 VIOSM = 6500 (SOP, QSOP) VIORM = 637 VIOSM = 5980 (WSOP) Single protection,

5000 Vrms

(SOP, QSOP) Single protection,

3750 Vrms

6400 Vrms

insulation (WSOP),

800 Vrms

voltage.

4000 Vrms basic

insulation (SOP, QSOP), 400 V rms maximum work voltage. Reinforced insulation (WSOP), Altitude<=5000m, 800-V rms maximum work voltage. Basic insulation (SOP, QSOP), Altitude<=5000m, 400-V rms maximum work voltage. 400-Vrms basic insulation (SOP, QSOP) and 600- V rms reinforced insulation (WSOP) working voltage per CSA C22.2 No. 62368-1:19 3rd, IEC 62368-1:2018 Ed. 3(in pollution degree 2, material group I)

2 MOPP (Means of

Patient Protection) insulation requirements for 250Vrms and 1 MOPP insulation requirements for 500Vrms (WSOP) in CAN/CSA-C22.2 No. 60601-1:14, IEC 60601-1:2005 + AMD1:2012.

1 MOPP (Means of

Patient Protection) insulation requirements for 250Vrms (SOP, QSOP) in CAN/ CSA-C22.2 No. 60601-1:14, IEC 60601-1:2005 + AMD1:2012 Reinforced insulation (WSOP), Altitude<=5000m,8 00-V rms maximum work voltage. Basic insulation (SOP, QSOP), Altitude<=5000m,4 00-V rms maximum work voltage Certificate No. 40054570 Report Reference E524241 AK 50560071 0001 Certificate No. CQC22001356658 Master contract: 302375 Ref. Certif. No. CN57658 TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 9 / 30 CA20230908A2

Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 10 / 30 CA20230908A2

Parameter Conditions (1) Min Typ Max Unit Safety Supply Current RθJA = 74°C/W, VI = 5 V, TJ = 150°C, TA = 25°C (SMP8) 337.8 mARθJA = 85°C/W, VI = 5 V, TJ = 150°C, TA = 25°C (WSOP8) 294.1 RθJA = 75°C/W, VI = 5 V, TJ = 150°C, TA = 25°C (WSOP16) 333.3 Safety Total Power RθJA = 74°C/W, TJ = 150°C, TA = 25°C (SMP8) 1689.1 mWRθJA = 85°C/W, TJ = 150°C, TA = 25°C (WSOP8) 1470.5 RθJA= 75°C/W, TJ = 150°C, TA = 25°C (WSOP16) 1666.6 Maximum Safety Temperature 150 °C (1) The assumed junction-to-air thermal resistance in the Thermal Information is that of a device installed on a high-K test board for leaded surface-mount packages. TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 11 / 30 CA20230908A2

Electrical Characteristics

5 V, TA = +25°C., unless otherwise noted. Parameter Test Conditions Min Typ Max Unit Power Supply ICCA Supply Current Side A Bus dominant, VCCA= 2.25 V to 5.5 V, TXD = 0 V 2.3 8 mA Bus recessive, VCCA= 2.25 V to

5.5 V, TXD = VCCA

1.3 4.1 mA VCCA= 4.5 to 5.5 V, TXD= 1Mbps 50% duty square wave 2.0 7.6 mA VCCA = 4.5 to 5.5 V, TXD= 5Mbps 50% duty square wave 2.0 9 mA ICCB Supply Current Side B Bus dominant, TXD = 0 V, RL= 60 Ω 10 80 mA Bus recessive, TXD = VCCA, RL = 60 Ω 1 6 mA VCCB= 4.5 to 5.5 V, TXD= 1 Mbps 50% duty square wave 10 50 mA VCCB= 4.5 to 5.5 V, TXD= 5 Mbps 50% duty square wave 10 60 mA UVVCCA Rising under Voltage Detection, Side A 2 2.2 V UVVCCA Falling under Voltage Detection, Side A 1.7 1.85 V VHYS(UVCCA) Hysteresis Voltage on VCCAUndervoltage Lock-out(1) 150 mV UVVCCB Rising under Voltage Detection, side B 4.2 4.4 V UVVCCB Falling under Voltage Detection, side B 3.5 4.0 V VHYS(UVCCB) Hysteresis Voltage on VCCBUndervoltage Lock-out(1) 200 mV TXD Terminal VIH High Level Input Voltage 2 Vcc V VIL Low Level Input Voltage 0 0.8 V IIH High Level Input Leakage Current TXD = VCCA 5 uA IIL Low Level Input Leakage Current TXD = 0 V −20 uA TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 12 / 30 CA20230908A2

Parameter Test Conditions Min Typ Max Unit CI Input Capacitance(1) VIN= 0.4 x sin(2 x π x 1E+6 x t) + 2.5 V, VCCA= 5 V 5 pF VOH − VCCA High Level Output Voltage IO = −4 mA for 4.5 V ≤ VCCA ≤ 5.5 V −0.4 V IO = −2 mA for 3.0 V ≤ VCCA ≤ 3.6 V −0.2 V IO = −1 mA for 2.25 V ≤ VCCA ≤ 2.75 V −0.1 V VOL Low Level Output Voltage IO = 4 mA for 4.5 V ≤ VCCA ≤ 5.5 V 0.4 V IO = 2 mA for 3.0 V ≤ VCCA ≤ 3.6 V 0.2 V IO = 1 mA for 2.25 V ≤ VCCA ≤ 2.75 V 0.1 V Driver Electrical Characteristics VO(DOM) Bus Output Voltage (Dominant), CANH TXD = 0 V, 50 Ω ≤ RL ≤ 65 Ω, CL = open 2.75 4.5 V Bus Output Voltage (Dominant), CANL TXD = 0 V, 50 Ω ≤ RL ≤ 65 Ω, CL = open 0.5 2.25 V VO(REC) Bus Output Voltage (recessive), CANH and CANL TXD = VCCA, RL = open 2.0 0.5 x VCCB 3.0 V (1) Provided by bench test and design simulation TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 13 / 30 CA20230908A2

Electrical Characteristics - DC Specification 5 V, TA = +25°C, unless otherwise noted. Parameter Test Conditions Min Typ Max Unit Power Supply VOD(DOM) Differential Output Voltage, CANH − CANL (dominant) TXD = 0 V, 45 Ω ≤ RL ≤ 50 Ω, CL = open 1.4 3.0 V TXD = 0 V, 50 Ω ≤ RL ≤ 65 Ω, CL = open 1.5 3.0 V TXD = 0 V, RL = 2240 Ω, CL = open, VCCB = 4.5 V ~ 5.25 V 1.5 5.0 V VOD(REC) Differential Output Voltage, CANH-CANL (recessive) TXD = VCCA, RL = 60 Ω, CL = open -120 30 mV TXD = VCCA, RL = open, CL = open -50 50 mV VSYM_DC DC Output Symmetry (VCCB − VO(CANH) − VO(CANL)) RL = 60 Ω, CL = open, TXD = VCCA or 0 V −400 400 mV ISO(SS_DOM) Short Circuit Current Steady State Output Current, dominant VCANH = −5 V to 40 V, CANL = open, TXD = 0 V −100 mA VCANL = −5 V to 40 V, CANH = open, TXD = 0 V 100 mA ISO(SS_REC) Short Circuit Current Steady State Output Current, recessive −27 V ≤ VBUS ≤ 32 V, VBUS = CANH = CANL, TXD = VCCA −5.0 5.0 mA Receiver Electrical Characteristics VIT Differential Input Threshold Voltage |VCM| ≤ 20 V 500 900 mV

20 V ≤ |VCM| ≤ 30 V 400 1000

VHYS Hysteresis Voltage for differential input threshold (1) 120 mV VCM Input Common Mode Range −30 30 V IOFF(LKG) Power-off Bus Input Leakage Current CANH = CANL = 5 V, VCCB to GND via 0 Ω and 47 kΩ resistor 4.8 uA CI Input capacitance to ground (CANH or CANL) (1) TXD = VCCA 24.0 30 pF CID Differential Input Capacitance (CANH – CANL) (1) TXD = VCCA 12.0 15 pF RID Differential Input Resistance TXD = VCCA; −30 V ≤ VCM ≤ +30 V 25 80 kΩ RIN Input Resistance (CANH or CANL) TXD = VCCA; −30 V ≤ VCM ≤ +30 V 15 40 kΩ TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 14 / 30 CA20230908A2

Parameter Test Conditions Min Typ Max Unit RIN(M) Input Resistance Matching: (1 − RIN(CANH)/RIN(CANL)) x 100% VCANH = VCANL = 5 V −2.0 2.0 % Thermal Shutdown TTSD Thermal Shutdown Temperature (1) 170 °C TTSD_HYST Thermal Shutdown Hysteresis (1) 5 °C (1) Provided by bench test and design simulation. TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 15 / 30 CA20230908A2

5 V, TA = +25°C., unless otherwise noted. Parameter Conditions Min Typ Max Units Switching Characteristics tPROP(LOOP1 Total loop delay, driver input TXD to receiver RXD, recessive to dominant RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF; input rise/fall time (10% to 90%) on TXD < 5 ns; 2.25 V ≤ VCCA ≤ 5.5 V 80 110 200 ns tPROP(LOOP2 Total loop delay, driver input TXD to receiver RXD, dominant to recessive RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF; input rise/fall time (10% to 90%) on TXD < 5 ns; 2.25 V ≤ VCCA ≤ 5.5 V 80 120 200 ns tUV_RE_ENA BLE Re-enable time after undervoltage event Time for device to return to normal operation from VCCA or VCCB under voltage event 30 50 µs Static CMTI Static Common mode transient immunity (1) VCM = 1200 VPK 150 200 kV/µs Dynamic CMTI Dynamic Common mode transient immunity (1) VCM = 1200 VPK 100 150 kV/µs Driver Switching Characteristics tpHR Propagation delay time, HIGH TXD to driver recessive RL = 60 Ω and CL = 100 pF; input rise/fall time (10% to 90%) on TXD < 5 ns 65 120 ns tpLD Propagation delay time, LOW TXD to driver dominant 55 120 tsk(p) Pulse skew (|tpHR - tpLD|) (1) 12 30 tR Differential output signal rise time (1) 40 tF Differential output signal fall time (1) 40 VSYM Output symmetry (dominant or recessive) (VO(CANH) + VO(CANL)) / VCCB RTERM = 60 Ω, CSPLIT = 4.7 nF, CL = open, RL = open, TXD = 250 kHz, 1 MHz 0.9 1.1 V/V tTXD_DTO Dominant time out RL = 60 Ω and CL = open 1.2 3.8 Ms Receiver Switching Characteristics tpRH Propagation delay time, bus recessive input to RXD high output CL(RXD) = 15 pF 60 120 ns tpDL Propagation delay time, bus dominant input to RXD low output 55 120 ns tR Output signal rise time (RXD) (1) 1 4 ns TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 16 / 30 CA20230908A2

Parameter Conditions Min Typ Max Units tF Output signal fall time (RXD) (1) 1 4 ns CAN FD Timing parameters tBIT(BUS) Bit time on CAN bus output pins with tBIT(TXD) = 500 ns RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF; input rise/fall time (10% to 90%) on TXD < 5 ns 435 530 ns Bit time on CAN bus output pins with tBIT(TXD) = 200 ns RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF; input rise/fall time (10% to 90%) on TXD < 5 ns 155 210 ns tBIT(RXD) Bit time on RXD output pins with tBIT(TXD) = 500 ns RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF; input rise/fall time (10% to 90%) on TXD < 5 ns 400 550 ns Bit time on RXD output pins with tBIT(TXD) = 200 ns RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF; input rise/fall time (10% to 90%) on TXD < 5 ns 120 220 ns ∆tREC Receiver timing symmetry with tBIT(TXD) = 500 ns RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF; input rise/fall time (10% to 90%) on TXD < 5 ns; ΔtREC = tBIT(RXD) − tBIT(BUS) −65.0 40 ns Receiver timing symmetry with tBIT(TXD) = 200 ns RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF; input rise/fall time (10% to 90%) on TXD < 5 ns; ΔtREC = tBIT(RXD) − tBIT(BUS) −45.0 15 ns (1) Provided by bench test and design simulation. TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 17 / 30 CA20230908A2

Figure 5. Common-Mode Transient Immunity Test Circuit

range. The VCCA is the power supply input for RXD and TXD I/O pins which support a wide range from 2.25 V to 5.5 V. TPT71044 is the TXD and RXD pin position. Figure 6. Block Diagram of Digital Capacitive Isolator

Figure 7. On-Off Keying (OOK) based Modulation Scheme The TPT710xx integrates foldback circuit and over-temperature protection to prevent device from over-heated and damage. communications. The TXD dominant time-out timer is reset as TXD is pulled to high.

Table 3. Driver Function Table Table 4. Receiver Function Table

Application and Implementation Note Information in the following application sections is not part of the 3PEAK’s component specification and 3PEAK does not warrant its accuracy or completeness. 3PEAK’s customers are responsible for determining suitability of components for their purposes. Customers should validate and test their design implementation to confirm system functionality.

Application Information

The TPT710xx can be used with other components such as a microcontroller, a transformer driver, and a linear voltage regulator to form a fully isolated CAN interface. Typical Application TPT710xx TXD RXD CANH CANL Optional VCCA VCCB GNDA GNDB TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 24 / 30 CA20230908A2

Order Number Package D1 (mm) W1 (mm) A0 (mm) B0 (mm) K0 (mm) P0 (mm) W0 (mm) Pin1 Quadrant TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 25 / 30 CA20230908A2

Package Outline Dimensions WSOP8-B TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 26 / 30 CA20230908A2

Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 27 / 30 CA20230908A2

Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 28 / 30 CA20230908A2

Order Number Operating Temperature Range Package Marking Information MSL Transport Media, Quantity Eco Plan TPT71050-SM1R −40 to 125°C SMP8 71050 MSL3 Tape and Reel, 800 Green TPT71050-SOBR −40 to 125°C WSOP16 71050 MSL3 Tape and Reel, 1500 Green TPT71044-SOAR −40 to 125°C WSOP8 71044 MSL3 Tape and Reel, 1000 Green TPT71044-SOBR −40 to 125°C WSOP16 71044 MSL3 Tape and Reel, 1500 Green Green: 3PEAK defines "Green" to mean RoHS compatible and free of halogen substances. TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 29 / 30 CA20230908A2

IMPORTANT NOTICE AND DISCLAIMER Copyright© 3PEAK 2012-2023. All rights reserved. Trademarks. Any of the 思瑞浦 or 3PEAK trade names, trademarks, graphic marks, and domain names contained in this document /material are the property of 3PEAK. You may NOT reproduce, modify, publish, transmit or distribute any Trademark without the prior written consent of 3PEAK. Performance Information. Performance tests or performance range contained in this document/material are either results of design simulation or actual tests conducted under designated testing environment. Any variation in testing environment or simulation environment, including but not limited to testing method, testing process or testing temperature, may affect actual performance of the product. Disclaimer. 3PEAK provides technical and reliability data (including data sheets), design resources (including reference designs), application or other design recommendations, networking tools, security information and other resources "As Is". 3PEAK makes no warranty as to the absence of defects, and makes no warranties of any kind, express or implied, including without limitation, implied warranties as to merchantability, fitness for a particular purpose or non-infringement of any third- party’s intellectual property rights. Unless otherwise specified in writing, products supplied by 3PEAK are not designed to be used in any life-threatening scenarios, including critical medical applications, automotive safety-critical systems, aviation, aerospace, or any situations where failure could result in bodily harm, loss of life, or significant property damage. 3PEAK disclaims all liability for any such unauthorized use. TPT710xx Isolated CAN Transceiver with Flexible Data Rate www.3peak.com 30 / 30 CA20230908A2