MAX3013 MAXIM | Alldatasheet
Document overview
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Technical content
Features
♦ 100Mbps Guaranteed Data Rate ♦ Bidirectional Level Translation ♦ VL Operation Down to +1.2V ♦ Ultra-Low 0.1µA Supply Current in Shutdown ♦ Low-Quiescent Current (0.1µA) ♦ UCSP, QFN, and TSSOP Packages MAX3013 +1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators
Ordering Information
19-3156; Rev 2; 12/04 For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at 1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com. Pin Configurations continued at end of data sheet. Typical Operating Circuit appears at end of data sheet. PART TEMP RANGE PIN-PACKAGE N U M B ER O F VL → VC C T R A N SL A T O R S NUMBER OF VL ← VCC TRANSLATORS DATA RATE (Mbps) MAX3013EUP -40°C to +85°C 20 TSSOP 8 8 100 MAX3013EBP-T -40°C to +85°C 5 x 4 UCSP 8 8 100 MAX3013EGP -40°C to +85°C 20 QFN-EP* 8 8 100 I/O V CC1 I/O VCC2 I/O VCC3 I/O VCC4I/O VL4 I/O VL3 I/O VL2 I/O VL1 VCC GND I/O VCC5 I/O VCC6I/O VL6 I/O VL5 EN VL I/O VCC7 I/O VCC8I/O VL8 I/O VL7 MAX3013 TSSOP TOP VIEW Pin Configurations *EP = Exposed paddle. UCSP is a trademark of Maxim Integrated Products, Inc. SPI is a trademark of Motorola, Inc. MICROWIRE is a trademark of National Semiconductor Corp.
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators ABSOLUTE MAXIMUM RATINGS
ELECTRICAL CHARACTERISTICS
ues are at VCC = +3.3V, VL = +1.8V, TA = +25°C.) (Note 2) Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specificatio ns is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. (All voltages referenced to GND.) V Continuous Power Dissipation (TA = +70°C) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS POWER SUPPLIES VL Supply Range V L 1.2 VCC - 0.4 V VCC Supply Range V CC 1.65 3.6 V Supply Current from VCC IQVCC I/O V CC_ = 0, I/O V L _ = 0 or I/O V CC_ = VCC, I/O V L _ = VL 0.1 1 µA I/O V CC_ = 0, I/O V L _ = 0 or I/O V CC_ = VCC, I/O V L _ = VL 0.1 4 Supply Current from VL IQVL I/O V CC_ = 0, I/O V L _ = 0 or I/O V CC_ = VCC, I/O V L _ = VL, VL < VCC - 0.2V 0.1 100 µA VCC Tristate Output Mode Supply Current ITS-VCC TA = +25°C, EN = 0 0.03 1 µA TA = +25°C, EN = 0 0.1 0.2VL Tristate Output Mode Supply Current ITS-VL TA = +25°C, EN = 0, VL = VCC - 0.2V 1 2 µA TA = +25°C, EN = 0, 0.15I/O Tristate Output Mode Leakage Current TA = +25°C, EN = 0, VL = VCC - 0.2V 30 µA LOGIC-LEVEL THRESHOLDS I/O VL_ Input-Voltage High V IHL 2/3 x VL V I/O VL_ Input-Voltage Low V ILL 1/3 x VL V I/O VCC_ Input-Voltage High V IHC 2/3 x VCC V I/O VCC_ Input-Voltage Low V ILC 1/3 x VCC V EN Input-Voltage High V IH TA = +25°C 2/3 x VL V
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators ELECTRICAL CHARACTERISTICS (continued) ues are at VCC = +3.3V, VL = +1.8V, TA = +25°C.) (Note 2) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS EN Input-Voltage Low V IL TA = +25°C 1/3 x VL V EN Input Current T A = +25°C± 5 µ A I/O VL_ Output-Voltage High V OHL I/O VL_ source current = 20µA 2/3 x VL V I/O VL_ Output-Voltage Low V OLL I/O VL_ sink current = 20µA 1/3 x VL V I/O VCC_ Output-Voltage High V OHC I/O VCC_ source current = 20µA 2/3 x VCC V I/O VCC_ Output-Voltage Low V OLC I/O VCC_ sink current = 20µA 1/3 x VCC V TIMING CHARACTERISTICS ues are at VCC = +3.3V, VL = +1.8V, TA = +25°C.) (Note 2) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS C IOV C C = 15p F, Fi g ur e 1 2.5 C IOV C C = 20p F, Fi g ur e 1 3I/O VCC_ Rise Time t RVCC C IOV C C = 40p F, Fi g ur e 1 4 ns C IOV C C = 15p F, Fi g ur e 1 2.5 C IOV C C = 20p F, Fi g ur e 1 3I/O VCC_ Fall Time t FVCC C IOV C C = 40p F, Fi g ur e 1 4 ns I/O VCC_ One-Shot Output 18.5 Ω I/O VL_ Rise Time t RVL CIOVL = 15pF, Figure 2 2.5 ns I/O VL_ Fall Time t FVL CIOVL = 15pF, Figure 2 2.5 ns I/O VL_ One-Shot Output Impedance 12.5 Ω Propagation Delay (Driving I/O VL_) I/OVL-VCC C IOV C C = 15p F, Fi g ur e 1 6.5 ns
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators Note 1: VL must be less than or equal to VCC - 0.4V during normal operation. However, VL can be greater than VCC - 0.4V during starting up and shutting down conditions. Note 2: All units are 100% production tested at TA = +25°C. Limits over the operating temperature range are guaranteed by design and not production tested. Note 3: Not production tested. Guaranteed by design. TIMING CHARACTERISTICS (continued) ues are at VCC = +3.3V, VL = +1.8V, TA = +25°C.) (Note 2) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Propagation Delay (Driving I/O VCC_) I/OVCC-VL C IOVL = 15p F, Fi g ur e 2 6 ns Part-to-Part Skew t PPSKEW C IOV C C = 15p F, C IOVL = 15p F, V C C = 2.5V , V L = 1.8V ( N ote 3) 4n s Propagation Delay from I/O VL_ to I/O VCC_ after EN tEN-VCC C IOV C C = 15p F, Fi g ur e 3 1000 ns Propagation Delay from I/O VCC_ to I/O VL_ after EN tEN-VL C IOVL = 15p F, Fi g ur e 4 1000 ns C IOV C C = 15p F, C IOVL = 15p F, V L > 1.8V 100Maximum Data Rate C IOV C C = 15p F, C IOVL = 15p F, V L > 1.2V 80 Mbps Typical Operating Characteristics (Data rate = 100Mbps, VCC = 3.3V, VL = 1.8V, TA = +25°C, unless otherwise noted.) 0.2 0.1 0.4 0.3 0.5 0.6 VL SUPPLY CURRENT vs. SUPPLY VOLTAGE MAX3013 toc02 VCC SUPPLY VOLTAGE (V) VL SUPPLY CURRENT (mA) DRIVING I/O VL VL = 1.25V CIOVCC = 15pF 0.2 0.6 0.4 0.8 1.0 VL SUPPLY CURRENT vs. SUPPLY VOLTAGE MAX3013 toc01 VCC SUPPLY VOLTAGE (V) VL SUPPLY CURRENT (mA) DRIVING I/O VL VL = 1.8V CIOVCC = 15pF VCC SUPPLY CURRENT vs. SUPPLY VOLTAGE MAX3013 toc03 VCC SUPPLY VOLTAGE (V) VCC SUPPLY CURRENT (mA) DRIVING I/O VL VL = 1.8V CIOVCC = 15pF
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators Typical Operating Characteristics (continued) (Data rate = 100Mbps, VCC = 3.3V, VL = 1.8V, TA = +25°C, unless otherwise noted.) VCC SUPPLY CURRENT vs. SUPPLY VOLTAGE MAX3013 toc04 VCC SUPPLY VOLTAGE (V) VCC SUPPLY CURRENT (mA) DRIVING I/O VL VL = 1.25V CIOVCC = 15pF 2.0 2.4 3.2 2.8 3.6 4.0 VL SUPPLY CURRENT vs. TEMPERATURE MAX3013 toc05 TEMPERATURE (°C) VL SUPPLY CURRENT (mA) -40 35 10-15 60 85 DRIVING I/O VCC CIOVL = 15pF -40 10 -15 35 60 85 VCC SUPPLY CURRENT vs. TEMPERATURE MAX3013 toc06 TEMPERATURE (°C) VCC SUPPLY CURRENT (mA) DRIVING I/O VCC CIOVL = 15pF 0.2 0.6 0.4 0.8 1.0 VL SUPPLY CURRENT vs. CAPACITIVE LOAD ON I/O VCC MAX3013toc07 CAPACITIVE LOAD (pF) VL SUPPLY CURRENT (mA) 02 0 10 30 40 DRIVING I/O VL VCC SUPPLY CURRENT vs. CAPACITIVE LOAD ON I/O VCC MAX3013 toc08 CAPACITIVE LOAD (pF) VCC SUPPLY CURRENT (mA) 02 0 10 30 40 DRIVING I/O VL 0.3 0.9 0.6 1.2 1.5 RISE/FALL TIME vs. CAPACITIVE LOAD ON I/O VCC MAX3013 toc09 CAPACITIVE LOAD (pF) RISE/FALL TIME (ns) 02 0 10 30 40 DRIVING I/O VL tFALL tRISE
Typical Operating Characteristics (continued) (Data rate = 100Mbps, VCC = 3.3V, VL = 1.8V, TA = +25°C, unless otherwise noted.) MAX3013 +1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators 0.2 0.6 0.4 0.8 1.0 RISE/FALL TIME vs. CAPACITIVE LOAD ON I/O VL MAX3013 toc10 CAPACITIVE LOAD (pF) RISE/FALL TIME (ns) 01 0 51 5 2 0 DRIVING I/O VCC tFALL tRISE PROPAGATION DELAY vs. CAPACITIVE LOAD ON I/O VCC MAX3013 toc11 CAPACITIVE LOAD (pF) PROPAGATION DELAY (ns) 02 0 10 30 40 DRIVING I/O VL tPHL tPLH PROPAGATION DELAY vs. CAPACITIVE LOAD ON I/O VL MAX3013 toc12 CAPACITIVE LOAD (pF) PROPAGATION DELAY (ns) 01 0 51 5 2 0 DRIVING I/O VCC tPHL tPLH TYPICAL I/O VCC DRIVING MAX3013 toc13 I/O VCC 1V/div I/O VL 1V/div 4ns/div 150 160 180 170 190 200 tEN-VCC vs. TEMPERATURE (CIOVCC = 15pF) MAX3013 toc14 TEMPERATURE (°C) tEN-VCC (ns) -40 35 10-15 60 85 100 tEN-VL vs. TEMPERATURE (CIOVL = 15pF) MAX3013 toc15 TEMPERATURE (°C) tEN-VL (ns) -40 35 10-15 60 85
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators Pin Description PIN BUMP TSSOP QFN UCSP NAME FUNCTION 1 18 B1 I/O VL1 Input/Output 1, Referenced to VL 2 19 A1 I/O VL2 Input/Output 2, Referenced to VL 3 20 B2 I/O VL3 Input/Output 3, Referenced to VL 4 1 A2 I/O VL4 Input/Output 4, Referenced to VL 6 3 A4 EN Enable Input. If EN is pulled low, all inputs/outputs are in tristate. Drive EN high (VL) for normal operation. 7 4 B3 I/O VL5 Input/Output 5, Referenced to VL 8 5 A5 I/O VL6 Input/Output 6, Referenced to VL 9 6 B4 I/O VL7 Input/Output 7, Referenced to VL 10 7 B5 I/O VL8 Input/Output 7, Referenced to VL 11 8 C5 I/O VCC8 Input/Output 8, Referenced to VCC 12 9 C4 I/O VCC7 Input/Output 7, Referenced to VCC 13 10 D5 I/O VCC6 Input/Output 6, Referenced to VCC 14 11 C3 I/O VCC5 Input/Output 5, Referenced to VCC 15 12 D4 GND Ground 17 14 D2 I/O VCC4 Input/Output 4, Referenced to VCC 18 15 C2 I/O VCC3 Input/Output 3, Referenced to VCC 19 16 D1 I/O VCC2 Input/Output 2, Referenced to VCC 20 17 C1 I/O VCC1 Input/Output 1, Referenced to VCC
Figure 1. Driving I/O VL Test Circuit and Timing
Figure 2. Driving I/O VCC Test Circuit and Timing
and VL, set the logic levels on either side of the device. L side, yet the device does not latch up. operating voltage range (see the Timing Characteristics). Typical Input Current vs. Input Voltage. The MAX3013 I/O was designed to drive CMOS inputs. MAX3379E/MAX3390E–MAX3393E data sheet. Figure 5. MAX3013 Simplified Diagram (1 I/O line)
the MAX3013 I/O on both sides in tristate output mode. close to the power-supply input pins as possible. *RIN = 4kΩ WHEN DRIVING VL SIDE. RIN = 150Ω WHEN DRIVING VCC SIDE. Figure 6. Typical IIN vs. VIN
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators Chip Information TRANSISTOR COUNT: 1447 PROCESS: BiCMOS I/O VL3 I/O VL2 I/O VL1 I/O VCC1 I/O VCC2 I/O VL7 I/O VL8 I/O VCC8 I/O VCC7 I/O VCC6 I/O VCC5 GND VCC I/O VCC4 I/O VCC3 I/O VL6 I/O VL5 EN **EXPOSED PADDLE VL I/O VL4 MAX3013 5mm x 5mm QFN TOP VIEW MAX3013
20 UCSP
(BOTTOM VIEW) I/O VCC4I/O VCC2 VCC GND I/O VCC3I/O VCC1 I/O V CC5 I/O V CC7 I/O VL3I/O VL1 I/O V L5 I/O V L7 I/O VL4I/O VL2V L EN I/O VCC6 I/O VCC8 I/O VL8 I/O VL6 B A C D 2345 Pin Configurations (continued)
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators
Package Information
(The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline info rmation go to www.maxim-ic.com/packages.) TSSOP4.40mm.EPS
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators Package Information (continued) (The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline info rmation go to www.maxim-ic.com/packages.) 5x4 UCSP.EPS I 1 121-0095 PACKAGE OUTLINE, 5x4 UCSP
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators Package Information (continued) (The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline info rmation go to www.maxim-ic.com/packages.) 32L QFN.EPS
+1.2V to +3.6V, 0.1µA, 100Mbps, 8-Channel Level Translators Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circu it patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600 ____________________ 17 © 2004 Maxim Integrated Products Printed USA is a registered trademark of Maxim Integrated Products, Inc. Package Information (continued) (The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline info rmation go to www.maxim-ic.com/packages.)