MAX903 Maxim Integrated Products, MAX903 Datasheet

no-image

MAX903

Manufacturer Part Number
MAX903
Description
Manufacturer
Maxim Integrated Products
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MAX903
Manufacturer:
MAXIM
Quantity:
5 510
Part Number:
MAX903
Manufacturer:
MAXIM
Quantity:
5 510
Part Number:
MAX903
Manufacturer:
MAXIM
Quantity:
62
Part Number:
MAX9030AUT+T
Manufacturer:
Maxim Integrated Products
Quantity:
135
Part Number:
MAX9030AUT+T
Manufacturer:
MAXIM
Quantity:
1 330
Part Number:
MAX9030AUT+T
Manufacturer:
MAXIM
Quantity:
5 000
Part Number:
MAX9030AUT+T
Manufacturer:
MAXIM/美信
Quantity:
20 000
Part Number:
MAX9030AXT+T
Manufacturer:
MAXIM/美信
Quantity:
20 000
Part Number:
MAX9031AUK+T
Manufacturer:
MAXIM/美信
Quantity:
20 000
Company:
Part Number:
MAX9031AUK+T
Quantity:
20
Part Number:
MAX9031AXK+
Manufacturer:
MAXIM/美信
Quantity:
20 000
Part Number:
MAX9031AXK+T
Manufacturer:
MAXIM
Quantity:
5 000
Part Number:
MAX9031AXK+T
Manufacturer:
MAXIM/美信
Quantity:
20 000
The MAX900–MAX903 high-speed, low-power, single/
dual/quad voltage comparators feature differential ana-
log inputs and TTL-logic outputs with active internal pull-
ups. Fast propagation delay (8ns typ at 5mV overdrive)
makes the MAX900–MAX903 ideal for fast A/D convert-
ers and sampling circuits, line receivers, V/F converters,
and many other data-discrimination applications.
All comparators can be powered from separate analog
and digital power supplies or from a single combined sup-
ply voltage. The analog input common-mode range
includes the negative rail, allowing ground sensing when
powered from a single supply. The MAX900–MAX903
consume 18mW per comparator when powered from +5V.
The MAX900–MAX903 are equipped with independent
TTL-compatible latch inputs. The comparator output
states are held when the latch inputs are driven low. The
MAX901 provides the same performance as the
MAX900/MAX902/MAX903 with the exception of the
latches.
For newer, pin-for-pin compatible parts with the same
speed and only half the power dissipation, see the
MAX9201/MAX9202/MAX9203 data sheet.
19-2887; Rev. 4; 7/01
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.
High-Speed A/D
Converters
High-Speed V/F
Converters
Line Receivers
Threshold Detectors
TOP VIEW
High-Speed, Low-Power Voltage Comparators
OUT (A)
OUT (B)
IN+ (A)
IN+ (B)
IN- (A)
IN- (B)
GND
V
EE
*
1
2
3
4
5
6
7
8
A
B
________________________________________________________________ Maxim Integrated Products
MAX901
DIP/SO
General Description
D
C
16
15
14
13
12
11
10
9
Input Trigger Circuitry
High-Speed Data
Sampling
PWM Circuits
IN- (D)
IN+ (D)
V
OUT (D)
OUT (C)
V
IN+ (C)
IN- (C)
CC
DD
**
**
Applications
LATCH (A)
OUT (A)
IN+ (A)
IN- (A)
GND
V
N.C.
EE
*
1
2
3
4
5
6
7
A
MAX902
DIP/SO
o 8ns (typ) Propagation Delay
o 18mW/Comparator Power Consumption (+5V, typ)
o Separate Analog and Digital Supplies
o Flexible Analog Supply: +5V to +10V or ±5V
o Input Range Includes Negative Supply Rail
o TTL-Compatible Outputs
o TTL-Compatible Latch Inputs (Except MAX901)
Ordering Information continued at end of data sheet.
MAX900ACPP
MAX900BCPP
MAX900ACWP
MAX900BCWP
MAX900AEPP
MAX900BEPP
MAX900AEWP
MAX900BEWP
MAX901ACPE
MAX901BCPE
B
PART
14
13
12
11
10
9
8
V
N.C.
OUT (B)
LATCH (B)
V
IN+ (B)
IN- (B)
CC
DD
**
***
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
TEMP RANGE
V
0°C to +70°C
0°C to +70°C
0°C to +70°C
0°C to +70°C
0°C to +70°C
0°C to +70°C
Ordering Information
CC
V
IN+
IN-
EE
**
*
*ANALOG V- AND SUBSTRATE
**ANALOG V+
***DIGITAL V+
Pin Configurations
1
2
4
3
DIP/SO
MAX903
20 Plastic DIP
20 Plastic DIP
20 Wide SO
20 Wide SO
20 Plastic DIP
20 Plastic DIP
20 Wide SO
20 Wide SO
16 Plastic DIP
16 Plastic DIP
PIN-PACKAGE
Features
6
8
7
5
V
OUT
GND
LATCH
DD
***
1

Related parts for MAX903

MAX903 Summary of contents

Page 1

... TTL-logic outputs with active internal pull- ups. Fast propagation delay (8ns typ at 5mV overdrive) makes the MAX900–MAX903 ideal for fast A/D convert- ers and sampling circuits, line receivers, V/F converters, and many other data-discrimination applications. ...

Page 2

... Operating Temperature Ranges 0.2V 0.2V) MAX900–MAX903_C_ _ .......................................0°C to +70°C CC MAX900–MAX903_E_ _ ....................................-40°C to +85°C + 0.2V) Junction Temperature........................................-65°C to +160°C DD Storage Temperature Range .............................-65°C to +150°C Lead Temperature (soldering, 10s) .................................+300°C = +25°C, unless otherwise noted.) A ...

Page 3

... MAX MIN 105 = 0 = +25°C, unless otherwise noted.) A MAX900A/MAX901A MAX900B/MAX901B MIN TYP MAX = 5mV, = 15pF 5mV, = 15pF 0.5 2 MAX902 MAX903 TYP MAX MIN TYP MAX 5 8 2 MAX902 MAX903 MIN TYP MAX MIN TYP MAX 0.5 2.0 0.5 2 UNITS UNITS ...

Page 4

... 0.1 2.25 < 250 = 1.4V 100 250 > 250mV, 2.4 3.5 = 1mA > 250mV, 0.3 0.4 = 8mA 1.4 2.0 0.8 1 MAX900B/MAX901B/ MAX902/MAX903 UNITS MIN TYP MAX 200 800 - 0.1 2.25 120 500 µV/V 150 500 µV/V 2.4 3.5 0.3 0.4 1.4 2.0 ...

Page 5

... Note 4: Guaranteed by design. Times are for 100mV step inputs (see Propagation Delay Characteristics in Figures 2 and 3). Note 5: Maximum difference in propagation delay between any of the four comparators in the MAX900–MAX903. Note 6: See Timing Diagram (Figure 2). Owing to the difficult and critical nature of switching measurements involving the latch, these parameters cannot be tested in a production environment ...

Page 6

High-Speed, Low-Power Voltage Comparators (T = +25°C, unless otherwise noted.) A INPUT OFFSET VOLTAGE vs. TEMPERATURE -40 - 100 120 TEMPERATURE (°C) I SUPPLY CURRENT (PER COMPARATOR) CC vs. V ...

Page 7

... Negative Input (Channels Positive Input 2, 7, 10, 15 (Channels Ground Terminal 3 Latch Input (Channels Output (Channels Negative Analog 11 Supply and Substrate Positive Digital Supply 14 Positive Analog Supply MAX903 FUNCTION PIN Pin Descriptions NAME FUNCTION Negative Input IN- ( (Channels Positive Input IN+ ( (Channels GND ...

Page 8

... Input Slew-Rate Requirements As with all high-speed comparators, the high gain-band- width product of the MAX900–MAX903 can create oscil- lation problems when the input traverses the linear region. For clean output switching without oscillation or steps in the output waveform, the input must meet mini- mum slew-rate requirements ...

Page 9

High-Speed, Low-Power Voltage Comparators V Input Offset Voltage: Voltage applied OS between the two input terminals to obtain TTL-logic threshold (+1.4V) at the output. V Input Voltage Pulse Amplitude: Usually IN set to 100mV for comparator specifications. V Input Voltage ...

Page 10

... High-Speed, Low-Power Voltage Comparators COMPARE LATCH ENABLE INPUT LATCH LATCH DIFFERENTAL INPUT VOLTAGE pd- COMPARATOR OUTPUT Figure 2. MAX900/MAX902/MAX903 Timing Diagram OUTPUT INPUT 5ns/div Figure 4. t Response Time to 5mV Overdrive pd- 10 ______________________________________________________________________________________ COMPARE 1.4V LATCH tpw(D) OUTPUT V OS INPUT t (D) pd+ Figure 3. t pd+ 1 ...

Page 11

High-Speed, Low-Power Voltage Comparators OUTPUT 1V/div INPUT 10mV/div 5ns/div Figure 6. Response to 50MHz Sine Wave +1.25V VREF IN1 MX7228 V OUT1 VDAC1 OCTAL 8-BIT DAC IN2 IN3 IN4 MSB 8-BIT IN5 DATA DATA LATCH INPUT ...

Page 12

... MAX903EPA -40°C to +85°C MAX903ESA -40°C to +85°C Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. ...

Related keywords