MAX864EEE-T Maxim Integrated Products, MAX864EEE-T Datasheet

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MAX864EEE-T

Manufacturer Part Number
MAX864EEE-T
Description
Charge Pumps Dual-Output Charge Pump
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX864EEE-T

Function
Inverting, Step Up
Output Voltage
- 3.5 V to - 12 V, 3.5 V to 12 V
Output Current
20 mA
Maximum Operating Temperature
+ 85 C
Package / Case
QSOP-16
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
The MAX864 CMOS, charge-pump, DC-DC voltage
converter produces a positive and a negative output
from a single positive input, and requires only four
capacitors. The charge pump first doubles the input
voltage, then inverts the doubled voltage. The input
voltage ranges from +1.75V to +6.0V.
The internal oscillator can be pin-programmed from
7kHz to 185kHz, allowing the quiescent current, capac-
itor size, and switching frequency to be optimized. The
55Ω output impedance permits useful output currents
up to 20mA. The MAX864 also has a 1µA logic-con-
trolled shutdown.
The MAX864 comes in a 16-pin QSOP package that
uses the same board area as a standard 8-pin SOIC.
For more space-sensitive applications, the MAX865 is
available in an 8-pin µMAX package, which uses half
the board area of the MAX864.
________________________Applications
19-0478; Rev 0; 3/96
For free samples & the latest literature: http://www.maxim-ic.com, or phone 1-800-998-8800
__________________Pin Configuration
_______________General Description
TOP VIEW
Low-Voltage GaAsFET Bias in Wireless Handsets
VCO and GaAsFET Supply
Split Supply from 2 to 4 Ni Cells or 1 Li+ Cell
Low-Cost Split Supply for Low-Voltage
Data-Acquisition Systems
Split Supply for Analog Circuitry
LCD Panels
Dual-Output Charge Pump with Shutdown
SHDN
GND
C2+
FC1
FC0
C1-
C2-
V-
________________________________________________________________ Maxim Integrated Products
1
2
3
4
5
6
7
8
MAX864
QSOP
16
15
14
13
12
11
10
9
C1+
V+
N.C.
N.C.
IN
GND
N.C.
N.C.
____________________________Features
* Contact factory for dice specifications.
__________Typical Operating Circuit
______________Ordering Information
MAX864C/D
MAX864EEE
(+1.75V TO +6.0V)
Requires Only Four Capacitors
Dual Outputs (Positive and Negative)
Low Input Voltages: +1.75V to +6.0V
1µA Logic-Controlled Shutdown
Selectable Frequencies Allow Optimization
of Capacitor Size and Supply Current
PART
V
IN
-40°C to +85°C
TEMP. RANGE
0°C to +70°C
IN
C1+
C1-
C2+
C2-
FC0
V
IN
FC1
MAX864
V
IN
SHDN
V
IN
GND
V+
V-
Dice*
16 QSOP
PIN-PACKAGE
+2V
-2V
IN
IN
1

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MAX864EEE-T Summary of contents

Page 1

... Requires Only Four Capacitors Dual Outputs (Positive and Negative) Low Input Voltages: +1.75V to +6.0V 1µA Logic-Controlled Shutdown Selectable Frequencies Allow Optimization of Capacitor Size and Supply Current ______________Ordering Information PART MAX864C/D MAX864EEE * Contact factory for dice specifications. __________Typical Operating Circuit V IN (+1.75V TO +6.0V) C1 ...

Page 2

... Note 1: Measured using the capacitor values in Table 1. Capacitor ESR contributes approximately 10% of the output impedance [ESR + 1 / (pump frequency x capacitance)]. 2 _______________________________________________________________________________________ Operating Temperature Range MAX864EEE......................................................-40°C to +85°C Continuous Power Dissipation (T QSOP (derate 8.70mW/°C above +70°C) .....................696mW Storage Temperature Range ............................ -65°C to +160°C Lead Temperature (soldering, 10sec) .............................+300°C ...

Page 3

Dual-Output Charge Pump with Shutdown __________________________________________Typical Operating Characteristics (V = 5.0V, capacitor values in Table EFFICIENCY vs. OUTPUT CURRENT @ 7kHz PUMP FREQUENCY 100 3.3V ...

Page 4

Dual-Output Charge Pump with Shutdown ____________________________Typical Operating Characteristics (continued 5.0V, capacitor values in Table OUTPUT CURRENT vs. PUMP CAPACITANCE (V = 4.75V 16V 33kHz 12 10 100kHz 185kHz 8 ...

Page 5

Dual-Output Charge Pump with Shutdown ____________________________Typical Operating Characteristics (continued 5.0V, capacitor values in Table _____________________Pin Description PIN NAME FUNCTION Negative Terminal of the Flying Boost 1 C1- Capacitor Positive Terminal of the Flying 2 C2+ ...

Page 6

Dual-Output Charge Pump with Shutdown _______________Detailed Description The MAX864 requires only four external capacitors to implement a voltage doubler/inverter. These may be ceramic or polarized capacitors (electrolytic or tanta- lum) with values ranging from 0.47µF to 100µF. Figure 2a illustrates ...

Page 7

... V IN DROOP+ The output resistances for the positive and negative charge pumps are tested and specified separately. The positive charge pump is tested with V- unloaded. The negative charge pump is tested with V+ supplied from an external source, isolating the negative charge pump. Current draw from either supplied by the reservoir capacitor alone during one half cycle of the clock ...

Page 8

Dual-Output Charge Pump with Shutdown __________Applications Information Positive and Negative Converter The most common application of the MAX864 dual charge-pump voltage converter that provides pos- itive and negative outputs of two times a positive input voltage for ...

Page 9

Dual-Output Charge Pump with Shutdown C1- 2 MAX864 C2+ C1 GND Figure 4. Paralleling Two MAX864s Heavy Output Current Loads When under heavy loads, where V+ is sourcing current ...

Page 10

Dual-Output Charge Pump with Shutdown 10 ______________________________________________________________________________________ ___________________Chip Topography C2+ C1- C1+ GND C2- V- SHDN FC1 FC0 0.080" (2.03mm) TRANSISTOR COUNT: 143 SUBSTRATE CONNECTED 0.120" (3.05mm) IN GND ...

Page 11

Dual-Output Charge Pump with Shutdown ________________________________________________________Package Information ______________________________________________________________________________________ INCHES MILLIMETERS DIM MIN MAX MIN A 0.061 0.068 1.55 A1 0.004 0.0098 0.127 A2 0.055 0.061 1.40 B 0.008 0.012 0.20 C 0.0075 ...

Page 12

... Maxim reserves the right to change the circuitry and specifications without notice at any time. implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. 12 __________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 (408) 737-7600 12 __________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 (408) 737-7600 12 __________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 (408) 737-7600 © ...

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