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HCS300-I/SN 参数 Datasheet PDF下载

HCS300-I/SN图片预览
型号: HCS300-I/SN
PDF下载: 下载PDF文件 查看货源
内容描述: KEE LOQ跳码编码器 [KEE LOQ Code Hopping Encoder]
分类和应用: 电信集成电路电信加密电路电信电路光电二极管编码器PC
文件页数/大小: 28 页 / 383 K
品牌: MICROCHIP [ MICROCHIP TECHNOLOGY ]
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HCS300
K
EE
L
OQ®
Code Hopping Encoder
FEATURES
Security
Programmable 28-bit serial number
Programmable 64-bit encryption key
Each transmission is unique
66-bit transmission code length
32-bit hopping code
28-bit serial number, 4-bit button code, 2-bit status
Crypt keys are read protected
DESCRIPTION
The HCS300 from Microchip Technology Inc. is a code
hopping encoder designed for secure Remote Keyless
Entry (RKE) systems. The HCS300 utilizes the K
EE
L
OQ
code hopping technology, incorporating high security, a
small package outline and low cost. The HCS300 is a
perfect solution for unidirectional remote keyless entry
systems and access control systems.
PACKAGE TYPES
PDIP, SOIC
S0
S1
S2
S3
1
HCS300
2
3
4
8
7
6
5
V
DD
Operating
2.0V - 6.3V operation
Four button inputs
No additional circuitry required
15 functions available
Selectable baud rate
Automatic code word completion
Low battery signal transmitted to receiver
Non-volatile synchronization data
LED
PWM
V
SS
HCS300 BLOCK DIAGRAM
Oscillator
RESET circuit
Controller
Power
latching
and
switching
Other
Easy-to-use programming interface
On-chip EEPROM
On-chip oscillator and timing components
Button inputs have internal pull-down resistors
Current limiting on LED output
Low external component cost
LED
LED driver
EEPROM
Encoder
PWM
32-bit shift register
Typical Applications
The HCS300 is ideal for Remote Keyless Entry (RKE)
applications. These applications include:
Automotive RKE systems
Automotive alarm systems
Automotive immobilizers
Gate and garage door openers
Identity tokens
Burglar alarm systems
V
SS
V
DD
Button input port
S3 S2 S1 S0
The HCS300 combines a 32-bit hopping code,
generated by a nonlinear encryption algorithm, with a
28-bit serial number and 6 information bits to create a
66-bit code word. The code word length eliminates the
threat of code scanning and the code hopping mecha-
nism makes each transmission unique, thus rendering
code capture and resend schemes useless.
©
2001 Microchip Technology Inc.
DS21137F-page 1