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UHF fixed four antenna reader

  • RFID UHF R2000 fixed 4 antenna reader
  • RFID UHF R2000 fixed 4 antenna reader
  • RFID UHF R2000 fixed 4 antenna reader
  • RFID UHF R2000 fixed 4 antenna reader
  • RFID UHF R2000 fixed 4 antenna reader
  • RFID UHF R2000 fixed 4 antenna reader
RFID UHF R2000 fixed 4 antenna readerRFID UHF R2000 fixed 4 antenna readerRFID UHF R2000 fixed 4 antenna readerRFID UHF R2000 fixed 4 antenna readerRFID UHF R2000 fixed 4 antenna readerRFID UHF R2000 fixed 4 antenna reader

RFID UHF R2000 fixed 4 antenna reader

  • Type:TS-304
  • Chip:Impinj R2000
  • Interface:RJ45,RS232 RS485 or others customize
  • Functions: multi tag reading >700pcs/per second
  • Product description: RFID UHF R2000 fixed 4 antenna reader
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TS-304

RFID UHF R2000 Four Channel Fixed Reader


Product Description

TS-304 is a high performance 4-channel reader based on Impinj Indy R2000 chip which can be well adapted to the installation requirements for indoor or outdoor environments.

*Using Impinj INDY R2000 RF chip

*24hoursx365 days non-stop

*Peak Inventory Speed: 700 tags/s.

*GPIO control

*EPC C1 G2 and ISO 18000-6B protocols are both supported.

*Low power design, peak current is only 1.2A at 30dBm output power

*Antenna protection function, reminding the user when the antenna is not connected (can be turned off)


Key Features

Based on Indy R2000 chip:

High performance anti-collision

algorithm

RF transceiver is Impinj Indy R2000

Unique multi tags identification algorithm.

Provides the highest efficiency.

Optimized algorithm for little tags

Dual CPU architecture

Better tag response time.

Optimized for little tag quantity applications.

The main CPU is responsible for the polling tag, and the sub CPU is responsible for data management.

Polling tags and sending data in parallel do not occupy each other's time, greatly improving overall performance.

The sub CPU is responsible for generating real random numbers.

The sub CPU is responsible for monitoring the operating status of the system.

Fast 4 antenna polling inventory

Two tag inventory modes

High-speed polling of 4 antennas, the shortest polling time per antenna is 25ms.

The polling time of each antenna can be configured separately.

Cache mode and real-time mode.

Cache mode reads the tag and puts it into the cache and filters the duplicate data. The data is not redundant.this mode improve the efficiency of multi tag inventory

Real-time mode uploads immediately after reading the tag, and the user can get the tag data in the first time.

Hardware crash monitoring

Wide input low voltage design

The hardware monitors the CPU operating status.

24 hours X360 days  operation does not crash.

Only need DC 12-18v input voltage

Low power design

RF amplifier status monitoring

Maximum out power only needs 600mA +/-10% (12V DC Input).

Low-power Mode, single tag only 300mA +/-10% (12V DC Input)

Monitor the operating status of the RF power amplifier.

Ensure that the amplifier does not saturate and ensure that the amplifier will work stably for a long time.

Realize all 18000-6B/C protocol functions

18000-6B large data read/write

100% 18000-6B compatible.

Can be switched rapidly between  two protocols.

Read 216 bytes in one time takes less than 500mS.

Write 216 bytes in one time takes less than 3.5 seconds.

Can also read/write data with various lengths.

Extremely stable (approximate 100% success rate).

Antenna connection status monitoring

Dual backup output power correction

judge the antenna connection status.

protect receiver

can be closed by command.

Ensure that the RF output power is accurately and controllable.

Two mutually-matched power check modules, the system can operate normally unless it is damaged at the same time

Excellent onboard power system

Dual backup output power correction

There are 8 independent power supplies onboard, and each component is powered by an independent power supply.

All power supplies have a soft-start function to ensure voltage stability at all times

Ensure that the RF output power is accurately and controllable.

Two mutually-matched power check modules, the system can operate normally unless it is damaged at the same time

Simple and efficient command system

Outstanding thermal design

Serial-based command system.

Simple, efficient, convenient, and fast integration

The heat generating devices all have a heat conducting structure.

Large area of heat sink contact surface.

The thermally coupled interface uses a solid material with high thermal conductivity and does not volatilize at high temperatures.

Disposable cast aluminum body heat dissipation, long-term continuous work does not heat


Specification

Physical Characteristics

Size

210mm(L) x 200mm(W) x 30mm(H)

Weight

Net Weight :1.8KG

Material

Die-cast aluminum

Input Voltage

DC 12V-18V

Standby Mode Current

<30mA

Sleep Mode Current

<100uA

Max Operating Current

600mA  +/-5% @ DC 12V Input

Working Environment

Operating Temp

-20°C to 55°C

Storage Temp

-20°C to 85°C

Humidity

5%~95%(non-condensing)

Performance Parameter

Protocol

ISO 18000-6C(EPC gen2)

ISO 18000-6B

Frequency Range

902MHz~928MHz or 865MHz~868MHz or customize others frequency according to your needs

Output Power

0-33dbm

Output Power Precision

+/- 1dB

Output Power Flatness

+/- 0.2dB

Data interface

RS232 and TCP/IP

Receive Sensitivity

< -85 dBm

Peak Inventory Speed

>700 tags/sec

Tag Buffer Capacity

1000 tags @ 96 bit EPC

Tag RSSI

Supported

Antenna Detector

Supported

Ambient Temp Monitor

Supported

Working Mode

Single/DRM

GPIO

2 inputs optical coupling  2 outputs optical coupling

Max Baud Rate

115200 bps

Heat Dissipation

Air cooling

Working Regions

US, Canada and other regions following U.S. FCC

Europe and other regions following ETSI EN 302 208 with & without LBT regulations

Mainland China

Japan

Korea

Malaysia

Taiwan


Interface Definition List


PIN ID

Function

Equivalent Circuit

Instructions

PIN1

GPIO 1 input +

Voltage between PIN 1,2 (PIN 3,4) <=12V

Heteropolarity

LED equivalent resistance 470Ω

Response time<= 150uS

PIN2

GPIO 1 input -

PIN3

GPIO 2 input +

PIN4

GPIO 2 input -

PIN5

GPIO 4 output

Voltage between PIN 5,6 (PIN 7,8)<=12V

Nonpolarity

On resistance110Ω

Response time <= 6mS

PIN6

GPIO 4 output

PIN7

GPIO 5 output

PIN8

GPIO 5 output