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 MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
Order this document by MDC5101/D
Antenna Switch Control
The MDC5101 inputs TxE and RxE Logic Signals with an accessory input termination option and, allows positive and negative control voltages in accordance with the enclosed truth table. This device is primarily intended to control GaAs RF switches. It is also designed to interface with most HCMOS MCUs such as the Motorola MC68338. The MDC5101 is intended to replace a circuit of up to 18 discrete components and is available in a Micro-8 package. This device, in combination with a compatible RF switch, can be used to achieve duplex isolation in any Time Division Duplex Radio like GSM and DCS1800 with staggered Transmit Receive Time Slots. It can also be used to control an RF switch in dual band radio applications. This integrated solution in a Micro-8 package compared with a discrete solution will add a great value in performance with less board space consumption. Features * Miniature Micro-8 Surface Mount Package Saves Board Space * Logic Level Control * Designed to Interface with Microcontrollers
MDC5101
ANTENNA SWITCH CONTROLLER
PLASTIC PACKAGE CASE 846A-02 (Micro-8)
MAXIMUM RATINGS
Rating Positive Power Supply Voltage (1) Negative Power Supply Voltage (2) Differential Power Supply Voltage Input Voltage (3) Output Current (4) Operating Temperature Range Storage Temperature Range Junction Temperature Symbol VCC VEE VCC-VEE Vin I1, I2 TA Tstg TJ Value 15 -12 15 VCC 5.0 -40 to +85 -55 to +150 150 Unit Vdc Vdc Vdc Vdc mAdc C C C (Top View) VCC ACC RXE TXE 1 2 3 4 8 7 6 5 GND V1 VEE V2
THERMAL CHARACTERISTICS
Characteristic Total Power Dissipation Derate above 25C Thermal Resistance, Junction to Ambient Note 1: Pin 1 Referenced to Ground Note 2: Pin 6 Referenced to Ground Note 3: Pin 3, 4 Referenced to Ground Note 4: Pin 5, 7 Referenced to Ground Symbol PD RJA Value 510 4.0 245 Unit mW mW/C C/W
DEVICE MARKING
5101
ORDERING INFORMATION
MDC5101R2 13 inch Reel, 4000 units
ESD Rating
ESD protection on each pin to 2500 V per MIL-STD6883 method 3015, using human body model of 100 pF, 1500 Ohms and using the machine model to 200 V at 100 pF and 0 Ohms. Parts must meet electrical requirement after testing.
Analog/Interface (c) Motorola, Inc. 1999 Integrated Circuit Device Data
REV 2
1
MDC5101
ELECTRICAL CHARACTERISTICS (VCC = 2.75 V, VEE = -5.0 V, TA = Tlow to Thigh unless otherwise noted)
Characteristic Symbol Min Typ Max Unit
DC PARAMETERS
Positive Power Supply Current V1, V2, ACC 10 kW to GND, RxE = VIH, TxE = VIL Negative Power Supply Current V1, V2, ACC Open, RxE = VIL, TxE = VIH Negative Power Supply Current V1, V2, ACC 10 kW to GND, RxE = VIL, TxE = VIH High Level Output Voltage I1 = I2 = 250 mA, ACC Open RxE = VIL, TxE = VIH RxE = VIH, TxE = VIL ICC -- IEE -- IEE -1.5 -- -- Vdc VOH(V1) VOH(V2) VOH(V2) VOH(V1) VIH-0.25 VIH-0.25 VIH-0.25 VIH-0.25 Vdc VOL(V1,V2) VOL(V1) VOL(V1,V2) VOL(V2) -0.5 -0.5 -0.5 -0.5 0 0 0 0 0.5 0.5 0.5 0.5 Vdc VOL(V2) VOL(V1) -4.5 -4.5 -50 -- -- 1.0 mA
mA
mA
I1 = I2 = 250 mA, ACC 10 kW to GND RxE = VIL, TxE = VIH RxE = VIH, TxE = VIL
Low Level Output Voltage I1 = I2 = 250 mA, ACC Open RxE = TxE = VIL RxE = VIH, TxE = VIL
I1 = I2 = 250 mA, ACC 10 kW to GND RxE = TxE = VIL RxE = VIH, TxE = VIL
Low Level Output Voltage I1 = I2 = 250 mA, TxE = VIH, RxE = VIL ACC Open ACC 10 kW to GND
AC PARAMETERS
Propagation Delay RxE, TxE to V1, V2 ACC Open RxE, TxE to V1, V2 ACC 10 kW to GND ACC to V1, V2 tPLH tPHL tPLH tPHL tPLH tPHL -- -- -- -- -- -- -- -- -- -- -- -- 1.5 1.5 1.5 1.5 5.0 5.0
ms
TRUTH TABLE
Input Logic RxE 0 0 0 0 1 1 1 1 TxE 0 0 1 1 0 0 1 1 ACC 0 1 0 1 0 1 0 1 Output Logic V2 0 0 -5.0 2.7 2.7 0 2.7 2.7 V1 0 0 2.7 -5.0 0 2.7 2.7 2.7 State not allowed in software State not allowed in software
Note: ACC Logic Low = Open, ACC Logic High = 10 kW Low Level Input Voltage RxE, TxE High Level Input Voltage RxE, TxE Maximum Voltage Differential VIL -- VIH 2.5 VCC-VIH -- -- -- -- 1.5 -- 0.4 Vdc
2
Analog/Interface Integrated Circuit Device Data
MDC5101
2.80 RX-E = 0 TX-E = 1 2.75 Vout (V) Vout (V) V2 ACC 10 kW 2.70 V1 ACC Floating 2.65 -4.85 2.60 -40 -4.90 -40 -4.65 RX-E = 0 TX-E = 1
-4.70
-4.75
V2 ACC Floating
-4.80
V1 ACC 10 kW
25 TEMPERATURE (C)
85
25 TEMPERATURE (C)
85
Figure 1. Vout (high) versus Temperature
Figure 2. Vout (low) versus Temperature
0.65 ACC 10 kW 0.60 ICC (mA) ICC RX = 1, TX = 0 ICC RX = 0, TX = 1 I EE (mA)
1.2 1.1 1.0 0.9 0.8 0.7 0.6 IEE ACC Floating RX-E = 0 TX-E = 1 IEE ACC 10 kW
0.55
0.50
0.45 -40
0.5 25 TEMPERATURE (C) 85 -40 25 TEMPERATURE (C) 85
Figure 3. ICC versus Temperature
Figure 4. IEE versus Temperature
0.7 0.6 0.5 I EE (mA) 0.4 0.3 0.2 IEE ACC Floating 0.1 0 -40 IEE (mA) RX-E = 1 TX-E = 0 IEE ACC 10 kW
-2.5 -2.3 -2.1 -1.9 -1.7 -1.5 -1.3 -1.1 -0.9 -0.7 -0.5 25 TEMPERATURE (C) 85 -5 -6 -7 -8 -9 VEE (V) RX-E = 0, TX-E = 1, ACC 10 kW, Vout 10 kW, VCC = 2.75 V -10 -11 -12
Figure 5. IEE versus Temperature
Figure 6. IEE versus VEE
Analog/Interface Integrated Circuit Device Data
3
MDC5101
3 ICC = f(VCC) 2.5 2 ICC (mA) Vout (V) 1.5 1 0.5 0 2.5 5 7.5 VCC (V) 10 12.5 15 RX-E = 0, TX-E = 1 = VCC, ACC 10 kW, Vout 10 kW, VEE = -5.0 V 4 2 0 -2 -4 -6 -8 V1 -10 -12 -5 -6 -7 -8 -9 VEE (V) -10 -11 -12 RX-E = 0, TX-E = 1, ACC 10 kW, Vout 10 kW, VCC = 2.75 V V2
Figure 7. ICC versus VCC
Figure 8. Vout versus VEE
14 12 10 8 Vout (V) 6 4 2 0 -2 -4 -6 2.5 5 7.5 VCC (V) 10 V1 12.5 15 RX-E = 0, TX-E = 1 = VCC, ACC 10 kW, Vout 10 kW, VEE = -5.0 V V2
Figure 9. Vout versus VIH/VCC
4
Analog/Interface Integrated Circuit Device Data
MDC5101
1 RX-2.75 GND 8
2
ACC
V1
7
3
RX-EN log1 log2
VEE
6
4
TX-EN
V2
5
Figure 10. Antenna Switch Controller Block Diagram
8 GND
7 V1
6 VEE
5 V2
MDC5101 VCC 1 ACC 2 RX-EN TX-EN 3 4
ICC
A + - 10 kW
10 kW + - VRX-EN VTX-EN 0/2.75 V 0/2.75 V V2
10 kW V1
A IEE - +
VCC
+ -
VEE
GND
Figure 11. Temperature Measurement Schematic
Analog/Interface Integrated Circuit Device Data
5
MDC5101
8 GND
7 V1
6 VEE
5 V2
MDC5101 VCC 1 ACC 2 RX-EN TX-EN 3 4
10 kW VTX-EN = 2.75 V VCC2 = 2.75 V + - 10 kW + - V2
10 kW V1
A IEE -
+ VEE
GND
Figure 12. Measurement Schematic Vout vs VEE & IEE vs VEE
8 GND
7 V1
6 VEE
5 V2
MDC5101 VCC 1 ACC 2 RX-EN TX-EN 3 4
10 kW V2 VCC + - 10 kW
10 kW V1
A IEE - +
VEE = 5.0 V
GND
Figure 13. Measurement Schematic Vout vs VCC
6
Analog/Interface Integrated Circuit Device Data
MDC5101
PACKAGE DIMENSIONS
-A-
K
-B-
NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: MILLIMETER. 3. DIMENSION A DOES NOT INCLUDE MOLD FLASH, PROTRUSIONS OR GATE BURRS. MOLD FLASH, PROTRUSIONS OR GATE BURRS SHALL NOT EXCEED 0.15 (0.006) PER SIDE. 4. DIMENSION B DOES NOT INCLUDE INTERLEAD FLASH OR PROTRUSION. INTERLEAD FLASH OR PROTRUSION SHALL NOT EXCEED 0.25 (0.010) PER SIDE. MILLIMETERS MIN MAX 2.90 3.10 2.90 3.10 --- 1.10 0.25 0.40 0.65 BSC 0.05 0.15 0.13 0.23 4.75 5.05 0.40 0.70 INCHES MIN MAX 0.114 0.122 0.114 0.122 --- 0.043 0.010 0.016 0.026 BSC 0.002 0.006 0.005 0.009 0.187 0.199 0.016 0.028
PIN 1 ID
G D 8 PL 0.08 (0.003)
M
TB
S
A
S
-T-
SEATING PLANE
0.038 (0.0015) H
C J L
DIM A B C D G H J K L
CASE 846A-02 ISSUE D
Analog/Interface Integrated Circuit Device Data
7
MDC5101
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; P.O. Box 5405, Denver, Colorado 80217. 1-303-675-2140 or 1-800-441-2447 Customer Focus Center: 1-800-521-6274 MfaxTM: RMFAX0@email.sps.mot.com - TOUCHTONE 1-602-244-6609 ASIA / PACIFIC: Motorola Semiconductors H.K. Ltd.; Silicon Harbour Centre, 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/ JAPAN: Motorola Japan Ltd.; SPD, Strategic Planning Office, 141, 4-32-1 Nishi-Gotanda, Shinagawa-ku, Tokyo, Japan. 81-3-5487-8488
8
MDC5101/D Analog/Interface Integrated Circuit Device Data


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