DC/DC Converter; Product Weight (grams): 17; Input voltage min (V): 18; Input voltage max (V): 72; Output voltage min: 7.2; Output voltage max: 7.2; Output voltage dual assymetric (y/n): Dual; Output Power (W): 4; Max Output current (A): ±0.278; Efficiency (%): 78; Max Capacitive load (µF): ±47; Package type: DIP24; Mounting: PCB; W (in): 0.8; L (in): 1.25; H (in): 0.4; W (mm): 20.32; L (mm): 31.75; H (mm): 10.16; Min Operating temperature: -40; Max operating temperature (°C): 85; Isolation (VDC): 3500; EMC compliance 2: EN 55032 Class A; Case material: Copper; Application 4 (building automation/IoT): 1; MTBF (h): 960000; Derating : 85; Voltage Accuracy (%): ±1; Line Regulation (% of Vin): ±0.5; Load Regulation %: ±0.5; Ripple & Noise (mV p-p): 60; Switching Frequency typ (KHz): 266; Short circuit protection: Continuous
DC/DC Converter; Product Weight (grams): 17; Input voltage min (V): 18; Input voltage max (V): 72; Output voltage min: 7.2; Output voltage max: 7.2; Output voltage dual assymetric (y/n): Dual; Output Power (W): 4; Max Output current (A): ±0.278; Efficiency (%): 78; Max Capacitive load (µF): ±47; Package type: DIP24; Mounting: PCB; W (in): 0.8; L (in): 1.25; H (in): 0.4; W (mm): 20.32; L (mm): 31.75; H (mm): 10.16; Min Operating temperature: -40; Max operating temperature (°C): 85; Isolation (VDC): 3500; EMC compliance 2: EN 55032 Class A; Case material: Copper; Application 4 (building automation/IoT): 1; MTBF (h): 960000; Derating : 85; Voltage Accuracy (%): ±1; Line Regulation (% of Vin): ±0.5; Load Regulation %: ±0.5; Ripple & Noise (mV p-p): 60; Switching Frequency typ (KHz): 266; Short circuit protection: Continuous
NOTE: All specifications in this datasheet are measured at an ambient temperature of 25°C, humidity<75%, nominal input voltage and at
rated output load unless otherwise specified
Safety Specifications
Parameters
Agency Approval
CE
EN55022 Class A, EN55024
IEC61000-4-2, Perf. Criteria B
IEC61000-4-3, Perf. Criteria A
IEC61000-4-4, Perf. Criteria B (external 220uF/100V cap required)
IEC61000-4-5, Perf. Criteria B (external 220uF/100V cap required)
IEC61000-4-6, Perf. Criteria A
IEC61000-4-8, Perf. Criteria A
NOTE: Also designed to meet IEC60950-1:2001
Standards
Pin Out Specifications
Pin
1
2
3
9
10
11
12/13
14
15
16
22
23
24
1500VDC
Single
Dual
+V Input
N.C.
N.C.
No Pin
-V Output
+V Output
-V Input
+V Output
-V Output
No Pin
N.C.
N.C.
+V Input
+V Input
-V Output
Common
No Pin
Common
+V Output
-V Input
+V Output
Common
No Pin
Common
-V Output
+V Input
3500VDC
Single
Dual
No Pin
-V Input
-V Input
No Pin
No Pin
N.C.
No Pin
+V Output
No Pin
-V Output
+V Input
+V Input
No Pin
No Pin
-V Input
-V Input
Common
No Pin
-V Output
No Pin
+V Output
No Pin
Common
+V Input
+V Input
No Pin
www.aimtec.com
F 051e R12.F
Tel: +1 514 620 2722
3 of 5
Toll free: + 1 888 9 AIMTEC
(924 6832)
North America only
Series AM4TW-Z
4 Watt | DC-DC Converter
Dimensions
27.94
(1.10)
0.50
(0.02)
1 2 3
9 10 11 12
31.75
(1.25)
20.32
(0.80)
0.25
(0.01)
Bottom View
24 23 22
16 15 14 13
2.54
(0.10)
Printed Face
Built-in Stand-offs to
ease PCB cleaning
10.16
(0.40)
All dimensions are typical: millimeters (inches)
Pin Diameter: 0.50 ± 0.05 (0.02 ± 0.002)
Pin Pitch Tolerance: ± 0.35 (±0.014)
Case Tolerence: ± 0.5 (±0.02)
3.05
(0.12)
Conducted Emissions:
Dual Output
12uH
L
C1
220uF
100V
-V input
C2
+V output
+V input
DC/DC
Converter
-V output
Load
Load
15.24
(0.60)
Common
1000pF
2KV
www.aimtec.com
F 051e R12.F
Tel: +1 514 620 2722
4 of 5
Toll free: + 1 888 9 AIMTEC
(924 6832)
North America only
Series AM4TW-Z
4 Watt | DC-DC Converter
Surge:
Dual Output
+V output
+V input
C1
220uF
100V
-V input
Common
DC/DC
Converter
-V output
Load
Load
NOTE: 1.
Datasheets are updated as needed and as such, specifications are subject to change without notice. Once printed or downloaded, datasheets are no longer controlled
by Aimtec; refer to www.aimtec.com for the most current product specifications.
2.
Product labels shown, including safety agency certifications on labels, may vary based on the
date manufactured.
3.
Mechanical drawings and specifications are for reference only.
4.
All specifications are measured at an ambient temperature of 25°C, humidity<75%,
nominal input voltage and at rated output load unless otherwise specified.
5.
Aimtec may not have conducted destructive testing or chemical analysis on all internal components
and chemicals at the time of publishing this document. CAS numbers and other limited information are considered proprietary and may not be available for release.
6.
This
product is not designed for use in critical life support systems, equipment used in hazardous environments, nuclear control systems or other such applications which necessitate
specific safety and regulatory standards other the ones listed in this datasheet.
7.
Warranty is in accordance with Aimtec’s standard Terms of Sale available at www.aimtec.com.
DC/DC Converter; Product Weight (grams): 17; Input voltage min (V): 18; Input voltage max (V): 72; Output voltage min: 7.2; Output voltage max: 7.2; Output voltage dual assymetric (y/n): Dual; Output Power (W): 4; Max Output current (A): ±0.278; Efficiency (%): 78; Max Capacitive load (µF): ±47; Package type: DIP24; Mounting: PCB; W (in): 0.8; L (in): 1.25; H (in): 0.4; W (mm): 20.32; L (mm): 31.75; H (mm): 10.16; Min Operating temperature: -40; Max operating temperature (°C): 85; Isolation (VDC): 3500; EMC compliance 2: EN 55032 Class A; Case material: Copper; Application 4 (building automation/IoT): 1; MTBF (h): 960000; Derating : 85; Voltage Accuracy (%): ±1; Line Regulation (% of Vin): ±0.5; Load Regulation %: ±0.5; Ripple & Noise (mV p-p): 60; Switching Frequency typ (KHz): 266; Short circuit protection: Continuous
DC/DC Converter; Product Weight (grams): 17; Input voltage min (V): 18; Input voltage max (V): 72; Output voltage min: 12; Output voltage max: 12; Output voltage dual assymetric (y/n): Single; Output Power (W): 4; Max Output current (A): 0.333; Efficiency (%): 82; Max Capacitive load (µF): 220; Package type: DIP24; Mounting: PCB; W (in): 0.8; L (in): 1.25; H (in): 0.4; W (mm): 20.32; L (mm): 31.75; H (mm): 10.16; Min Operating temperature: -40; Max operating temperature (°C): 85; Isolation (VDC): 3500; EMC compliance 2: EN 55032 Class A; Case material: Copper; Application 4 (building automation/IoT): 1; MTBF (h): 960000; Derating : 85; Voltage Accuracy (%): ±1; Line Regulation (% of Vin): ±0.5; Load Regulation %: ±0.5; Ripple & Noise (mV p-p): 60; Switching Frequency typ (KHz): 266; Short circuit protection: Continuous
DC/DC Converter; Product Weight (grams): 17; Input voltage min (V): 9; Input voltage max (V): 36; Output voltage min: 9; Output voltage max: 9; Output voltage dual assymetric (y/n): Dual; Output Power (W): 4; Max Output current (A): ±0.222; Efficiency (%): 81; Max Capacitive load (µF): ±47; Package type: DIP24; Mounting: PCB; W (in): 0.8; L (in): 1.25; H (in): 0.4; W (mm): 20.32; L (mm): 31.75; H (mm): 10.16; Min Operating temperature: -40; Max operating temperature (°C): 85; Isolation (VDC): 1500; EMC compliance 2: EN 55032 Class A; Case material: Copper; Application 4 (building automation/IoT): 1; MTBF (h): 960000; Derating : 85; Voltage Accuracy (%): ±1; Line Regulation (% of Vin): ±0.5; Load Regulation %: ±0.5; Ripple & Noise (mV p-p): 60; Switching Frequency typ (KHz): 266; Short circuit protection: Continuous
I am now mainly working on the improvement of electric energy meters. The overall framework is in the attachment. It is converted from the product of voltage and current to power, but it can be consid...
LAUNCHXL_CC1352P1 The "luxury" materials used in this board lie in the debugger part on the board (the MCU's periphery is only equipped with a SPI Flash, in addition to the necessary crystal oscillato...
Functional description: Two virtual terminals, 430 receives character input from B1 and returns the character to B1, and also sends the character to B2 via infrared. Infrared is modulated by 555 timer...
1. I asked God for a bike, but I know God doesn't work that way. So I stole a bike and asked for forgiveness. 2. I want to die peacefully in my sleep, like my grandfather.. Not screaming and yelling l...
A comprehensive introduction to the basic knowledge of FPGA circuits - analog circuits. [[i] This post was last edited by dream_byxiaoyu on 2011-11-12 12:38 [/i]]...
introduction
1 The significance of using RTOS on MSP430
It is understandable that it is meaningless to use RTOS on MSP430. Because the hardware resources of MSP430 are limited (for exampl...[Details]
A single-chip microcomputer is also called a single-chip microcontroller. It is not a chip that completes a certain logical function, but a computer system integrated into one chip. In general, a c...[Details]
With the rapid development of science and technology, especially the widespread application of digital technology and various ultra-large-scale integrated circuits, electronic equipment, especially...[Details]
1 Introduction
The high temperature tester is mainly used for temperature tracking measurement and data acquisition during the heating process. By systematically analyzing the test data, the...[Details]
Introduction
Power subsystems are becoming more and more integrated into the overall system. Power systems have moved from being separate "essential dangerous devices" to being monitorable...[Details]
Power management solutions for today's portable application processors are becoming increasingly integrated. Total power consumption, standby and sleep current consumption affect battery size, bill...[Details]
introduction
MAX6636 is a multi-channel precision temperature monitor that can not only monitor local temperature, but also connect up to 6 diodes externally. Each channel has a programmable...[Details]
1. Disadvantages of choosing too high a voltage level
Choosing too high a voltage level will result in too high an investment and a long payback period. As the voltage level increases, the...[Details]
Today, with energy becoming increasingly scarce, the utilization of natural energy has become the focus of people's attention. Among various natural energies, the endless solar energy is highly fav...[Details]
To understand how and why OLED power supply affects display image quality, you must first understand OLED display technology and power supply requirements. This article will explain the latest OLED...[Details]
introduction
Incandescent bulbs can emit a variety of light, but in specific applications, only green, red, and yellow light are usually needed - such as traffic lights. If an incand...[Details]
The rectified DC voltage is then converted back to AC using power electronics such as insulated gate bipolar transistors.
The output voltage is switched on and off at a high frequency, control...[Details]
The DisplayPort interface standard is approved by the Video Electronics Standards Association (VESA) to provide an open, scalable standard for the entire industry. The development of DisplayPort ca...[Details]
a. Keep the battery clean, wipe off the spilled electrolyte, contaminated dirt and dust in time; keep the poles and terminal clamps clean and in good contact, and apply vaseline or butter to preven...[Details]
1 Introduction
At present, advocating health has become the focus of people's attention, and the emergence of treadmills has become more and more popular. People can exercise at home or in the ...[Details]