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/C0077/C0067/C0049/C0051/C0049/C0052/C0054 SEMICONDUCTOR TECHNICAL DATA LOW POWER DC – 1.8 GHz TRANSMITTER FTA SUFFIX PLASTIC PACKAGE CASE 977 (LQFP–24) 24 1 Order this document by MC13146/D Device Operating Temperature Range Package

ORDERING INFORMATION

MC13146FTA T A = –20 to 70°C LQFP–24 1MOTOROLA RF/IF DEVICE DATA /C0076/C0111/C0119 /C0080/C0111/C0119/C0101/C0114 /C0073/C0110/C0116/C0101/C0103/C0114/C0097/C0116/C0101/C0100 /C0084/C0114/C0097/C0110/C0115/C0109/C0105/C0116/C0116/C0101/C0114 /C0102/C0111/C0114 /C0073/C0083/C0077 /C0066/C0097/C0110/C0100 /C0065/C0112/C0112/C0108/C0105/C0099/C0097/C0116/C0105/C0111/C0110/C0115 The MC13146 is an integrated RF transmitter targeted at ISM band applications. It features a 50 Ω linear Mixer with linearity control, voltage controlled oscillator, divide by 64/65 dual modulus Prescaler and Low Power Amplifier (LPA). Together with the receiver chip (MC13145) and either baseband chip (MC33410 or MC33411A/B), a complete 900 MHz cordless phone system can be implemented. This device may be used in applications up to 1.8 GHz.

  • Low Distortion LPA: Pout_1 dB Compression Point /C0025 10 dBm
  • High Mixer Linearity: IIP3 = 10 dBm
  • 50 Ω Mixer Input Impedance
  • Differential Open Collector Mixer Output
  • Low Power 64/65 Dual Modulus Prescaler (MC12054 type)
  • 2.7 to 6.5 V Operation, Low Current Drain (25 mA @ 2.0 GHz)
  • Powerdown Mode: <60 µA
  • Usable up to 1.8 GHz VEE VEE PRSC Out PIN CONNECTIONS VEE Enable MC VEE VCC Mxr/Buf Out – VEE Mxr/Buf Out + Mx Lin Mxr/Buf In VEE VEE V CC Base PA VEE Emitter Collector Out PAIn VEE V CC 7 8 9 10 11 12 24 23 22 21 20 19 Amp Control PRSC ESD Sensitive — Handle with Care This device contains 268 active transistors.  Motorola, Inc. 1999 Rev 4 ARCHIVE INFORMATION ARCHIVE INFORMATION Freescale Sem iconductor, I Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com nc... ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005 ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005

2 MOTOROLA RF/IF DEVICE DATA

ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Power Supply Voltage ÁÁÁÁ ÁÁÁÁ VCC (max) ÁÁÁÁÁ ÁÁÁÁÁ 7.0 ÁÁÁ ÁÁÁ Vdc ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Junction Temperature ÁÁÁÁ ÁÁÁÁ TJ(max) ÁÁÁÁÁ ÁÁÁÁÁ 150 ÁÁÁ ÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Storage Temperature Range ÁÁÁÁ ÁÁÁÁ Tstg ÁÁÁÁÁ ÁÁÁÁÁ –65 to 150 ÁÁÁ ÁÁÁ NOTES: 1. Maximum Ratings are those values beyond which damage to the device may occur. Functional operation should be restricted to the limits in the Recommended Operating Conditions, Electrical Characteristics tables or Pin Descriptions section. 2. Meets Human Body Model (HBM) ≤100 V and Machine Model (MM) ≤25 V. ESD data available upon request. RECOMMENDED OPERATING CONDITIONS Characteristic Symbol Min Typ Max Unit Power Supply Voltage (TA = 25°C) VCC 2.7 – 6.5 Vdc VEE – 0 – Vdc RF Frequency Range fRF 1.0 – 2500 MHz Ambient Temperature Range TA –20 – 70 °C Maximum Input Signal Level PIF – with no damage – –10 – dBm – with minor performace degradation – 15 – dBm TRANSMITTER DC ELECTRICAL CHARACTERISTICS (TA = 25°C, VCC = 3.6 Vdc, no input signal, unless otherwise noted) Characteristic Symbol Min Typ Max Unit Total Supply Current (Enable = VCC ) Itotal 15 18 21 mA Power Down Current (Enable = VEE ) Itotal - 30 100 µA MC Current Input (High) Iih 70 100 130 µA MC Current Input (Low) Iil –130 –100 –70 µA Input high voltage Vih VCC – 0.4 – – V Input low voltge Vil – – 0.4 V Input Current Iin –50 – 50 µA TRANSMITTER AC ELECTRICAL CHARACTERISTICS (TA = 25°C, VCC = 3.6 Vdc, Enable = 3.6 Vdc, per Test Circuit shown in Figure 1, unless otherwise noted) Characteristics Input Pin Measure Pin Symbol Min Typ Max Unit Amplifier Output Power (with external matching) @ 950 MHz; Pin = –19 dBm PA in PA out PA_PO –4.5 –3.3 –2.1 dBm Amplifier 1.0 dB Compression Point (@ 950 MHz = fIF_out) PA in PA out P1dBC.Pt. – 8.0 – dBm Amplifier Output Harmonics (with external matching) @ 950 MHz; Pin = –19 dBm PA in PA out dBc 2nd PA – 2f –25 –37 – 3rd PA – 3f –35 –52 – Mixer/Buffer Output (@ 950 MHz = fosc; Mixer input (Pin 5) pulled through 270 Ω resistor) Buf_out+ PMx/Buf_out –19 –18 –17 dBm PLL Setup Time [Note 1] MC PRSC out TPLL - 10 – nS Mixer Input Third Order Intercept Point IIP3 – 10 – dBm VCO Phase Noise (@ 10 kHz offset) Buf_out+ – –80 – dBc/Hz Prescalar Output Level (10 k || 8.0 pF Load) PRSC out 400 – 600 mVpp NOTES: 1. MC input (50%) to PRSCout rising output (50%) for proper modulus selection. 2. Typical performance parameters indicate the potential of the device under ideal operation conditions. ARCHIVE INFORMATION ARCHIVE INFORMATION Freescale Sem iconductor, I Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com nc... ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005 ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005

Figure 1. Test Circuit Freescale Semiconductor, Inc.

4 MOTOROLA RF/IF DEVICE DATA

ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ PIN FUNCTION DESCRIPTION ÁÁÁÁ ÁÁÁÁ Pin ÁÁÁÁÁÁ ÁÁÁÁÁÁ Symbol/Type ÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁ

Description

ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ 1, 3 Mxr/Buf Out–, Mxr/Buf Out+ Mxr/Buf Out– VEE Mxr/B f + Mixer/Buffer Outputs The Mixer/Buffer is a differential open collector configuration which designed to use over a wide frequency range for up conversion as well as direct conversion. Differential to single–ended circuit configuration and matching options are discussed in the Circuit Description section. 6.0 dB of additional Mixer gain can be achieved by conjugately matching the outputs at the desired RF frequency.

2 VEE

VEE , Negative Supply This pin is VEE supply for the mixer IF output. In the application PC board this pin is tied to a common VEE trace with other VEE pins.

4 Mx Lin

VCC Mixer Linearity Control The mixer linearity control circuit accepts approximately 0 to 200 µA control current to set the dynamic range of the mixer. An Input Third Order Intercept Point, IIP3 of 17 dBm may be achieved at 200 µA of control current. ÁÁÁÁ Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á ÁÁÁÁÁÁ Mxr/Buf In Mxr/Buf In 450 µA ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Mixer/Buffer Input The mixer input impedance is broadband 50 Ω for applications up to 2.4 GHz. ÁÁÁÁ Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á ÁÁÁÁ 6, 7, 18, ÁÁÁÁÁÁ Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á ÁÁÁÁÁÁ VEE ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ VEE VEE VEE VEE ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ VEE , Negative Supply These pins are substrate connections on the IC. In the application PC board these pins are tied to a common V EE trace with other VEE pins. ÁÁÁÁ Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á ÁÁÁÁÁÁ VCC ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ VCC Base ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ VCC , Supply Voltage Two VCC pins are provided for the Local Oscillator and LO Buffer Amplifier. The operating supply voltage range is from 2.7 Vdc to 6.5 Vdc. In the PCB layout, the VCC trace must be kept as wide as feasible to minimize inductive reactances along the trace. VCC should be decoupled to VEE at the IC pin. ÁÁÁÁ ÁÁÁÁ ÁÁÁÁÁÁ ÁÁÁÁÁÁ Base ÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁ VEE ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ On–board VCO Transistor The transistor has the emitter, base, collector, VCC d V i il bl I t l bi i hi h i ÁÁÁÁ Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á ÁÁÁÁÁÁ VEE ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ Emitter 500 µA2.0 mA ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ and VEE pins available. Internal biasing which is compensated for stability over temperature is provided. It is recommended that the base pin is ÁÁÁÁ Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á ÁÁÁÁÁÁ Emitter ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ 500 µA2.0 mA ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ rovided. It is recommended that the base in is pulled up to VCC through an RFC chosen for the particular oscillator center frequency. The application circuit shows a Colpitts oscillator ÁÁÁÁ ÁÁÁÁ ÁÁÁÁÁÁ ÁÁÁÁÁÁ Collector ÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁ Collector ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ application circuit shows a C olpitts oscillator configuration. ARCHIVE INFORMATION ARCHIVE INFORMATION Freescale Sem iconductor, I Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com nc... ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005 ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005

5MOTOROLA RF/IF DEVICE DATA ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ PIN FUNCTION DESCRIPTION (continued) ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁ ÁÁÁÁÁÁ Symbol/Type ÁÁÁÁ ÁÁÁÁ Pin ÁÁÁÁ Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á ÁÁÁÁÁÁ VCC ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ VCC ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ VCC , Supply Voltage ÁÁÁÁ Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á ÁÁÁÁÁÁ PRSC Out ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ VCC PRSC Out 1.0 mA ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Prescaler Output The prescaler output provides 500 mVpp drive to the Fin Pin of a PLL synthesizer. Conjugately matching the interface will increase the drive delivered to the PLL input. ÁÁÁÁ Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á ÁÁÁÁÁÁ VEE ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ VEE

15 VCC

ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ VEE , Negative Supply ÁÁÁÁ Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á ÁÁÁÁÁÁ MC ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ MC ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Dual Modulus Control Current Input This requires a current input of typically 200 µApp. ÁÁÁÁ Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á ÁÁÁÁÁÁ Enable ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ Enable 17 10 k ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Transmitter Enable Enable the transmitter by pulling the pin up to VCC . ÁÁÁÁ Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á ÁÁÁÁÁÁ PA out ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ PA Out The output is an open collector of the cascode transistor low power amplifier (LPA); it is externally biased. The output may be conjugately matched with a shunt L, and series L and C network. ÁÁÁÁ Á ÁÁ Á ÁÁÁÁ 20, 21 ÁÁÁÁÁÁ Á ÁÁÁÁ Á ÁÁÁÁÁÁ VEE ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ PAout ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ VEE , Negative Supply VEE pin is taken to an ample dc ground plane through a low impedance path. The path should be ÁÁÁÁ Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á ÁÁÁÁÁÁ ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ VEE ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ kept as short as possible. A two sided PCB is implemented so that ground returns can be easily made through via holes. ÁÁÁÁ Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á ÁÁÁÁÁÁ PA in ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ 2.0 mA Vref2 Vref1 VEE PAin VCC ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ PA In The input is the base of the common emitter transistor. Minimum external matching is required to optimize the input return loss and gain. ÁÁÁÁ Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á Á ÁÁ Á ÁÁÁÁ ÁÁÁÁÁÁ Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á Á ÁÁÁÁ Á ÁÁÁÁÁÁ VCC ÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁ CC ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á Á ÁÁÁÁÁÁÁÁÁÁÁÁ Á ÁÁÁÁÁÁÁÁÁÁÁÁÁÁ VCC , Positive Supply VCC pin is taken to the incoming positive battery or regulated dc voltage through a low impedance trace on the PCB. It is decoupled to VEE ground at the pin of the IC. ARCHIVE INFORMATION ARCHIVE INFORMATION Freescale Sem iconductor, I Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com nc... ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005 ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005

6 MOTOROLA RF/IF DEVICE DATA

external circuit requirements. enable function in which ”high” powers up the IC. adjusting the value of R5 as illustrated in Figures 3 and 4. Figure 2. Typical Tuning Figure 3. Mixer/Buffer Output Freescale Semiconductor, Inc.

8 MOTOROLA RF/IF DEVICE DATA

Figure 6. ICC versus Figure 7. Output Power versus Freescale Semiconductor, Inc.

Figure 8. Applications Circuit Freescale Semiconductor, Inc.

10 MOTOROLA RF/IF DEVICE DATA

characterize individual operating parameters. component, ground and solder sides, respectively. details and applications for the device. Figure 9. Evaluation PCB Schematic Freescale Semiconductor, Inc.

Figure 10. MC13146 Evaluation PCB Component Side Freescale Semiconductor, Inc.

12 MOTOROLA RF/IF DEVICE DATA

Figure 11. MC13146 Evaluation PCB Ground Plane Figure 12. MC13146 Evaluation PCB Solder Side Freescale Semiconductor, Inc.

Table 1. VCO Transistor S–Parameters 3.6 Vdc; 50 Ω Load and Source Impedance; Common Collector Freescale Semiconductor, Inc.

14 MOTOROLA RF/IF DEVICE DATA

Table 2. Mixer Input/Output S–Parameters: 200 Ω Pull–Up Resistor Table 3. LPA S–Parameters: 200 Ω Pull–Up Resistor Freescale Semiconductor, Inc.

15MOTOROLA RF/IF DEVICE DATA FTA SUFFIX PLASTIC PACKAGE CASE 977–02 (LQFP–24) ISSUE A OUTLINE DIMENSIONS DIM MIN MAX MILLIMETERS A 4.000 BSC A1 2.000 BSC B 4.000 BSC B1 2.000 BSC C 1.400 1.600 D 0.170 0.270 E 1.350 1.450 F 0.170 0.230 G 0.500 BSC H 0.050 0.150 J 0.090 0.200 K 0.500 0.700 M 12 REF N 0.090 0.160 P 0.250 BSC Q 0 7 R 0.150 0.250 S 6.000 BSC S1 3.000 BSC V 6.000 BSC V1 3.000 BSC W 0.200 REF X 1.000 REF NOTES: 1 CONTROLLING DIMENSION: MILLIMETER.

2 DIMENSIONS AND TOLERANCES PER ASME

Y14.5M, 1994.

3 DATUM PLANE AB IS LOCATED AT BOTTOM OF

LEAD AND IS COINCIDENT WITH THE LEAD WHERE THE LEAD EXITS THE PLASTIC BODY AT THE BOTTOM OF THE PARTING LINE.

4 DATUMS T, U, AND Z TO BE DETERMINED AT

DATUM PLANE AB.

5 DIMENSIONS S AND V TO BE DETERMINED AT

DATUM PLANE AC.

6 DIMENSIONS A AND B DO NOT INCLUDE MOLD

PROTRUSION. ALLOWABLE PROTRUSION IS 0.250 PER SIDE. DIMENSIONS A AND B DO INCLUDE MOLD MISMATCH AND ARE DETERMINED AT DATUM PLANE AB.

7 DIMENSION D DOES NOT INCLUDE DAMBAR

PROTRUSION. DAMBAR PROTRUSION SHALL NOT CAUSE THE D DIMENSION TO EXCEED 0.350.

8 MINIMUM SOLDER PLATE THICKNESS SHALL BE

0.0076. 9 EXACT SHAPE OF EACH CORNER IS OPTIONAL. /C0095 /C0095 /C0095 S A T–U0.200 ZAB B V 0.080 AC R DETAIL AD DETAIL Y AE AE K X W G TOP & BOTTOM SECTION AE–AE M Q /C0095 /C0095 CE H 0.250 GAUGE PLANE ÉÉÉÉ ÉÉÉÉ ÉÉÉÉ ÇÇÇ ÇÇÇ ÇÇÇ F D NJ T, U, Z P T–U0.080 ZAC T U Z T–U0.200 ZAB AC AB Y Y Y AD ARCHIVE INFORMATION ARCHIVE INFORMATION Freescale Sem iconductor, I Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com nc... ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005 ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005

16 MOTOROLA RF/IF DEVICE DATA

Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters which may be provided in Motorola data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. Motorola does not convey any license under its patent rights nor the rights of others. Motorola products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the Motorola product could create a situation where personal injury or death may occur. Should Buyer purchase or use Motorola products for any such unintended or unauthorized application, Buyer shall indemnify and hold Motorola and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that Motorola was negligent regarding the design or manufacture of the part. Motorola and are registered trademarks of Motorola, Inc. Motorola, Inc. is an Equal Opportunity/Affirmative Action Employer. Mfax is a trademark of Motorola, Inc. How to reach us: USA / EUROPE / Locations Not Listed: Motorola Literature Distribution;JAPAN : Motorola Japan Ltd.; SPD, Strategic Planning Office, 141, P.O. Box 5405, Denver, Colorado 80217. 1–303–675–2140 or 1–800–441–2447 4–32–1 Nishi–Gotanda, Shinagawa–ku, Tokyo, Japan. 81–3–5487–8488 Customer Focus Center: 1–800–521–6274 Motorola Fax Back System – US & Canada ONLY 1–800–774–1848 2, Dai King Street, Tai Po Industrial Estate, Tai Po, N.T., Hong Kong. – http://sps.motorola.com/mfax/ 852–26668334 HOME PAGE : http://motorola.com/sps/ MC13146/D ARCHIVE INFORMATION ARCHIVE INFORMATION Freescale Sem iconductor, I Freescale Semiconductor, Inc. For More Information On This Product, Go to: www.freescale.com nc... ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005 ARCHIVED BY FREESCALE SEMICONDUCTOR, INC. 2005