| Characteristic | Symbol Unit Condition |
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| Min. | Typ. Max. |
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| IPN | A -700 — 700 — |
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| Supply voltage | VS V 8 12 18 — |
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| maximum | VUP V — 18.1 — When VS increases |
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| VUP | V — 17.7 — When VS decreases |
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| minimum | VLOW V — 8.1 — When VS increases |
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| VLOW | V — 7.8 — When VS decreases |
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| at IP = 0 A | IC mA — 45 — VS = 12 V, T = 25°C |
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| at IP = 700 A | IC mA — 270 — VS = 12 V, T = 25°C |
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| Ambient operating | Temperature range with accuracy |
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| Ta | °C -40 — 85 |
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| temperature | guaranteed T = -40°C to 85°C, ±3 sigma, |
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| Total accuracy at 20 A < IP ≤ 700 A XG | % -0.5 — 0.5 9 V < Vs < 16 V |
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| at IP = 0 A (offset current) | Ios A -0.05 — 0.05 T = -40°C to 85°C, ±3 sigma 9 V < Vs < 16 V |
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| at IP < 20 A | XG A -0.1 0.1 T = -40°C to 85°C, ±3 sigma 9 V < Vs < 16 V |
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| Linearity | eL % — ±0.1 — Room temperature |
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| Catalog Listing | Description |
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| Housing material | Plastic PA66-GF25 (UL 94V-0) M6, 6 N m maximum torque The installation bracket should have a flatness tolerance of ≤0,2 mm. The size tolerances of |
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| Mounting screw | the installation bracket and nut, as well as the use of installation tools and fixtures, have an impact on the maximum installation torque of the product. If there are any relevant design or process changes, it is advisable to implement them after verification. |
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| Mating electrical connector | TEM PN 1473672-1 |
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| 重量 | 66,5 g ±5 g |
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| Figure 1. Error vs. Current | Total Error @ -40°C to 85°C, typical Error (A) |
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| -700 | -500 -300 -100 100 300 500 700 Primary Current (A) |
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| Error Upper Limit | Error Lower Limit TABLE 6. CANBUS CHARACTERISTICS1, 2, 3, 4 |
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| Message | Data Message Signal Signal Start |
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| Can ID | Length |
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| Description | Length Launch Type Description Name Bit Ip value: 80000000h = 0 mA |
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| IP_VALUE | 24 32 7FFFFFFFh = -1 mA 80000001h = 1 mA |
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| Cyclic | Error information ERROR_INFORMATION 32 7 Output |
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| See | transmitted |
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| current Ip | 8 bytes Error indication (1 bit): |
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| Figure 2 | message (mA) 0 = normal ERROR_INDICATION 39 1 10 mSec cycle. 1 = failure |
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| Fixed to 0 | VACANT_DATA_2BYTES 48 16 CRC-8 |
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| CRC_8 | 56 8 POLY: 8 + X2 + X + 1 CANBUS speed: Refer to Figure 2 CAN bus protocol: Version 2.0A CAN oscillator tolerance: 0.3125 % Byte order: Big endian (Motorola) TABLE 7. DIAGNOSTIC TROUBLE CODES |
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| Failure mode | Ip Value Error Indication Error Information |
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| Flash CRC error | FFFF FFFFh 1 0x48 AFE over range 1 |
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| FFFF FFFFh | 1 0x49 |
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| AFE error | FFFF FFFFh 1 0x50 |
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| Internal LUT error | FFFF FFFFh 1 0x51 |
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| Power minimum limit | FFFF FFFFh 1 0x54 |
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| Power maximum limit | FFFF FFFFh 1 0x55 CSNV700 Series Datasheet | automation.honeywell.com | 4 |
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| CSN | V 700 N 3 5 4 X |
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| 類型 | Use Rated Current Mounting Type MCU Type Baud Rate CAN ID1 Customization2 |
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| Current Designed for | 700 700 A Through hole 3 MCU2 12 V 2 250 k 4 3C4 A to Z |
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| Sensor V vehicle | N with metal |
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| applications | bushing 4 MCU2 24 V 5 500 k 5 3C5 6 3C6 Custom CAN IDs are available. Contact Honeywell Customer Service for more information. Custom CAN Layouts are available. Contact Honeywell Customer Service for more information. For MCU Type “3”, refer to Table 1: Absolute Maximum Ratings and Table 3: Operating Characteristics in Nominal Range (IPN) For MCU Type “4”, refer to Table 2: Absolute Maximum Rating |
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| [2.5] | [0.95] [0.47] 68,2 [2.69] [1.26] 2X ø6,8 30,5 [0.27] [1.20] |
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| SEE DETAIL A | 20,2 48,7 [0.80] |
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| [1.92] | 29,05 [1.14] TABLE 9. PINOUT |
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| Pin | Output 1 CAN-L 0,2 22,5 |
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| [0.008] | 13,65 [0.89] 2 CAN-H [0.54] 3 GND 5,3 4 VS [0.21] DETAIL A CSNV700 Series Datasheet | automation.honeywell.com | 7 |
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| Test | Standard Procedure According to CISPR 25:2008 |
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| CISPR 25 Conducted RF Emissions - Voltage | CISPR25 Commission Form of Testing According to CISPR 25:2008 |
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| CISPR 25 Conducted RF Emissions - Current | CISPR25 Commission Form of Testing According to CISPR 25:2008 |
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| CISPR 25 Radiated Emissions- ALSE method | CISPR25 Commission Form of Testing |
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| Transient Conduction Emission | ISO 7637-2 According to ISO 7637-2 |
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| Low Frequency Magnetic Field Emission | SAE J551-5 According to SAE J551-5 |
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| Low Frequency Field Interference | ISO 11452-8 According to ISO 11452-8 |
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| Bulk Current Injection (BCI) Test | ISO 11452-4 According to ISO 11452-4 |
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| Rf Anti-Interference - ALSE Method | ISO 11452-2 According to ISO 11452-2 |
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| ISO 7637-2 | According to ISO 7637-2 |
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| ISO 7637-3 | According to ISO 7637-3 Unpowered direct contact discharge: ±8 kV Unpowered air discharge: ±15 kV |
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| Electrostatic discharge | ISO 10605 Powered-up direct contact discharge: ±4 kV Powered-up air discharge: ±8 kV |
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| Portable Transmitter | ISO 11452-9 According to ISO 11452-9 |
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| Surge | IEC 61000-4-5 ±0.5 kV 10 V/m (80 MHz to 1 GHz), |
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| Radio Frequency Electromagnetic Field | IEC 61000-4-3 3 V/m (1.4 GHz to 2 GHz), 1 V/m (2.0 GHz to 2.7 GHz) |
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| Radio Frequency Continuous Conducted | IEC 61000-4-6 0.15 MHz to 80 MHz, 3 V 80 % AM (1 kHz) |
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| Radio Frequency Magnetic Field | IEC 61000-4-8 30 A/M |
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| CISPR-11 | Group 1, Class A CSNV700 Series Datasheet | automation.honeywell.com | 8 |
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| Low Temperature Operating Endurance | ISO 16750-4 test only at 25°C and VS nom. |
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| High Temperature Operating | 3000 hr, 85°C, power on. Performance test before and after ISO 16750-4 |
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| Endurance | test only at 25°C and VS nom. 120 cycles, one cycle contains -40°C (120 min soak) & 85°C |
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| Thermal Cycle Test | ISO 16750-4 (120 min soak). Transition time = 240 min. Performance test before and after test only at 25°C and V S nom. |
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| High Temperature and Humidity | 1000 hr, 85°C, 85% humidity, power on. Performance test IEC 60068-2-67 |
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| Vibration | IEC 60068-2-64 Performance test before and after test only at 25°C and V S nom. 500 m/s, 2,20 each direction (60 total), half sine pulse. |
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| Mechanical Shock | ISO 16750-3 Product power on. Performance test before and after test only at 25°C and VS nom. With final packaging, drop in direction at 1 corner, 3 edge, |
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| Package Drop | ISTA-1A 4 face > total 9 drops, 1 m on concrete floor. 1st fall of each DUT at a different dimensional axis, 2nd fall with the given DUT at the same dimensional axis but on the opposite |
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| Handling Drop | ISO 16750-3 side of the housing, from 1 m on concrete floor. Performance test before and after test only at 25°C and VS nom. |
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| ISO 20653 | IP category: 40 CSNV700 Series Datasheet | automation.honeywell.com | 9 |
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| Long Time Overvoltage Test | ISO 16750-2 Power supply at 18 V for 60 min. Test voltage Uc max 18 V for 12 V systems; |
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| Superimposed Alternating Voltage | ISO 16750-2 ac voltage (sinusoidal): Severity 2, UPP = 4 V 10 cycles. Power supply changes from18 V to 0 V/ |
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| ISO 16750-2-4.5 | 0 V to 18 V with 0.5 V ±0.1 V step. At any step, power supply maintain 1 min. |
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| Reset Behavior at Voltage Drop | ISO16750-2-4.6.2.2 See Fig. 6 |
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| Momentary Drop in Supply Voltage | ISO 16750-2-4.6.1 Ucmin to 4.5 V. See Fig. 4 |
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| Starting Profile | ISO16750-2 According to ISO 16750-2 of testing standard and Fig |
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| Reverse Voltage Test | ISO16750-2-4.7 Power supply at -24 V for 10 min. Connect sensor to 12 V power supply and power on |
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| Single Line Open Circuit Tests | ISO16750-2-4.9 the sensor. Disconnect Us, GND, CAN-H, and CAN-L in sequence. Each open circuit time: 60 s ±1 s Connect sensor to 12 V power supply and power on the |
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| Connector Open Circuit Tests | ISO16750-2 sensor. Disconnect connector. Each open circuit time: 10 s ± 1s |
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| dc Supply Voltage | ISO16750-2 Power supply at Uc min. 7 V and Uc max. 18 V |
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| Insulation Resistance Test | ISO 16750-2-4.12 500 Vdc for 60 s; Resistance criteria: > 500 MOhm Test voltage: 5000 Vdc & ac |
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| dc & ac Voltage Insulation Test | ISO 16750-2-4.12 Frequency: dc & 50 Hz~60 Hz. Test Duration: 60 s CSNV700 Series Datasheet | automation.honeywell.com | 10 |
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| Honeywell warrants goods of its | PERSONAL INJURY manufacture as being free of defective DO NOT USE these products as safety |
|---|
| materials and faulty workmanship | or emergency stop devices or in any |
|---|
| during the applicable warranty period. | other application where failure of the |
|---|
| Honeywell’s standard product warranty | product could result in personal injury. |
|---|
| applies unless agreed to otherwise by | Failure to comply with these |
|---|
| Honeywell in writing; please refer to | instructions could result in death or |
|---|
| your order acknowledgment or consult | serious injury. your local sales office for specific warranty details. If warranted goods are returned to Honeywell during the m WARNING |
|---|
| period of coverage, Honeywell will | MISUSE OF |
|---|
| repair or replace, at its option, without | DOCUMENTATION |
|---|
| charge those items that Honeywell, | • The information presented in this |
|---|
| in its sole discretion, finds defective. | product sheet is for reference |
|---|
| The foregoing is buyer’s sole remedy | only. Do not use this document as a product installation guide. and is in lieu of all other warranties, |
|---|
| • | Complete installation, operation, |
|---|
| expressed or implied, including those | and maintenance information |
|---|
| of merchantability and fitness for a | is provided in the instructions |
|---|
| particular purpose. In no event shall | supplied with each product. |
|---|
| Honeywell be liable for consequential, | Failure to comply with these |
|---|
| special, or indirect damages. | instructions could result in death or serious injury. While Honeywell may provide information or engineering support for its products through Honeywell personnel, literature and website, it is the buyer’s sole responsibility to determine the suitability of the Honeywell product(s) for the buyer’s requirements. Specifications may change without notice. The information we supply is |
|---|
| For more information | believed to be accurate and reliable |
|---|
| Honeywell Sensing Solutions services | as of this writing. However, Honeywell |
|---|
| its customers through a worldwide | assumes no responsibility for its use. |
|---|
| USA/Canada | +1 302 613 4491 |
|---|
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| Greater China | +86 4006396841 |
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| www.honeywell.com | © 2024 Honeywell International Inc. All rights reserved. |
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