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Features * * * * Identification Transponder in Plastic Cube Basic Component: e5530 IDICO Includes Coil and Capacitor for Tuned Circuit Antenna Carrier Frequency: 125 kHz Application * * * * Car Immobilizer Access Control Alarm Systems Other Identification Systems Read-only Transponder TK5530 Description The TK5530 is a complete transponder, which implements all important functions for immobilizer and identification systems. It consists of a plastic cube which accommodates the read-only IDentification Integral Circuit (IDICO) e5530 and the antenna is realized by a LC-circuit. The identifying data are stored in a 128 bit PROM on the e5530, realized as an array of laser-programmable fuses. The logic block diagram for the e5530 is shown in Figure 1. The data are sent bit-serially as a code. Any attempt to fake the base station with a wrong transponder will be recognized immediately. System Block Diagram TK5530 Transponder RF field (e5530 + coil + C in plastic cube) C e5530 Power Coil Data Base station U2270B reader IC MARC4 series C Rev. 4683A-RFID-02/03 1 General The transponder consists of a plastic cube which accommodates following components: * * Read-only IDICO with ROM (e5530) Antenna realized as tuned LC-circuit Read-Only IDICO with ROM (e5530) The e5530 is part of a closed coupled identification system (see 'System Block Diagram'). It receives power from a RF transmitter (reader) which is coupled inductively to the IDIC. The TK5530 transponder operates at a nominal frequency of 125 kHz. Receiving RF, the IDIC responds with a data stream by damping the incoming RF via an internal load. This damping in turn can be detected by the reader. The identifying data are stored in a 128-bit PROM on the e5530, which is factory programmed with a unique code (see specification of the e5530). The e5530 has several possible options regarding modulation, bitrate, memory size etc. Antenna Figure 1. Block Diagram Analog front end The antenna consists of a coil and a capacitor for tuning the circuit to the nominal carrier frequency of 125 kHz. The coil has a ferrite-core for improving the readout distance. Load Coil Mod Modulator FSK PSK BIPH Manchester Row decoder Data Clock extractor Clk R7 R6 R5 R4 R3 R2 R1 R0 128 bit PROM Coil A2 A1 A0 Rectifier VDD VSS Bitrate 2 TK5530 4683A-RFID-02/03 A6 A5 A4 A3 C15 C14 C13 C12 C11 C10 C9 C8 C7 C6 C5 C4 C3 C2 C1 C0 Column decoder Counter TK5530 Absolute Maximum Ratings Parameter Operating temperature range Storage temperature range Assembly temperature t < 5 min Magnetic field strength at 125 kHz Symbol Tamb Tstg Tass Hpp Value -40 to +85 -40 to +125 170 1000 Unit C C C A/m Operating Characteristics Transponder Tamb = 25C, f = 125 kHz unless otherwise specified Parameters Inductance LC circuit, Hpp = 20 A/m Resonance frequency Resonance frequency Quality factor Magnetic Field Strength (H) Max. field strength where tag does not modulate Field strength for operation Field strength for operation Field strength for operation Maximun field strength Modulation Range (see also H-DV curve) Modulation range Hpp = 20 A/m Hpp = 30 A/m Hpp = 50 A/m Hpp = 100 A/m DV 4.0 6.0 8.0 8.0 V No influence to other tags in the field Tamb = -40C Tamb = 25C Tamb = 85C Hpp not Hpp -40 Hpp 25 Hpp 85 Hpp max 2 30 18 17 600 A/m A/m A/m A/m A/m Room temperature Tamb = -40 to +85C fr fr QLC 121.4 120.0 13 125 129.2 131.0 kHz kHz Test Conditions Symbol L Min. Typ. 3.95 Max. Unit mH Figure 2. Typical TK-range of Resonance Frequency 4 3 2 TK of fres (%) 1 0 -1 -2 -3 -4 -40.0 -20.0 0.0 20.0 40.0 60.0 80.0 100.0 Temperature (C) 3 4683A-RFID-02/03 Figure 3. Typical H-DV Curve 9 8 7 6 DV (V) 5 4 3 2 1 0 0.0 20.0 40.0 60.0 80.0 100.0 120.0 HPP (A/m) Figure 4. Measurement of the Modulation Range DV Output voltage of the testing application (see figure 6 and 7) V1 Vmod DV = V1-Vmod 4 TK5530 4683A-RFID-02/03 TK5530 Measurement Assembly All parameters are measured in a Helmholtz-arrangement, which generates a homogenous magnetic field (see Figure 5 and Figure 6). A function generator drives the field generating coils, so the magnetic field can be varied in frequency and field strength. Figure 5. Testing Application SENSING COILS ( IN PHASE ) SUBTRACTOR OUTPUT VOLTAGE AMPLIFIER 1:10 REFERENCE COIL ( IN PHASE ) REFERENCE COIL ( IN PHASE ) TK5530 FIELD GENERATING COILS ( IN PHASE ) FUNCTION GENERATOR Figure 6. Testing Geometry l = 30 mm Transponder 22 mm d = 60 mm REFERENCE COIL SENSING COIL SENSING COIL REFERENCE COIL 5 mm FIELD GENERATING COIL FIELD GENERATING COIL 5 4683A-RFID-02/03 IDICO (Reference Data Sheet e5530) Memory size maximum Memory type Programming Data rate Encoding Modulation Maximum coil voltage (internally limited) Vpp (I = 5 mA) 128 Bit (details see "Coding") ROM Laser cutting RF/32 - RF/64 Manchester or Bi-phase AM 16 V Coding The memory of the TK5530 can be selected to be a 64- or 128-bit rolling code. In the non-standard version, the first 8 bits are a customer-specific pattern. This can be selected by the customer, provided that Atmel agrees to the customer's proposal. This pattern is unique within the serial rolling code data stream. The ID code and further bit informations following the 8-bit header can also be defined within the customer's specification. The set-up of a suitable coding scheme can be provided on customer's request. Read Distance The maximum distance between the base station and the TK5530 mainly depends on the base station, the coil geometries and the modulation options chosen (see U2270B Antenna Design Hints and the U2270B data sheet). When generating an appropriate field with a suitable reader technique, a distance of 10 cm and more can be obtained. When using the Atmel U2270B demo board, the typical distances in the range of 0 to 5 cm can be achieved. Maximum distance values which are generally valid can not be given in this data sheet. The exact measuring of the maximum distance should be carried out with the TK5530 being integrated into the specific application. Ordering Information Extended Type Number Modul. Data Rate Configuration Checksum Header ID Code SPQ (Minimum Volume) 10 kpcs Minimum Order Volume TK5530HM-232-PP Manch. RF/32 64 bit no checksum E6 fixed and unique code >1 kpcs (per order, from stock) > 300 kpcs p.a. TK5530HM-zzz-PP Note: defined by customer 1) Definition of customized part number basing on orders for first year volume (300 kpcs) 2) Definition of header, ID code, checksum etc. according to customers data base 3) 8.000 US$ initial cost for metal mask 4) Lead time 5 month 5) Low volume customized application can be covered by TK5550F-PP programming, for identical application, as TK5530H-zzz-PP. 6 TK5530 4683A-RFID-02/03 TK5530 Ordering Number for Standard Version TK5530HM-232-PP Ordering Number for Customized Version TK5530xy-zzz-PP Plastic package Custom code Modulation M -> Manchester code B -> Biphase code Mask version of die Application Figure 7. Complete Transponder System with the Read/Write Base-station IC U2270B 110 kW 5V VBatt 47 nF 22 mF 680 pF Input 4.7 kW 1N4148 470 kW 1.5 nF C31 COIL2 1.2 nF 1.35 mH R COIL1 Read/write circuit DGND GND 100 nF Micro controller VSS DV S VEXT VS U2270B RF MS CFE OE Standby Output Gain 5V VDD M44C260 BP00 BP01 BP02 BP03 BP10 osc IN 32 kHz osc OUT Power Data e5530 Transponder TK5530 fres = 1 / (2pOLC) = 125 kHz 7 4683A-RFID-02/03 Package Information Dimensions in mm 8 TK5530 4683A-RFID-02/03 Atmel Headquarters Corporate Headquarters 2325 Orchard Parkway San Jose, CA 95131 TEL 1(408) 441-0311 FAX 1(408) 487-2600 Atmel Operations Memory 2325 Orchard Parkway San Jose, CA 95131 TEL 1(408) 441-0311 FAX 1(408) 436-4314 RF/Automotive Theresienstrasse 2 Postfach 3535 74025 Heilbronn, Germany TEL (49) 71-31-67-0 FAX (49) 71-31-67-2340 1150 East Cheyenne Mtn. Blvd. Colorado Springs, CO 80906 TEL 1(719) 576-3300 FAX 1(719) 540-1759 Europe Atmel Sarl Route des Arsenaux 41 Case Postale 80 CH-1705 Fribourg Switzerland TEL (41) 26-426-5555 FAX (41) 26-426-5500 Microcontrollers 2325 Orchard Parkway San Jose, CA 95131 TEL 1(408) 441-0311 FAX 1(408) 436-4314 La Chantrerie BP 70602 44306 Nantes Cedex 3, France TEL (33) 2-40-18-18-18 FAX (33) 2-40-18-19-60 Biometrics/Imaging/Hi-Rel MPU/ High Speed Converters/RF Datacom Avenue de Rochepleine BP 123 38521 Saint-Egreve Cedex, France TEL (33) 4-76-58-30-00 FAX (33) 4-76-58-34-80 Asia Room 1219 Chinachem Golden Plaza 77 Mody Road Tsimhatsui East Kowloon Hong Kong TEL (852) 2721-9778 FAX (852) 2722-1369 ASIC/ASSP/Smart Cards Zone Industrielle 13106 Rousset Cedex, France TEL (33) 4-42-53-60-00 FAX (33) 4-42-53-60-01 1150 East Cheyenne Mtn. Blvd. Colorado Springs, CO 80906 TEL 1(719) 576-3300 FAX 1(719) 540-1759 Scottish Enterprise Technology Park Maxwell Building East Kilbride G75 0QR, Scotland TEL (44) 1355-803-000 FAX (44) 1355-242-743 Japan 9F, Tonetsu Shinkawa Bldg. 1-24-8 Shinkawa Chuo-ku, Tokyo 104-0033 Japan TEL (81) 3-3523-3551 FAX (81) 3-3523-7581 literature@atmel.com Web Site http://www.atmel.com (c) Atmel Corporation 2003. Atmel Corporation makes no warranty for the use of its products, other than those expressly contained in the Company's standard warranty which is detailed in Atmel's Terms and Conditions located on the Company's web site. The Company assumes no responsibility for any errors which may appear in this document, reserves the right to change devices or specifications detailed herein at any time without notice, and does not make any commitment to update the information contained herein. No licenses to patents or other intellectual property of Atmel are granted by the Company in connection with the sale of Atmel products, expressly or by implication. Atmel's products are not authorized for use as critical components in life support devices or systems. Atmel (R) is the registered trademark of Atmel. IDIC O stands for IDentification Integrated Circuit and is a trademark of Atmel Germany GmbH. Other terms and product names may be the trademarks of others. Printed on recycled paper. 4683A-RFID-02/03 xM |
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