MTI3006X SIEMENS | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 14
Technical content
Features
- Few external components
- Frequency and amplitude-stable balanced oscillator for VHF (I and II) and UHF
- Mixer stages with optimized suppression of oscillator and input frequency at IF-output
- Mixer with low intermodulation if large input signals are applied
- Balanced mixer with wide dynamic range and low-impedance inputs
- Internal band switch
- Low-noise, internal reference voltage Semiconductor Group 1 12.94
(top view) Pin Definitions and Functions Pin No. Symbol Function
1 GND Ground
2 UHF Osc. Input 1 UHF-oscillator amplifier, high-impedance base input, symmetrical to pin 5 3 UHF Osc. Output 1 UHF-oscillator amplifier, high-impedance collector output, symmetrical to pin 4
4 UHF Osc. Output 2 UHF-oscillator amplifier, high-impedance collector output, symmetrical to pin 3 5 UHF Osc. Input 2 UHF-oscillator amplifier, high-impedance base input, symmetrical to pin 2 6 VHF Osc. Input 1 VHF-oscillator amplifier, high-impedance base input, symmetrical to pin 9 7 VHF Osc. Output 1 VHF-oscillator amplifier, high-impedance collector output, symmetrical to pin 8 8 VHF Osc. Output 2 VHF-oscillator amplifier, high-impedance collector output, symmetrical to pin 7 9 VHF Osc. Input 2 VHF-oscillator amplifier, high-impedance base input, symmetrical to pin 6
10 Band Switching VHF/UHF-band switching
11 Mixer Output 1 Open collector mixer output, high-impedance,
12 Mixer Output 2 Open collector mixer output, high-impedance,
14 VHF Input 1 VHF-mixer input low-impedance, symmetrical to pin 15
15 VHF Input 2 VHF-mixer input low-impedance, symmetrical to pin 14
16 UHF Input 1 UHF-mixer input low-impedance, symmetrical to pin 17
17 UHF Input 2 UHF-mixer input low-impedance, symmetrical to pin 16
18 GND Ground
19 Osc. Output 1 VHF/UHF-oscillator signal output to PLL, symmetrical to pin 20 20 Osc. Output 2 VHF/UHF-oscillator signal output to PLL, symmetrical to pin 19 Pin Definitions and Functions (cont’d) Pin No. Symbol Function
TA =0t o7 0°C Parameter Symbol Limit Values Unit min. max. Supply voltage V11, 12, 13 – 0.3 14.5 V Switching voltage V10 – 0.3 VS V According to the test circuit 1, only the provided circuitry can be connected to pins 1 to 9 and 14 to 20 Junction temperature Tj 150 °C Storage temperature Tstg – 40 125 °C Thermal resistance Rth 125 K/W Operating Range Supply voltage VS 10 13.2 V VHF-mixer input frequency range fVHF 30 500 MHz UHF-mixer input frequency range fUHF 30 900 MHz VHF-oscillator frequency range fOVHF 30 500 MHz UHF-oscillator frequency range fOUHF 30 900 MHz Ambient temperature TA 07 0 °C
TA =2 5°C; VS =1 2V Parameter Symbol Limit Values Unit Test Condition Test Circuit min. typ. max. Current consumptionI13 20 28 36 mA V10 > 1.6 V 1 Oscillator output impedance R19, 20 C 19, 20 200 Ω pF Parallel equivalent circuit Parallel equivalent circuit Mixer output impedance R11, 12 C 11, 12 kΩ pF Parallel equivalent circuit Parallel equivalent circuit VHF-Circuit Section Switching voltage V10 1.6 2.3 V 1 Switching current I10 10 30 µA V10 = 2.1 V 1 Oscillator frequency range fVHF I fVHF II 140 170 450 MHz MHz Vd =0…2 8V Vd =0…2 8V Oscillator drift ΔfVHF ΔfVHF ΔfVHF 200 400 200 kHz kHz kHz VS =1 2V ± 10 % ΔT =2 5°C t=5st o1 5min. after switching on Oscillator level V19, 20 – 17 – 14 – 11 dBm voltage on 50 Ω 1 Harmonic wave ratioaH 10 15 dB 1 Crosstalkfin/LO V14/15 150 1000 mVrms max. input level for 10-dB distancefin/LO Mixer gain G VHF 11 14 17 dB 1 Mixer noise figureFVHF I FVHF II 6.5 7.5 dB dB VHF 1; DSB VHF 2; DSB 1 Mixer input impedance R14/15 L14/15 Ω nH serial equivalent circuit serial equivalent circuit
VHF-Circuit Section(cont’d) (Design Hints only) IF-suppression aIF 20 dB V14/15 =8 0d BµV1 IM2 aIM2 aIM2 dB dB fD = 50 MHz fU = 100.5 MHz fD = 200 MHz fU = 400.5 MHz IM3 aIM3 aIM3 dB dB fD = 100 MHz fU1 = 150 MHz fU2 = 160 MHz fD = 200 MHz fU1 = 250 MHz fU2 = 260 MHz N + 5 pulling aN+5 aN+5 dB dB fD = 50 MHz fD = 200 MHz UHF-Circuit Section Switching voltage V10 3.2 ≤ VS V1 Switching current I10 60 300 µA V10 = VS 1 Oscillator frequency range fUHF 440 900 MHz Vd =0…2 8V 1 Oscillator drift ΔfUHF ΔfUHF ΔfUHF 400 800 200 kHz kHz kHz VS =1 2V ± 10 % ΔT =2 5°C t= 5 s to 15 min. after switching on Oscillator level V19, 20 – 22 – 17 – 13 dBm voltage on 50 Ω 1 Harmonic wave ratioaH 10 20 dB 1 Crosstalkfin/LO V16/17 150 1000 mVrms max. input level for 10-dB distancefin/LO Mixer gain G UHF 11 14 17 dB 1 AC/DC Characteristics (cont’d) TA =2 5°C; VS =1 2V Parameter Symbol Limit Values Unit Test Condition Test Circuit min. typ. max.
Mixer noise figureFUHF 8 12 dB DSB 1 Mixer input impedance R16/17 L16/17 Ω nH serial equivalent circuit serial equivalent circuit UHF-Circuit Section(cont’d) (Design Hints only) IF-suppression aZF 20 dB V16/17 =8 0d BµV1 IM2 aIM2 60 61 dB fD = 400 MHz fU = 800.5 MHz IM3 aIM3 aIM3 dB dB fD = 600 MHz fU1 = 650 MHz fU2 = 660 MHz fD = 850 MHz fU1 = 800 MHz fU2 = 790 MHz N + 5 pulling aN+5 aN+5 dB dB fD = 500 MHz fD = 800 MHz AC/DC Characteristics (cont’d) TA =2 5°C; VS =1 2V Parameter Symbol Limit Values Unit Test Condition Test Circuit min. typ. max.
Test Point Test Frequency in MHz Pin x Pin y Oscillator output impedance 100 19 20 Mixer input impedance VHF 100 14 15 Mixer input impedance UHF 600 17 18 Mixer output impedance VHF/UHF 100/600 11 12
IM2 (fU – fD ) Transfer to fIF
IM3 (fU2 – fU1 ) Transfer to fIF± (fU2 – fU1 )
Plastic Package, P-DSO-20-1 (SMD) (Plastic Dual Small Outline Package) GPS05094 Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book “Package Information” Dimensions in mmSMD = Surface Mounted Device