DS1010S-50 Maxim Integrated Products, DS1010S-50 Datasheet

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DS1010S-50

Manufacturer Part Number
DS1010S-50
Description
DELAY LINE 10TAP 50NS 16-SOIC
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of DS1010S-50

Number Of Taps/steps
10
Function
Tapped
Delay To 1st Tap
5nS
Tap Increment
5nS
Available Total Delays
50ns
Voltage - Supply
4.75 V ~ 5.25 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
16-SOIC (0.300", 7.5mm Width)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Number Of Independent Delays
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
DS1010S-50
Manufacturer:
DALLAS
Quantity:
91
Part Number:
DS1010S-50
Manufacturer:
DALLAS
Quantity:
1 000
Part Number:
DS1010S-50
Manufacturer:
ST
0
Part Number:
DS1010S-50
Manufacturer:
DALLAS
Quantity:
20 000
FEATURES
DESCRIPTION
The DS1010 series delay line has ten equally spaced taps providing delays from 5 ns to 500 ns. The
devices are offered in a standard 14-pin DIP which is pin-compatible with hybrid delay lines.
Alternatively, a 16-pin SOIC is available for surface mount technology which reduces PC board area.
Since the DS1010 is an all-silicon solution, better economy is achieved when compared to older methods
using hybrid techniques. The DS1010 series delay lines provide a nominal accuracy of ±5% or ±2 ns,
whichever is greater. The DS1010 reproduces the input logic state at the TAP 10 output after a fixed
delay as specified by the dash number extension of the part number. The DS1010 is designed to produce
both leading and trailing edge with equal precision. Each tap is capable of driving up to 10 74LS type
loads. Dallas Semiconductor can customize standard products to meet special needs. For special requests
and rapid delivery, call (972) 371-4348.
www.dalsemi.com
All-silicon time delay
10 taps equally spaced
Delays are stable and precise
Leading and trailing edge accuracy
Delay tolerance ±5% or ±2 ns, whichever is
greater
Economical
Auto-insertable, low profile
Standard 14-pin DIP or 16-pin SOIC
Low-power CMOS
TTL/CMOS-compatible
Vapor phase, IR and wave solderable
Custom delays available
Fast turn prototypes
1 of 6
TAP 2
TAP 4
TAP 6
TAP 8
DS1010 14-Pin DIP (300-mil)
GND
See Mech. Drawings Section
IN1
NC
PIN ASSIGNMENT
PIN DESCRIPTION
TAP 1 - TAP 10 - TAP Output Number
V
GND
NC
IN
CC
1
2
3
4
5
6
7
10-Tap Silicon Delay Line
13
12
14
11
10
9
8
TAP 1
V
TAP 3
TAP 7
TAP 10
TAP 5
TAP 9
CC
- 5 Volts
- Ground
- No Connection
- Input
See Mech. Drawings Section
TAP 2
TAP 4
TAP 6
TAP 8
GND
DS1010S 16-Pin SOIC
IN1
NC
NC
(300-mil)
1
2
3
4
5
6
7
8
DS1010
14
15
12
16
13
11
10
9
111799
V
NC
TAP 1
TAP 5
TAP 9
TAP 3
TAP 7
TAP 10
CC

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DS1010S-50 Summary of contents

Page 1

... TAP 10 DS1010 14-Pin DIP (300-mil) See Mech. Drawings Section See Mech. Drawings Section PIN DESCRIPTION TAP 1 - TAP 10 - TAP Output Number Volts CC GND - Ground Connection IN - Input DS1010 IN1 TAP TAP TAP TAP TAP 9 GND 8 TAP 10 9 DS1010S 16-Pin SOIC (300-mil) 111799 ...

Page 2

LOGIC DIAGRAM Figure 1 PART NUMBER DELAY TABLE (t CATALOG P/N DS1010-50 DS1010-60 DS1010-75 DS1010-80 DS1010-100 DS1010-125 DS1010-150 DS1010-175 DS1010-200 DS1010-250 DS1010-300 DS1010-350 DS1010-400 DS1010-450 DS1010-500 Custom delays available Table 1 PHL PLH TOTAL DELAY 50 60 ...

Page 3

ABSOLUTE MAXIMUM RATINGS* Voltage on Any Pin Relative to Ground Operating Temperature Storage Temperature Soldering Temperature Short Circuit Output Current * This is a stress rating only and functional operation of the device at these or any other conditions above ...

Page 4

NOTES: 1. All voltages are referenced to ground. 2. Measured with outputs open 25°C. Input-to-tap delays accurate on both rising and falling edges within ± ±5% CC whichever is greater. 4. See “Test ...

Page 5

TEST CIRCUIT Figure 3 TERMINOLOGY Period: The time elapsed between the leading edge of the first pulse and the leading edge of the following pulse. t (Pulse Width): The elapsed time on the pulse between the 1.5V point on the ...

Page 6

TEST SETUP DESCRIPTION Figure 3 illustrates the hardware configuration used for measuring the timing parameters on the DS1010. The input waveform is produced by a precision pulse generator under software control. Time delays are measured by a time interval counter ...

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