CAN Bus Transceivers

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USBCAN-E-P
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $370.0606
10+ $345.3899
100+ $333.0546
500+ $325.6534
1000+ $320.7192
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x $370.0606
Ext. Price: $370.06
MOQ: 1
Mult: 1
SPQ: 1
CANFDWIFI-100U
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $269.135
10+ $251.1927
100+ $242.2215
500+ $236.8388
1000+ $233.2504
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x $269.135
Ext. Price: $269.13
MOQ: 1
Mult: 1
SPQ: 1
CANFDBridge
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $147.6504
10+ $137.8071
100+ $132.8854
500+ $129.9324
1000+ $127.9637
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x $147.6504
Ext. Price: $147.65
MOQ: 1
Mult: 1
SPQ: 1
CANFDNET-400U
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $663.4926
10+ $619.2597
100+ $597.1433
500+ $583.8735
1000+ $575.0269
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x $663.4926
Ext. Price: $663.49
MOQ: 1
Mult: 1
SPQ: 1
CANhub-AS4
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $185.0304
10+ $172.695
100+ $166.5273
500+ $162.8266
1000+ $160.3596
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x $185.0304
Ext. Price: $185.03
MOQ: 1
Mult: 1
SPQ: 1
SM1500
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $3.3891
10+ $3.1773
100+ $3.135
500+ $3.0926
1000+ $3.0502
- +
x $3.3891
Ext. Price: $3.38
MOQ: 1
Mult: 1
SPQ: 1
CANBridge+
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $147.6504
10+ $137.8071
100+ $132.8854
500+ $129.9324
1000+ $127.9637
- +
x $147.6504
Ext. Price: $147.65
MOQ: 1
Mult: 1
SPQ: 1
CANhub-AS8
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $429.8684
10+ $401.2105
100+ $386.8816
500+ $378.2842
1000+ $372.5527
- +
x $429.8684
Ext. Price: $429.86
MOQ: 1
Mult: 1
SPQ: 1
CANhub-AS5
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $336.4188
10+ $313.9908
100+ $302.7769
500+ $296.0485
1000+ $291.5629
- +
x $336.4188
Ext. Price: $336.41
MOQ: 1
Mult: 1
SPQ: 1
CANFDNET-200U
ZLG
Quantity: 1000
Ship Date: 5-7 working days
1+ $345.7637
10+ $322.7128
100+ $311.1873
500+ $304.272
1000+ $299.6619
- +
x $345.7637
Ext. Price: $345.76
MOQ: 1
Mult: 1
SPQ: 1

CAN Bus Transceivers

Controller Area Network (CAN) is a robust and flexible communication protocol designed for distributed real-time control systems. It was developed in the 1980s by Bosch for automotive applications but has since been adopted across various industries due to its reliability and efficiency.

Definition:
CAN is a message-based protocol that allows microcontrollers and devices to communicate with each other within a network without a host computer. It operates on a multi-master setup, where any device can initiate communication.

Functions:
1. Real-Time Communication: CAN supports real-time data exchange, which is crucial for systems that require immediate response, such as in automotive control systems.
2. Error Detection: It includes a cyclic redundancy check (CRC) for error detection, ensuring data integrity.
3. Message Prioritization: Messages are prioritized based on their identifier, allowing critical messages to be transmitted before less urgent ones.
4. Network Topology: CAN supports both linear and star topologies, making it flexible for various network configurations.
5. Diagnostics: It facilitates built-in diagnostics, allowing for easier troubleshooting and system .

Applications:
1. Automotive: Used for engine management, anti-lock braking systems (ABS), and infotainment systems.
2. Industrial Automation: For machine control, robotic systems, and process .
3. : In systems for control and of various subsystems.
4. Medical Equipment: For communication between medical devices and systems.
5. Home Automation: For smart home systems, controlling lighting, heating, and security.

Selection Criteria:
1. Network Size: The number of nodes that need to be supported.
2. Data Rate: The speed at which data needs to be transmitted.
3. Real-Time Requirements: The level of urgency for message delivery.
4. Environmental Factors: Consideration for noise, temperature, and physical conditions.
5. Cost: The budget for implementing the CAN system.
6. Compatibility: Ensuring that the CAN devices are compatible with existing systems and protocols.
7. Reliability: The need for a system that can withstand harsh conditions and maintain consistent communication.

When selecting CAN components, it's also important to consider the specific features of the CAN IC (Integrated Circuit), such as the number of message objects, the ability to handle different data rates (e.g., CAN 2.0A, CAN 2.0B), and support for higher-layer protocols like CANopen or J1939. Additionally, the choice of CAN IC may be influenced by the availability of development tools, support from the manufacturer, and the specific integration requirements of the application.
Please refer to the product rule book for details.