TPT1043 3PEAK | Alldatasheet
Document overview
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- PDF pages: 26
Technical content
Features
- Meet the ISO 11898-2:2016 and SAE J2284-1 to SAE J2284-5 Physical Layer Standards
- Supports CAN FD and Data Rating up to 5 Mbps
- Short Propagation Delay Times and Fast Loop Times
- 5-V Power Supply, I/O Voltage Range Supports 2.8-V to 5.5-V MCU Interface
- Standby Mode and Extra Low Current Sleep Mode with Local and Remote Bus Wake-Up Capability and INH Output
- Ideal Passive Behavior to CAN Bus when Unpowered
- Common-Mode Input Voltage: ±30 V
- Protection Feature: – IEC 61000-4-2 ESD Protection up to ±12 kV – Bus Fault Protection: ±70 V – VCC Undervoltage Protection – TXD Dominant Time-Out Function and Bus- Dominant Time-Out Function – Thermal Shutdown Protection
- Available in SOP14 Package and Leadless DFN4.5X3-14L Package
Applications
- All Devices Supporting Highly Loaded CAN Networks
- Field Industrial Automation, Sensor and Driver Systems
- Building, Security Control Systems
- Energy Storage Systems
- Telecom Base Station Status and Control
Description
The TPT1043 is a CAN transceiver that meets the ISO11898 high-speed CAN (Controller Area Network) physical layer standard. The device is designed to be used in CAN FD networks up to 5 Mbps, with enhanced timing margin and higher data rates in long and highly loaded networks. As designed, the device features a –30-V to +30-V common-mode range, CAN-Bus fault protection from −70 V to +70 V, over-voltage protection, and over- temperature shutdown. TPT1043 has an I/O power supply for interface I/O to connect to microcontrollers with supply voltages from 2.8 V to 5.5 V. The device comes with a standby mode, which can be waked up from the CAN BUS. The ultra-low power management controls the node in standby and sleep modes. The device enables the power supply by the INH interface through the local and remote wake-up with wake-up source recognition, and it includes many protection features to enhance the device and network robustness. The TPT1043 is available in SOP14 and DFN4.5X3.0-14L packages, and is characterized from −40°C to +125°C. Typical Application Circuit MCU TPT1043 3.3/5V Voltage Regulator STB_N EN ERR_N CAN Controller I/O Interface TXD RXD 5V Voltage Regulator VIO INH VCC EN VOUT VOUT EN BAT VBAT WAKE CANH CANL Optional VCC Port_b TX RX Port_c Port_a TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 1 / 26 CA20230204A1
Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 2 / 26 CA20230204A1
Order Number VCC (V) VIO (V) BUS Protection (V) Package TPT1043-SO2R-S 5.0 2.8 to 5.5 ±70 SOP14 TPT1043-DFKR-S 5.0 2.8 to 5.5 ±70 DFN4.5X3-14L
Revision History
2021-11-02 Rev.Pre.0 Initial version. 2022-7-25 Rev.A.0 Released version. 2023-10-25 Rev.A.1 Typo correction. TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 3 / 26 CA20230204A1
Table 1. Pin Functions: TPT1043
1 TXD Input CAN transmit data input (low for dominant and high for recessive bus states)
2 GND GND Ground connection
3 VCC Power 5-V CAN bus supply voltage
4 RXD Output CAN receive data output (low for dominant and high for recessive bus states),
5 VIO Power I/O supply voltage
6 EN Input Enable input for mode control, integrated pull down
7 INH Output Can be used to control system voltage regulators
8 ERR_N Output Fault output, inverted logic
9 WAKE Input Wake input terminal, high voltage input
10 VBAT Power Reverse-blocked battery supply input
11 NC - No connect (not internally connected)
12 CANL Bus I/O Low-level CAN bus input/output line
13 CANH Bus I/O High-level CAN bus input/output line
14 STB_N Input Standby input for mode control, integrated pull down
VBAT Battery Supply Voltage Range −0.3 60 V VCC 5-V Bus Supply Voltage Range −0.3 7 V VIO I/O Level-Shifting Voltage Range −0.3 7 V VBUS CAN Bus I/O Voltage Range (CANH, CANL) −70 70 V VBUS_DIFF Differential Voltage of CAN Bus, CANH - CANL −70 70 V VLOGIC Logic Input and Output Terminal Voltage Range (TXD, RXD, STB_N, ERR_N, EN) −0.3 7 V VWAKE WAKE Input Pin Voltage Range −0.3 60 and VWAKE ≤ VBAT + 0.3 V V VINH INH Output Pin Voltage Range −0.3 60 and VINH ≤ VBAT + 0.3 V V IO_LOGIC RXD and ERR_N Output Current −8 8 mA IO_INH_ INH Output Current −4 4 mA TJ Maximum Junction Temperature −40 150 °C TSTG Storage Temperature Range −65 150 °C TOTP Shutdown Junction Temperature - 170 °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. TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 5 / 26 CA20230204A1
ESD (Electrostatic Discharge Protection) Parameter Condition Minimum Level Unit IEC IEC Contact Discharge IEC-61000-4-2, Bus Pin ±12 kV IEC Air-Gap Discharge IEC-61000-4-2, Bus Pin ±15 kV HBM Human Body Model ESD ANSI/ESDA/JEDEC JS-001, All Pin ±8 kV CDM Charged Device Model ESD ANSI/ESDA/JEDEC JS-002, All Pin ±1.5 kV LU Latch Up LU, per JESD78, All Pin, 25℃ ±500 mA LU, per JESD78, All Pin, 125℃ ±100 mA VTRAN ISO7637-2 transients per IEC 62228-3, CANH, CANL, WAKE, VBAT Pulse 1 −100 V Pulse 2a 75 V Pulse 3a −150 V Pulse 3b 100 V (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 Description Min Max Unit VBAT Battery Supply Voltage Range 4.5 40 V VIO Input/output Voltage TXD, RXD, STB_N, ERR_N, EN 2.8 5.5 V VCC Power Supply 4.5 5.5 V IOH_RXD RXD Terminal High Level Output Current −4 - mA IOL_RXD RXD Terminal Low Level Output Current - 4 mA IO_INH INH Output Current - 1 mA TA Operating Ambient Temperature −40 125 °C Thermal Information Package Type θJA θJC Unit SOP14 65.5 33.7 °C/W DFN4.5x3-14 35.8 31.6 °C/W TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 6 / 26 CA20230204A1
Electrical Characteristics
otherwise noted. Parameter Test Conditions Min Typ Max Unit Pin VCC (Power Supply) VCC Supply Voltage 4.5 - 5.5 V UVVCC_R Undervoltage Recovery on VCC for Protected Mode VCC Rising - 3.6 4.4 V UVVCC_F Undervoltage Detection on VCC for Protected Mode VCC Falling 3 3.4 - V VHYS_UVVCC Hysteresis Voltage on UVVCC (1) - 200 - mV ICC Supply Current Normal mode (dominant), VTXD = 0 V, RL = 50 Ω, CL = open - 45 65 mA Normal mode (recessive), VTXD = VIO, RL = 50 Ω, CL = open - 1.2 3 mA Standby/Sleep mode VBAT > VCC, RL = 50 Ω, CL = open - 2 3 µA Dominant with bus fault, short circuit on bus line, VTXD = 0 V, −3V < (VCANH = VCANL) < +18V, RL = Open, CL = open - 63 110 mA Pin VIO (I/O Supply) VIO Supply Voltage on VIO Pin 2.8 - 5.5 V UVVIO_R Undervoltage Recovery on VIO for Protected Mode VIO Rising - 1.8 2.5 V UVVIO_F Undervoltage Detection on VIO for Protected Mode VIO Falling 0.8 1.7 - V VHYS_UVVIO Hysteresis Voltage on UVVIO for Protected Mode (1) - 100 - mV IIO Supply Current from VIO Normal mode, VTXD = 0 V, Dominant - 150 500 µA Normal/Silent mode, VTXD = VIO, Recessive - 2 4 µA Standby/Sleep mode - 2 4 µA Pin VBAT (Supply from battery) UVBAT_R Undervoltage Recovery on VBAT for Protected Mode VBAT rising - 3.5 4.3 V UVBAT_F Undervoltage Detection on VBAT for Protected Mode VBAT falling 3 3.3 - V VHYS_UVBAT Hysteresis Voltage on UVBAT (1) - 200 - mV TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 7 / 26 CA20230204A1
Parameter Test Conditions Min Typ Max Unit IBAT Battery Supply Current Normal/Silent mode - 34 70 µA Standby mode, VCC > 4.5 V, VINH = VWAKE = VBAT - 15 30 µA Sleep mode, VINH = VCC = VIO = 0 V, VWAKE = VBAT - 15 30 µA Pin TXD (CAN transmit data input) VIH_TXD High-Level Input Voltage 3 V ≤ VIO ≤ 5.5 V 0.7 x VIO - VIO+ 0.3 V VIL_TXD Low-Level Input Voltage 3 V ≤ VIO ≤ 5.5 V −0.3 - 0.3 x VIO V IIH_TXD High-Level Input Current VTXD = VIO −5 0 5 µA IIL_TXD Low-Level Input Current VTXD = 0 V, Normal mode −300 −63 −30 µA CI Input Capacitance (1) - 5 10 pF Pin RXD (CAN Receive data output) IOH_RXD High-Level Output Current VRXD = VIO – 0.4 V, VIO = VCC −12 -6 −1 mA IOL_RXD Low-Level Output Current VRXD = 0.4 V, VTXD = VIO, Bus dominant 2 6 14 mA ILKG_OFF Unpowered Leakage Current (1) VRXD = 5.5 V, VCC = 0 V, VIO = 0 V −1 0 1 µA Pin STB_N, EN (Standby and enable control input) VIH High-Level Input Voltage 0.7 x VIO - VIO+ 0.3 V VIL Low-Level Input Voltage −0.3 - 0.3 x VIO V IIH High-Level Input Current VSTB_N or VEN ≥ 0.7 V 1 4 10 µA IIL Low-Level Input Current VSTB_N = VEN = 0 V −1 - 1 µA Pin ERR_N (Error and power-on indication output) IIH_ERR_N High-Level Input Current VERR_N = VIO – 0.4 V, VIO = VCC −50 −20 −4 µA IIL_ERR_N Low-Level Input Current VERR_N = 0.4 V 0.1 0.5 2 mA Pin WAKE (Local wake-up pin) IIH_WAKE High-Level Input Current VWAKE = VBAT – 1.9 V −10 −5 −1 µA IIL_WKAE Low-Level Input Current VWAKE = VBAT – 3.1 V 1 5 10 µA VTH_WAKE Threshold Voltage VWAKE = 0 V VBAT– 3 VBAT–
2.5 VBAT– 2 V
Pin INH (Inhibit high voltage output) VO_INH High-Level Output Voltage IINH = −180 µA VBAT – 0.8 - VBAT V IL_INH Leakage Current Sleep mode −2 - 2 µA TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 8 / 26 CA20230204A1
Parameter Test Conditions Min Typ Max Unit Pin CANH, CANL (CAN Bus lines) VO_DOM Dominant Bus Output Voltage CANH CAN active mode, VTXD = 0 V, 50 Ω ≤ RL ≤ 65 Ω, CL = open, t < tto(dom)TXD 2.75 3.5 4.5 V CANL 0.5 1.5 2.25 V VSYM_DC DC Output Symmetry (dominant or recessive) (VCC – VO(CANH) – VO(CANL)) (1) VCC = 5 V, RL = 60 Ω, CL = open, −0.6 - 0.6 V VSYM Transient Symmetry (dominant or recessive) (VO(CANH) + VO(CANL)) / VCC (1) 4.75V ≤ VCC ≤ 5.25 V, RL = 60 Ω, CL = open , CSPLIT = 4.7 nF, TXD = 250 kHz, 1 MHz, 2.5MHz 0.9 1 1.1 V/V VOD_DOM Differential Output Voltage (dominant) CAN active mode, t < tto(dom)TXD, 4.75V ≤ VCC ≤ 5.25 V, VTXD = 0 V, 45 Ω ≤ RL < 50 Ω, CL = open 1.5 - 3 V CAN active mode, t < tto(dom)TXD, 4.75V ≤ VCC ≤ 5.25 V, VTXD = 0 V, 50 Ω ≤ RL ≤ 65 Ω, CL = open 1.5 - 3 V CAN active mode, t < tto(dom)TXD, 4.75V ≤ VCC ≤ 5.25 V, VTXD = 0 V, 65 Ω ≤ RL ≤ 70 Ω, CL = open 1.5 - 3.3 V CAN active mode, t < tto(dom)TXD, 4.75V ≤ VCC ≤ 5.25 V, VTXD = 0 V, RL = 2240 Ω, CL = open 1.5 - 5.0 V VOD_REC Differential Output Voltage (recessive) Normal/Silent mode, VTXD = VIO, no load −50 - 50 mV Standby/sleep mode −0.2 - 0.2 V VO_REC Recessive Output Voltage Normal/Silent mode, VTXD = VIO, no load 2 0.5 x VCC 3 V Standby/sleep mode −0.1 - 0.1 V IO_SC_DOM Dominant Short-Circuit Output Current CANH VSTB = 0 V, −15 V ≤ VCANH ≤ 18 V, CANL = open, VTXD = 0 V −115 - - mA CANL VSTB = 0 V, −15 V ≤VCANL ≤ 18 V CANH = open, VTXD = 0 V - - 115 mA IO_SC_REC Recessive Short-Circuit Output Current −27 V ≤ VCANH/ VCANL ≤ 32 V, VTXD = VCC, normal modes −5 - 5 mA VCM Common Mode Range −30 - 30 V VTH_RX_DIF Differential Receiver Threshold Voltage Normal or Silent mode 0.5 0.7 0.9 V −30 V ≤ VCANH/ VCANL≤ 30 V TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 9 / 26 CA20230204A1
Parameter Test Conditions Min Typ Max Unit Standby or Sleep mode, 0.4 0.7 1.15 V −30 V ≤ VCANH/ VCANL ≤ 30 V VREC_RX Receiver Recessive Voltage Normal or Silent mode −3 - 0.5 V −30 V ≤ VCANH/ VCANL≤ 30 V Standby or Sleep mode, −3 - 0.4 V −30 V ≤ VCANH/ VCANL≤ 30 V VDOM_RX Receiver Dominant Voltage Normal or Silent mode 0.9 - 8 V −30 V ≤ VCANH/ VCANL ≤ 30 V Standby or Sleep mode, 1.15 - 8 V −30 V ≤ VCANH/ VCANL ≤ 30 V VHYS_RX_DIF Differential Receiver Hysteresis Voltage (1) Normal or Silent mode, - 130 - mV −30 V ≤ VCANH/ VCANL ≤ 30 V IL Leakage Current VCC = 0 V, VCANH = VCANL = 5 V −5 - 5 µA VBAT = 0 V, VCANH = VCANL = 5 V −5 - 5 µA VBAT = VCC = VCC = 0 V or VBAT = VCC = VCC shorted to ground via 47 kΩ; VCANH = 5 V, VCANL = 5 V −5 - 5 µA RIN Input Resistance (CANH or CANL) VTXD = VCC = VIO = 5 V, VSTB =
0 V, −30 V ≤ VCM ≤ +30 V 10 23 30 kΩ
RIN_M Input Resistance Matching: [1 − RIN(CANH) / RIN(CANL)] × 100% VTXD = VCC = VIO = 5 V, VSTB =
0 V, −2 - 2 %
VCANH = VCANL = 5 V, RID Differential Input Resistance VTXD = VCC = VIO = 5 V, VSTB =
0 V, −30 V ≤ VCM ≤ +30 V 30 47 60 kΩ
Input Capacitance to Ground (CANH or CANL) (1) - - 20 pF CID Differential Input Capacitance (1) - - 10 pF (1) The data is based on bench test and design simulation. TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 10 / 26 CA20230204A1
otherwise noted. Parameter Test Conditions Min Typ Max Unit Transceiver Switching Characteristics tpLD Propagation delay time, low TXD to driver dominant (recessive to dominant)(1) Normal mode or Silent mode, RL = 60 Ω, CL = 100 pF - 60 100 ns tpHR Propagation delay time, high TXD to driver recessive (dominant to recessive)(1) - 60 100 ns tSK_P Pulse Skew (|tpHR − tpLD|) (1) - 10 35 ns tR Differential Output Signal Rise Time (1) - 45 - ns tF Differential Output Signal Fall Time (1) - 45 - ns tpRH Propagation Delay Time, Bus Recessive Input to RXD High Output (Dominant to Recessive) (1) VSTB = 0 V, CL(RXD) = 15 pF - 90 - ns tpDL Propagation Delay Time, Bus Dominant Input to RXD Low Output (Recessive to Dominant) (1) - 90 - ns tR_R RXD Output Signal Rise Time (1) - 20 - ns tR_F RXD Output Signal Fall Time (1) - 20 - ns tPROP_TXDL- RXDL Total loop delay, driver input (TXD) low to receiver output (RXD) low, recessive to dominant(1) Normal mode, RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF, - 110 220 ns tPROP_TXDH- RXDH) Total loop delay, driver input (TXD) high to receiver output (RXD) high, dominant to recessive(1) - 140 220 ns FD Timing Parameters tBIT_BUS Bit time on CAN bus output pins with tBIT_TXD = 500 ns(1) VSTB = Vcc, RL = 60 Ω, CL = 100 pF, CL(RXD) = 15 pF, ΔtREC = tBIT_RXD − tBIT_BUS 435 - 530 ns Bit time on CAN bus output pins with tBIT_TXD = 200 ns(1) 155 - 210 ns tBIT_RXD Bit time on RXD output pins with tBIT_TXD = 500 ns 400 - 550 ns TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 11 / 26 CA20230204A1
Parameter Test Conditions Min Typ Max Unit Bit time on RXD output pins with tBIT_TXD = 200 ns 120 - 220 ns ΔtREC Receiver timing symmetry with tBIT_TXD = 500 ns(1) −65 - 40 ns Receiver timing symmetry with tBIT_TXD = 200 ns(1) −45 - 15 ns Device Timing Parameters tUV_DET Undervoltage detection time (1) 100 - 350 ms tUV_REC Undervoltage recovery time (1) 1 - 5 ms tTXD_DTO TXD dominant time-out time Normal mode, RL = 60 Ω, CL = open, VTXD = 0 V 0.4 - 4 ms tBUS_DTO Bus dominant time-out time Normal mode 0.4 - 4 ms td_MODE Issue goes to sleep command to enter sleep mode delay time 20 35 50 µs tBUS_WAKE_ DOM Bus dominant wake-up time Standby or Sleep mode 0.5 1.5 3 µs tBUS_WAKE_ REC Bus recessive wake-up time Standby or Sleep mode 0.5 1.5 3 µs tWAKE_TO Bus wake-up time-out time 0.5 - 2 ms tWAKE Wake up time 20 - 55 µs (1) The test data is based on bench test and design simulation. TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 12 / 26 CA20230204A1
with wake-up source recognition. The device includes many protection features to enhance device and network robustness. Figure 6. Functional Block Diagram
Table 2. Driver Function Table Table 3. Receiver Function Table mode selection is made via the EN pin and the STB_N pin and wake-up events when the power supply is valid.
Figure 7. Mode Transition State Diagram This is the normal operating mode of the device. In the normal mode, the CAN driver and receiver block are fully operational. pin is active to enable the voltage regulated controlled by the INH pin. to the 1/2 VCC voltage. The INH pin is active to enable the voltage regulated controlled by the INH pin.
controlled by the INH pin. The pins RXD will reflect active wake-up requests as that VIO and VBAT are powered. determine the status of the device and the system. Table 4. Internal flags via ERR_N
Internal Flag Description Available on ERR_N Flag is cleared Bus failure The bus failure flag is set if the transceiver detects a bus line short-circuit condition to VBAT , V CC or, GND during four consecutive dominant- recessive cycles on pin TXD, while trying to drive the bus lines dominant. In normal mode Re-entering normal mode or by setting the PWON flag Local failure The four local failure events will cause the local failure flag to be set: TXD dominant clamping, TXD-to- RXD short circuit, bus dominant clamping, and an overtemperature event. In silent mode Entering the normal mode or when RXD is dominant while TXD is recessive or by setting the PWON flag Remote Wake-up A dedicated wake-up pattern (ISO11898-2:2016) wakes up the TPT1043 from standby mode or sleep mode, this filtering prevents the device from being woken up by noise or spikes on the bus. The wake-up pattern consists of the following:
- a dominant phase of at least t wake (busdom) followed by
- a recessive phase of at least t wake (busrec) followed by
- a dominant phase of at least twake (busdom) The complete wake-up pattern must be received within t to_wake_bus, otherwise the wake-up logic will be reset to wait for the next valid wake-up pattern. Device Local Faults TXD Dominant Time-out The device is featured with the TXD dominant time-out detection function. This function prevents a permanent low on the TXD pin, resulting in the CAN bus being driven into permanent dominant, which will cause the CAN bus network communication blocked. If the TXD remains low for longer than t TXD_DTO , the transmitter will be disabled until the fault flag has been cleared. TXD Shorted to RXD Detection The device is featured with the function of a short circuit between TXD and RXD detection. This function prevents the CAN bus from being locked in permanent dominance, which will result in the CAN bus network communication blocked. The transmitter will be disabled until the fault flag has been cleared. Bus Dominant Time-out The device features the Bus dominant time-out detection function. This function prevents the CAN bus from being locked in permanent dominance, which will result in the CAN bus network communication blocked. The fault flag is set if the CAN bus remains dominant for longer than tBUS_DTO, and is released as soon as the bus returns to recessive. TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 19 / 26 CA20230204A1
Under-Voltage Lockout (UVLO) The device integrates an under-voltage detect and lockout circuit of the supply terminal to keep the device in the protected mode if the supply voltage drops below the threshold until the supply voltage is higher than the UVLO threshold. This protects the device and system during under-voltage events on supply terminals. Over-Temperature Protection (OTP) The device integrates over-temperature protection circuit to prevent the device from over-heated induced damage. When the junction temperature is higher than the over-temperature protection threshold T OTP, the device will shut down until the junction temperature TJ drops below the recovery threshold. TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 20 / 26 CA20230204A1
Order Number Package D1 (mm) W1 (mm) A0 (mm) B0 (mm) K0 (mm) P0 (mm) W0 (mm) Pin1 Quadrant TPT1043- TPT1043- TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 22 / 26 CA20230204A1
Package Outline Dimensions SOP14 TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 23 / 26 CA20230204A1
DFN4.5X3-14 TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 24 / 26 CA20230204A1
Order Number Operating Temperature Range Package Marking Information MSL Transport Media, Quantity Eco Plan TPT1043-SO2R-S −40 to 125°C SOP14 T1043 MSL3 Tape and Reel, 2500 Green TPT1043-DFKR-S −40 to 125°C DFN4.5X3-14 T1043 MSL3 Tape and Reel, 4000 Green (1) MSL will be updated depending on qualification report. Green: 3PEAK defines "Green" to mean RoHS compatible and free of halogen substances. TPT1043 Low-Power Fault Protected High-Speed CAN FD Transceiver with Sleep Mode www.3peak.com 25 / 26 CA20230204A1
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