TPT1330 3PEAK | Alldatasheet
Document overview
- Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
- PDF pages: 24
Technical content
Features
- 3.3-V Power Supply, I/O Voltage Range Supports 2.8-V to 5.5-V MCU Interface
- Compatible with ISO 11898-2:2016 Physical Layer Standards
- Supports CAN FD and Data Rating up to 5 Mbps
- Short Propagation Delay Times and Fast Loop Times
- Common-Mode Input Voltage: ±12 V
- Operation Modes: – Normal Mode – Standby Mode with Wake-up Function (TPT1334) – Silent Mode (TPT1330, TPT1337) – Shutdown Mode(TPT1330, TPT1334)
- Protection Feature: – IEC 61000-4-2 ESD Protection Exceeds ±6 kV – Bus Fault Protection: ±45 V – VCC Under-voltage Protection – TXD Dominant Time-out Function and Bus- Dominant Time-out Function – Thermal Shutdown Protection
- Available in SOP8 Package and SOT-23-8 Package
Applications
- All Devices Supporting Highly Loaded CAN Networks
- Field Industrial Automation, Sensors, and Drive Systems
- Building, Security Control Systems
- Energy Storage Systems
- Telecom Base Station Status and Control
Description
The TPT133x family of products are 3.3-V CAN transceivers that are compatible with the ISO11898 High- speed CAN (Controller Area Network) physical layer standard. The devices are designed to be used in CAN FD networks up to 5 Mbps, and to enhance timing margin and higher data rates in long and high-loading networks. As designed, the devices feature cross-wire, overvoltage, and loss of ground protection from −45 V to +45 V, overtemperature shutdown, and a −12 V to +12 V common-mode range. The devices come with standby mode, silent mode, and shutdown mode. The family includes many protection features to enhance device and network robustness. The TPT133x is available in SOP-8 and SOT23-8 packages and characterized from –40°C to +125°C. Typical Application Circuit MCU TPT133x 3.3V Voltage Regulator S/STB CAN Controller I/O Interface TXD RXD VCC VOUT VIN CANH CANL Optional VCC Port_x TX RX SHDN/ FAULT Port_x TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 1 / 24 CA20231101A1
3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 2 / 24 CA20231101A1
Order Number Pin5 Pin8 Data Rate Package TPT1330-SO1R SHDN(Shut down mode) S(Silent Mode) 5 Mbps SOP-8 TPT1330-T8TR SHDN(Shut down mode) S(Silent Mode) 5 Mbps SOT23-8 TPT1334-SO1R SHDN(Shut down mode) STB(Standby Mode) 5 Mbps SOP-8 TPT1334-T8TR SHDN(Shut down mode) STB(Standby Mode) 5 Mbps SOT23-8 TPT1337-SO1R FAULT(Fault output) S(Silent Mode) 5 Mbps SOP-8 TPT1337-T8TR FAULT(Fault output) S(Silent Mode) 5 Mbps SOT23-8
Revision History
2022-12-18 Rev.Pre.0 Initial version 2024-1-10 Rev.A.0 Released version 2024-6-22 Rev.A.1 Editorial changes TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 3 / 24 CA20231101A1
Table 1. Pin Functions: TPT133x
VCC Supply voltage range −0.3 5 V VBUS CAN bus voltage range (CANH, CANL) −45 45 V VBUS_DIFF Differential output voltage of CAN bus,(CANH - CANL) −45 45 V VLOGIC_IN Logic input terminal voltage range (TXD, STB) −0.3 5 V VLOGIC_OUT Logic output terminal voltage range (RXD) −0.3 5 V ILOGIC_OUT Logic output current 8 mA TJ Junction temperature (2) −55 150 °C TSTG Storage temperature -55 150 °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 Max Unit VESD Electrostatics discharge (1)(2) IEC61000-4-2(150pF, 330Ω discharge circuit), contact discharge on bus pins(CANH, CANL) −6 6 kV Human Body Model (HBM) on all pins −8 8 kV Human Body Model (HBM) on bus pins(CANH, CANL) −17 17 kV Charged Device Model (CDM) on all pins −1.5 1.5 kV (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. TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 5 / 24 CA20231101A1
Recommended Operating Conditions Parameter Min Max Unit VCC Power supply 3 3.6 V IOH_Logic Logic terminal high-level output current −2 - mA IOL_Logic Logic terminal low-level output current - 2 mA TA Operating ambient temperature −40 125 °C Thermal Information Package Type θJA θJC Unit SOP8 120.87 50.55 °C/W SOT23-8 129.73 68.80 °C/W TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 6 / 24 CA20231101A1
Electrical Characteristics
All test conditions: All typical values are at 25℃, VCC = 3.3 V, RL = 60 Ω, unless otherwise noted. Parameter Conditions Min Typ Max Unit Pin VCC VCC Supply Voltage 3 3.6 V VUV_VCC Rising Undervoltage Detection on VCC for Protected Mode 2.2 2.6 V VUV_VCC Falling Undervoltage Detection on VCC for Protected Mode 1.65 2 V VHYS_UVV CC Hysteresis Voltage on VCC Undervoltage Detection (1) 150 mV ICC Normal Mode Supply Current Dominant, VTXD= 0 V; t < tTXD_DTO; S, STB and SHDN = 0 V; VS, VSTB and VSHDN = 0 V; RL = 60 Ω; CL = Open 55 mA ICC Normal Mode Supply Current Dominant, VTXD= 0 V; t < tTXD_DTO; VS, VSTB and VSHDN = 0 V; RL = 50 Ω; CL = Open 60 mA ICC Normal Mode Supply Current Dominant bus fault, VTXD= 0 V; short circuit on bus lines; -12V < (VCANH = VCANL) < +12 V; VS, VSTB and VSHDN = 0 V; RL = 60 Ω; CL = Open 180 mA ICC Normal Mode Supply Current Recessive; VTXD=VCC; S, STB and SHDN = 0 V 3.5 mA ICC Silent Mode Supply Current VTXD=VCC; VS = VCC; RL = 50 Ω; CL = Open 1 mA ICC Standby Mode Supply Current TA<85℃; VSTB = VCC; VTXD = VCC; RXD floating; 15 μA ICC Standby Mode Supply Current VSTB = VCC; VTXD = VCC; RXD floating; 17 μA ICC Shutdown Mode Supply Current TA<85℃; VSHDN = VCC; VTXD = VCC; RXD floating; 15 μA ICC Shutdown Mode Supply Current VSHDN = VCC; VTXD = VCC; RXD floating; 17 μA Pin TXD VIH High-Level Input Voltage 2 V VIL Low-Level Input Voltage 0.8 V VHYS_TXD Hysteresis Voltage on Pin TXD(1) 150 mV IIH High-Level Input Leakage Current VTXD = VCC = 3.6V -2.5 0 3 μA IIL Low-Level Input Leakage Current VTXD = 0 V; VCC = 3.6 V -4 0 μA TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 7 / 24 CA20231101A1
Parameter Conditions Min Typ Max Unit ILKG_OFF Unpowered Leakage Current VTXD = 3.6 V; VCC = 0 V -2 0 2.5 μA CIN Input Capacitance (1) 2.5 pF Pin RXD VOH High-Level Output Voltage IIO = -2 mA 0.8 x VCC V VOL Low-Level Output Voltage IIO = 2 mA 0.2 0.4 V ILKG_OFF Unpowered Leakage Current VRXD = 3.6 V; VCC = 0 V; -1 0 1 μA Pin STB, S, SHDN VIH High-Level Input Voltage 2 V VIL Low-Level Input Voltage 0.8 V VHYS Hysteresis Voltage on Pin STB, S, SHDN(1) 150 mV IIH High-Level Input Leakage Current VSTB = VS = VSHDN = VCC = 3.6V -3 0 10 μA IIL Low-Level Input Leakage Current VSTB = VS = VSHDN = 0 V; VCC =
3.6 V -4 0 1 μA
ILKG_OFF Unpowered Leakage Current VSTB = VS = VSHDN = 3.6 V; VCC =
0 V -3 0 5 μA
IOH High-Level Output Current VFAULT = VCC -10 μA IOL Low-Level Output Current VFAULT = 0.4 V 4 12 mA Pin CANH, CANL VO_DOM Dominant Output Voltage, CANH Dominant, VTXD= 0 V; t < tTXD_DTO; RL = 60 Ω 2.45 VCC V VO_DOM Dominant Output Voltage, CANL Dominant, VTXD= 0 V; t < tTXD_DTO; RL = 60 Ω 0.5 1.25 V VO_REC Recessive Output Voltage (1) Recessive, VTXD= VCC; t < tTXD_DTO; RL = Open 1.85 V VOD_DOM Dominant Differential Output Voltage Normal mode; VTXD= 0 V; t < tTXD_DTO; 3 V ≤ VCC ≤ 3.6V; 50 Ω ≤ RL ≤ 65 Ω 1.6 3 V VOD_DOM Dominant Differential Output Voltage Normal mode; VTXD= 0 V; t < tTXD_DTO; 3 V ≤ VCC ≤ 3.6V; 45 Ω ≤ RL < 50 Ω 1.5 3 V VOD_REC Recessive Differential Output Voltage Normal mode; VTXD= VCC; RL = 60 Ω -120 12 mV VOD_REC Recessive Differential Output Voltage Normal mode; TA < 85℃ ; VTXD= VCC; RL = Open -50 50 mV VOD_REC Recessive Differential Output Voltage Normal mode; VTXD= VCC; RL = Open -50 50 mV TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 8 / 24 CA20231101A1
Parameter Conditions Min Typ Max Unit VSYM Output Symmetry (dominant and recessive) VCANH_REC + VCANL_REC - VCANH_DOM - VCANL_DOM S, STB and SHDN = 0 V; VS, VSTB and VSHDN = 0 V; RL = 60 Ω; CL = Open -400 400 mV VTH_RX_DI F Differential Receiver Threshold Voltage Normal mode; t < tTXD_DTO; -12 V ≤ VCANH/ VCANL ≤ +12 V 0.5 0.9 V VTH_RX_DI F Differential Receiver Threshold Voltage Standby mode; t < tTXD_DTO; -12 V ≤ VCANH/ VCANL ≤ +12 V 0.4 1.15 V VHYS_RX_ DIF Differential Receiver Hysteretic Threshold(1) Normal mode, Standby mode; t < tTXD_DTO; -12 V ≤ VCANH/ VCANL ≤ +12 V 120 mV IO_SC_DOM Dominant Short-circuit Output Current -12V ≤ VCANH/ VCANL ≤ +12V -200 200 mA IO_SC_REC Recessive Short-circuit Output Current -12V ≤ VCANH/ VCANL ≤ +12V -5 5 mA IL Unpowered Bus Input Leakage Current VCC = 0 V or pins shorted to GND via 47kΩ; VCANH = VCANL = 3.3V 6 μA RIN CANH or CANL Input Resistance -2V ≤ VCANH/ VCANL ≤ +7V 15 40 kΩ ΔRIN Input Resistance Deviation 0V ≤ VCANH= VCANL ≤ 3.3V -3 3 % RIN_DIF Differential Input Resistance -2V ≤ VCANH/ VCANL ≤ +7V 30 80 kΩ CIN Common-mode Input Capacitance (1) 20 pF CIN_DIF Differential Input Capacitance (1) 10 pF Temperature Detection TJ_SD Shutdown Junction Temperature 180 200 ℃ TJ_SD_R Recover Shutdown Junction Temperature 175 195 ℃ (1) The test data is based on bench tests and design simulation. TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 9 / 24 CA20231101A1
All test conditions: All typical values are at 25℃, VCC = 3.3 V, RL = 60 Ω, unless otherwise noted. Parameter Conditions Min Typ Max Unit CAN Timing Characteristics tD_TXDH_RX DH Loop delay time from TXD high to RXD high Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 115 150 ns tD_TXDH_RX DH Loop delay time from TXD high to RXD high Normal mode; RL = 120 Ω; CL = 200 pF, CL_RXD = 15 pF 130 195 ns tD_TXDL_RXD L Loop delay time from TXD low to RXD low Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 100 135 ns tD_TXDL_RXD L Loop delay time from TXD low to RXD low Normal mode; RL = 120 Ω; CL = 200 pF, CL_RXD = 15 pF 125 180 ns tD_TXD_BUS DOM Delay time from TXD to bus dominant Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 35 60 ns tD_TXD_BUS REC Delay time from TXD to bus recessive Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 52 80 ns tSK_P Pulse skew (|tD_TXD_BUSDOM - tD_TXD_BUSREC|)(1) Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 18 ns tR_D Differential output signal rise time Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 22 90 ns tF_D Differential output signal fall time Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 25 60 ns tD_BUSDOM_ RXD Delay time from bus dominant to RXD Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 40 80 ns tD_BUSREC_ RXD Delay time from bus recessive to RXD Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 50 90 ns tR_RXD RXD output signal rise time Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 8 30 ns tF_RXD RXD output signal fall time Normal mode; RL = 60 Ω; CL = 100 pF, CL_RXD = 15 pF 7 30 ns tBIT_BUS Transmitted recessive bit width 2 Mbps, tBIT_TXD = 500 ns; 435 530 ns tBIT_BUS Transmitted recessive bit width 5 Mbps, tBIT_TXD = 200 ns; 155 210 ns ΔtREC Receiver timing symmetry 2 Mbps, ΔtREC = tBIT_RXD - tBIT_BUS; -65 40 ns ΔtREC Receiver timing symmetry 5 Mbps, ΔtREC = tBIT_RXD - tBIT_BUS; -45 15 ns tBIT_RXD RXD bit width 2 Mbps, tBIT_TXD = 500 ns; 400 550 ns tBIT_RXD RXD bit width 5 Mbps, tBIT_TXD = 200 ns; 120 220 ns AC Timing Characteristics tTXD_DTO TXD dominant time-out time Normal mode; VTXD = 0 V 1.2 2.4 3.8 ms tRXD_DTO RXD dominant time-out time Normal mode and Silent mode 1.6 3 5 ms TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 10 / 24 CA20231101A1
Parameter Conditions Min Typ Max Unit tWAKE_BUS_ FILTER Bus wake-up filter time Standby mode 0.5 4 μs tMODE Mode transition time (1) 5 10 μs tUVR Undervoltage recovery time (1) Pin VCC 280 800 μs (1) The data is based on bench tests and design simulation. TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 11 / 24 CA20231101A1
protection features to enhance device and network robustness. Figure 1. Functional Block Diagram
- 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 tto_wake_bus, otherwise, the wake-up logic will be reset to wait for the next valid wake-up pattern. Fault Output In the event of one or more faults, including TXD-Dominant Timeout, RXD Dominant Timeout, Thermal Shutdown, or Undervoltage Lockout, the FAULT pin (configured as open-drain) is deactivated, causing it to assume a high level when externally pulled up to the VCC supply. TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 12 / 24 CA20231101A1
Table 2. Under-voltage Protection State Table down the charging loop until TJ drops below 100°C. 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 Normal and Standby Modes 0.5 V < VID < 0.9 V Indeterminate. Indeterminate.
0.4 V < VID < 1.15 V Indeterminate. possibility for Electro Magnetic Emission (EME). listen-only mode. Silent mode can be used to prevent a faulty CAN controller from disrupting all network communications. Table 5. CAN Transceivers Silent Mode nor will the normal mode receiver accept data as the bus lines are biased to ground minimizing the system supply current. wake-up signal has been detected on the Bus. Table 6. CAN Transceivers Standby Mode with Wake remote wake-up, will not operate in the shutdown mode.
Table 7. CAN Transceivers Shutdown Mode
Order Number Package D1 (mm) A0 (mm) K0 (mm) W0 (mm) W1 (mm) B0 (mm) P0 (mm) Pin1 Quadrant TPT1330-SO1R SOP8 330 6.5 2 12 17.6 5.4 8 Q1 TPT1330-T8TR SOT23-8 180 3.2 1.4 8 13.1 3.2 4 Q3 TPT1334-SO1R SOP8 330 6.5 2 12 17.6 5.4 8 Q1 TPT1334-T8TR SOT23-8 180 3.2 1.4 8 13.1 3.2 4 Q3 TPT1337-SO1R SOP8 330 6.5 2 12 17.6 5.4 8 Q1 TPT1337-T8TR SOT23-8 180 3.2 1.4 8 13.1 3.2 4 Q3 TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 19 / 24 CA20231101A1
Package Outline Dimensions SOP-8 TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 20 / 24 CA20231101A1
3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 21 / 24 CA20231101A1
Order Number Operating Temperature Range Package Marking Information MSL Transport Media, Quantity Eco Plan TPT1330-SO1R −40 to 125°C SOP8 T1330 MSL1 Tape and Reel, 4000 Green TPT1330-T8TR −40 to 125°C SOT-23-8 330 MSL1 Tape and Reel, 3000 Green TPT1334-SO1R −40 to 125°C SOP8 T1334 MSL1 Tape and Reel, 4000 Green TPT1334-T8TR −40 to 125°C SOT-23-8 334 MSL1 Tape and Reel, 3000 Green TPT1337-SO1R −40 to 125°C SOP8 T1337 MSL1 Tape and Reel, 4000 Green TPT1337-T8TR −40 to 125°C SOT-23-8 337 MSL1 Tape and Reel, 3000 Green Green: 3PEAK defines "Green" to mean RoHS compatible and free of halogen substances. TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 22 / 24 CA20231101A1
IMPORTANT NOTICE AND DISCLAIMER Copyright© 3PEAK 2012-2024. 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. TPT133x 3.3-V Fault Protected High-Speed CAN FD Transceiver www.3peak.com 23 / 24 CA20231101A1
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