U3550BM TEMIC | Alldatasheet

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Features

/C0068 All PLLs and most of the oscillators are integrated /C0068 All functions and channel selection controllable by serial bus /C0068 Receiver Mixer 1 with integrated image rejection /C0068 Up to 25 channels selectable depending on CT0 standard /C0068 Integrated oscillator circuit with external crystal (11.15 MHz) /C0068 Programmable carrier-modulation frequency Application /C0068 CT0 (USA, France, Spain, Netherlands, Portugal, Korea, Taiwan, New Zealand, China) /C0068 Narrowband voice and data transmitting / receiving systems Block Diagram Mixer 1 + 45 – 45 VCO 3 sin cos sin cos Mixer 2 + 45 – 45 Phase comparatorVCO 2 D 1 D 2 Loop filter VCO 1 Phase comparator D 3 N Phase comparator Serial BUS interface Oscillator interface

11.15 MHz

10.7 MHz

C D LFGND VBA T MIXO PCLO LOGND MCKA OSCGND 13280

557.5 KHz

K P Figure 1. Block diagram

Figure 2. Pinning

1 MCKO Clock output for peripherals

2 D Data input of serial bus

3 C Clock line of serial bus

4 OSCGND Oscillator ground

6 OSCVDD Oscillator supply input

7 DELVB Phase correction VCO3 supply

8 DELGND Phase correction VCO3 ground

9 GREF V oltage reference for internal

10 MIXIN Mixer input

11 MIXVB Mixer-supply input

12 MIXO Mixer output

13 LO1 Tank elements for LO are

14 LO2 connected to these pins

15 PCLO Phase comparator PLL3 output

16 LOGND VCO3 ground

17 RFOGND RF transmit output ground

18 RFO RF transmit output

19 RFOVB Power-supply input of RF

20 VTX Power-supply output of RF

21 AGND Analog ground

22 VBA T Power supply of analog part

23 MLF Modulator loop filter

24 LFGND Modulator loop-filter ground

25 MODIN Modulator input signal

26 MCKA Peripheral-clock output

27 VSS Digital ground

28 VCC Power supply of digital part

range given by the phase comparator. Channel Frequencies, Dividers and Country Settings). there is a fine adjust with 32 steps for VCO1 and VCO2. ming value ‘1’, however, is necessary. SAFA1 = 1, sign of auto fine adjustment VCO1 = 1. Setting for VCO2 is identical. For VCO3, there is no internal adjustment. the modulator loop filter is precharged to 1.25 V . and down pulses when the loop is locked (anti-backlash). Electrical Characteristics (RF transmitter). integer value: 1, 2, 3, 4, 6 or switched off. Crystal oscillator = 11.15 MHz. Table 1. Clock-output values

Rev. A2, 10-Sep-98 Preliminary Information 4 (25) Frequency Synthesis Phase comparatorN Loop filter 1) Modulator loop 2) Mixer loop 3) Local oscillator (LO) loop VCO 3 Phase comparator Loop filterVCO 2 VCO 1 2 D3 Loop filter Q 223 Phase comparator fmod 557.5 kHz 96 11627 fRef3fLO K fRef fRef1 = Figure 3. Modulator Loop and Mixer Loop Dividers D1 D2 D3 fRef2 (MHz) fmod (MHz) France 4 8 2 1.075 4.3 Spain 2 8 4 0.9 1.8 Netherlands 2 8 4 0.9 1.8 Portugal 2 8 4 0.625 1.25 USA (channels 1 to 10) 8 8 1 0.955 7.64 USA (new channels) 6 6 1 0.943 5.66 Taiwan 8 8 1 0.9625 7.70 New Zealand 4 8 2 0.5875 4.70 Korea 8 8 1 0.955 7.64 For France, Spain, Netherlands, Portugal, Taiwan and New Zealand, fRef2 and fmod do not change when the channel changes. For USA and Korea is valid: fRef2 and fmod are varying according to the channel number. For all countries, fRef2 and fmod are identical for base set and handset. Reference Frequency Dividers for Local Oscillator K 0 = 4460 K 1 = 2230 K 2 = 1784 K 3 = 1115 K 4 = 892 K 5 = 446 fRef3 = 2.5 kHz fRef3 = 5 kHz fRef3 = 6.25 kHz fRef3 = 10 kHz fRef3 = 12.5 kHz fRef3 = 25 kHz

Rev. A2, 10-Sep-98 7 (25) Content of Internal Registers The registers have the following structure D7 D6 D5 D4 D3 D2 D1 D0 R0 – R4: reserved for U3500BM R5: Gain VCO2 free free KV23 KV22 KV21 M12 reserved U3500 KV2[3:1]: Gain VCO2 M12: Frequency of phase-comparator in Mixer loop R6: Country setting bits ETXO M1CP UDM1 IMIXI GMOD1 GMOD0 free free ETXO: Enable HF-transmit output M1CP: Changes 1 dB compression point of Mixer 1 UDM1: Up-/down-mixing of Mixer 1 IMIXI: Inverse inputs of phase comparator in mixer loop GMOD[1:0]: Modulation gain of VCO1 R7: VCO1 setting AMOD2 AMOD1 RA11 RA10 DV1I3 DV1I2 DVlI1 DVlI0 AMOD[2:1]: Lengthening anti-backlash signal modulator loop RA1[1:0]: Rough adjustment VCO1 DVlI[3:0]: Divider setting VCO1 integer part R8: Divider VCO1 fractional part DV1F7 DV1F6 DV1F5 DV1F4 DV1F3 DV1F2 DVlF1 DVlF0 DV1F [7:0]: Divider setting VCO1 fractional part R9: Divider VCO3 integer part LSB DV3I7 DV3I6 DV3I5 DV3I4 DV3I3 DV3I2 DV3I1 DV3I0 DV3I [7:0]: Divider setting VCO3 integer part LSB R10: Divider VCO3 integer part MSB free DV3I14 DV3I13 DV3I12 DV3I11 DV3I10 DV3I9 DV3I8 DV3I[14:8]: Divider setting VCO3 integer part MSB

Rev. A2, 10-Sep-98 Preliminary Information 8 (25) R11: Setting VCO2 and VCO3 free free FRMT free AMIX2 AMIX1 RA21 RA20 FRMT: Output frequency range of Mixer T AMIX[2:1]: Lengthening anti-backlash signal mixer loop RA2[1:0]: Rough adjustment VCO2 R12: Divider for country setting, fine adjust oscillator FAOS2 FAOS1 FAOS0 D31 D30 D20 D11 D10 FAOS[2:0]: Oscillator fine adjust D3[1:0]: Setting divider D3 D20: Setting divider D2 D1[1:0]: Setting divider D1 R13: VCO1 enable and fine adjust EVCO1 SAFA1 EAFA1 FA14 FA13 FA12 FA11 FA10 EVCO1: Enable VCO1 SAFA1: Sign for automatic fine adjust VCO1 EAFA1: Enable automatic fine adjust VCO1 FA1[4:0]: Fine adjust VCO1 for manual adjustment R14: VCO2 enable and fine adjust EVCO2 SAFA2 EAFA2 FA24 FA23 FA22 FA21 FA20 EVCO2: Enable VCO2 and Mixer T SAFA2: Sign for automatic fine adjust VCO2 EAFA2: Enable automatic fine adjust VCO2 FA2 [4:0]: Fine adjust VCO2 for manual adjustment R15: VCO3 enable, oscillator enable, selection of phase comparator VCO3 and speed-up phase comparator for VCO3 EVCO3 EOSC SU3 E25K E12K5 E10K E6K25 E5K EVCO3: Enable VCO3 and Mixer 1 EOSC: Enable oscillator SU3: Speed-up phase-comparator for VCO3 E25K: Selection phase-comparator frequency VCO3: f Ref3 = 25 kHz E12K5: Selection phase-comparator frequency VCO3: fRef3 = 12.5 kHz E10K: Selection phase-comparator frequency VCO3: fRef3 = 10 kHz E6K25: Selection phase-comparator frequency VCO3: fRef3 = 6.25 kHz E5K: Selection phase-comparator frequency VCO3: fRef3 = 5 kHz E5K, E6K25, El0K, El2K5, E25K = 0 Selection phase-comparator frequency VCO3: fRef3 = 2.5 kHz

Rev. A2, 10-Sep-98 9 (25) Absolute Maximum Ratings Parameters Symbol Min. Max. Unit Supply voltage V S 5.5 V Junction temperature Tj +125 °C Ambient temperature Tamb –25 +75 °C Storage temperature Tstg –50 +125 °C Power dissipation Tamb = 60°C SO28 Ptot 520 mW Thermal Resistance Parameters Symbol Value Unit Junction ambient SO28 R thJA 120 K/W

Electrical Characteristics

Tamb = +25°C; VS = VBAT = MIXVB = RFOVB = DELVB = VCC = OSCVDD; V S = 3.6 V; fMIXIN = 26.40 MHz, fdev = ±2.5 kHz; all blocks disabled (ETXO = EVCO1 = EVCO2 = EVCO3 = 0); unless otherwise specified. Test circuit see figure 8. Parameters Test Conditions / Pins Symbol Min. Typ. Max. Unit Power supply Operating voltage range 3.1 3.6 5.2 V Operating current in active mode (1) VBAT = MIXVB = RFOVB = DELVB = 2.9 V OSCVDD = VCC = 0 V 5 /C0109 A Operating current in standby mode, oscillator off (1) VBAT = MIXVB = RFOVB = DELVB = VCC = OSCVDD = 3.6 V , V MCKA = 0 V , EOSC = 0 200 /C0109 A Operating current in standby mode, oscillator on VBAT = MIXVB = RFOVB = DELVB = VCC = OSCVDD = 3.6 V , V MCKA = 3.6 V , EOSC = 1 700 /C0109 A Operating current in RX mode EVCO3 = 1 5 6 mA Operating current in active mode without TX output EVCO1 = EVCO2 = 1 12 mA Operating current in active mode ETXO = 1, no load at RFO 14 16 mA RF transmitter MODIN input impedance 70 100 130 k/C0087 RFO output impedance Load = 200 300 390 /C0087 RFO output-voltage level ETXO = 0; no load 0.3 V Lowest operating frequency France base channel 1 (Fb1) (2) 26.3125 MHz Highest operation frequency USA base channel 9 (US1b9) (2) 49.9900 MHz TX conversion gain RFO – MODIN Eb1: fRFO = 31.025 MHz US1h9: fRFO = 49.99 MHz Fh6: fRFO = 41.4375 MHz for VS = 3.1 to 5.2 V 5.7 3.42 2.85 kHz/V kHz/V kHz/V Demodulated distortion THD Eb1: /C0068 f = 5.0 kHz Fh9:/C0068 f = 1.5 kHz for VS = 3.1 to 5.2 V 2 % Residual modulation (4) on demodulated signal THD measurement with psophometric filter dB

Rev. A2, 10-Sep-98 Preliminary Information 10 (25) Parameters Test Conditions / Pins Symbol Min. Typ. Max. Unit Spurious at RFO output (delta versus carrier) a/ Fb6: fRFO = 26.375 MHz b/ US1h9: FRFO = 49.99 MHz (3) /C0068 f = ±2.5 kHz /C0068 f = ±12.5 kHz /C0068 f = ±557.5 kHz /C0068 f = ±1/2 fmod /C0068 f = ± fmod for VS = 3.1 to 5.2 V 60 dBc VTX output capability ILOAD = 3 mA /C0068 V with and without load 0.5 V VTX output leakage current ETXO = 0; current to GND 1 /C0109 A PLLs V S = 3.1 to 5.2 V Charge-pump output voltage EVCO1 =1, output high 2.38 2.5 2.63 V Precharge voltage at the loop filter EVCO3 = 1 EVCO1 = 0 1.15 1.4 1.65 V Charge-pump output current in speed-up mode EVCO1 = 1 V MLF = 1.25 V , output high –400 –300 –200 /C0109 A Charge-pump output current V MLF = 1.25 V , output low 4.3 6.2 8 /C0109 Agp p p V MLF = 1.25 V , output high –8 –6.2 –4.3 /C0109 A Charge-pump leakage current V MLF = 1.25 V , output tristate –100 +100 nA VCO1 gain V MLF = 0 V , then 2.5 V 121 140 156 kHz/V Receiver input mixer (Mixer 1) Input frequency range EVCO3 = 1 20 50 MHz Output frequency 10.7 MHz Input resistance 2.4 3.0 3.6 k/C0087 Input capacitor 3 3.5 4 pF Output impedance M1CP = 0 M1CP = 1 210 330 390 110 /C0087 /C0087 V oltage gain on MIXO M1CP = 0 M1CP = 1 for: Fb8: f LO = 30.7 MHz FRF11 = 20 MHz UDM1 = 1 Fb8: fLO = 30.7 MHz FRF21 = 41.4 MHz UDM1 = 0 US1h10: fLO = 57.67 MHz FRF31 = 46.97 MHz UDM1 = 1 for VS = 3.1 to 5.2 V 9.5 12.5 15.5 dB dB Noise figure BW = 1 MHz 50-/C0087 input impedance 14 18 dB Input compression point M1CP = 0 M1CP = 1 50-/C0087 input impedance –19 –16 –17.7 –14.3 dBm dBm

Rev. A2, 10-Sep-98 11 (25) Parameters Test Conditions / Pins Symbol Min. Typ. Max. Unit Third order input intercept point M1CP = 0 M1CP = 1 50-/C0087 input impedance FRF1 = 41.4 MHz FRF2 = 41.4125 MHz Input level 1 = –30 dBm Input level 2 = –30 dBm dBm dBm Image-frequency rejection Fb8: fLO = 30.7 MHz UDM1 = 0 FRF11 = 41.4 MHz FRF12 = 20 MHz (image) Fb8: fLO = 30.7 MHz UDM1 = 0 FRF21 = 20 MHz FRF22 = 41.4 MHz (image) Fb8: fLO = 57.67 MHz UDM1 = 1 FRF31 = 46.97 MHz FRF32 = 68.37 20 dB LO to RF MIXIN input isolation Fb8: measuring, fLO = 30.7 MHz 0.2 mV rms LO to IF MIXO output isolation Fb8: measuring, fLO = 30.7 MHz 1.2 mV rms Isolation transmit path to receive path (crosstalk) Synthesizer programming as ‘Taiwan channel 5’ (see page 21), transmitter modulation (Pin 25) for /C0068 f = 3 kHz, fmod = 300 to 3400 kHz, M1CP = 1, fRF (Pin 10) = 45.35 or 48.35 MHz unmodulated, –25 dBm (50 /C0087 ) measuring frequency modulation of the 10.7 MHz signal at MIXO (Pin 12) 28 dB Logical part Inputs: C, D Low-voltage input High-voltage input Inputs: C, D, MCKA Input leakage current (0 < VI < VCC) V il V ih V i 0.8/C0032 V CC 0.2/C0032 V CC 1 /C0109 A Input leakage current Pin XCK (0 < VI < VCC) –5 5 /C0109 A Output impedance at MCKO 0.5 1.0 k/C0087 Serial bus (figure 8) Data set-up rime Data hold time Clock low time Clock high time Hold time before transfer condition Data low pulse on transfer condition Data high pulse on transfer condition tsud thd tcl tch teon teh teoff 0.1 0.1 0.2 0.2 /C0109 s /C0109 s /C0109 s /C0109 s /C0109 s /C0109 s /C0109 s (1) I S = IVBAT + IVCC + IMIXVB + IRFOVB + ODELVB + I1OSCVDD (2) 1-measure 11.15 MHz at MCKO pin 2-measure FRFO at RFO pin (3) See country channels (4) Ratio between demodulated audio level with and without 1-kHz modulation

Figure 8. Test circuit

Rev. A2, 10-Sep-98 13 (25) Channel Frequencies, Dividers and Country Settings To meet all requirements of various countries /C0042 France (F), Spain (E), Netherlands (NL), USA and Portugal (P), Korea, Taiwan, New Zealand /C0042 and modes /C0042 base (b), handset (h) /C0042 several bits have to be set which do not change for the different channels. These settings are called country settings. The country-setting bits are followed by further bits enabling the adjustments given below. /C0068 Rough adjustments for 2 VCOs /C0068 Setting three integer dividers mixer and modulator loop /C0068 Gain adjustment of the VCO2 /C0068 Modulator gain /C0068 Up-/down-mixing Mixer 1 and Mixer T /C0068 Output-frequency range of Mixer T Name Register Function Notes RA1[0:1] Rough adjust VCO1 00: is the highest frequency 3 RA2[0:1] Rough adjust VCO2 00: is the highest frequency 4 D1[0:1] Integer divider D1 Division by 2, 4, 6, 8 4 D20 Integer divider D2 Division by 6, 8 2 D3[0:1] Integer divider D3 Division by 1, 2, 4 3 KV[1:3] Gain VCO2 6 GMOD[0:1] Modulator gain 00: gain minimal 3 IMIXI Up-/down-mixing Mixer T 0: if fVCO2 lower than fLO 2 UDM1 Up-/down-mixing Mixer 1 1: supra band active (handset) 2 FRMT Output-frequency range Mixer T 0: for fVCO2 – fLO < 6 MHz 2 Note: Setting the fractional dividers: For Q, send the binary equivalent of the numbers given below. For P (integer part), send the D2 complement (16 – P) i.e. Fb1 (P = 7, Q = 159 => integer: send 16 – P = 9, fractional: send 159)

Rev. A2, 10-Sep-98 Preliminary Information 14 (25) France CT0 Base Set Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 00 11 11 1 01 100 01 0 0 0 Setting max min 4 8 2 mid supra infra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 41.3125 30.6125 4898 2 41.3250 30.6250 4900 3 41.3375 30.6375 4902 4 41.3500 30.6500 4904 5 41.3625 30.6625 4906 6 41.3750 30.6750 4908 7 41.3875 30.6875 4910 8 41.4000 30.7000 4912 9 41.4125 30.7125 4914 10 41.4250 30.7250 4916 11 41.4375 30.7375 4918 12 41.4500 30.7500 4920 13 41.4625 30.7625 4922 14 41.4750 30.7750 4924 15 41.4875 30.7875 4926 France CT0 Handset Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 00 01 11 1 01 101 01 1 1 0 Setting max high 4 8 2 mid infra supra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 26.3125 37.0125 5922 2 26.3250 37.0250 5924 3 26.3375 37.0375 5926 4 26.3500 37.0500 5928 5 26.3625 37.0625 5930 6 26.3750 37.0750 5932 7 26.3875 37.0875 5934 8 26.4000 37.1000 5936 9 26.4125 37.1125 5938 10 26.4250 37.1250 5940 11 26.4375 37.1375 5942 12 26.4500 37.1500 5944 13 26.4625 37.1625 5946 14 26.4750 37.1750 5948 15 26.4875 37.1875 5950

Rev. A2, 10-Sep-98 15 (25) France CT0 Modulation Loop Frequency and Divider fmod = 4.3 MHz, P = 7, Q = 159 Spain CT0 Base Set Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 10 00 1 11 100 10 1 0 0 Setting mid low 2 8 4 high infra infra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 39.925 29.225 4676 2 39.950 29.250 4680 3 39.975 29.275 4684 4 40.000 29.300 4688 5 40.025 29.325 4692 6 40.050 29.350 4696 7 40.075 29.375 4700 8 40.100 29.400 4704 9 40.150 29.450 4712 10 40.175 29.475 4716 11 40.200 29.500 4720 12 40.225 29.525 4724 Spain CT0 Handset Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 01 00 1 11 100 10 0 1 0 Setting mid high 2 8 4 high supra supra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 31.025 41.725 6676 2 31.050 41.750 6680 3 31.075 41.775 6684 4 31.100 41.800 6688 5 31.125 41.825 6692 6 31.150 41.850 6696 7 31.175 41.875 6700 8 31.200 41.900 6704 9 31.250 41.950 6712 10 31.275 41.975 6716 11 31.300 42.000 6720 12 31.325 42.025 6724 Spain CT0 Modulation Loop Frequency and Divider fmod = 1.8 MHz, P = 3, Q = 51

Rev. A2, 10-Sep-98 Preliminary Information 16 (25) Netherlands CT0 Base Set Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 10 00 1 11 100 10 1 0 0 Setting mid low 2 8 4 high infra infra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 39.9375 29.2375 4678 2 39.9625 29.2625 4682 3 39.9875 29.2875 4686 4 40.0125 29.3125 4690 5 40.0375 29.3375 4694 6 40.0625 29.3625 4698 7 40.0875 29.3875 4702 8 40.1125 29.4125 4706 9 40.1375 29.4375 4710 10 40.1625 29.4625 4714 11 40.1875 29.4875 4718 12 40.2125 29.5125 4722 Netherlands CT0 Handset Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 01 00 1 11 001 10 0 1 0 Setting mid high 2 8 4 high supra supra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 31.0375 41.7375 6678 2 31.0625 41.7625 6682 3 31.0875 41.7875 6686 4 31.1125 41.8125 6690 5 31.1375 41.8375 6694 6 31.1625 41.8625 6698 7 31.1875 41.8875 6702 8 31.2125 41.9125 6706 9 31.2375 41.9375 6710 10 31.2625 41.9625 6714 11 31.2875 41.9875 6718 12 31.3125 42.0125 6722 Netherlands CT0 Modulation Loop Frequency and Divider fmod = 1.8 MHz, P = 3, Q = 51

Rev. A2, 10-Sep-98 17 (25) USA CT0 Base Set Country setting channel 1 – 10 (USA1): Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 00 01 1 00 100 00 1 0 1 Setting mid max 8 8 1 low infra infra high Country setting new channels (channel 11 – 25, USA2): Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 01 01 10 0 00 110 01 1 0 0 Setting mid high 6 6 1 mid infra infra low Channel frequencies and 1st LO divider, fRef3 = 5 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 49.670 38.970 7794 2 49.845 39.145 7829 3 49.860 39.160 7832 4 49.770 39.070 7814 5 49.875 39.175 7835 6 49.830 39.130 7826 7 49.890 39.190 7838 8 49.930 39.230 7846 9 49.990 39.290 7858 10 49.970 39.270 7854 New channels Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 11 48.760 38.06 7612 12 48.840 38.14 7628 13 48.860 38.16 7632 14 48.920 38.22 7644 15 49.020 38.32 7664 16 49.080 38.38 7676 17 49.100 38.40 7680 18 49.160 38.46 7692 19 49.200 38.50 7700 20 49.240 38.54 7708 21 49.280 38.58 7716 22 49.360 38.66 7732 23 49.400 38.70 7740 24 49.460 38.76 7752 25 49.500 38.80 7760

Rev. A2, 10-Sep-98 Preliminary Information 18 (25) USA CT0 Handset Country setting channel 1 – 10 (USA1): Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 00 01 1 00 100 00 0 1 1 Setting mid max 8 8 1 low supra supra high Country setting new channels (channel 11 – 25 USA2): Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 01 00 10 0 00 110 01 0 1 0 Setting mid max 6 6 1 mid supra supra low Channel frequencies and 1st LO divider, fRef3 = 5 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 46.610 57.31 11462 2 46.630 57.33 11466 3 46.670 57.37 11474 4 46.710 57.41 11482 5 46.730 57.43 11486 6 46.770 57.47 11494 7 46.830 57.53 11506 8 46.870 57.57 11514 9 46.930 57.63 11526 10 46.970 57.67 11534 New channels Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 11 43.720 54.42 10884 12 43.740 54.44 10888 13 43.820 54.52 10904 14 43.840 54.54 10908 15 43.920 54.62 10924 16 43.960 54.66 10932 17 44.120 54.82 10964 18 44.160 54.86 10972 19 44.180 54.88 10976 20 44.200 54.90 10980 21 44.320 55.02 11004 22 44.360 55.06 11012 23 44.400 55.10 11020 24 44.460 55.16 11032 25 44.480 55.18 11036

Rev. A2, 10-Sep-98 19 (25) USA CT Modulation Loop Frequencies and Dividers N Channel P Q fmod (MHz) 1 13 157 7.640 2 13 95 7.485 3 13 105 7.510 4 13 157 7.640 5 13 123 7.555 6 13 157 7.640 7 13 157 7.640 8 13 157 7.640 9 13 157 7.640 10 13 181 7.700 New channels N Channel P Q fmod (MHz) 11 10 34 5.66 12 10 10 5.60 13 10 34 5.66 14 10 18 5.62 15 10 10 5.60 16 10 2 5.58 17 10 58 5.72 18 10 50 5.70 19 10 42 5.68 20 10 34 5.66 21 10 66 5.74 22 10 50 5.70 23 10 50 5.70 24 10 50 5.70 25 10 42 5.68

Rev. A2, 10-Sep-98 Preliminary Information 20 (25) Portugal CT0 Base Set Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 01 10 00 1 11 010 10 1 0 0 Setting min low 2 8 4 high infra infra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 37.000 26.300 4208 2 37.025 26.325 4212 3 37.050 26.350 4216 4 37.075 26.375 4220 5 37.100 26.400 4224 6 37.125 26.425 4228 7 37.150 26.450 4232 8 37.175 26.475 4236 9 37.200 26.500 4240 10 37.225 26.525 4244 11 37.250 26.550 4248 12 37.275 26.575 4252 Portugal CT0 Handset Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 01 01 00 1 11 001 10 0 1 0 Setting min high 2 8 4 high supra supra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 27.550 38.250 6120 2 27.575 38.275 6124 3 27.600 38.300 6128 4 27.625 38.325 6132 5 27.650 38.350 6136 6 27.675 38.375 6140 7 27.700 38.400 6144 8 27.725 38.425 6148 9 27.750 38.450 6152 10 27.775 38.475 6156 11 27.800 38.500 6160 12 27.825 38.525 6164 Portugal CT0 Modulation Loop Frequency and Divider fmod = 1.25 MHz, P = 2, Q = 54

Rev. A2, 10-Sep-98 21 (25) Taiwan CT0 Base Set Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 00 01 1 00 110 01 1 0 1 Setting mid max 8 8 1 low infra supra higher Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 48.2500 37.5500 6008 2 48.2750 37.5750 6012 3 48.3000 37.6000 6016 4 48.3250 37.6250 6020 5 48.3500 37.6500 6024 6 48.3750 37.6750 6028 7 48.4000 37.7000 6032 8 48.4250 37.7250 6036 9 48.4500 37.7500 6040 10 48.4750 37.7750 6044 Taiwan CT0 Handset Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 00 01 1 00 110 00 0 1 1 Setting mid max 8 8 1 low supra supra high Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 45.2500 55.9500 8952 2 45.2750 55.9750 8956 3 45.3000 56.0000 8960 4 45.3250 56.0250 8964 5 45.3500 56.0500 8968 6 45.3750 56.0750 8972 7 45.4000 56.1000 8976 8 45.4250 56.1250 8980 9 45.4500 56.1500 8984 10 45.4750 56.1750 8988 Taiwan CT0 Modulation Loop Frequency and Divider fmod = 7.70 MHz, P = 13, Q = 181

Rev. A2, 10-Sep-98 Preliminary Information 22 (25) New Zealand CT0 Base Set Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 00 01 11 1 01 110 01 1 0 0 Setting max high 4 8 2 mid infra infra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 11 40.2500 29.5500 4728 12 40.2750 29.5750 4732 13 40.3000 29.6000 4736 14 40.3250 29.6250 4740 15 40.3500 29.6500 4744 16 40.3750 29.6750 4748 17 40.4000 29.7000 4752 18 40.4250 29.7250 4756 19 40.4500 29.7500 4760 20 40.4750 29.7750 4764 New Zealand CT0 Handset Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 00 11 11 1 01 101 01 0 0 0 Setting max min 4 8 2 mid supra supra low Channel frequencies and 1st LO divider, fRef3 = 6.25 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 11 34.2500 44.9500 7192 12 34.2750 44.9750 7196 13 34.3000 45.0000 7200 14 34.3250 45.0250 7204 15 34.3500 45.0500 7208 16 34.3750 45.0750 7212 17 34.4000 45.1000 7216 18 34.4250 45.1250 7220 19 34.4500 45.1500 7224 20 34.4750 45.1750 7228 New Zealand CT0 Modulation Loop Frequency and Divider fmod = 4.70 MHz, P = 8, Q = 96

Rev. A2, 10-Sep-98 23 (25) Korea CT0 Base Set Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 00 01 1 00 100 00 1 0 1 Setting mid max 8 8 1 low infra infra high Channel frequencies and 1st LO divider, fRef3 = 5 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 49.6700 38.9700 7794 2 49.8450 39.1450 7829 3 49.8600 39.1600 7832 4 49.7700 39.0700 7814 5 49.8750 39.1750 7835 6 49.8300 39.1300 7826 7 49.8900 39.1900 7838 8 49.9300 39.2300 7846 9 49.9900 39.2900 7858 10 49.9700 39.2700 7854 11 49.6950 39.9950 7799 12 49.7100 39.0100 7802 13 49.7250 39.0250 7805 14 49.7400 39.0400 7808 15 49.7550 39.0550 7811 Korea CT0 Handset Country setting: Name RA1[1:0] RA2[1:0] D1B[1:0] D2B0 D3B[1:0] KV2[3:1] GMOD[1:0] IMIXI UDM1 FRMT Value 10 00 01 1 00 100 00 0 1 1 Setting mid max 8 8 1 low supra supra high Channel frequencies and 1st LO divider, fRef3 = 5 kHz Channel Number RX Channel Frequency (MHz) 1st LO Frequency (MHz) N 1 46.6100 57.3100 11462 2 46.6300 57.3300 11466 3 46.6700 57.3700 11474 4 46.7100 57.4100 11482 5 46.7300 57.4300 11486 6 46.7700 57.4700 11494 7 46.8300 57.5300 11506 8 46.8700 57.5700 11514 9 46.9300 57.6300 11526 10 46.9700 57.6700 11534 11 46.5100 57.2100 11442 12 46.5300 57.2300 11446 13 46.5500 57.2500 11450 14 46.5700 57.2700 11454 15 46.5900 57.2900 11458

Rev. A2, 10-Sep-98 Preliminary Information 24 (25) Korea CT Modulation Loop Frequencies and Dividers N Channel P Q fmod (MHz) 1 13 157 7.640 2 13 95 7.485 3 13 105 7.510 4 13 157 7.640 5 13 123 7.555 6 13 157 7.640 7 13 157 7.640 8 13 157 7.640 9 13 157 7.640 10 13 181 7.700 11 13 107 7.515 12 13 109 7.520 13 13 111 7.525 14 13 113 7.530 15 13 115 7.535

Package Information

0.25 0.10 Dimensions in mm 0.4 1.27 16.51 18.05 17.80 2.35 7.5 7.3 9.15 8.65 10.50 10.20 0.25 28 15 11 4

Rev. A2, 10-Sep-98 25 (25) Ozone Depleting Substances Policy Statement It is the policy of TEMIC TELEFUNKEN microelectronic GmbH to 1. Meet all present and future national and international statutory requirements. 2. Regularly and continuously improve the performance of our products, processes, distribution and operating systems with respect to their impact on the health and safety of our employees and the public, as well as their impact on the environment. It is particular concern to control or eliminate releases of those substances into the atmosphere which are known as ozone depleting substances (ODSs). The Montreal Protocol (1987) and its London Amendments (1990) intend to severely restrict the use of ODSs and forbid their use within the next ten years. Various national and international initiatives are pressing for an earlier ban on these substances. TEMIC TELEFUNKEN microelectronic GmbH semiconductor division has been able to use its policy of continuous improvements to eliminate the use of ODSs listed in the following documents. 1. Annex A, B and list of transitional substances of the Montreal Protocol and the London Amendments respectively 2. Class I and II ozone depleting substances in the Clean Air Act Amendments of 1990 by the Environmental Protection Agency (EPA) in the USA 3. Council Decision 88/540/EEC and 91/690/EEC Annex A, B and C (transitional substances) respectively. TEMIC can certify that our semiconductors are not manufactured with ozone depleting substances and do not contain such substances. We reserve the right to make changes to improve technical design and may do so without further notice. Parameters can vary in different applications. All operating parameters must be validated for each customer application by the customer. Should the buyer use TEMIC products for any unintended or unauthorized application, the buyer shall indemnify TEMIC against all claims, costs, damages, and expenses, arising out of, directly or indirectly, any claim of personal damage, injury or death associated with such unintended or unauthorized use. TEMIC TELEFUNKEN microelectronic GmbH, P.O.B. 3535, D-74025 Heilbronn, Germany Telephone: 49 (0)7131 67 2831, Fax number: 49 (0)7131 67 2423